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Erschienen in: Journal of Material Cycles and Waste Management 3/2018

27.04.2018 | REVIEW

Environmentally sustainable applications of agro-based spent mushroom substrate (SMS): an overview

verfasst von: Fatimah Hafifah Mohd Hanafi, Shahabaldin Rezania, Shazwin Mat Taib, Mohd Fadhil Md Din, Masahito Yamauchi, Mariko Sakamoto, Hirofumi Hara, Junboum Park, Shirin Shafiei Ebrahimi

Erschienen in: Journal of Material Cycles and Waste Management | Ausgabe 3/2018

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Abstract

Agricultural wastes such as lignocellulosic residues are renewable resources can be used for mushroom cultivation. Spent mushroom substrate (SMS) is defined as leftover of biomass generated by commercial mushroom industries after harvesting period of mushroom. Mushroom cultivation using agricultural wastes promises a good quality of SMS for producing beneficial products such as animal feeding and fertilizers. Based on the published papers, the major applications of SMS are animal feedstock, fertilizer, energy production and wastewater treatment. For instance, some species of mushroom such as Pleurotus spp. and Agaricus bisporus are suitable for applications of ruminant feedstock and fertilizers. This paper reviews the recent studies about the beneficial usage of SMS which is considered as a waste since 2013.

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Literatur
1.
Zurück zum Zitat Treuer TL, Choi JJ, Janzen DH, Hallwachs W, Peréz-Aviles D, Dobson AP, Powers JS, Shanks LC, Werden LK, Wilcove DS (2018) Low-cost agricultural waste accelerates tropical forest regeneration. Restorat Ecol 26(2):275–83CrossRef Treuer TL, Choi JJ, Janzen DH, Hallwachs W, Peréz-Aviles D, Dobson AP, Powers JS, Shanks LC, Werden LK, Wilcove DS (2018) Low-cost agricultural waste accelerates tropical forest regeneration. Restorat Ecol 26(2):275–83CrossRef
2.
Zurück zum Zitat Adebayo EA, Martinez-Carrera D (2015) Oyster mushrooms (Pleurotus) are useful for utilizing lignocellulosic biomass. Afr J Biotechnol 14(1):52–67CrossRef Adebayo EA, Martinez-Carrera D (2015) Oyster mushrooms (Pleurotus) are useful for utilizing lignocellulosic biomass. Afr J Biotechnol 14(1):52–67CrossRef
3.
Zurück zum Zitat Yadav P, Samadder SR (2018) A critical review of the life cycle assessment studies on solid waste management in Asian countries. J Clean Prod 185:492–515CrossRef Yadav P, Samadder SR (2018) A critical review of the life cycle assessment studies on solid waste management in Asian countries. J Clean Prod 185:492–515CrossRef
4.
Zurück zum Zitat Amin MZ, Harun A, Wahab MA (2014) Status and potential of mushroom industry in Malaysia. Econ Technol Manag Rev 9b:103–111 Amin MZ, Harun A, Wahab MA (2014) Status and potential of mushroom industry in Malaysia. Econ Technol Manag Rev 9b:103–111
5.
Zurück zum Zitat Phan CW, Sabaratnam V (2012) Potential uses of spent mushroom substrate and its associated lignocellulosic enzymes. Appl Microbiol Biotechnol 96(4):863–73CrossRef Phan CW, Sabaratnam V (2012) Potential uses of spent mushroom substrate and its associated lignocellulosic enzymes. Appl Microbiol Biotechnol 96(4):863–73CrossRef
6.
Zurück zum Zitat Aida FM, Shuhaimi M, Yazid M, Maaruf AG (2009) Mushroom as a potential source of prebiotics: a review. Trend Food Sci Technol 20(11–12):567–75CrossRef Aida FM, Shuhaimi M, Yazid M, Maaruf AG (2009) Mushroom as a potential source of prebiotics: a review. Trend Food Sci Technol 20(11–12):567–75CrossRef
7.
Zurück zum Zitat Williams BC, McMullan JT, McCahey S (2001) An initial assessment of spent mushroom compost as a potential energy feedstock. Bioresour Technol 79(3):227–30CrossRef Williams BC, McMullan JT, McCahey S (2001) An initial assessment of spent mushroom compost as a potential energy feedstock. Bioresour Technol 79(3):227–30CrossRef
10.
Zurück zum Zitat Embrandiri A, Ibrahim MH, Singh RP (2013) Palm oil mill wastes utilization; sustainability in the Malaysian context. Int J Sci Res Publ 24(3):63–8 Embrandiri A, Ibrahim MH, Singh RP (2013) Palm oil mill wastes utilization; sustainability in the Malaysian context. Int J Sci Res Publ 24(3):63–8
11.
Zurück zum Zitat Marlina L, Sukotjo S, Marsudi S (2015) Potential of oil palm empty fruit bunch (EFB) as media for oyster mushroom, Pleurotus ostreatus cultivation. Procedia Chemist 16:427–431CrossRef Marlina L, Sukotjo S, Marsudi S (2015) Potential of oil palm empty fruit bunch (EFB) as media for oyster mushroom, Pleurotus ostreatus cultivation. Procedia Chemist 16:427–431CrossRef
12.
Zurück zum Zitat Folorunsho JO (2016) Assessment of open burning of agricultural waste in Biu local government area of Borno State, Nigeria. Adv Soc Sci Res J 3(6):52–60 Folorunsho JO (2016) Assessment of open burning of agricultural waste in Biu local government area of Borno State, Nigeria. Adv Soc Sci Res J 3(6):52–60
13.
Zurück zum Zitat Kim YI, Cho WM, Hong SK, Oh YK, Kwak WS (2011) Yield, nutrient characteristics, ruminal solubility and degradability of spent mushroom (Agaricus bisporus) substrates for ruminants. Asian Australas J Anim Sci 24(11):1560–1568CrossRef Kim YI, Cho WM, Hong SK, Oh YK, Kwak WS (2011) Yield, nutrient characteristics, ruminal solubility and degradability of spent mushroom (Agaricus bisporus) substrates for ruminants. Asian Australas J Anim Sci 24(11):1560–1568CrossRef
14.
Zurück zum Zitat Paula FS, Tatti E, Abram F, Wilson J, O’Flaherty V (2017) Stabilisation of spent mushroom substrate for application as a plant growth-promoting organic amendment. J Environ Manag 196:476–486CrossRef Paula FS, Tatti E, Abram F, Wilson J, O’Flaherty V (2017) Stabilisation of spent mushroom substrate for application as a plant growth-promoting organic amendment. J Environ Manag 196:476–486CrossRef
15.
Zurück zum Zitat Barh A, Upadhyay RC, Kamal S, Annepu SK, Sharma VP, Shirur M, Banyal S (2018) Mushroom crop in agricultural waste cleanup. In: Pankaj, Sharma A (eds) Microbial biotechnology in environmental monitoring and cleanup. IGI Global, Hershey, pp 252–266CrossRef Barh A, Upadhyay RC, Kamal S, Annepu SK, Sharma VP, Shirur M, Banyal S (2018) Mushroom crop in agricultural waste cleanup. In: Pankaj, Sharma A (eds) Microbial biotechnology in environmental monitoring and cleanup. IGI Global, Hershey, pp 252–266CrossRef
16.
Zurück zum Zitat Moon YH, Shin PG, Cho SJ (2012) Feeding value of spent mushroom (Pleurotus eryngii) substrate. J Mushroom 10(4):236–243 Moon YH, Shin PG, Cho SJ (2012) Feeding value of spent mushroom (Pleurotus eryngii) substrate. J Mushroom 10(4):236–243
17.
Zurück zum Zitat Lin Y, Ge X, Li Y (2014) Solid-state anaerobic co-digestion of spent mushroom substrate with yard trimmings and wheat straw for biogas production. Bioresour Technol 169:468–474CrossRef Lin Y, Ge X, Li Y (2014) Solid-state anaerobic co-digestion of spent mushroom substrate with yard trimmings and wheat straw for biogas production. Bioresour Technol 169:468–474CrossRef
18.
Zurück zum Zitat Zisopoulos FK, Ramírez HA, van der Goot AJ, Boom RM (2016) A resource efficiency assessment of the industrial mushroom production chain: the influence of data variability. J Clean Prod 126:394–408CrossRef Zisopoulos FK, Ramírez HA, van der Goot AJ, Boom RM (2016) A resource efficiency assessment of the industrial mushroom production chain: the influence of data variability. J Clean Prod 126:394–408CrossRef
19.
Zurück zum Zitat Chiu SW, Ching ML, Fong KL, Moore D (1998) Spent oyster mushroom substrate performs better than many mushroom mycelia in removing the biocide pentachlorophenol. Mycol Res 102(12):1553–1562CrossRef Chiu SW, Ching ML, Fong KL, Moore D (1998) Spent oyster mushroom substrate performs better than many mushroom mycelia in removing the biocide pentachlorophenol. Mycol Res 102(12):1553–1562CrossRef
20.
