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2014 | OriginalPaper | Buchkapitel

Oil Palm Biomass as an Adsorbent for Heavy Metals

verfasst von : Mohammadtaghi Vakili, Mohd Rafatullah, Mahamad Hakimi Ibrahim, Ahmad Zuhairi Abdullah, Babak Salamatinia, Zahra Gholami

Erschienen in: Reviews of Environmental Contamination and Toxicology Volume 232

Verlag: Springer International Publishing

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Abstract

In recent decades, increases in the world’s population, unplanned urbanization, industrialization, agricultural activities, and expanded use of chemicals, has contributed to environmental contamination via emission of wastes and pollutants. Wastes (both inorganic and organic) that are produced by human activities have resulted in high volumes of contaminated water, contact with or consumption of which poses health threats to living organisms, including humans (Ahmad et al. 2010, 2012).

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Zurück zum Zitat Hashem A, Abdel-Halim E, El-Tahlawy KF, Hebeish A (2005) Enhancement of the adsorption of Co (II) and Ni (II) ions onto peanut hulls through esterification using citric acid. Adsorpt Sci Technol 23(5):367–380 Hashem A, Abdel-Halim E, El-Tahlawy KF, Hebeish A (2005) Enhancement of the adsorption of Co (II) and Ni (II) ions onto peanut hulls through esterification using citric acid. Adsorpt Sci Technol 23(5):367–380
Zurück zum Zitat Ho Y-S (2003) Removal of copper ions from aqueous solution by tree fern. Water Res 37(10):2323–2330 Ho Y-S (2003) Removal of copper ions from aqueous solution by tree fern. Water Res 37(10):2323–2330
Zurück zum Zitat Ho Y-S, Ofomaja AE (2005) Kinetics and thermodynamics of lead ion sorption on palm kernel fibre from aqueous solution. Process Biochem 40(11):3455–3461 Ho Y-S, Ofomaja AE (2005) Kinetics and thermodynamics of lead ion sorption on palm kernel fibre from aqueous solution. Process Biochem 40(11):3455–3461
Zurück zum Zitat Ho Y-S, Ofomaja AE (2006a) Kinetic studies of copper ion adsorption on palm kernel fibre. J Hazard Mater 137(3):1796–1802 Ho Y-S, Ofomaja AE (2006a) Kinetic studies of copper ion adsorption on palm kernel fibre. J Hazard Mater 137(3):1796–1802
Zurück zum Zitat Ho Y-S, Ofomaja AE (2006b) Pseudo-second-order model for lead ion sorption from aqueous solutions onto palm kernel fiber. J Hazard Mater 129(1–3):137–142 Ho Y-S, Ofomaja AE (2006b) Pseudo-second-order model for lead ion sorption from aqueous solutions onto palm kernel fiber. J Hazard Mater 129(1–3):137–142
Zurück zum Zitat Hossain M, Ngo H, Guo W, Nguyen T (2012) Palm oil fruit shells as biosorbent for copper removal from water and wastewater: experiments and sorption models. Bioresour Technol 113:97–101 Hossain M, Ngo H, Guo W, Nguyen T (2012) Palm oil fruit shells as biosorbent for copper removal from water and wastewater: experiments and sorption models. Bioresour Technol 113:97–101
Zurück zum Zitat Ibrahim MNM, Nagah WSW, Norliyana MS, Daud WRW, Rafatullah M, Sulaiman O, Hashim R (2010) A novel agricultural waste adsorbent for the removal of lead (II) ions from aqueous solutions. J Hazard Mater 182(1–3):377–385 Ibrahim MNM, Nagah WSW, Norliyana MS, Daud WRW, Rafatullah M, Sulaiman O, Hashim R (2010) A novel agricultural waste adsorbent for the removal of lead (II) ions from aqueous solutions. J Hazard Mater 182(1–3):377–385
