박사

중금속 흡착 및 고정화 향상을 위한 활성탄 기반 흡착제 및 바이오차의 적용 = Application of Activated Carbon-based Adsorbents and Biochars for the Improvement of Adsorption and Immobilization of Heavy Metals

이명은 2016년
논문상세정보
' 중금속 흡착 및 고정화 향상을 위한 활성탄 기반 흡착제 및 바이오차의 적용 = Application of Activated Carbon-based Adsorbents and Biochars for the Improvement of Adsorption and Immobilization of Heavy Metals' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Adsorbents
  • Adsorption
  • Heavy metal-contaminated environment
  • Remediation
  • biochars
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' 중금속 흡착 및 고정화 향상을 위한 활성탄 기반 흡착제 및 바이오차의 적용 = Application of Activated Carbon-based Adsorbents and Biochars for the Improvement of Adsorption and Immobilization of Heavy Metals' 의 참고문헌

  • 박사
  • 박사
  • “활성탄필터의 흡착특성 및 정수기의 오염물질 제거 성능에 관한 연구”
    백영만 금오공과대학교, 박사학위논문 [2008]
  • “토양세척기법과 초음파추출기법을 이용한 중금속 오염토양 처리”
    황선숙 건국대학교, 박사학위논문 [2004]
  • 박사
  • 박사
  • Zou, X.J., Cui, Y.M., Chang, X.J., Zhu, X.B., Hu, Z., Yang, D., 2009, “Silica gel surface modi-fied with sulfanilamide for selective solid-phase extraction of Cu(II), Zn(II) and Ni(II)”, Int. J. Environ. Anal. Chem. Vol.89, pp. 1043–1055.
  • Zou, W., Runping Han, Zongzhang Chen, Jie Shi, Hongmin, 2006, “Characterization and Properties of Manganese Oxide Coated Zeolite as Adsorbent for Removal of Copper(II) and Lead(II) Ions from Solution”, J. Chem. Eng. Data, Vol. 51, No. 2, pp. 534–541.
  • Zou, W., Han, R., Chen, Z, Jinghua, Z. and Shi, J., “Kinetic study of adsorption of Cu(II) and Pb(II) from aqueous solutions using manganese oxide coated zeolite in batch mode,” Colloid. Surf. A: Physicochem. Eng. Aspects, 279, 238~246(2006).
  • Zhou, Li., Gao, C., Xu, W., 2010, “Magnetic Dendritic Materials for Highly Efficient Adsorption of Dyes and Drugs”, Vol. 2, No. 5, pp. 1483-1491.
  • Zhou, L.M., Wang, Y.P., Liu, Z.R., Huang, Q.W., 2009, “Characteristics of equilibrium, kinetics studies for adsorption of Hg(II), Cu(II), and Ni(II) ions by thiourea-modified magnetic chitosan microspheres”, J. Hazard. Mater. Vol. 161, pp. 995–1002.
  • Zhou LX and Wong JWC, 2001, “Effect of dissolved organic matter from sludge and sludge compost on soil copper sorption”, J Environ Qual, Vol. 30, pp. 878–83.
  • Zheng, H., Wang, Z., Deng, X., Herbert, S., Xing, B., 2013, “Impac.ts of adding biochar on nitrogen retention and bioavailability in agricultural soil”, Geoderma, Vol. 206, p. 32-39.
  • Zhao, X.W., Song, N.Z., Jia, Q., Zhou, W.H., 2009, “Determination of Cu, Zn, Mn, and Pb by microcolumn packed with multiwalled carbon nanotubes on-line coupled with flame atomic absorption spectrometry”, Microchim. Acta Vol. 166, pp.329–335.
  • Zhao XL and Masaihiko S., 2007, “Amelioration of cadmium polluted paddy soils by porous hydrated calcium silicate”. Water Air Soil Pollut, Vol. 183, pp. 309–15.
  • Zhao X., Zhang G., Jia Q., Zhao C., Zhou W., Li W., 2011, “Adsorption of Cu(II), Pb(II), Co(II), Ni(II), and Cd(II) from aqueous solution by poly(aryl ether ketone) containing pendant carboxyl groups (PEK-L): Equilibrium, kinetics, and thermodynamics,”Chemical Engineering Journal, Vol. 171, No. 1, pp. 152-158.
  • Zhang, Z., Wang, X., Wang, Y., Xia, S., Chen, L,, Zhang, Y., Zhao, J., 2013, “Pb(II) removal from water using Fe-coated bamboo charcoal with the assistance of microwaves”, Journal of Environmental Sciences, Vol. 25 No.5, 1044–1053.
  • Zhang, Y., Hu, Y., Li, S., Sun, J. and Hou, B., 2011, “Manganese dioxide-coated carbon nanotubes as an improved cathodic catalystfor oxygen reduction in a microbial fuel cell,” J. Power Sources, Vol. 196, pp. 9284~9289.
  • Zhang, X., Wang, H., He, L., Lu, K., Sarmah, A., Li, J., Bolan, N.S., Pei, J., Huang, H., 2003, “Using biochar for remediation of soils contaminated with heavy metals and organic pollutants”. Environ. Sci. Pollut. Res., Vol.20, pp. 8472-8483.