Zurück zum Zitat Rasib NA, Zakaria Z, Tompang MF, Rahman RA, Othman H (2015) Characterization of biochemical composition for different types of spent mushroom substrate in Malaysia. Malays J Anal Sci 19(1):41–45 Rasib NA, Zakaria Z, Tompang MF, Rahman RA, Othman H (2015) Characterization of biochemical composition for different types of spent mushroom substrate in Malaysia. Malays J Anal Sci 19(1):41–45
21.
Zurück zum Zitat Kim YI, Lee YH, Kim KH, Oh YK, Moon YH, Kwak WS (2012) Effects of supplementing microbially-fermented spent mushroom substrates on growth performance and carcass characteristics of Hanwoo steers (a field study). Asian Australas J Anim Sci 25(11):1575–1581CrossRef Kim YI, Lee YH, Kim KH, Oh YK, Moon YH, Kwak WS (2012) Effects of supplementing microbially-fermented spent mushroom substrates on growth performance and carcass characteristics of Hanwoo steers (a field study). Asian Australas J Anim Sci 25(11):1575–1581CrossRef
22.
Zurück zum Zitat Yang D, Liang J, Wang Y, Sun F, Tao H, Xu Q, Zhang L, Zhang Z, Ho CT, Wan X (2016) Tea waste: an effective and economic substrate for oyster mushroom cultivation. J Sci Food Agric 96(2):680–684CrossRef Yang D, Liang J, Wang Y, Sun F, Tao H, Xu Q, Zhang L, Zhang Z, Ho CT, Wan X (2016) Tea waste: an effective and economic substrate for oyster mushroom cultivation. J Sci Food Agric 96(2):680–684CrossRef
23.
Zurück zum Zitat Sardar H, Ali MA, Anjum MA, Nawaz F, Hussain S, Naz S, Karimi SM (2017) Agro-industrial residues influence mineral elements accumulation and nutritional composition of king oyster mushroom (Pleurotus eryngii). Sci Hortic 225:327–334CrossRef Sardar H, Ali MA, Anjum MA, Nawaz F, Hussain S, Naz S, Karimi SM (2017) Agro-industrial residues influence mineral elements accumulation and nutritional composition of king oyster mushroom (Pleurotus eryngii). Sci Hortic 225:327–334CrossRef
24.
Zurück zum Zitat Reis FS, Barros L, Martins A, Ferreira IC (2012) Chemical composition and nutritional value of the most widely appreciated cultivated mushrooms: an inter-species comparative study. Food Chem Toxicol 50(2):191–197CrossRef Reis FS, Barros L, Martins A, Ferreira IC (2012) Chemical composition and nutritional value of the most widely appreciated cultivated mushrooms: an inter-species comparative study. Food Chem Toxicol 50(2):191–197CrossRef
25.
Zurück zum Zitat Pala SA, Wani AH, Mir RH (2012) Yield performance of Pleurotus sajorcaju on different agro-based wastes. Ann Biol Res 3(4):1938–1941 Pala SA, Wani AH, Mir RH (2012) Yield performance of Pleurotus sajorcaju on different agro-based wastes. Ann Biol Res 3(4):1938–1941
26.
Zurück zum Zitat Chukwurah NF, Eze SC, Chiejina NV, Onyeonagu CC, Ugwuoke KI, Ugwu FS, Nkwonta CG, Akobueze EU, Aruah CB, Onwuelughasi CU (2012) Performance of oyster mushroom (Pleurotus ostreatus) in different local agricultural waste materials. Afr J Biotechnol 11(37):8979–8985CrossRef Chukwurah NF, Eze SC, Chiejina NV, Onyeonagu CC, Ugwuoke KI, Ugwu FS, Nkwonta CG, Akobueze EU, Aruah CB, Onwuelughasi CU (2012) Performance of oyster mushroom (Pleurotus ostreatus) in different local agricultural waste materials. Afr J Biotechnol 11(37):8979–8985CrossRef
28.
Zurück zum Zitat Thiribhuvanamala G, Krishnamoorthy S, Manoranjitham K, Praksasm V, Krishnan S (2012) Improved techniques to enhance the yield of paddy straw mushroom (Volvariella volvacea) for commercial cultivation. Afr J Biotechnol 11(64):12740–12748 Thiribhuvanamala G, Krishnamoorthy S, Manoranjitham K, Praksasm V, Krishnan S (2012) Improved techniques to enhance the yield of paddy straw mushroom (Volvariella volvacea) for commercial cultivation. Afr J Biotechnol 11(64):12740–12748
29.
Zurück zum Zitat Falandysz J (2013) On published data and methods for selenium in mushrooms. Food Chem 138(1):242–250CrossRef Falandysz J (2013) On published data and methods for selenium in mushrooms. Food Chem 138(1):242–250CrossRef
30.
Zurück zum Zitat Jayakumar T, Thomas PA, Sheu JR, Geraldine P (2011) In-vitro and in-vivo antioxidant effects of the oyster mushroom Pleurotus ostreatus. Food Res Int 44(4):851–861CrossRef Jayakumar T, Thomas PA, Sheu JR, Geraldine P (2011) In-vitro and in-vivo antioxidant effects of the oyster mushroom Pleurotus ostreatus. Food Res Int 44(4):851–861CrossRef
31.
Zurück zum Zitat Randive SD (2012) Cultivation and study of growth of oyster mushroom on different agricultural waste substrate and its nutrient analysis. Adv Appl Sci Res 3(4):1938–1949 Randive SD (2012) Cultivation and study of growth of oyster mushroom on different agricultural waste substrate and its nutrient analysis. Adv Appl Sci Res 3(4):1938–1949
32.
Zurück zum Zitat Islam MZ, Rahman MH, Hafiz F (2009) Cultivation of oyster mushroom (Pleurotus flabellatus) on different substrates. Int J Sustain Crop Prod 4(1):45–48 Islam MZ, Rahman MH, Hafiz F (2009) Cultivation of oyster mushroom (Pleurotus flabellatus) on different substrates. Int J Sustain Crop Prod 4(1):45–48
33.
Zurück zum Zitat Alam N, Amin R, Khan A, Ara I, Shim MJ, Lee MW, Lee TS (2008) Nutritional analysis of cultivated mushrooms in Bangladesh-Pleurotus ostreatus, Pleurotus sajor-caju, Pleurotus florida and Calocybe indica. Mycobiology 36(4):228–232CrossRef Alam N, Amin R, Khan A, Ara I, Shim MJ, Lee MW, Lee TS (2008) Nutritional analysis of cultivated mushrooms in Bangladesh-Pleurotus ostreatus, Pleurotus sajor-caju, Pleurotus florida and Calocybe indica. Mycobiology 36(4):228–232CrossRef
34.
Zurück zum Zitat Moonmoon M, Uddin MN, Ahmed S, Shelly NJ, Khan MA (2012) Cultivation of different strains of king oyster mushroom (Pleurotus eryngii) on saw dust and rice straw in Bangladesh. Saudi J Biol Sci 17(4):341–345CrossRef Moonmoon M, Uddin MN, Ahmed S, Shelly NJ, Khan MA (2012) Cultivation of different strains of king oyster mushroom (Pleurotus eryngii) on saw dust and rice straw in Bangladesh. Saudi J Biol Sci 17(4):341–345CrossRef
35.
Zurück zum Zitat Melo de Carvalho CS, Sales-Campos C, Nogueira de Andrade MC (2010) Mushrooms of the Pleurotus genus: a review of cultivation techniques. Interciencia 35(3):177–182 Melo de Carvalho CS, Sales-Campos C, Nogueira de Andrade MC (2010) Mushrooms of the Pleurotus genus: a review of cultivation techniques. Interciencia 35(3):177–182
36.
Zurück zum Zitat Pant D, Reddy UG, Adholeya A (2006) Cultivation of oyster mushrooms on wheat straw and bagasse substrate amended with distillery effluent. World J Microbiol Biotechnol 22(3):267–275CrossRef Pant D, Reddy UG, Adholeya A (2006) Cultivation of oyster mushrooms on wheat straw and bagasse substrate amended with distillery effluent. World J Microbiol Biotechnol 22(3):267–275CrossRef
37.
Zurück zum Zitat Ahlawat OP, Gupta P, Kumar S, Sharma DK, Ahlawat K (2010) Bioremediation of fungicides by spent mushroom substrate and its associated microflora. Indian J Microb 50(4):390–395CrossRef Ahlawat OP, Gupta P, Kumar S, Sharma DK, Ahlawat K (2010) Bioremediation of fungicides by spent mushroom substrate and its associated microflora. Indian J Microb 50(4):390–395CrossRef
38.
Zurück zum Zitat Das N, Mukherjee M (2007) Cultivation of Pleurotus ostreatus on weed plants. Bioresour Technol 98(14):2723–2726CrossRef Das N, Mukherjee M (2007) Cultivation of Pleurotus ostreatus on weed plants. Bioresour Technol 98(14):2723–2726CrossRef
39.