Zurück zum Zitat Ideriah T, David O, Ogbonna D (2012) Removal of heavy metal ions in aqueous solutions using palm fruit fibre as adsorbent. J Environ Chem Ecotoxicol 4(4):82–90 Ideriah T, David O, Ogbonna D (2012) Removal of heavy metal ions in aqueous solutions using palm fruit fibre as adsorbent. J Environ Chem Ecotoxicol 4(4):82–90
Zurück zum Zitat Igwe J, Abia A (2006) A bioseparation process for removing heavy metals from waste water using biosorbents. Afr J Biotechnol 5(11):1167–1179 Igwe J, Abia A (2006) A bioseparation process for removing heavy metals from waste water using biosorbents. Afr J Biotechnol 5(11):1167–1179
Zurück zum Zitat Isa MH et al (2008) Removal of chromium (VI) from aqueous solution using treated oil palm fibre. J Hazard Mater 152(2):662–668 Isa MH et al (2008) Removal of chromium (VI) from aqueous solution using treated oil palm fibre. J Hazard Mater 152(2):662–668
Zurück zum Zitat Israel U, Eduok U (2012) Biosorption of zinc from aqueous solution using coconut (Cocos nucifera L) coir dust. Arch Appl Sci Res 4(2):809–819 Israel U, Eduok U (2012) Biosorption of zinc from aqueous solution using coconut (Cocos nucifera L) coir dust. Arch Appl Sci Res 4(2):809–819
Zurück zum Zitat Issabayeva G, Aroua MK, Sulaiman NMN (2006) Removal of lead from aqueous solutions on palm shell activated carbon. Bioresour Technol 97(18):2350–2355 Issabayeva G, Aroua MK, Sulaiman NMN (2006) Removal of lead from aqueous solutions on palm shell activated carbon. Bioresour Technol 97(18):2350–2355
Zurück zum Zitat Issabayeva G, Aroua MK, Sulaiman NM (2008) Continuous adsorption of lead ions in a column packed with palm shell activated carbon. J Hazard Mater 155(1–2):109–113 Issabayeva G, Aroua MK, Sulaiman NM (2008) Continuous adsorption of lead ions in a column packed with palm shell activated carbon. J Hazard Mater 155(1–2):109–113
Zurück zum Zitat Iyagba ET, Opete OS (2009) Removal of chromium and lead from drill cuttings using activated palm kernel shell and husk. Afr J Environ Sci Technol 3(7):171–179 Iyagba ET, Opete OS (2009) Removal of chromium and lead from drill cuttings using activated palm kernel shell and husk. Afr J Environ Sci Technol 3(7):171–179
Zurück zum Zitat Ji F, Li C, Tang B, Xu J, Lu G, Liu P (2012) Preparation of cellulose acetate/zeolite composite fiber and its adsorption behavior for heavy metal ions in aqueous solution. Chem Eng J 209:325–333 Ji F, Li C, Tang B, Xu J, Lu G, Liu P (2012) Preparation of cellulose acetate/zeolite composite fiber and its adsorption behavior for heavy metal ions in aqueous solution. Chem Eng J 209:325–333
Zurück zum Zitat Kabbashi NA, Elwathig M, Jamil INB (2011) Application of activated carbon from empty fruit bunch (EFB) for mercury [Hg (II)] removal from aqueous solution. Afr J Biotechnol 10(81):18768–18774 Kabbashi NA, Elwathig M, Jamil INB (2011) Application of activated carbon from empty fruit bunch (EFB) for mercury [Hg (II)] removal from aqueous solution. Afr J Biotechnol 10(81):18768–18774
Zurück zum Zitat Kalinci Y, Hepbasli A, Dincer I (2011) Comparative exergetic performance analysis of hydrogen production from oil palm wastes and some other biomasses. Int J Hydrogen Energy 36(17): 11399–11407 Kalinci Y, Hepbasli A, Dincer I (2011) Comparative exergetic performance analysis of hydrogen production from oil palm wastes and some other biomasses. Int J Hydrogen Energy 36(17): 11399–11407
