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2015 | OriginalPaper | Buchkapitel

8. Biogas from Poultry Litter: A Review on Recent Technological Advancements

verfasst von : Gangagni Rao Anupoju, Shruti Ahuja, Bharath Gandu, K Sandhya, Kranti Kuruti, Venkata Swamy Yerramsetti

Erschienen in: Advances in Bioprocess Technology

Verlag: Springer International Publishing

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Abstract

Biomethanation of poultry litter is one of the remunerative options for farmers to get revenue in terms of bio-energy and bio-manure by simultaneously addressing the issues of waste disposal. Current waste management practices, associated problems and need for improvement to incorporate biogas technology in poultry farm are discussed in this chapter. In many places conventional cow dung digesters are being used for generation of biogas from poultry litter. The failure of these conventional digesters with respect to the characteristics of poultry litter and designs are examined in this chapter. The carbon to nitrogen ratio is low for poultry litter than optimally required for biomethanation and hence needs a special attention while designing the process scheme. In addition to this, high rate biomethanation process is emerging out to be viable option for most of the organic solid wastes. The chapter also analyses novel anaerobic digesters developed for the treatment of poultry litter for the possibility of powering the poultry farms with biogas.

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Literatur
Zurück zum Zitat Aili, Y., Kejun, Y., Yoaxin, Z., & Guoyuan, F. (1990). Study and design of a high performance biogas project treating chicken manure. China Biogas, 8(1), 30. Aili, Y., Kejun, Y., Yoaxin, Z., & Guoyuan, F. (1990). Study and design of a high performance biogas project treating chicken manure. China Biogas, 8(1), 30.
Zurück zum Zitat Khalid, A., Arshad, M., Anjum, M., Mahmood, T., & Dawson, L. (2011). The anaerobic digestion of solid organic waste. Waste Management, 31(8), 1737–1744.CrossRef Khalid, A., Arshad, M., Anjum, M., Mahmood, T., & Dawson, L. (2011). The anaerobic digestion of solid organic waste. Waste Management, 31(8), 1737–1744.CrossRef
Zurück zum Zitat Calli, B., Mertoglu, B., Inanc, B., & Yenigun, O. (2005). Effects of high free ammonia concentrations on the performances of anaerobic bioreactors. Process Biochemistry, 40, 1285–1292.CrossRef Calli, B., Mertoglu, B., Inanc, B., & Yenigun, O. (2005). Effects of high free ammonia concentrations on the performances of anaerobic bioreactors. Process Biochemistry, 40, 1285–1292.CrossRef
Zurück zum Zitat Banks, C. J., & Wang, Z. (1999). Development of a two-phase anaerobic digester for the treatment of mixed abattoir wastes. Water Science & Technology, 40(1), 69–76.CrossRef Banks, C. J., & Wang, Z. (1999). Development of a two-phase anaerobic digester for the treatment of mixed abattoir wastes. Water Science & Technology, 40(1), 69–76.CrossRef
Zurück zum Zitat Magbanua, B. S., Jr., Adams, T. T., & Johnston, P. (2001). Anaerobic co-digestion of hog and poultry waste. Bio Resource Technology, 76, 165–168.CrossRef Magbanua, B. S., Jr., Adams, T. T., & Johnston, P. (2001). Anaerobic co-digestion of hog and poultry waste. Bio Resource Technology, 76, 165–168.CrossRef
Zurück zum Zitat Bishnoi, S. R., & Bajwa, M. S. (1994). Poultry manure for more crops. Indian poultry industry year book (10th ed.). New Delhi: SP Gupta. Bishnoi, S. R., & Bajwa, M. S. (1994). Poultry manure for more crops. Indian poultry industry year book (10th ed.). New Delhi: SP Gupta.