Zurück zum Zitat Liang ZC, Wu CY, Shieh ZL, Cheng SL (2009) Utilization of grass plants for cultivation of Pleurotus citrinopileatus. Int Biodeterior Biodegrad 63(4):509–514CrossRef Liang ZC, Wu CY, Shieh ZL, Cheng SL (2009) Utilization of grass plants for cultivation of Pleurotus citrinopileatus. Int Biodeterior Biodegrad 63(4):509–514CrossRef
40.
Zurück zum Zitat Singh MP, Kumar V (2012) Biodegradation of vegetable and agrowastes by Pleurotus sapidus: a noble strategy to produce mushroom with enhanced yield and nutrition. Cell Mol Biol 58(1):1–7 Singh MP, Kumar V (2012) Biodegradation of vegetable and agrowastes by Pleurotus sapidus: a noble strategy to produce mushroom with enhanced yield and nutrition. Cell Mol Biol 58(1):1–7
41.
Zurück zum Zitat Banik S, Nandi R (2004) Effect of supplementation of rice straw with biogas residual slurry manure on the yield, protein and mineral contents of oyster mushroom. Ind Crops Prod 20(3):311–319CrossRef Banik S, Nandi R (2004) Effect of supplementation of rice straw with biogas residual slurry manure on the yield, protein and mineral contents of oyster mushroom. Ind Crops Prod 20(3):311–319CrossRef
42.
Zurück zum Zitat Pereira GS, Cipriani M, Wisbeck E, Souza O, Strapazzon JO, Gern RM (2017) Onion juice waste for production of Pleurotus sajor-caju. and pectinases. Food Bioprod Process 106:11–18CrossRef Pereira GS, Cipriani M, Wisbeck E, Souza O, Strapazzon JO, Gern RM (2017) Onion juice waste for production of Pleurotus sajor-caju. and pectinases. Food Bioprod Process 106:11–18CrossRef
43.
Zurück zum Zitat Lee CY, Park JE, Kim BB, Kim SM, Ro HS (2009) Determination of mineral components in the cultivation substrates of edible mushrooms and their uptake into fruiting bodies. Mycobiology 37(2):109–113CrossRef Lee CY, Park JE, Kim BB, Kim SM, Ro HS (2009) Determination of mineral components in the cultivation substrates of edible mushrooms and their uptake into fruiting bodies. Mycobiology 37(2):109–113CrossRef
44.
Zurück zum Zitat Kwak WS, Jung SH, Kim YI (2008) Broiler litter supplementation improves storage and feed-nutritional value of sawdust-based spent mushroom substrate. Bioresour Technol 99(8):2947–2955CrossRef Kwak WS, Jung SH, Kim YI (2008) Broiler litter supplementation improves storage and feed-nutritional value of sawdust-based spent mushroom substrate. Bioresour Technol 99(8):2947–2955CrossRef
45.
Zurück zum Zitat Harith N, Abdullah N, Sabaratnam V (2014) Cultivation of Flammulina velutipesmushroom using various agro-residues as a fruiting substrate. Pesquisa Agropecuária Brasileira 49(3):181–188CrossRef Harith N, Abdullah N, Sabaratnam V (2014) Cultivation of Flammulina velutipesmushroom using various agro-residues as a fruiting substrate. Pesquisa Agropecuária Brasileira 49(3):181–188CrossRef
46.
Zurück zum Zitat Michael HW, Bultosa G, Pant LM (2011) Nutritional contents of three edible oyster mushrooms grown on two substrates at Haramaya, Ethiopia, and sensory properties of boiled mushroom and mushroom sauce. Int J Food Sci Technol 46(4):732–738CrossRef Michael HW, Bultosa G, Pant LM (2011) Nutritional contents of three edible oyster mushrooms grown on two substrates at Haramaya, Ethiopia, and sensory properties of boiled mushroom and mushroom sauce. Int J Food Sci Technol 46(4):732–738CrossRef
47.
Zurück zum Zitat Jonathan SG, Okon CB, Oyelakin AO, Oluranti OO (2012) Nutritional values of oyster mushroom (Pleurotus ostreatus)(Jacq. Fr.) Kumm. Cultivated on different agricultural wastes. Nat Sci 10(9):186–191 Jonathan SG, Okon CB, Oyelakin AO, Oluranti OO (2012) Nutritional values of oyster mushroom (Pleurotus ostreatus)(Jacq. Fr.) Kumm. Cultivated on different agricultural wastes. Nat Sci 10(9):186–191
48.
Zurück zum Zitat Alananbeh KM, Bouqellah NA, Al Kaff NS (2014) Cultivation of oyster mushroom Pleurotus ostreatus on date-palm leaves mixed with other agro-wastes in Saudi Arabia. Saudi J Biol Sci 21(6):616–625CrossRef Alananbeh KM, Bouqellah NA, Al Kaff NS (2014) Cultivation of oyster mushroom Pleurotus ostreatus on date-palm leaves mixed with other agro-wastes in Saudi Arabia. Saudi J Biol Sci 21(6):616–625CrossRef
49.
Zurück zum Zitat Omarini A, Henning C, Ringuelet J, Zygadlo JA, Albertó E (2010) Volatile composition and nutritional quality of the edible mushroom Polyporus tenuiculus grown on different agro-industrial waste. Int J Food Sci Technol 45(8):1603–1609CrossRef Omarini A, Henning C, Ringuelet J, Zygadlo JA, Albertó E (2010) Volatile composition and nutritional quality of the edible mushroom Polyporus tenuiculus grown on different agro-industrial waste. Int J Food Sci Technol 45(8):1603–1609CrossRef
50.
Zurück zum Zitat Carneiro AA, Ferreira IC, Dueñas M, Barros L, Da Silva R, Gomes E, Santos-Buelga C (2013) Chemical composition and antioxidant activity of dried powder formulations of Agaricus blazei and Lentinus edodes. Food Chem 138(4):2168–2173CrossRef Carneiro AA, Ferreira IC, Dueñas M, Barros L, Da Silva R, Gomes E, Santos-Buelga C (2013) Chemical composition and antioxidant activity of dried powder formulations of Agaricus blazei and Lentinus edodes. Food Chem 138(4):2168–2173CrossRef
51.
Zurück zum Zitat Nasiri F, Ghaissi TB, Bassiri AR, Hoseini SE, Aminafshar M (2013) Comparative study on the main chemical composition of button mushrooms (Agaricus bisporus) Cap and Stipe. J Food Biosci Technol 3:41–48 Nasiri F, Ghaissi TB, Bassiri AR, Hoseini SE, Aminafshar M (2013) Comparative study on the main chemical composition of button mushrooms (Agaricus bisporus) Cap and Stipe. J Food Biosci Technol 3:41–48
52.
Zurück zum Zitat Koutrotsios G, Mountzouris KC, Chatzipavlidis I, Zervakis GI (2014) Bioconversion of lignocellulosic residues by Agrocybe cylindracea and Pleurotus ostreatus mushroom fungi—assessment of their effect on the final product and spent substrate properties. Food Chem 161:127–135CrossRef Koutrotsios G, Mountzouris KC, Chatzipavlidis I, Zervakis GI (2014) Bioconversion of lignocellulosic residues by Agrocybe cylindracea and Pleurotus ostreatus mushroom fungi—assessment of their effect on the final product and spent substrate properties. Food Chem 161:127–135CrossRef
53.
Zurück zum Zitat Kadnikova IA, Costa R, Kalenik TK, Guruleva ON, Yanguo S (2015) Chemical composition and nutritional value of the mushroom Auricularia auricula-judae. J Food Nutr Res 3(8):478–482 Kadnikova IA, Costa R, Kalenik TK, Guruleva ON, Yanguo S (2015) Chemical composition and nutritional value of the mushroom Auricularia auricula-judae. J Food Nutr Res 3(8):478–482
54.
Zurück zum Zitat Ahlawat OP, Manikandan K, Singh M (2016) Proximate composition of different mushroom varieties and effect of UV light exposure on vitamin D content in Agaricus bisporus and Volvariella volvacea. Mushroom Res 25(1):1–8 Ahlawat OP, Manikandan K, Singh M (2016) Proximate composition of different mushroom varieties and effect of UV light exposure on vitamin D content in Agaricus bisporus and Volvariella volvacea. Mushroom Res 25(1):1–8
55.
Zurück zum Zitat Rezaei J, Rouzbehan Y, Zahedifar M, Fazaeli H (2015) Effects of dietary substitution of maize silage by amaranth silage on feed intake, digestibility, microbial nitrogen, blood parameters, milk production and nitrogen retention in lactating Holstein cows. Anim Feed Sci Technol 202:32–41CrossRef Rezaei J, Rouzbehan Y, Zahedifar M, Fazaeli H (2015) Effects of dietary substitution of maize silage by amaranth silage on feed intake, digestibility, microbial nitrogen, blood parameters, milk production and nitrogen retention in lactating Holstein cows. Anim Feed Sci Technol 202:32–41CrossRef
56.