Zurück zum Zitat Karvelas M, Katsoyiannis A, Samara C (2003) Occurrence and fate of heavy metals in the wastewater treatment process. Chemosphere 53(10):1201–1210 Karvelas M, Katsoyiannis A, Samara C (2003) Occurrence and fate of heavy metals in the wastewater treatment process. Chemosphere 53(10):1201–1210
Zurück zum Zitat Kazemipour M, Ansari M, Tajrobehkar S, Majdzadeh M, Kermani HR (2008) Removal of lead, cadmium, zinc, and copper from industrial wastewater by carbon developed from walnut, hazelnut, almond, pistachio shell, and apricot stone. J Hazard Mater 150(2):322–327 Kazemipour M, Ansari M, Tajrobehkar S, Majdzadeh M, Kermani HR (2008) Removal of lead, cadmium, zinc, and copper from industrial wastewater by carbon developed from walnut, hazelnut, almond, pistachio shell, and apricot stone. J Hazard Mater 150(2):322–327
Zurück zum Zitat Khalid N, Ali S, Iqbal A, Pervez S (2007) Sorption potential of styrene-divinylbenzene copolymer beads for the decontamination of lead from aqueous media. Sep Sci Technol 42(1):203–222. doi:10.1080/01496390600957041 Khalid N, Ali S, Iqbal A, Pervez S (2007) Sorption potential of styrene-divinylbenzene copolymer beads for the decontamination of lead from aqueous media. Sep Sci Technol 42(1):203–222. doi:10.​1080/​0149639060095704​1
Zurück zum Zitat Khan MA, Rao RAK, Ajmal M (2008) Heavy metal pollution and its control through non-conventional adsorbents (1998–2007): a review. J Int Environ Appl Sci 3(2):101–141 Khan MA, Rao RAK, Ajmal M (2008) Heavy metal pollution and its control through non-conventional adsorbents (1998–2007): a review. J Int Environ Appl Sci 3(2):101–141
Zurück zum Zitat Khoramzadeh E, Nasernejad B, Halladj R (2012) Mercury biosorption from aqueous solutions by Sugarcane Bagasse. J Taiwan Inst Chem Eng 44(2):266–269 Khoramzadeh E, Nasernejad B, Halladj R (2012) Mercury biosorption from aqueous solutions by Sugarcane Bagasse. J Taiwan Inst Chem Eng 44(2):266–269
Zurück zum Zitat Khraisheh MA, Al-degs YS, Mcminn WA (2004) Remediation of wastewater containing heavy metals using raw and modified diatomite. Chem Eng J 99(2):177–184 Khraisheh MA, Al-degs YS, Mcminn WA (2004) Remediation of wastewater containing heavy metals using raw and modified diatomite. Chem Eng J 99(2):177–184
Zurück zum Zitat Kobya M, Demirbas E, Senturk E, Ince M (2005) Adsorption of heavy metal ions from aqueous solutions by activated carbon prepared from apricot stone. Bioresour Technol 96(13):1518–1521 Kobya M, Demirbas E, Senturk E, Ince M (2005) Adsorption of heavy metal ions from aqueous solutions by activated carbon prepared from apricot stone. Bioresour Technol 96(13):1518–1521
Zurück zum Zitat Ku Y, Chiou H-M (2002) The adsorption of fluoride ion from aqueous solution by activated alumina. Water Air Soil Pollut 133(1–4):349–361 Ku Y, Chiou H-M (2002) The adsorption of fluoride ion from aqueous solution by activated alumina. Water Air Soil Pollut 133(1–4):349–361
Zurück zum Zitat Kurniawan TA, Chan G, Lo W-H, Babel S (2006) Physico–chemical treatment techniques for wastewater laden with heavy metals. Chem Eng J 118(1):83–98 Kurniawan TA, Chan G, Lo W-H, Babel S (2006) Physico–chemical treatment techniques for wastewater laden with heavy metals. Chem Eng J 118(1):83–98