Zurück zum Zitat Borja, R., Sgnchez, E., & Weiland, P. (1996). Influence of ammonia concentration on thermophilic anaerobic digestion of cattle manure in Upflow Anaerobic Sludge Blanket (UASB) reactors. Process Biochemistry, 31(5), 477–483.CrossRef Borja, R., Sgnchez, E., & Weiland, P. (1996). Influence of ammonia concentration on thermophilic anaerobic digestion of cattle manure in Upflow Anaerobic Sludge Blanket (UASB) reactors. Process Biochemistry, 31(5), 477–483.CrossRef
Zurück zum Zitat Bujoczek, G., Oleszkiewicz, J., Sparling, R., & Cenkowski, S. (2000). High solid anaerobic digestion of chicken manure. Journal of Agricultural Engineering Research, 76, 51–60.CrossRef Bujoczek, G., Oleszkiewicz, J., Sparling, R., & Cenkowski, S. (2000). High solid anaerobic digestion of chicken manure. Journal of Agricultural Engineering Research, 76, 51–60.CrossRef
Zurück zum Zitat Callaghan, F. J., Wase, D. A. G., Thayanith, K., & Forster, C. F. (1999). Co-digestion of waste organic solids: Batch studies. Bioresource Technology, 67, 117–122.CrossRef Callaghan, F. J., Wase, D. A. G., Thayanith, K., & Forster, C. F. (1999). Co-digestion of waste organic solids: Batch studies. Bioresource Technology, 67, 117–122.CrossRef
Zurück zum Zitat Costa, J. C., Barbosa, S. G., Alves, M. M., & Sousa, D. Z. (2012). Thermochemical pre- and biological co-treatments to improve hydrolysis and methane production from poultry litter. Bioresource Technology, 111, 141–147.CrossRef Costa, J. C., Barbosa, S. G., Alves, M. M., & Sousa, D. Z. (2012). Thermochemical pre- and biological co-treatments to improve hydrolysis and methane production from poultry litter. Bioresource Technology, 111, 141–147.CrossRef
Zurück zum Zitat Chen, Y., Jay Cheng, J., & Kurt Creamer, S. (2008). Inhibition of anaerobic digestion process: A review. Bioresource Technology, 99(10), 4044–4064.CrossRef Chen, Y., Jay Cheng, J., & Kurt Creamer, S. (2008). Inhibition of anaerobic digestion process: A review. Bioresource Technology, 99(10), 4044–4064.CrossRef
Zurück zum Zitat Demirel, B., & Yenigun, O. (2002). Two-phase anaerobic digestion processes: A review. Journal of Chemical Technology and Biotechnology, 77, 743–755.CrossRef Demirel, B., & Yenigun, O. (2002). Two-phase anaerobic digestion processes: A review. Journal of Chemical Technology and Biotechnology, 77, 743–755.CrossRef
Zurück zum Zitat Abouelenien, F., Nakashimada, Y., & Nishio, N. (2009). Dry mesophilic fermentation of chicken manure for production of methane by repeated batch culture. Journal of Bioscience and Bioengineering, 107(3), 293–295.CrossRef Abouelenien, F., Nakashimada, Y., & Nishio, N. (2009). Dry mesophilic fermentation of chicken manure for production of methane by repeated batch culture. Journal of Bioscience and Bioengineering, 107(3), 293–295.CrossRef
Zurück zum Zitat Abouelenien, F., Fujiwara, W., Namba, Y., Kosseva, M., Nishio, N., & Nakashimada, Y. (2010). Improved methane fermentation of chicken manure via ammonia removal by biogas recycle. Bioresource Technology, 101(16), 6368–6373.CrossRef Abouelenien, F., Fujiwara, W., Namba, Y., Kosseva, M., Nishio, N., & Nakashimada, Y. (2010). Improved methane fermentation of chicken manure via ammonia removal by biogas recycle. Bioresource Technology, 101(16), 6368–6373.CrossRef
Zurück zum Zitat Gangagni Rao, A., SasiKanth Reddy, T., Surya Prakash, S., Vanajakshi, J., Joseph, J., Jetty, A., et al. (2008a). Biomethanation of poultry litter leachate in UASB reactor coupled with ammonia stripper for enhancement of overall performance. Bioresource Technology, 99(18), 8679–8684.CrossRef Gangagni Rao, A., SasiKanth Reddy, T., Surya Prakash, S., Vanajakshi, J., Joseph, J., Jetty, A., et al. (2008a). Biomethanation of poultry litter leachate in UASB reactor coupled with ammonia stripper for enhancement of overall performance. Bioresource Technology, 99(18), 8679–8684.CrossRef