Zurück zum Zitat Amerah AM (2015) Interactions between wheat characteristics and feed enzyme supplementation in broiler diets. Anim Feed Sci Technol 199:1–9CrossRef Amerah AM (2015) Interactions between wheat characteristics and feed enzyme supplementation in broiler diets. Anim Feed Sci Technol 199:1–9CrossRef
57.
Zurück zum Zitat Jami E, Mizrahi I (2012) Composition and similarity of bovine rumen microbiota across individual animals. PloS One 7(3):e33306CrossRef Jami E, Mizrahi I (2012) Composition and similarity of bovine rumen microbiota across individual animals. PloS One 7(3):e33306CrossRef
58.
Zurück zum Zitat Drake D, Nader G, Forero L (2002) Feeding rice straw to cattle. UCANR Publications, University of California Drake D, Nader G, Forero L (2002) Feeding rice straw to cattle. UCANR Publications, University of California
59.
Zurück zum Zitat Sarnklong C, Cone JW, Pellikaan W, Hendriks WH (2010) Utilization of rice straw and different treatments to improve its feed value for ruminants: a review. Asian Australas J Anim Sci 23(5):680–692CrossRef Sarnklong C, Cone JW, Pellikaan W, Hendriks WH (2010) Utilization of rice straw and different treatments to improve its feed value for ruminants: a review. Asian Australas J Anim Sci 23(5):680–692CrossRef
60.
Zurück zum Zitat Van Kuijk SJ, Sonnenberg AS, Baars JJ, Hendriks WH, Cone JW (2015) Fungal treated lignocellulosic biomass as ruminant feed ingredient: a review. Biotechnol Adv 33(1):191–202CrossRef Van Kuijk SJ, Sonnenberg AS, Baars JJ, Hendriks WH, Cone JW (2015) Fungal treated lignocellulosic biomass as ruminant feed ingredient: a review. Biotechnol Adv 33(1):191–202CrossRef
61.
Zurück zum Zitat Furlani RP, Godoy HT (2008) Vitamins B1 and B2 contents in cultivated mushrooms. Food Chem 106(2):816–819CrossRef Furlani RP, Godoy HT (2008) Vitamins B1 and B2 contents in cultivated mushrooms. Food Chem 106(2):816–819CrossRef
62.
Zurück zum Zitat Stamets P (2011) Growing gourmet and medicinal mushrooms. Ten Speed Press, Berkeley Stamets P (2011) Growing gourmet and medicinal mushrooms. Ten Speed Press, Berkeley
63.
Zurück zum Zitat Van Wyngaard JD, Meeske R, Erasmus LJ (2015) Effect of palm kernel expeller as supplementation on production performance of Jersey cows grazing kikuyu-ryegrass pasture. Anim Feed Sci Technol 199:29–40CrossRef Van Wyngaard JD, Meeske R, Erasmus LJ (2015) Effect of palm kernel expeller as supplementation on production performance of Jersey cows grazing kikuyu-ryegrass pasture. Anim Feed Sci Technol 199:29–40CrossRef
65.
Zurück zum Zitat Gimeno A, Al Alami A, Toral PG, Frutos P, Abecia L, Fondevila M, Castrillo C (2015) Effect of grinding or pelleting high grain maize-or barley-based concentrates on rumen environment and microbiota of beef cattle. Anim Feed Sci Technol 203:67–78CrossRef Gimeno A, Al Alami A, Toral PG, Frutos P, Abecia L, Fondevila M, Castrillo C (2015) Effect of grinding or pelleting high grain maize-or barley-based concentrates on rumen environment and microbiota of beef cattle. Anim Feed Sci Technol 203:67–78CrossRef
66.
Zurück zum Zitat Zhang CK, Gong F, Li DS (1995) A note on the utilisation of spent mushroom composts in animal feeds. Bioresour Technol 52(1):89–91CrossRef Zhang CK, Gong F, Li DS (1995) A note on the utilisation of spent mushroom composts in animal feeds. Bioresour Technol 52(1):89–91CrossRef
67.
Zurück zum Zitat Aldoori ZT, Al-Obaidi AS, Abdulkareem AH, Abdullah MK (2015) Effect of dietary replacement of barley with mushroom cultivation on carcass characteristics of Awassi lambs. J Anim Health Prod 3(4):94–98CrossRef Aldoori ZT, Al-Obaidi AS, Abdulkareem AH, Abdullah MK (2015) Effect of dietary replacement of barley with mushroom cultivation on carcass characteristics of Awassi lambs. J Anim Health Prod 3(4):94–98CrossRef
68.
Zurück zum Zitat Medina E, Paredes C, Pérez-Murcia MD, Bustamante MA, Moral R (2009) Spent mushroom substrates as component of growing media for germination and growth of horticultural plants. Bioresour Technol 100(18):4227–4232CrossRef Medina E, Paredes C, Pérez-Murcia MD, Bustamante MA, Moral R (2009) Spent mushroom substrates as component of growing media for germination and growth of horticultural plants. Bioresour Technol 100(18):4227–4232CrossRef
69.
Zurück zum Zitat Zhu H, Sheng K, Yan E, Qiao J, Lv F (2012) Extraction, purification and antibacterial activities of a polysaccharide from spent mushroom substrate. Int J Biol Macromol 50(3):840–843CrossRef Zhu H, Sheng K, Yan E, Qiao J, Lv F (2012) Extraction, purification and antibacterial activities of a polysaccharide from spent mushroom substrate. Int J Biol Macromol 50(3):840–843CrossRef
70.
Zurück zum Zitat Park JH, Kim SW, Do YJ, Kim H, Ko YG, Yang BS, Shin D, Cho YM (2012) Spent mushroom substrate influences elk (Cervus elaphus canadensis) hematological and serum biochemical parameters. Asian Australas J Anim Sci 25(3):320–324CrossRef Park JH, Kim SW, Do YJ, Kim H, Ko YG, Yang BS, Shin D, Cho YM (2012) Spent mushroom substrate influences elk (Cervus elaphus canadensis) hematological and serum biochemical parameters. Asian Australas J Anim Sci 25(3):320–324CrossRef
71.
Zurück zum Zitat Galaviz-Rodriguez JR, Cruz-Monterrosa RG, Vargas-López S (2010) Influence of Pleurotus ostreatus spent corn straw on performance and carcass characteristics of feedlot Pelibuey lambs. Indian J Anim Sci 80(8):754–757 Galaviz-Rodriguez JR, Cruz-Monterrosa RG, Vargas-López S (2010) Influence of Pleurotus ostreatus spent corn straw on performance and carcass characteristics of feedlot Pelibuey lambs. Indian J Anim Sci 80(8):754–757
72.
Zurück zum Zitat Foluke A, Olutayo A, Olufemi A (2014) Assessing spent mushroom substrate as a replacement to wheat bran in the diet of broilers. Am Int J Contemp Res 4:178–183 Foluke A, Olutayo A, Olufemi A (2014) Assessing spent mushroom substrate as a replacement to wheat bran in the diet of broilers. Am Int J Contemp Res 4:178–183
73.
Zurück zum Zitat Kim JS, Lee YH, Kim YI, Ahmadi F, Oh YK, Park JM, Kwak WS (2016) Effect of microbial inoculant or molasses on fermentative quality and aerobic stability of sawdust-based spent mushroom substrate. Bioresour Technol 216:188–195CrossRef Kim JS, Lee YH, Kim YI, Ahmadi F, Oh YK, Park JM, Kwak WS (2016) Effect of microbial inoculant or molasses on fermentative quality and aerobic stability of sawdust-based spent mushroom substrate. Bioresour Technol 216:188–195CrossRef
74.
Zurück zum Zitat Rangubhet KT, Mangwe MC, Mlambo V, Fan YK, Chiang HI (2017) Enteric methane emissions and protozoa populations in Holstein steers fed spent mushroom (Flammulina velutipes) substrate silage-based diets. Anim Feed Sci Technol 234:78–87CrossRef Rangubhet KT, Mangwe MC, Mlambo V, Fan YK, Chiang HI (2017) Enteric methane emissions and protozoa populations in Holstein steers fed spent mushroom (Flammulina velutipes) substrate silage-based diets. Anim Feed Sci Technol 234:78–87CrossRef
75.
Zurück zum Zitat Baek YC, Kim MS, Reddy KE, Oh YK, Jung YH, Yeo JM, Choi H (2017) Rumen fermentation and digestibility of spent mushroom (Pleurotus ostreatus) substrate inoculated with Lactobacillus brevis for Hanwoo steers. Revista Colombiana de Ciencias Pecuarias 30(4):267–277CrossRef Baek YC, Kim MS, Reddy KE, Oh YK, Jung YH, Yeo JM, Choi H (2017) Rumen fermentation and digestibility of spent mushroom (Pleurotus ostreatus) substrate inoculated with Lactobacillus brevis for Hanwoo steers. Revista Colombiana de Ciencias Pecuarias 30(4):267–277CrossRef
76.