Zurück zum Zitat Li Z, Imaizumi S, Katsumi T, Inui T, Tang X, Tang Q (2010) Manganese removal from aqueous solution using a thermally decomposed leaf. J Hazard Mater 177(1–3):501–507 Li Z, Imaizumi S, Katsumi T, Inui T, Tang X, Tang Q (2010) Manganese removal from aqueous solution using a thermally decomposed leaf. J Hazard Mater 177(1–3):501–507
Zurück zum Zitat Liang S, Guo X, Tian Q (2011) Adsorption of Pb2+ and Zn2+ from aqueous solutions by sulfured orange peel. Desalination 275(1):212–216 Liang S, Guo X, Tian Q (2011) Adsorption of Pb2+ and Zn2+ from aqueous solutions by sulfured orange peel. Desalination 275(1):212–216
Zurück zum Zitat Low K, Lee C, Tan C (1996) Enhancement of copper sorption through acid blue 29 treated oil palm pressed fibres. Pertanika J Sci Technol 4(1):41–50 Low K, Lee C, Tan C (1996) Enhancement of copper sorption through acid blue 29 treated oil palm pressed fibres. Pertanika J Sci Technol 4(1):41–50
Zurück zum Zitat Lugo-Lugo V, Barrera-Díaz C, Ureña-Núñez F, Bilyeu B, Linares-Hernández I (2012) Biosorption of Cr (III) and Fe (III) in single and binary systems onto pretreated orange peel. J Environ Manage 112:120–127 Lugo-Lugo V, Barrera-Díaz C, Ureña-Núñez F, Bilyeu B, Linares-Hernández I (2012) Biosorption of Cr (III) and Fe (III) in single and binary systems onto pretreated orange peel. J Environ Manage 112:120–127
Zurück zum Zitat Mahmoud ME, Osman MM, Hafez OF, Hegazi AH, Elmelegy E (2010) Removal and preconcentration of lead (II) and other heavy metals from water by alumina adsorbents developed by surface-adsorbed-dithizone. Desalination 251(1):123–130 Mahmoud ME, Osman MM, Hafez OF, Hegazi AH, Elmelegy E (2010) Removal and preconcentration of lead (II) and other heavy metals from water by alumina adsorbents developed by surface-adsorbed-dithizone. Desalination 251(1):123–130
Zurück zum Zitat Malkoc E, Nuhoglu Y (2007) Potential of tea factory waste for chromium (VI) removal from aqueous solutions: thermodynamic and kinetic studies. Sep Purif Technol 54(3):291–298 Malkoc E, Nuhoglu Y (2007) Potential of tea factory waste for chromium (VI) removal from aqueous solutions: thermodynamic and kinetic studies. Sep Purif Technol 54(3):291–298
Zurück zum Zitat Mohammad N, Alam MZ, Kabbashi NA, Ahsan A (2012) Effective composting of oil palm industrial waste by filamentous fungi: a review. Resour Conserv Recy 58:69–78 Mohammad N, Alam MZ, Kabbashi NA, Ahsan A (2012) Effective composting of oil palm industrial waste by filamentous fungi: a review. Resour Conserv Recy 58:69–78
Zurück zum Zitat Mohammadi T, Razmi A, Sadrzadeh M (2004) Effect of operating parameters on Pb2+ separation from wastewater using electrodialysis. Desalination 167:379–385 Mohammadi T, Razmi A, Sadrzadeh M (2004) Effect of operating parameters on Pb2+ separation from wastewater using electrodialysis. Desalination 167:379–385
Zurück zum Zitat Mohammed M, Salmiaton A, Wan Azlina W, Mohammad Amran M, Fakhru’l-Razi A, Taufiq-Yap Y (2011) Hydrogen rich gas from oil palm biomass as a potential source of renewable energy in Malaysia. Renew Sust Energ Rev 15(2):1258–1270 Mohammed M, Salmiaton A, Wan Azlina W, Mohammad Amran M, Fakhru’l-Razi A, Taufiq-Yap Y (2011) Hydrogen rich gas from oil palm biomass as a potential source of renewable energy in Malaysia. Renew Sust Energ Rev 15(2):1258–1270