Zurück zum Zitat Gangagni Rao, A., Surya Prakash, S., Joseph, J., Rajashekhara Reddy, A., & Sarma, P. N. (2011). Multi stage high rate biomethanation of poultry litter with self mixed anaerobic digester. Bioresource Technology, 102(2), 729–735.CrossRef Gangagni Rao, A., Surya Prakash, S., Joseph, J., Rajashekhara Reddy, A., & Sarma, P. N. (2011). Multi stage high rate biomethanation of poultry litter with self mixed anaerobic digester. Bioresource Technology, 102(2), 729–735.CrossRef
Zurück zum Zitat Gangagni Rao, A., Gandu, B., & Swamy, Y. V. (2012). Mass transfer dynamics of ammonia in high rate biomethanation of poultry litter leachate. Bioresource Technology, 109, 234–238.CrossRef Gangagni Rao, A., Gandu, B., & Swamy, Y. V. (2012). Mass transfer dynamics of ammonia in high rate biomethanation of poultry litter leachate. Bioresource Technology, 109, 234–238.CrossRef
Zurück zum Zitat Gangagni Rao, A., Gandu, B., Sandhya, K., Kranti, K., Ahuja, S., & Swamy, Y. V. (2013). Decentralized application of anaerobic digesters in small poultry farms: Performance analysis of high rate self-mixed anaerobic digester and conventional fixed dome anaerobic digester. Bioresource Technology, 144, 121–127.CrossRef Gangagni Rao, A., Gandu, B., Sandhya, K., Kranti, K., Ahuja, S., & Swamy, Y. V. (2013). Decentralized application of anaerobic digesters in small poultry farms: Performance analysis of high rate self-mixed anaerobic digester and conventional fixed dome anaerobic digester. Bioresource Technology, 144, 121–127.CrossRef
Zurück zum Zitat Monteny, G.-J., Bannink, A., & Chadwick, D. (2006). Greenhouse gas abatement strategies for animal husbandry. Agriculture Ecosystems & Environment, 112(2-3), 163–170.CrossRef Monteny, G.-J., Bannink, A., & Chadwick, D. (2006). Greenhouse gas abatement strategies for animal husbandry. Agriculture Ecosystems & Environment, 112(2-3), 163–170.CrossRef
Zurück zum Zitat Hahn, H., Ganagin, W., Hartmann, K., & Wachendrof, M. (2014). Cost analysis of concepts for a demand oriented biogas supply for flexible power generation. Bioresource Technology, 170, 211–220.CrossRef Hahn, H., Ganagin, W., Hartmann, K., & Wachendrof, M. (2014). Cost analysis of concepts for a demand oriented biogas supply for flexible power generation. Bioresource Technology, 170, 211–220.CrossRef
Zurück zum Zitat Hansen, K. H., Angelidaki, I., & Ahring, B. K. (1998). Anaerobic digestion of swine manure: inhibition by ammonia. Water Res., 32, 5–12.CrossRef Hansen, K. H., Angelidaki, I., & Ahring, B. K. (1998). Anaerobic digestion of swine manure: inhibition by ammonia. Water Res., 32, 5–12.CrossRef
Zurück zum Zitat Hill, D. T., & Bolte, J. P. (2000). Methane production from low solid concentration liquid swine waste using conventional anaerobic fermentation. Bioresource Technology, 74, 241–247.CrossRef Hill, D. T., & Bolte, J. P. (2000). Methane production from low solid concentration liquid swine waste using conventional anaerobic fermentation. Bioresource Technology, 74, 241–247.CrossRef
Zurück zum Zitat Itodo, I. N., & Awulu, J. O. (1999). Effects of total solids concentrations of poultry, cattle, and piggery waste slurries on biogas yield. Transactions of ASAE, 42, 1853–1855.CrossRef Itodo, I. N., & Awulu, J. O. (1999). Effects of total solids concentrations of poultry, cattle, and piggery waste slurries on biogas yield. Transactions of ASAE, 42, 1853–1855.CrossRef
Zurück zum Zitat Jalasutram, V., Kataram, S., Gandu, B., & Anupoju, G. R. (2013). Single cell protein production from digested and undigested poultry litter by Candida utilis: optimization of process parameters using response surface methodology. Clean Technologies and Environmental Policy, 15, 265–273.CrossRef Jalasutram, V., Kataram, S., Gandu, B., & Anupoju, G. R. (2013). Single cell protein production from digested and undigested poultry litter by Candida utilis: optimization of process parameters using response surface methodology. Clean Technologies and Environmental Policy, 15, 265–273.CrossRef
Zurück zum Zitat Kayhanian, M. K. (1999). Ammonia inhibition in high-solids biogasification: An overview and practical solutions. Environmental Technology, 20, 355–365.CrossRef Kayhanian, M. K. (1999). Ammonia inhibition in high-solids biogasification: An overview and practical solutions. Environmental Technology, 20, 355–365.CrossRef