Zurück zum Zitat Mahesh MS, Mohini M (2013) Biological treatment of crop residues for ruminant feeding: a review. Afr J Biotechnol 12(27):4221–4231CrossRef Mahesh MS, Mohini M (2013) Biological treatment of crop residues for ruminant feeding: a review. Afr J Biotechnol 12(27):4221–4231CrossRef
77.
Zurück zum Zitat Abdel-Aziz NA, Salem AZ, El-Adawy MM, Camacho LM, Kholif AE, Elghandour MM, Borhami BE (2015) Biological treatments as a mean to improve feed utilization in agriculture animals—an overview. J Integr Agric 14(3):534–543CrossRef Abdel-Aziz NA, Salem AZ, El-Adawy MM, Camacho LM, Kholif AE, Elghandour MM, Borhami BE (2015) Biological treatments as a mean to improve feed utilization in agriculture animals—an overview. J Integr Agric 14(3):534–543CrossRef
78.
Zurück zum Zitat Kwak WS, Kim YI, Seok JS, Oh YK, Lee SM (2009) Molasses and microbial inoculants improve fermentability and silage quality of cotton waste-based spent mushroom substrate. Bioresour Technol 100(3):1471–1473CrossRef Kwak WS, Kim YI, Seok JS, Oh YK, Lee SM (2009) Molasses and microbial inoculants improve fermentability and silage quality of cotton waste-based spent mushroom substrate. Bioresour Technol 100(3):1471–1473CrossRef
79.
Zurück zum Zitat Ayala M, Gonzalez-Muntilde SS, Vázquez C, Meneses M, Loera O, Mendoza GD (2011) Fibrolytic potential of spent compost of the mushroom Agaricus bisporus to degrade forages for ruminants. Afr J Microbiol Res 5(3):241–249 Ayala M, Gonzalez-Muntilde SS, Vázquez C, Meneses M, Loera O, Mendoza GD (2011) Fibrolytic potential of spent compost of the mushroom Agaricus bisporus to degrade forages for ruminants. Afr J Microbiol Res 5(3):241–249
80.
Zurück zum Zitat Liu Y, Zhao C, Lin D, Lin H, Lin Z (2015) Effect of water extract from spent mushroom substrate after Ganoderma balabacense cultivation by using JUNCAO technique on production performance and hematology parameters of dairy cows. Anim Sci J 86(9):855–862 Liu Y, Zhao C, Lin D, Lin H, Lin Z (2015) Effect of water extract from spent mushroom substrate after Ganoderma balabacense cultivation by using JUNCAO technique on production performance and hematology parameters of dairy cows. Anim Sci J 86(9):855–862
81.
Zurück zum Zitat Kim YI, Park JM, Lee YH, Lee M, Choi DY, Kwak WS (2015) Effect of by-product feed-based silage feeding on the performance, blood metabolites, and carcass characteristics of Hanwoo steers (a field study). Asian Australas J Anim Sci 28(2):180–187CrossRef Kim YI, Park JM, Lee YH, Lee M, Choi DY, Kwak WS (2015) Effect of by-product feed-based silage feeding on the performance, blood metabolites, and carcass characteristics of Hanwoo steers (a field study). Asian Australas J Anim Sci 28(2):180–187CrossRef
83.
Zurück zum Zitat Lou Z, Sun Y, Zhou X, Baig SA, Hu B, Xu X (2017) Composition variability of spent mushroom substrates during continuous cultivation, composting process and their effects on mineral nitrogen transformation in soil. Geoderma 307:30–37CrossRef Lou Z, Sun Y, Zhou X, Baig SA, Hu B, Xu X (2017) Composition variability of spent mushroom substrates during continuous cultivation, composting process and their effects on mineral nitrogen transformation in soil. Geoderma 307:30–37CrossRef
84.
Zurück zum Zitat Owaid MN, Abed IA, Al-Saeedi SS (2017) Applicable properties of the bio-fertilizer spent mushroom substrate in organic systems as a byproduct from the cultivation of Pleurotus spp. Inf Process Agric 4(1):78–82 Owaid MN, Abed IA, Al-Saeedi SS (2017) Applicable properties of the bio-fertilizer spent mushroom substrate in organic systems as a byproduct from the cultivation of Pleurotus spp. Inf Process Agric 4(1):78–82
85.
Zurück zum Zitat Nakatsuka H, Oda M, Hayashi Y, Tamura K (2016) Effects of fresh spent mushroom substrate of Pleurotus ostreatus on soil micromorphology in Brazil. Geoderma 269:54–60CrossRef Nakatsuka H, Oda M, Hayashi Y, Tamura K (2016) Effects of fresh spent mushroom substrate of Pleurotus ostreatus on soil micromorphology in Brazil. Geoderma 269:54–60CrossRef
86.
Zurück zum Zitat Lou Z, Sun Y, Bian S, Baig SA, Hu B, Xu X (2017) Nutrient conservation during spent mushroom compost application using spent mushroom substrate derived biochar. Chemosphere 169:23–31CrossRef Lou Z, Sun Y, Bian S, Baig SA, Hu B, Xu X (2017) Nutrient conservation during spent mushroom compost application using spent mushroom substrate derived biochar. Chemosphere 169:23–31CrossRef
87.
Zurück zum Zitat Álvarez-Martín A, Sánchez-Martín MJ, Pose-Juan E, Rodríguez-Cruz MS (2016) Effect of different rates of spent mushroom substrate on the dissipation and bioavailability of cymoxanil and tebuconazole in an agricultural soil. Sci Total Environ 550:495–503CrossRef Álvarez-Martín A, Sánchez-Martín MJ, Pose-Juan E, Rodríguez-Cruz MS (2016) Effect of different rates of spent mushroom substrate on the dissipation and bioavailability of cymoxanil and tebuconazole in an agricultural soil. Sci Total Environ 550:495–503CrossRef
88.
Zurück zum Zitat Gao W, Liang J, Pizzul L, Feng XM, Zhang K, del Pilar Castillo M (2015) Evaluation of spent mushroom substrate as substitute of peat in Chinese biobeds. Int Biodeterior Biodegrad 98:107–112CrossRef Gao W, Liang J, Pizzul L, Feng XM, Zhang K, del Pilar Castillo M (2015) Evaluation of spent mushroom substrate as substitute of peat in Chinese biobeds. Int Biodeterior Biodegrad 98:107–112CrossRef
89.
Zurück zum Zitat Zhu HJ, Sun LF, Zhang YF, Zhang XL, Qiao JJ (2012) Conversion of spent mushroom substrate to biofertilizer using a stress-tolerant phosphate-solubilizing Pichia farinose FL7. Bioresour Technol 111:410–416CrossRef Zhu HJ, Sun LF, Zhang YF, Zhang XL, Qiao JJ (2012) Conversion of spent mushroom substrate to biofertilizer using a stress-tolerant phosphate-solubilizing Pichia farinose FL7. Bioresour Technol 111:410–416CrossRef
90.
Zurück zum Zitat Lou Z, Zhu J, Wang Z, Baig SA, Fang L, Hu B, Xu X (2015) Release characteristics and control of nitrogen, phosphate, organic matter from spent mushroom compost amended soil in a column experiment. Process Saf Environ Prot 98:417–423CrossRef Lou Z, Zhu J, Wang Z, Baig SA, Fang L, Hu B, Xu X (2015) Release characteristics and control of nitrogen, phosphate, organic matter from spent mushroom compost amended soil in a column experiment. Process Saf Environ Prot 98:417–423CrossRef
91.
Zurück zum Zitat Adedokun OM, Orluchukwu JA (2013) Pineapple: organic production on soil amended with spent mushroom substrate. Agric Biol J Am 4:590–593 Adedokun OM, Orluchukwu JA (2013) Pineapple: organic production on soil amended with spent mushroom substrate. Agric Biol J Am 4:590–593
92.
Zurück zum Zitat Lopes RX, Zied DC, Martos ET, de Souza RJ, Da Silva R, Dias ES (2015) Application of spent Agaricus subrufescens compost in integrated production of seedlings and plants of tomato. Int J Recycl Org Waste Agric 4(3):211–218CrossRef Lopes RX, Zied DC, Martos ET, de Souza RJ, Da Silva R, Dias ES (2015) Application of spent Agaricus subrufescens compost in integrated production of seedlings and plants of tomato. Int J Recycl Org Waste Agric 4(3):211–218CrossRef
93.
Zurück zum Zitat Paredes C, Medina E, Bustamante MA, Moral R (2016) Effects of spent mushroom substrates and inorganic fertilizer on the characteristics of a calcareous clayey-loam soil and lettuce production. Soil Use Manag 32(4):487–494CrossRef Paredes C, Medina E, Bustamante MA, Moral R (2016) Effects of spent mushroom substrates and inorganic fertilizer on the characteristics of a calcareous clayey-loam soil and lettuce production. Soil Use Manag 32(4):487–494CrossRef
94.