Zurück zum Zitat Mohan D, Pittman CU Jr (2006) Activated carbons and low cost adsorbents for remediation of tri-and hexavalent chromium from water. J Hazard Mater 137(2):762–811 Mohan D, Pittman CU Jr (2006) Activated carbons and low cost adsorbents for remediation of tri-and hexavalent chromium from water. J Hazard Mater 137(2):762–811
Zurück zum Zitat Mortaheb HR, Kosuge H, Mokhtarani B, Amini MH, Banihashemi HR (2009) Study on removal of cadmium from wastewater by emulsion liquid membrane. J Hazard Mater 165(1–3): 630–636 Mortaheb HR, Kosuge H, Mokhtarani B, Amini MH, Banihashemi HR (2009) Study on removal of cadmium from wastewater by emulsion liquid membrane. J Hazard Mater 165(1–3): 630–636
Zurück zum Zitat Najafi M, Rostamian R, Rafati A (2011) Chemically modified silica gel with thiol group as an adsorbent for retention of some toxic soft metal ions from water and industrial effluent. Chem Eng J 168(1):426–432 Najafi M, Rostamian R, Rafati A (2011) Chemically modified silica gel with thiol group as an adsorbent for retention of some toxic soft metal ions from water and industrial effluent. Chem Eng J 168(1):426–432
Zurück zum Zitat Nemr AE (2009) Potential of pomegranate husk carbon for Cr (VI) removal from wastewater: kinetic and isotherm studies. J Hazard Mater 161(1):132–141 Nemr AE (2009) Potential of pomegranate husk carbon for Cr (VI) removal from wastewater: kinetic and isotherm studies. J Hazard Mater 161(1):132–141
Zurück zum Zitat Nomanbhay SM, Palanisamy K (2005) Removal of heavy metal from industrial wastewater using chitosan coated oil palm shell charcoal. Electron J Biotechnol 8(1):43–53 Nomanbhay SM, Palanisamy K (2005) Removal of heavy metal from industrial wastewater using chitosan coated oil palm shell charcoal. Electron J Biotechnol 8(1):43–53
Zurück zum Zitat Nwabanne JT, Igbokwe PK (2012) Adsorption performance of packed bed column for the removal of lead (ii) using oil palm fibre. Int J Appl Sci Technol 2(5):106–115 Nwabanne JT, Igbokwe PK (2012) Adsorption performance of packed bed column for the removal of lead (ii) using oil palm fibre. Int J Appl Sci Technol 2(5):106–115
Zurück zum Zitat Nwabanne JT, Okoye AC, Lebele-Alawa BT (2011) Packed bed column studies for the removal of lead (ii) using oil palm empty fruit bunch. Eur J Sci Res 63(2):296–305 Nwabanne JT, Okoye AC, Lebele-Alawa BT (2011) Packed bed column studies for the removal of lead (ii) using oil palm empty fruit bunch. Eur J Sci Res 63(2):296–305
Zurück zum Zitat O’Connell DW, Birkinshaw C, O’Dwyer TF (2008) Heavy metal adsorbents prepared from the modification of cellulose: a review. Bioresour Technol 99(15):6709–6724 O’Connell DW, Birkinshaw C, O’Dwyer TF (2008) Heavy metal adsorbents prepared from the modification of cellulose: a review. Bioresour Technol 99(15):6709–6724
Zurück zum Zitat Ofomaja AE (2010) Equilibrium studies of copper ion adsorption onto palm kernel fibre. J Environ Manage 91(7):1491–1499 Ofomaja AE (2010) Equilibrium studies of copper ion adsorption onto palm kernel fibre. J Environ Manage 91(7):1491–1499
Zurück zum Zitat Oliveira WE, Franca AS, Oliveira LS, Rocha SD (2008) Untreated coffee husks as biosorbents for the removal of heavy metals from aqueous solutions. J Hazard Mater 152(3):1073–1081 Oliveira WE, Franca AS, Oliveira LS, Rocha SD (2008) Untreated coffee husks as biosorbents for the removal of heavy metals from aqueous solutions. J Hazard Mater 152(3):1073–1081