Zurück zum Zitat Cantrell, K. B., Ducey, T., Kyoung, S. R., & Hunt, P. G. (2008). Livestock waste-to-bioenergy generation opportunities. Bioresource Technology, 99(17), 7941–7953.CrossRef Cantrell, K. B., Ducey, T., Kyoung, S. R., & Hunt, P. G. (2008). Livestock waste-to-bioenergy generation opportunities. Bioresource Technology, 99(17), 7941–7953.CrossRef
Zurück zum Zitat Kelleher, B. P., Leahy, J. J., Henihan, A. M., O’Dwyer, T. F., Sutton, D., & Leahy, M. J. (2002). Advances in poultry litter disposal technology – A review. Bioresource Technology, 83, 27–36.CrossRef Kelleher, B. P., Leahy, J. J., Henihan, A. M., O’Dwyer, T. F., Sutton, D., & Leahy, M. J. (2002). Advances in poultry litter disposal technology – A review. Bioresource Technology, 83, 27–36.CrossRef
Zurück zum Zitat Karim, K., Hoffmann, R., Thomas Klasson, K., & Al-Dahhan, M. H. (2005a). Anaerobic digestion of animal waste: Effect of mode of mixing. Water Research, 39(15), 3597–3606.CrossRef Karim, K., Hoffmann, R., Thomas Klasson, K., & Al-Dahhan, M. H. (2005a). Anaerobic digestion of animal waste: Effect of mode of mixing. Water Research, 39(15), 3597–3606.CrossRef
Zurück zum Zitat Karim, K., Hoffmann, R., Thomas Klasson, K., & Al-Dahhan, M. H. (2005b). Anaerobic digestion of animal waste: Waste strength versus impact of mixing. Bioresource Technology, 96, 1771–1781.CrossRef Karim, K., Hoffmann, R., Thomas Klasson, K., & Al-Dahhan, M. H. (2005b). Anaerobic digestion of animal waste: Waste strength versus impact of mixing. Bioresource Technology, 96, 1771–1781.CrossRef
Zurück zum Zitat Krylova, N. I., Khabiboulline, R. E., Naumova, R. P., & Nagel, M. A. (1997). The influence of ammonium and methods for removal during the anaerobic treatment of poultry manure. Journal of Chemical Technology and Biotechnology, 70, 99–105.CrossRef Krylova, N. I., Khabiboulline, R. E., Naumova, R. P., & Nagel, M. A. (1997). The influence of ammonium and methods for removal during the anaerobic treatment of poultry manure. Journal of Chemical Technology and Biotechnology, 70, 99–105.CrossRef
Zurück zum Zitat Liao, P. H., Chen, A., & Lo, K. V. (1995). Removal of nitrogen from swine manure wastewaters by ammonia stripping. Bioresource Technology, 54, 17–20.CrossRef Liao, P. H., Chen, A., & Lo, K. V. (1995). Removal of nitrogen from swine manure wastewaters by ammonia stripping. Bioresource Technology, 54, 17–20.CrossRef
Zurück zum Zitat Mata-Alvarez, J., Mace, S., & Llabres, P. (2000). Anaerobic digestion of organic solid wastes; an overview of research achievements and perspectives. Bioresource Technology, 74, 3–16.CrossRef Mata-Alvarez, J., Mace, S., & Llabres, P. (2000). Anaerobic digestion of organic solid wastes; an overview of research achievements and perspectives. Bioresource Technology, 74, 3–16.CrossRef
Zurück zum Zitat Prasad, K., Buendia, I., Ellegaard, L., & Angelidakia, I. (2008). Effects of mixing on methane production during thermophilicanaerobic digestion of manure: Lab-scale and pilot-scale studies. Bioresource Technology, 99(11), 4919–4928.CrossRef Prasad, K., Buendia, I., Ellegaard, L., & Angelidakia, I. (2008). Effects of mixing on methane production during thermophilicanaerobic digestion of manure: Lab-scale and pilot-scale studies. Bioresource Technology, 99(11), 4919–4928.CrossRef
Zurück zum Zitat Rajagopal, R., Massé, D. I., & Singh, G. (2013). A critical review on inhibition of anaerobic digestion process by excess ammonia. Bioresource Technology, 143, 632–641.CrossRef Rajagopal, R., Massé, D. I., & Singh, G. (2013). A critical review on inhibition of anaerobic digestion process by excess ammonia. Bioresource Technology, 143, 632–641.CrossRef
Zurück zum Zitat Rajashekhar Reddy, A., Mohankumar, K. C. (1994). Studies on utilization of poultry litter for the production of biogas. Unpublished data. AICRP on Poultry Breeding, ANGRAU, Hyderabad. Rajashekhar Reddy, A., Mohankumar, K. C. (1994). Studies on utilization of poultry litter for the production of biogas. Unpublished data. AICRP on Poultry Breeding, ANGRAU, Hyderabad.