Zurück zum Zitat Meng X, Liu B, Xi C, Luo X, Yuan X, Wang X, Zhu W, Wang H, Cui Z (2018) Effect of pig manure on the chemical composition and microbial diversity during co-composting with spent mushroom substrate and rice husks. Bioresour Technol 251:22–30CrossRef Meng X, Liu B, Xi C, Luo X, Yuan X, Wang X, Zhu W, Wang H, Cui Z (2018) Effect of pig manure on the chemical composition and microbial diversity during co-composting with spent mushroom substrate and rice husks. Bioresour Technol 251:22–30CrossRef
95.
Zurück zum Zitat Zhu HJ, Liu JH, Sun LF, Hu ZF, Qiao JJ (2013) Combined alkali and acid pretreatment of spent mushroom substrate for reducing sugar and biofertilizer production. Bioresour Technol 136:257–266CrossRef Zhu HJ, Liu JH, Sun LF, Hu ZF, Qiao JJ (2013) Combined alkali and acid pretreatment of spent mushroom substrate for reducing sugar and biofertilizer production. Bioresour Technol 136:257–266CrossRef
96.
Zurück zum Zitat Zhang RH, Zeng-Qiang DU, Zhi-Guo LI (2012) Use of spent mushroom substrate as growing media for tomato and cucumber seedlings. Pedosphere 22(3):333–42CrossRef Zhang RH, Zeng-Qiang DU, Zhi-Guo LI (2012) Use of spent mushroom substrate as growing media for tomato and cucumber seedlings. Pedosphere 22(3):333–42CrossRef
97.
Zurück zum Zitat Tuhy Ł, Samoraj M, Witkowska Z, Wilk R, Chojnacka K (2015) Using spent mushroom substrate as the base for organic-mineral micronutrient fertilizer–field tests on maize. BioResources 10(3):5709–5719CrossRef Tuhy Ł, Samoraj M, Witkowska Z, Wilk R, Chojnacka K (2015) Using spent mushroom substrate as the base for organic-mineral micronutrient fertilizer–field tests on maize. BioResources 10(3):5709–5719CrossRef
98.
Zurück zum Zitat Wang S, Xu F, Li Z, Zhao S, Song S, Rong C, Geng X, Liu Y (2015) The spent mushroom substrates of Hypsizigus marmoreus can be an effective component for growing the oyster mushroom Pleurotus ostreatus. Sci Hortic 186:217–222CrossRef Wang S, Xu F, Li Z, Zhao S, Song S, Rong C, Geng X, Liu Y (2015) The spent mushroom substrates of Hypsizigus marmoreus can be an effective component for growing the oyster mushroom Pleurotus ostreatus. Sci Hortic 186:217–222CrossRef
99.
Zurück zum Zitat Tuhy Ł, Samoraj M, Witkowska Z, Rusek P, Chojnacka K (2015) Conversion of spent mushroom substrate into micronutrient fertilizer via biosorption in a pilot plant. Ecol Eng 84:370–374CrossRef Tuhy Ł, Samoraj M, Witkowska Z, Rusek P, Chojnacka K (2015) Conversion of spent mushroom substrate into micronutrient fertilizer via biosorption in a pilot plant. Ecol Eng 84:370–374CrossRef
100.
Zurück zum Zitat Orluchukwu JA, Mac-Aboh AR, Omovbude S (2016) Effect of different rates of spent mushroom substrate on the growth and yield of fluted pumpkin (Telfaira occidentalis HOOK. F) in South-South, Nigeria. Nat Sci 14:40–44 Orluchukwu JA, Mac-Aboh AR, Omovbude S (2016) Effect of different rates of spent mushroom substrate on the growth and yield of fluted pumpkin (Telfaira occidentalis HOOK. F) in South-South, Nigeria. Nat Sci 14:40–44
101.
Zurück zum Zitat Rezania S, Din MF, Taib SM, Sohaili J, Chelliapan S, Kamyab H, Saha BB (2017) Review on fermentative biohydrogen production from water hyacinth, wheat straw and rice straw with focus on recent perspectives. Int J Hydrog Energy 42(33):20955–20969CrossRef Rezania S, Din MF, Taib SM, Sohaili J, Chelliapan S, Kamyab H, Saha BB (2017) Review on fermentative biohydrogen production from water hyacinth, wheat straw and rice straw with focus on recent perspectives. Int J Hydrog Energy 42(33):20955–20969CrossRef
102.
Zurück zum Zitat Finney KN, Ryu C, Sharifi VN, Swithenbank J (2009) The reuse of spent mushroom compost and coal tailings for energy recovery: comparison of thermal treatment technologies. Bioresour Technol 100(1):310–315CrossRef Finney KN, Ryu C, Sharifi VN, Swithenbank J (2009) The reuse of spent mushroom compost and coal tailings for energy recovery: comparison of thermal treatment technologies. Bioresour Technol 100(1):310–315CrossRef
103.
Zurück zum Zitat Kapu NU, Manning M, Hurley TB, Voigt J, Cosgrove DJ, Romaine CP (2012) Surfactant-assisted pretreatment and enzymatic hydrolysis of spent mushroom compost for the production of sugars. Bioresour Technol 114:399–405CrossRef Kapu NU, Manning M, Hurley TB, Voigt J, Cosgrove DJ, Romaine CP (2012) Surfactant-assisted pretreatment and enzymatic hydrolysis of spent mushroom compost for the production of sugars. Bioresour Technol 114:399–405CrossRef
105.
Zurück zum Zitat Lin HN, Hu BB, Zhu MJ (2016) Enhanced hydrogen production and sugar accumulation from spent mushroom compost by Clostridium thermocellum supplemented with PEG8000 and JFC-E. Int J Hydrog Energy 41(4):2383–2390CrossRef Lin HN, Hu BB, Zhu MJ (2016) Enhanced hydrogen production and sugar accumulation from spent mushroom compost by Clostridium thermocellum supplemented with PEG8000 and JFC-E. Int J Hydrog Energy 41(4):2383–2390CrossRef
106.
Zurück zum Zitat Wu S, Lan Y, Wu Z, Peng Y, Chen S, Huang Z, Xu L, Gelbič I, Guan X, Zhang L, Zou S (2013) Pretreatment of spent mushroom substrate for enhancing the conversion of fermentable sugar. Bioresour Technol 148:596–600CrossRef Wu S, Lan Y, Wu Z, Peng Y, Chen S, Huang Z, Xu L, Gelbič I, Guan X, Zhang L, Zou S (2013) Pretreatment of spent mushroom substrate for enhancing the conversion of fermentable sugar. Bioresour Technol 148:596–600CrossRef
107.
Zurück zum Zitat Asada C, Asakawa A, Sasaki C, Nakamura Y (2011) Characterization of the steam-exploded spent Shiitake mushroom medium and its efficient conversion to ethanol. Bioresour Technol 102(21):10052–10056CrossRef Asada C, Asakawa A, Sasaki C, Nakamura Y (2011) Characterization of the steam-exploded spent Shiitake mushroom medium and its efficient conversion to ethanol. Bioresour Technol 102(21):10052–10056CrossRef
108.
Zurück zum Zitat Sewu DD, Boakye P, Jung H, Woo SH (2017) Synergistic dye adsorption by biochar from co-pyrolysis of spent mushroom substrate and Saccharina japonica. Bioresour Technol 244:1142–1149CrossRef Sewu DD, Boakye P, Jung H, Woo SH (2017) Synergistic dye adsorption by biochar from co-pyrolysis of spent mushroom substrate and Saccharina japonica. Bioresour Technol 244:1142–1149CrossRef
109.
Zurück zum Zitat Chang KL, Chen XM, Sun J, Liu JY, Sun SY, Yang ZY, Wang Y (2017) Spent mushroom substrate biochar as a potential amendment in pig manure and rice straw composting processes. Environ Technol 38(13–14):1765–1769CrossRef Chang KL, Chen XM, Sun J, Liu JY, Sun SY, Yang ZY, Wang Y (2017) Spent mushroom substrate biochar as a potential amendment in pig manure and rice straw composting processes. Environ Technol 38(13–14):1765–1769CrossRef
110.
Zurück zum Zitat Jiang H, Zhang M, Chen J, Li S, Shao Y, Yang J, Li J (2017) Characteristics of bio-oil produced by the pyrolysis of mixed oil shale semi-coke and spent mushroom substrate. Fuel 200:218–224CrossRef Jiang H, Zhang M, Chen J, Li S, Shao Y, Yang J, Li J (2017) Characteristics of bio-oil produced by the pyrolysis of mixed oil shale semi-coke and spent mushroom substrate. Fuel 200:218–224CrossRef
111.
Zurück zum Zitat Zhang B, Tan G, Zhong Z, Ruan R (2017) Microwave-assisted catalytic fast pyrolysis of spent edible mushroom substrate for bio-oil production using surface modified zeolite catalyst. J Anal Appl Pyrolysis 123:92–98CrossRef Zhang B, Tan G, Zhong Z, Ruan R (2017) Microwave-assisted catalytic fast pyrolysis of spent edible mushroom substrate for bio-oil production using surface modified zeolite catalyst. J Anal Appl Pyrolysis 123:92–98CrossRef
112.