Zurück zum Zitat Oluyemi EA, Adeyemi AF, Olabanji IO (2012) Removal of Pb2+ and Cd2+ ions from wastewaters using palm kernel shell charcoal (PKSC). Res J Eng Appl Sci 1(5):308–313 Oluyemi EA, Adeyemi AF, Olabanji IO (2012) Removal of Pb2+ and Cd2+ ions from wastewaters using palm kernel shell charcoal (PKSC). Res J Eng Appl Sci 1(5):308–313
Zurück zum Zitat Onundi YB, Mamun A, Al Khatib M, Ahmed Y (2010) Adsorption of copper, nickel and lead ions from synthetic semiconductor industrial wastewater by palm shell activated carbon. Int J Environ Sci Technol 7(4):751–758 Onundi YB, Mamun A, Al Khatib M, Ahmed Y (2010) Adsorption of copper, nickel and lead ions from synthetic semiconductor industrial wastewater by palm shell activated carbon. Int J Environ Sci Technol 7(4):751–758
Zurück zum Zitat Peng F, Sun R-C (2010) Chapter 7.2—Modification of cereal straws as natural sorbents for removing metal ions from industrial waste water Cereal Straw as a Resource for Sustainable Biomaterials and Biofuels. Elsevier, Amsterdam, pp 219–237 Peng F, Sun R-C (2010) Chapter 7.2—Modification of cereal straws as natural sorbents for removing metal ions from industrial waste water Cereal Straw as a Resource for Sustainable Biomaterials and Biofuels. Elsevier, Amsterdam, pp 219–237
Zurück zum Zitat Pereira FV, Gurgel LVA, Gil LF (2010) Removal of Zn2+ from aqueous single metal solutions and electroplating wastewater with wood sawdust and sugarcane bagasse modified with EDTA dianhydride (EDTAD). J Hazard Mater 176(1–3):856–863 Pereira FV, Gurgel LVA, Gil LF (2010) Removal of Zn2+ from aqueous single metal solutions and electroplating wastewater with wood sawdust and sugarcane bagasse modified with EDTA dianhydride (EDTAD). J Hazard Mater 176(1–3):856–863
Zurück zum Zitat Prasad AD, Abdullah MA (2009) Biosorption of Fe (II) from aqueous solution using Tamarind Bark and potato peel waste: equilibrium and kinetic studies. J Appl Sci Environ Sanit 4(3):273–282 Prasad AD, Abdullah MA (2009) Biosorption of Fe (II) from aqueous solution using Tamarind Bark and potato peel waste: equilibrium and kinetic studies. J Appl Sci Environ Sanit 4(3):273–282
Zurück zum Zitat Qiu H, Lv L, Pan BC, Zhang QJ, Zhang WM, Zhang QX (2009) Critical review in adsorption kinetic models. J Zhejiang Univ Sci A 10(5):716–724 Qiu H, Lv L, Pan BC, Zhang QJ, Zhang WM, Zhang QX (2009) Critical review in adsorption kinetic models. J Zhejiang Univ Sci A 10(5):716–724
Zurück zum Zitat Radzi bin Abas M, Oros DR, Simoneit BR (2004) Biomass burning as the main source of organic aerosol particulate matter in Malaysia during haze episodes. Chemosphere 55(8):1089–1095 Radzi bin Abas M, Oros DR, Simoneit BR (2004) Biomass burning as the main source of organic aerosol particulate matter in Malaysia during haze episodes. Chemosphere 55(8):1089–1095
Zurück zum Zitat Rafatullah M, Sulaiman O, Hashim R, Ahmad A (2010) Adsorption of methylene blue on low-cost adsorbents: a review. J Hazard Mater 177(1):70–80 Rafatullah M, Sulaiman O, Hashim R, Ahmad A (2010) Adsorption of methylene blue on low-cost adsorbents: a review. J Hazard Mater 177(1):70–80
Zurück zum Zitat Rafatullah M, Ahmad T, Ghazali A, Sulaiman O, Danish M, Hashim R (2013) Oil palm biomass as a precursor of activated carbons: a review. Crit Rev Environ Sci Technol 43(11):1117–1161 Rafatullah M, Ahmad T, Ghazali A, Sulaiman O, Danish M, Hashim R (2013) Oil palm biomass as a precursor of activated carbons: a review. Crit Rev Environ Sci Technol 43(11):1117–1161
