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Adsorption

High-efficiency remediation of cadmium (Cd2+) from aqueous solution using poultry manure– and farmyard manure–derived biochars

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Pages 2307-2317 | Received 22 Feb 2016, Accepted 20 Jun 2016, Published online: 18 Aug 2016

References

  • Mohan, D.; Pittman, C.U.; Bricka, M.; Smith, F.; Yancey, B.; Mohammad, J.; Gong, H. (2007) Sorption of arsenic, cadmium, and lead by chars produced from fast pyrolysis of wood and bark during bio-oil production. Journal of Colloid and Interface Science, 310 (1): 57–73.
  • Akbal, F.; Camcı, S. (2011) Copper, chromium and nickel removal from metal plating wastewater by electrocoagulation. Desalination, 269 (1): 214–222.
  • Boudrahem, F.; Soualah, A.; Aissani-Benissad, F. (2011) Pb (II) and Cd (II) removal from aqueous solutions using activated carbon developed from coffee residue activated with phosphoric acid and zinc chloride. Journal of Chemical and Engineering Data, 56 (5): 1946–1955.
  • Malamis, S.; Katsou, E.; Haralambous, K.J. (2011) Study of Ni (II), Cu (II), Pb (II), and Zn (II) removal using sludge and minerals followed by MF/UF. Water, Air, & Soil Pollution, 218 (1–4): 81–92.
  • Shah, B.A.; Shah, A.V.; Singh, R.R. (2009) Sorption isotherms and kinetics of chromium uptake from wastewater using natural sorbent material. International Journal of Environmental Science and Technology, 6 (1): 77–90.
  • Rahmani, K.; Mahvi, A.H.; Vaezi, F.; Mesdaghinia, A.R.; Nabizade, R.; Nazmara, S. (2009) Bioremoval of lead by use of waste activated sludge. Inernational Journal of Environmental Research, 3 (3): 471–476.
  • Sharma, Y.C.; Upadhyay, U.M.A.S.N.; Gode, F. (2009) Adsorptive removal of a basic dye from water and wastewater by activated carbon. Journal of Applied Science in Environmental Sanitation, 4: 21–24.
  • Lehmann, J. (2009) Terra preta Nova–where to from here? In Amazonian Dark Earths: Wim Sombroek’s Vision (pp. 473–486). Springer: Netherlands.
  • Lehmann, J.; Joseph, S. (2009) Biochar for Environmental Management: Science and Technology; Earthscan: London, UK.
  • Chen, B.; Zhou, D.; Zhu, L. (2008) Transitional adsorption and partition of nonpolar and polar aromatic contaminants by biochars of pine needles with different pyrolytic temperatures. Environmental Science and Technology, 42 (14): 5137–5143.
  • Cao, X.; Ma, L.; Gao, B.; Harris, W. (2009) Dairy-manure derived biochar effectively sorbs lead and atrazine. Environmental Science and Technology, 43 (9):3285–3291.
  • Beesley, L.; Marmiroli, M. (2011) The immobilisation and retention of soluble arsenic, cadmium and zinc by biochar. Environmental Pollution, 159 (2): 474–480.
  • Uchimiya, M.; Chang, S.; Klasson, K.T. (2011) Screening biochars for heavy metal retention in soil: role of oxygen functional groups. Journal of Hazardous Materials, 190 (1): 432–441.
  • Uchimiya, M.; Lima, I.M.; Thomas Klasson, K.; Chang, S.; Wartelle, L.H.; Rodgers, J.E. (2010) Immobilization of heavy metal ions (CuII, CdII, NiII, and PbII) by broiler litter-derived biochars in water and soil. Journal of Agricultural and Food Chemistry, 58 (9): 5538–5544.
  • Chen, B., Chen, Z.; Lv, S. (2011) A novel magnetic biochar efficiently sorbs organic pollutants and phosphate. Bioresource Technology, 102 (2): 716–723.
  • Tang, J.; Zhu, W.; Kookana, R.; Katayama, A. (2013) Characteristics of biochar and its application in remediation of contaminated soil. Journal of Bioscience and Bioengineering, 116 (6): 653–659.
  • Xu, X.; Cao, X.; Zhao, L. (2013) Comparison of rice husk-and dairy manure-derived biochars for simultaneously removing heavy metals from aqueous solutions: role of mineral components in biochars. Chemosphere, 9 2 (8): 955–961.
  • Meng, L.L.; Zhang, X.F.; Tang, Y.S.; Su, K.H.; Kong, J. (2015) Hierarchically porous silicon–carbon–nitrogen hybrid materials towards highly efficient and selective adsorption of organic dyes. Scientific Reports, 5: 7910.
  • Zhao, W.; Tang, Y.; Xi, J.; Kong, J. (2015) Functionalized graphene sheets with poly (ionic liquid) s and high adsorption capacity of anionic dyes. Applied Surface Science, 326: 276–284.
  • Chen, F.; Zhang, J.; Wang, M.; Kong, J. (2015) Magnetic molecularly imprinted polymers synthesized by surface‐initiated reversible addition‐fragmentation chain transfer polymerization for the enrichment and determination of synthetic estrogens in aqueous solution. Journal of Separation Science, 38 (15): 2670–2676.