Zurück zum Zitat Jasiūnas L, Pedersen TH, Toor SS, Rosendahl LA (2017) Biocrude production via supercritical hydrothermal co-liquefaction of spent mushroom compost and aspen wood sawdust. Renew Energy 111:392–398CrossRef Jasiūnas L, Pedersen TH, Toor SS, Rosendahl LA (2017) Biocrude production via supercritical hydrothermal co-liquefaction of spent mushroom compost and aspen wood sawdust. Renew Energy 111:392–398CrossRef
113.
Zurück zum Zitat Hu BB, Zhu MJ (2017) Enhanced hydrogen production and biological saccharification from spent mushroom compost by Clostridium thermocellum 27405 supplemented with recombinant β-glucosidases. Int J Hydrog Energy 42(12):7866–7874CrossRef Hu BB, Zhu MJ (2017) Enhanced hydrogen production and biological saccharification from spent mushroom compost by Clostridium thermocellum 27405 supplemented with recombinant β-glucosidases. Int J Hydrog Energy 42(12):7866–7874CrossRef
114.
Zurück zum Zitat Zhu Y, Chang Y, Guan J, Shanguan G, Xin F (2016) Butanol production from organosolv treated spent mushroom substrate integrated with in situ biodiesel extraction. Renew Energy 96:656–61CrossRef Zhu Y, Chang Y, Guan J, Shanguan G, Xin F (2016) Butanol production from organosolv treated spent mushroom substrate integrated with in situ biodiesel extraction. Renew Energy 96:656–61CrossRef
115.
Zurück zum Zitat Luo X, Yuan X, Wang S, Sun F, Hou Z, Hu Q, Zhai L, Cui Z, Zou Y (2018) Methane production and characteristics of the microbial community in the co-digestion of spent mushroom substrate with dairy manure. Bioresour Technol 250:611–620CrossRef Luo X, Yuan X, Wang S, Sun F, Hou Z, Hu Q, Zhai L, Cui Z, Zou Y (2018) Methane production and characteristics of the microbial community in the co-digestion of spent mushroom substrate with dairy manure. Bioresour Technol 250:611–620CrossRef
116.
Zurück zum Zitat Najafi B, Ardabili SF (2018) Application of ANFIS, ANN, and logistic methods in estimating biogas production from spent mushroom compost (SMC). Resour Conserv Recyl 133:169–178CrossRef Najafi B, Ardabili SF (2018) Application of ANFIS, ANN, and logistic methods in estimating biogas production from spent mushroom compost (SMC). Resour Conserv Recyl 133:169–178CrossRef
117.
Zurück zum Zitat Xu P, Zeng GM, Huang DL, Feng CL, Hu S, Zhao MH, Lai C, Wei Z, Huang C, Xie GX, Liu ZF (2012) Use of iron oxide nanomaterials in wastewater treatment: a review. Sci Total Environ 424:1–10CrossRef Xu P, Zeng GM, Huang DL, Feng CL, Hu S, Zhao MH, Lai C, Wei Z, Huang C, Xie GX, Liu ZF (2012) Use of iron oxide nanomaterials in wastewater treatment: a review. Sci Total Environ 424:1–10CrossRef
118.
Zurück zum Zitat Song X, Liu M, Wu D, Qi L, Ye C, Jiao J, Hu F (2014) Heavy metal and nutrient changes during vermicomposting anim manure spiked with mushroom residues. Waste Manag 34(11):1977–1983CrossRef Song X, Liu M, Wu D, Qi L, Ye C, Jiao J, Hu F (2014) Heavy metal and nutrient changes during vermicomposting anim manure spiked with mushroom residues. Waste Manag 34(11):1977–1983CrossRef
119.
Zurück zum Zitat García-Delgado C, Alonso-Izquierdo M, González-Izquierdo M, Yunta F, Eymar E (2017) Purification of polluted water with spent mushroom (Agaricus bisporus) substrate: from agricultural waste to biosorbent of phenanthrene, Cd and Pb. Environ Technol 38(13–14):1792–1799CrossRef García-Delgado C, Alonso-Izquierdo M, González-Izquierdo M, Yunta F, Eymar E (2017) Purification of polluted water with spent mushroom (Agaricus bisporus) substrate: from agricultural waste to biosorbent of phenanthrene, Cd and Pb. Environ Technol 38(13–14):1792–1799CrossRef
120.
Zurück zum Zitat Yang Y, Tao X, Lin E, Hu K (2017) Enhanced nitrogen removal with spent mushroom compost in a sequencing batch reactor. Bioresour Technol 244:897–904CrossRef Yang Y, Tao X, Lin E, Hu K (2017) Enhanced nitrogen removal with spent mushroom compost in a sequencing batch reactor. Bioresour Technol 244:897–904CrossRef
121.
Zurück zum Zitat Karas PA, Makri S, Papadopoulou ES, Ehaliotis C, Menkissoglu-Spiroudi U, Karpouzas DG (2016) The potential of organic substrates based on mushroom substrate and straw to dissipate fungicides contained in effluents from the fruit-packaging industry—is there a role for Pleurotus ostreatus? Ecotoxicol Environ Saf 124:447–454CrossRef Karas PA, Makri S, Papadopoulou ES, Ehaliotis C, Menkissoglu-Spiroudi U, Karpouzas DG (2016) The potential of organic substrates based on mushroom substrate and straw to dissipate fungicides contained in effluents from the fruit-packaging industry—is there a role for Pleurotus ostreatus? Ecotoxicol Environ Saf 124:447–454CrossRef
122.
Zurück zum Zitat Jin Y, Teng C, Yu S, Song T, Dong L, Liang J, Bai X, Liu X, Hu X, Qu J (2018) Batch and fixed-bed biosorption of Cd (II) from aqueous solution using immobilized Pleurotus ostreatus spent substrate. Chemosphere 191:799–808CrossRef Jin Y, Teng C, Yu S, Song T, Dong L, Liang J, Bai X, Liu X, Hu X, Qu J (2018) Batch and fixed-bed biosorption of Cd (II) from aqueous solution using immobilized Pleurotus ostreatus spent substrate. Chemosphere 191:799–808CrossRef
123.
Zurück zum Zitat Zang T, Cheng Z, Lu L, Jin Y, Xu X, Ding W, Qu J (2017) Removal of Cr (VI) by modified and immobilized Auricularia auricula spent substrate in a fixed-bed column. Ecol Eng 99:358–365CrossRef Zang T, Cheng Z, Lu L, Jin Y, Xu X, Ding W, Qu J (2017) Removal of Cr (VI) by modified and immobilized Auricularia auricula spent substrate in a fixed-bed column. Ecol Eng 99:358–365CrossRef
124.
Zurück zum Zitat Toptas A, Demierege S, Mavioglu Ayan E, Yanik J (2014) Spent mushroom compost as biosorbent for dye biosorption. CLEAN Soil Air Water 42(12):1721–1728CrossRef Toptas A, Demierege S, Mavioglu Ayan E, Yanik J (2014) Spent mushroom compost as biosorbent for dye biosorption. CLEAN Soil Air Water 42(12):1721–1728CrossRef
125.
Zurück zum Zitat Yan T, Wang L (2013) Adsorptive removal of methylene blue from aqueous solution by spent mushroom substrate: equilibrium, kinetics, and thermodynamics. BioResources 8(3):4722–4734CrossRef Yan T, Wang L (2013) Adsorptive removal of methylene blue from aqueous solution by spent mushroom substrate: equilibrium, kinetics, and thermodynamics. BioResources 8(3):4722–4734CrossRef
126.
Zurück zum Zitat Zhou A, Du J, Varrone C, Wang Y, Wang A, Liu W (2014) VFAs bioproduction from waste activated sludge by coupling pretreatments with Agaricus bisporus substrates conditioning. Process Biochem 49(2):283–289CrossRef Zhou A, Du J, Varrone C, Wang Y, Wang A, Liu W (2014) VFAs bioproduction from waste activated sludge by coupling pretreatments with Agaricus bisporus substrates conditioning. Process Biochem 49(2):283–289CrossRef
127.
Zurück zum Zitat Asemoloye MD, Jonathan SG, Jayeola AA, Ahmad R (2017) Mediational influence of spent mushroom compost on phytoremediation of black-oil hydrocarbon polluted soil and response of Megathyrsus maximus Jacq. J Environ Manag 200:253–262CrossRef Asemoloye MD, Jonathan SG, Jayeola AA, Ahmad R (2017) Mediational influence of spent mushroom compost on phytoremediation of black-oil hydrocarbon polluted soil and response of Megathyrsus maximus Jacq. J Environ Manag 200:253–262CrossRef
128.