Zurück zum Zitat Rahman M, Awang M, Mohosina B, Kamaruzzaman B, Nik W, Adnan C (2012) Waste palm shell converted to high efficient activated carbon by chemical activation method and its adsorption capacity tested by water filtration. APCBEE Procedia 1:293–298 Rahman M, Awang M, Mohosina B, Kamaruzzaman B, Nik W, Adnan C (2012) Waste palm shell converted to high efficient activated carbon by chemical activation method and its adsorption capacity tested by water filtration. APCBEE Procedia 1:293–298
Zurück zum Zitat Rao RA, Rehman F (2010) Adsorption studies on fruits of Gular (Ficus glomerata): removal of Cr(VI) from synthetic wastewater. J Hazard Mater 181(1):405–412 Rao RA, Rehman F (2010) Adsorption studies on fruits of Gular (Ficus glomerata): removal of Cr(VI) from synthetic wastewater. J Hazard Mater 181(1):405–412
Zurück zum Zitat Razmovski R, Šćiban M (2008) Biosorption of Cr (VI) and Cu (II) by waste tea fungal biomass. Ecol Eng 34(2):179–186 Razmovski R, Šćiban M (2008) Biosorption of Cr (VI) and Cu (II) by waste tea fungal biomass. Ecol Eng 34(2):179–186
Zurück zum Zitat Reddy D, Harinath Y, Seshaiah K, Reddy A (2010) Biosorption of Pb(II) from aqueous solutions using chemically modified Moringa oleifera tree leaves. Chem Eng J 162(2):626–634 Reddy D, Harinath Y, Seshaiah K, Reddy A (2010) Biosorption of Pb(II) from aqueous solutions using chemically modified Moringa oleifera tree leaves. Chem Eng J 162(2):626–634
Zurück zum Zitat Reddy D, Ramana D, Seshaiah K, Reddy A (2011) Biosorption of Ni(II) from aqueous phase by Moringa oleifera bark, a low cost biosorbent. Desalination 268(1):150–157 Reddy D, Ramana D, Seshaiah K, Reddy A (2011) Biosorption of Ni(II) from aqueous phase by Moringa oleifera bark, a low cost biosorbent. Desalination 268(1):150–157
Zurück zum Zitat Rupani PF, Singh RP, Ibrahim MH, Esa N (2010) Review of current palm oil mill effluent (POME) treatment methods: vermicomposting as a sustainable practice. World Appl Sci J 11(1):70–81 Rupani PF, Singh RP, Ibrahim MH, Esa N (2010) Review of current palm oil mill effluent (POME) treatment methods: vermicomposting as a sustainable practice. World Appl Sci J 11(1):70–81
Zurück zum Zitat Saeed A, Akhter MW, Iqbal M (2005) Removal and recovery of heavy metals from aqueous solution using papaya wood as a new biosorbent. Sep Purif Technol 45(1):25–31 Saeed A, Akhter MW, Iqbal M (2005) Removal and recovery of heavy metals from aqueous solution using papaya wood as a new biosorbent. Sep Purif Technol 45(1):25–31
Zurück zum Zitat Saeed A, Iqbal M, Höll WH (2009) Kinetics, equilibrium and mechanism of Cd2+ removal from aqueous solution by mungbean husk. J Hazard Mater 168(2):1467–1475 Saeed A, Iqbal M, Höll WH (2009) Kinetics, equilibrium and mechanism of Cd2+ removal from aqueous solution by mungbean husk. J Hazard Mater 168(2):1467–1475
Zurück zum Zitat Saifuddin MN, Kumaran P (2005) Removal of heavy metal from industrial wastewater using chitosan coated oil palm shell charcoal. Electron J Biotechnol 8(1):43–53 Saifuddin MN, Kumaran P (2005) Removal of heavy metal from industrial wastewater using chitosan coated oil palm shell charcoal. Electron J Biotechnol 8(1):43–53