Zurück zum Zitat Rajashekar Reddy, A., Madhukumar, K., Eswariah., Ravinder Reddy, V. (1996). Environment friendly disposal of poultry droppings by anaerobic fermentation and recycling as feed ingredient for poultry. XX World’s poultry Congress proceedings, Vol. II, (pp. 605–611). Rajashekar Reddy, A., Madhukumar, K., Eswariah., Ravinder Reddy, V. (1996). Environment friendly disposal of poultry droppings by anaerobic fermentation and recycling as feed ingredient for poultry. XX World’s poultry Congress proceedings, Vol. II, (pp. 605–611).
Zurück zum Zitat Raynal, J., Delgenks, J. P., & Moletta, R. (1998). Two-phase anaerobic digestion of solid wastes by a multiple liquefaction reactors process. Bioresource Technology, 65, 97–103.CrossRef Raynal, J., Delgenks, J. P., & Moletta, R. (1998). Two-phase anaerobic digestion of solid wastes by a multiple liquefaction reactors process. Bioresource Technology, 65, 97–103.CrossRef
Zurück zum Zitat Salminen, E., & Rintal, J. (2002). Anaerobic digestion of organic solid poultry slaughter waste – a review. Bioresource Technology, 83, 13–26.CrossRef Salminen, E., & Rintal, J. (2002). Anaerobic digestion of organic solid poultry slaughter waste – a review. Bioresource Technology, 83, 13–26.CrossRef
Zurück zum Zitat Salminen, E. A., & Rintala, J. A. (2002). Semi-continuous anaerobic digestion of solid poultry slaughterhouse waste: effect of hydraulic retention time and loading. Water Research, 36, 3175–3182.CrossRef Salminen, E. A., & Rintala, J. A. (2002). Semi-continuous anaerobic digestion of solid poultry slaughterhouse waste: effect of hydraulic retention time and loading. Water Research, 36, 3175–3182.CrossRef
Zurück zum Zitat Sivakumar, K., Saravana Kumar, V. R., Jagatheesan, P. N., Viswanathan, K., & Chandrasekaran, D. (2008). Seasonal variations in composting process of dead poultry birds. Bioresource Technology, 99(9), 3708–3713.CrossRef Sivakumar, K., Saravana Kumar, V. R., Jagatheesan, P. N., Viswanathan, K., & Chandrasekaran, D. (2008). Seasonal variations in composting process of dead poultry birds. Bioresource Technology, 99(9), 3708–3713.CrossRef
Zurück zum Zitat Sterling, M. C., Jr., Lacey, R. E., Engler, C. R., & Ricke, S. C. (2001). Effects of ammonia nitrogen on H and CHE production during anaerobic digestion of dairy cattle manure. Bioresource Technology, 77, 9–18.CrossRef Sterling, M. C., Jr., Lacey, R. E., Engler, C. R., & Ricke, S. C. (2001). Effects of ammonia nitrogen on H and CHE production during anaerobic digestion of dairy cattle manure. Bioresource Technology, 77, 9–18.CrossRef
Zurück zum Zitat Sakar, S., Yetilmezsoy, K., & Kocak, E. (2009). Anaerobic digestion technology in poultry and livestock waste treatment — a literature review. Waste Management & Research., 27(1), 3–18.CrossRef Sakar, S., Yetilmezsoy, K., & Kocak, E. (2009). Anaerobic digestion technology in poultry and livestock waste treatment — a literature review. Waste Management & Research., 27(1), 3–18.CrossRef
Zurück zum Zitat Szogi, A. A., & Vanotti, M. B. (2009). Prospects for phosphorus recovery from poultry litter. Bioresource Technology, 100(22), 5461–5465.CrossRef Szogi, A. A., & Vanotti, M. B. (2009). Prospects for phosphorus recovery from poultry litter. Bioresource Technology, 100(22), 5461–5465.CrossRef