Zurück zum Zitat Nakajima VM, de Freitas Soares FE, de Queiroz JH (2018) Screening and decolorizing potential of enzymes from spent mushroom composts of six different mushrooms. Biocatal Agric Biotechnol 13:58–61 Nakajima VM, de Freitas Soares FE, de Queiroz JH (2018) Screening and decolorizing potential of enzymes from spent mushroom composts of six different mushrooms. Biocatal Agric Biotechnol 13:58–61
129.
Zurück zum Zitat Van Doan H, Hoseinifar SH, Dawood MA, Chitmanat C, Tayyamath K (2017) Effects of Cordyceps militaris spent mushroom substrate and Lactobacillus plantarum on mucosal, serum immunology and growth performance of Nile tilapia (Oreochromis niloticus). Fish Shellfish Immunol 70:87–94CrossRef Van Doan H, Hoseinifar SH, Dawood MA, Chitmanat C, Tayyamath K (2017) Effects of Cordyceps militaris spent mushroom substrate and Lactobacillus plantarum on mucosal, serum immunology and growth performance of Nile tilapia (Oreochromis niloticus). Fish Shellfish Immunol 70:87–94CrossRef
130.
Zurück zum Zitat Grujić M, Dojnov B, Potočnik I, Duduk B, Vujčić Z (2015) Spent mushroom compost as substrate for the production of industrially important hydrolytic enzymes by fungi Trichoderma spp. and Aspergillus niger in solid state fermentation. Int Biodeterior Biodegrad 104:290–298CrossRef Grujić M, Dojnov B, Potočnik I, Duduk B, Vujčić Z (2015) Spent mushroom compost as substrate for the production of industrially important hydrolytic enzymes by fungi Trichoderma spp. and Aspergillus niger in solid state fermentation. Int Biodeterior Biodegrad 104:290–298CrossRef
131.
Zurück zum Zitat Liu M, Song X, Zhang J, Zhang C, Gao Z, Li S, Jing H, Ren Z, Wang S, Jia L (2017) Protective effects on liver, kidney and pancreas of enzymatic-and acidic-hydrolysis of polysaccharides by spent mushroom compost (Hypsizigus marmoreus). Sci Rep 7:43212. https://doi.org/10.1038/srep43212 CrossRef Liu M, Song X, Zhang J, Zhang C, Gao Z, Li S, Jing H, Ren Z, Wang S, Jia L (2017) Protective effects on liver, kidney and pancreas of enzymatic-and acidic-hydrolysis of polysaccharides by spent mushroom compost (Hypsizigus marmoreus). Sci Rep 7:43212. https://​doi.​org/​10.​1038/​srep43212 CrossRef
132.
Zurück zum Zitat Purnomo AS, Mori T, Kamei I, Nishii T, Kondo R (2010) Application of mushroom waste medium from Pleurotus ostreatus for bioremediation of DDT-contaminated soil. Int Biodeterior Biodegrad 64(5):397–402CrossRef Purnomo AS, Mori T, Kamei I, Nishii T, Kondo R (2010) Application of mushroom waste medium from Pleurotus ostreatus for bioremediation of DDT-contaminated soil. Int Biodeterior Biodegrad 64(5):397–402CrossRef
133.
Zurück zum Zitat Herrero-Hernández E, Andrades MS, Rodríguez-Cruz MS, Sánchez-Martín MJ (2011) Effect of spent mushroom substrate applied to vineyard soil on the behaviour of copper-based fungicide residues. J Environ Manag 92(7):1849–1857CrossRef Herrero-Hernández E, Andrades MS, Rodríguez-Cruz MS, Sánchez-Martín MJ (2011) Effect of spent mushroom substrate applied to vineyard soil on the behaviour of copper-based fungicide residues. J Environ Manag 92(7):1849–1857CrossRef
134.
Zurück zum Zitat Qiao JJ, Zhang YF, Sun LF, Liu WW, Zhu HJ, Zhang Z (2011) Production of spent mushroom substrate hydrolysates useful for cultivation of Lactococcus lactis by dilute sulfuric acid, cellulase and xylanase treatment. Bioresour Technol 102(17):8046–8051CrossRef Qiao JJ, Zhang YF, Sun LF, Liu WW, Zhu HJ, Zhang Z (2011) Production of spent mushroom substrate hydrolysates useful for cultivation of Lactococcus lactis by dilute sulfuric acid, cellulase and xylanase treatment. Bioresour Technol 102(17):8046–8051CrossRef
135.
Zurück zum Zitat Lim SH, Lee YH, Kang HW (2013) Efficient recovery of lignocellulolytic enzymes of spent mushroom compost from Oyster mushrooms, Pleurotus spp., and potential use in dye decolorization. Mycobiology 41(4):214–220CrossRef Lim SH, Lee YH, Kang HW (2013) Efficient recovery of lignocellulolytic enzymes of spent mushroom compost from Oyster mushrooms, Pleurotus spp., and potential use in dye decolorization. Mycobiology 41(4):214–220CrossRef
136.
Zurück zum Zitat García-Delgado C, D’Annibale A, Pesciaroli L, Yunta F, Crognale S, Petruccioli M, Eymar E (2015) Implications of polluted soil biostimulation and bioaugmentation with spent mushroom substrate (Agaricus bisporus) on the microbial community and polycyclic aromatic hydrocarbons biodegradation. Sci Total Environ 508:20–28CrossRef García-Delgado C, D’Annibale A, Pesciaroli L, Yunta F, Crognale S, Petruccioli M, Eymar E (2015) Implications of polluted soil biostimulation and bioaugmentation with spent mushroom substrate (Agaricus bisporus) on the microbial community and polycyclic aromatic hydrocarbons biodegradation. Sci Total Environ 508:20–28CrossRef
137.
Zurück zum Zitat Álvarez-Martín A, Sánchez-Martín MJ, Ordax JM, Marín-Benito JM, Rodríguez-Cruz MS (2017) Leaching of two fungicides in spent mushroom substrate amended soil: Influence of amendment rate, fungicide ageing and flow condition. Sci Total Environ 584:828–837CrossRef Álvarez-Martín A, Sánchez-Martín MJ, Ordax JM, Marín-Benito JM, Rodríguez-Cruz MS (2017) Leaching of two fungicides in spent mushroom substrate amended soil: Influence of amendment rate, fungicide ageing and flow condition. Sci Total Environ 584:828–837CrossRef
138.
Zurück zum Zitat Fang W, Ye J, Zhang P, Zhu X, Zhou S (2017) Solid-state anaerobic fermentation of spent mushroom compost for volatile fatty acids production by pH regulation. Int J Hydrog Energy 42(29):18295–18300CrossRef Fang W, Ye J, Zhang P, Zhu X, Zhou S (2017) Solid-state anaerobic fermentation of spent mushroom compost for volatile fatty acids production by pH regulation. Int J Hydrog Energy 42(29):18295–18300CrossRef
139.
Zurück zum Zitat Meng L, Li W, Zhang S, Wu C, Lv L (2017) Feasibility of co-composting of sewage sludge, spent mushroom substrate and wheat straw. Bioresour Technol 226:39–45CrossRef Meng L, Li W, Zhang S, Wu C, Lv L (2017) Feasibility of co-composting of sewage sludge, spent mushroom substrate and wheat straw. Bioresour Technol 226:39–45CrossRef
140.
Zurück zum Zitat Van Doan H, Hoseinifar SH, Tapingkae W, Chitmanat C, Mekchay S (2017) Effects of Cordyceps militaris spent mushroom substrate on mucosal and serum immune parameters, disease resistance and growth performance of Nile tilapia, (Oreochromis niloticus). Fish Shellfish Immunol 67:78–85CrossRef Van Doan H, Hoseinifar SH, Tapingkae W, Chitmanat C, Mekchay S (2017) Effects of Cordyceps militaris spent mushroom substrate on mucosal and serum immune parameters, disease resistance and growth performance of Nile tilapia, (Oreochromis niloticus). Fish Shellfish Immunol 67:78–85CrossRef
141.
Zurück zum Zitat Yang CW, Chen WZ, Chang BV (2017) Biodegradation of tetrabromobisphenol-A in sludge with spent mushroom compost. Int Biodeterior Biodegrad 119:387–395CrossRef Yang CW, Chen WZ, Chang BV (2017) Biodegradation of tetrabromobisphenol-A in sludge with spent mushroom compost. Int Biodeterior Biodegrad 119:387–395CrossRef
Metadaten
Titel
Environmentally sustainable applications of agro-based spent mushroom substrate (SMS): an overview
verfasst von
Fatimah Hafifah Mohd Hanafi
Shahabaldin Rezania
Shazwin Mat Taib
Mohd Fadhil Md Din
Masahito Yamauchi
Mariko Sakamoto
Hirofumi Hara
Junboum Park
Shirin Shafiei Ebrahimi
Publikationsdatum
27.04.2018
Verlag
Springer Japan
Erschienen in
Journal of Material Cycles and Waste Management / Ausgabe 3/2018
Print ISSN: 1438-4957
Elektronische ISSN: 1611-8227
DOI
https://doi.org/10.1007/s10163-018-0739-0

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