  • Mi, H.; Jiang, Z.; Kong, J. (2013) Hydrophobic poly (ionic liquid) for highly effective separation of methyl blue and chromium ions from water. Polymers, 5 (4): 1203–1214.
  • Chen, X.; Chen, G.; Chen, L.; Chen, Y.; Lehmann, J.; McBride, M.B.; Hay, A.G. (2011) Adsorption of copper and zinc by biochars produced from pyrolysis of hardwood and corn straw in aqueous solution. Bioresource Technology, 102 (19): 8877–8884.
  • Kim, W.K.; Shim, T.; Kim, Y.S.; Hyun, S.; Ryu, C.; Park, Y.K.; Jung, J. (2013) Characterization of cadmium removal from aqueous solution by biochar produced from a giant Miscanthus at different pyrolytic temperatures. Bioresource Technology, 138: 266–270.
  • Aad, G.; Abajyan, T.; Abbott, B.; Abdallah, J.; Khalek, S.A.; Abdinov, O.; Abramowicz, H. (2014) Electron reconstruction and identification efficiency measurements with the ATLAS detector using the 2011 LHC proton–proton collision data. The European Physical Journal C, 74 (7): 1–38.
  • Song, W.; Guo, M. (2012) Quality variations of poultry litter biochar generated at different pyrolysis temperatures. Journal of Analytical and Applied Pyrolysis, 94: 138–145.
  • Meena, A.K.; Mishra, G.K.; Rai, P.K.; Rajagopal, C.; Nagar, P.N. (2005) Removal of heavy metal ions from aqueous solutions using carbon aerogel as an adsorbent. Journal of Hazardous Materials, 122 (1):161–170.
  • El-Said, A.G.; Badawy, N.A.; Garamon, S.E. (2010) Adsorption of Cadmium(II)and Mercury (II) ions onto natural adsorbent rice husk ash (RHA) from aqueous solutions: Study in single and binary system. Journal of American Science, 6 (12): 400–409.
  • Üçer, A.; Uyanik, A.; Aygün, Ş.F. (2006) Adsorption of Cu (II), Cd (II), Zn (II), Mn (II) and Fe (III) ions by tannic acid immobilised activated carbon. Separation and Purification Technology, 47(3): 113–118.
  • Orhan, Y.; Büyükgüngör, H. (1993) The removal of heavy metals by using agricultural wastes. Water Science and Technology, 28 (2): 247–255.
  • Ecboon, P.; Sanupan, P.; Umpuch, C. (2010) Removal of Cd2+ Ions from Aqueous Solution by Adsorption using Montmorillonite, Journal of Hazardous Materials, 82: 55–63.
  • Odoemelam, S.A.; Onwu, F.K.; Sonde, C.U.; Chinedu, M.A. (2014). Adsorption kinetics of Cd (ll) and Pb (ll) ions from aqueous solutions by bamboo-based activated charcoal and bamboo dust. Orbital-The Electronic Journal of Chemistry, 6 (4): 223–232.
  • Cui, L.; Yan, J.; Li, L.; Quan, G.; Ding, C.; Chen, T.; Hussain, Q. (2014) Does Biochar Alter the Speciation of Cd and Pb in Aqueous Solution? BioResources, 10 (1): 88–104.
  • Baig, T.H.; Garcia, A.E.; Tiemann, K.J.; Gardea-Torresdey, J.L. (1999, May) Adsorption of heavy metal ions by the biomass of Solanum elaeagnifolium (Silverleaf night-shade). In Proceedings of the 1999 Conference on Hazardous Waste Research, 131–142.
  • Kumar, U.; Bandyopadhyay, M. (2006) Sorption of cadmium from aqueous solution using pretreated rice husk. Bioresource Technology, 97 (1): 104–109.
  • Atkins P.W. (1990) Physical Chemistry, 4th Ed.; Oxford University Press: London; pp. 884–890.
  • Chen, M.; Cui, Y.; Bai, F.; Wang, J. (2013) Effect of two biogas residues’ application on copper and zinc fractionation and release in different soils. Journal of Environmental Sciences, 25 (9): 1865–1873.
  • Zhang, D.; Wang, J.; Pan, X. (2006) Cadmium sorption by EPSs produced by anaerobic sludge under sulfate-reducing conditions. Journal of Hazardous Materials, 138 (3): 589–593.
  • Kong, J.; Wang, M.; Zou, J.; An, L. (2015) Soluble and meltable hyperbranched polyborosilazanes toward high-temperature stable SiBCN ceramics. ACS Applied Materials and Interfaces, 7 (12): 6733–6744.
  • Yung, K. L.; Kong, J.; Xu, Y. (2007) Studies on flow behaviors of polymer melts in nanochannels by wetting actions. Polymer, 48 (26): 7645–7652.
  • Kong, J.; Xu, Y.; Yung, K.L.; Xie, Y.; He, L. (2008) Enhanced polymer melts flow though nanoscale channels under vibration. The Journal of Physical Chemistry C, 11 3 (2): 624–629.
  • Kong, J.; Kong, M.; Zhang, X.; Chen, L.; An, L. (2013) Magnetoceramics from the bulk pyrolysis of polysilazane cross-linked by polyferrocenylcarbosilanes with hyperbranched topology. ACS Applied Materials and Interfaces, 5 (20): 10367–10375.
  • Zhang, F.; Wang, X.; Yin, D.; Peng, B.; Tan, C.; Liu, Y.; Wu, S. (2015) Efficiency and mechanisms of Cd removal from aqueous solution by biochar derived from water hyacinth (Eichornia crassipes). Journal of Environmental Management, 153, 68–73.

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