Zurück zum Zitat Thyagarajan, D., Barathi, M., & Sakthivadivu, R. (2013). Scope of poultry waste utilization. OSR Journal of Agriculture and Veterinary Science, 6(5), 29–35.CrossRef Thyagarajan, D., Barathi, M., & Sakthivadivu, R. (2013). Scope of poultry waste utilization. OSR Journal of Agriculture and Veterinary Science, 6(5), 29–35.CrossRef
Zurück zum Zitat Vavilin, V. A., Rytov, S. V., Lokshina, L. Y., Rintala, J. A., & Lyberatos, G. (2001). Simplified hydrolysis models for the optimal design of two-stage anaerobic digestion. Water Research, 35, 4247–4251.CrossRef Vavilin, V. A., Rytov, S. V., Lokshina, L. Y., Rintala, J. A., & Lyberatos, G. (2001). Simplified hydrolysis models for the optimal design of two-stage anaerobic digestion. Water Research, 35, 4247–4251.CrossRef
Zurück zum Zitat Xin, H., Gates, R. S., Green, A. R., Mitloehner, F. M., Moore, P. A. Jr., Wathes, C. M. (2010) Emerging issues: Social sustainability of egg, production symposium: Environmental impacts and sustainability of egg production systems, ©2011 Poultry Science Association Inc. http://www.poultryscience.org/docs/PS_877.pdf. Retrieved 26 Nov 2014. Xin, H., Gates, R. S., Green, A. R., Mitloehner, F. M., Moore, P. A. Jr., Wathes, C. M. (2010) Emerging issues: Social sustainability of egg, production symposium: Environmental impacts and sustainability of egg production systems, ©2011 Poultry Science Association Inc. http://​www.​poultryscience.​org/​docs/​PS_​877.​pdf. Retrieved 26 Nov 2014.
Zurück zum Zitat Dong, X., & Ernest Tollner, W. (2003). Evaluation of Anammox and denitrification during anaerobic digestion of poultry manure. Bioresource Technology, 86, 139–145.CrossRef Dong, X., & Ernest Tollner, W. (2003). Evaluation of Anammox and denitrification during anaerobic digestion of poultry manure. Bioresource Technology, 86, 139–145.CrossRef
Zurück zum Zitat Santosh, Y., Sreekrishnan, T. R., Kohli, S., & Rana, V. (2004). Enhancement of biogas production from solid substrates using different techniques––a review. Bioresource Technology, 95(1), 1–10.CrossRef Santosh, Y., Sreekrishnan, T. R., Kohli, S., & Rana, V. (2004). Enhancement of biogas production from solid substrates using different techniques––a review. Bioresource Technology, 95(1), 1–10.CrossRef
Zurück zum Zitat Wang, Z., & Charles, J. B. (2003). Evaluation of a two stage anaerobic digester for the treatment of mixed abattoir wastes. Process Biochemistry, 30(9), 1267–1273.CrossRef Wang, Z., & Charles, J. B. (2003). Evaluation of a two stage anaerobic digester for the treatment of mixed abattoir wastes. Process Biochemistry, 30(9), 1267–1273.CrossRef
Zurück zum Zitat CSIR-IICT. (2014). Interactive meet and plant demonstration on biogas and bio-manure from poultry litter concluded. Poultry Express, 10(4), 30–36. CSIR-IICT. (2014). Interactive meet and plant demonstration on biogas and bio-manure from poultry litter concluded. Poultry Express, 10(4), 30–36.
Metadaten
Titel
Biogas from Poultry Litter: A Review on Recent Technological Advancements
verfasst von
Gangagni Rao Anupoju
Shruti Ahuja
Bharath Gandu
K Sandhya
Kranti Kuruti
Venkata Swamy Yerramsetti
Copyright-Jahr
2015
DOI
https://doi.org/10.1007/978-3-319-17915-5_8