Zurück zum Zitat Salamatinia B, Zinatizadeh AA, Razali N, Abdullah AZ (2006) Chemical pre-treatments of oil palm frond for improvement in the removal of zn and cu from wastewater by sorption process. Paper presented at the 1st international conference on natural resources engineering and technology 2006, Putrajaya, Malaysia Salamatinia B, Zinatizadeh AA, Razali N, Abdullah AZ (2006) Chemical pre-treatments of oil palm frond for improvement in the removal of zn and cu from wastewater by sorption process. Paper presented at the 1st international conference on natural resources engineering and technology 2006, Putrajaya, Malaysia
Zurück zum Zitat Salamatinia B, Kamaruddin A, Abdullah A (2007) Removal of Zn and Cu from wastewater by sorption on oil palm tree-derived biomasses. J Appl Sci 7(15):2020–2027 Salamatinia B, Kamaruddin A, Abdullah A (2007) Removal of Zn and Cu from wastewater by sorption on oil palm tree-derived biomasses. J Appl Sci 7(15):2020–2027
Zurück zum Zitat Salleh MAM, Mahmoud DK, Karim WAWA, Idris A (2011) Cationic and anionic dye adsorption by agricultural solid wastes: a comprehensive review. Desalination 280(1):1–13 Salleh MAM, Mahmoud DK, Karim WAWA, Idris A (2011) Cationic and anionic dye adsorption by agricultural solid wastes: a comprehensive review. Desalination 280(1):1–13
Zurück zum Zitat Sankararamakrishnan N, Sharma AK, Sanghi R (2007) Novel chitosan derivative for the removal of cadmium in the presence of cyanide from electroplating wastewater. J Hazard Mater 148(1–2):353–359 Sankararamakrishnan N, Sharma AK, Sanghi R (2007) Novel chitosan derivative for the removal of cadmium in the presence of cyanide from electroplating wastewater. J Hazard Mater 148(1–2):353–359
Zurück zum Zitat Sekomo CB, Rousseau DP, Saleh SA, Lens PN (2012) Heavy metal removal in duckweed and algae ponds as a polishing step for textile wastewater treatment. Ecol Eng 44:102–110 Sekomo CB, Rousseau DP, Saleh SA, Lens PN (2012) Heavy metal removal in duckweed and algae ponds as a polishing step for textile wastewater treatment. Ecol Eng 44:102–110
Zurück zum Zitat Sheibani A, Shishehbor MR, Alaei H (2012) Removal of Fe (III) ions from aqueous solution by hazelnut hull as an adsorbent. Int J Ind Chem 3(1):1–3 Sheibani A, Shishehbor MR, Alaei H (2012) Removal of Fe (III) ions from aqueous solution by hazelnut hull as an adsorbent. Int J Ind Chem 3(1):1–3
Zurück zum Zitat Silva AM, Cruz FLS, Lima RMF, Teixeira MC, Leão VA (2010) Manganese and limestone interactions during mine water treatment. J Hazard Mater 181(1–3):514–520 Silva AM, Cruz FLS, Lima RMF, Teixeira MC, Leão VA (2010) Manganese and limestone interactions during mine water treatment. J Hazard Mater 181(1–3):514–520
Zurück zum Zitat Singh TS, Pant K (2004) Equilibrium, kinetics and thermodynamic studies for adsorption of As (III) on activated alumina. Sep Purif Technol 36(2):139–147 Singh TS, Pant K (2004) Equilibrium, kinetics and thermodynamic studies for adsorption of As (III) on activated alumina. Sep Purif Technol 36(2):139–147
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Metadaten
Titel
Oil Palm Biomass as an Adsorbent for Heavy Metals
verfasst von
Mohammadtaghi Vakili
Mohd Rafatullah
Mahamad Hakimi Ibrahim
Ahmad Zuhairi Abdullah
Babak Salamatinia
Zahra Gholami
Copyright-Jahr
2014
DOI
https://doi.org/10.1007/978-3-319-06746-9_3