  • Zhang, A., L. Cui, G. Pan, L. Li, Q. Hussain, X. Zhang, J. Zheng, and D. Crowley. 2010, “Effect of biochar amendment on yield and methane and nitrous oxide emissions from a rice paddy from Tai Lake plain, China. Agriculture”, Ecosystems and Environment Vol. 139, pp. 469-475.
  • Yuan, J. H., and R.K. Xu. 2011, “The amelioration effects of low temperature biochar generated from ninecrop residueson an acidic Ultisol”, Soil Useand Management 27:110-115.
  • Yuan, J. H., Xu, R. K., Zhang, H. 2011, “The forms of alkalis in the biochar produced from crop residues at different temperatures”, Bioresource Technology, Vol. 102, pp. 3488–3497.
  • Yu, B., Zhang, Y., Shukla, A., Shukla, S.S., Dorris, K.L., 2000, “The removal of heavy metal from aqueous solutions by sawdust adsorption-removal of copper”, Journal of Hazardous Materials Part Vol. B 80, pp. 33–42.
  • Yong, R.N., Mohamed, A.M.O, Warkentin, B.P.. 1992, “Principles of contaminant transport in soil”,. developments in geotech. eng., Vol. 73, pp. 327.
  • Wu,F. Juang, R., 2009, “Initial behavior of intraparticle diffusion model used in the description of adsorption kinetics”, Chemical Engineering Journal, Vol. 153, No.1-3, pp. 1-8.
  • Wu, N., Wei, H., Zhang, L., 2012, "Efficient removal of heavy metals ions with biopolymer template synthesized mesoporous titania beads of hundreds of micrometers size", Environ Sci technol, Vol. 46, pp. 419-425.
  • Wridzer J. W Bakker, Freek Kapteijn, Jacob A Moulijn, 2003, “A high capacity manganese-based sorbent for regenerative high temperature desulfurization with direct sulfur production: Conceptual process application to coal gas cleaning”, Vol. 96, No. 1-3, pp. 223-235.
  • Wong JWC, Li KL, Zhou LX, and Selvam A, 2007, “The sorption of Cd and Zn by different soils in the presence of dissolved organic matter from sludge”, Geoderma Vol. 137, pp. 310–7.
  • Weber, J. and Miller, C. T., 1989, “Organic chemical movement over and through soil,” In Sawhney, B. L., Brown, K.(ed). Reactions and movement of organic chemical, Soil Science Society of America and American Society of Agronomy, pp. 305~334.
  • Wang, S., Gong, W., Liu, X., Yao, Y., Gao, B., Yue, Q., 2007, “Removal of lead(II) from aqueous solution by adsorption onto manganese oxide-coated carbon nanotubes,”Separation and Purification Technology, 58, 17~23.
  • Wang, S., Chen, W., LI, S., Yang, S., Chai, C., 2007, “Expression of human telomerase reverse transcriptase and cyclin-D1 in olfactory neuroblastoma”, Vol. 115, No. 1, pp. 17-21.
  • Wang, J., Zheng, H., Luo, Y., Deng, X., Herbert, S., Xing, B., 2013, “Characterization and influence of biochars on nitrous oxide emission from agricultural soil”, Environmental pollution, Vol. 174, p. 289-296.
  • Wang, J., Qiu, B., Han, L., Feng, G., Hu, Y., Chang, L., Bao, W., 2012 “Effect of precursor and preparation method on manganese based activated carbon sorbents for removing H2S from hot coal gas”, Vol. 213-214, No. 30, pp. 184-192.
  • W.J. Weber Jr., 1972, “Physico-chemical processes for water quality control, Wiley Interscience”, New York
  • Unuabonah, E.I., El-Khaiary, M.I., Olu-Owolabi, B.I., Adebowale, K.O., 2012, “Predicting the dynamics and performance of a polymer-clay based composite in a fixed bed system for the removal of lead(II) ion”, chemical engineering research and design, Vol. 90, pp. 1105–1115.
  • Unuabonah, E.I., Adebowale, K.O., Olu-Owolabi, B.I., 2007, “Kinetic and thermodynamic studies of the adsorption of lead (II) ions onto phosphate-modified kaolinite clay”, Journal of Hazardous Materials, Vol. 144, No. 1–2, pp. 386–395.
  • Unlu, N., Ersoz, M., 2006, “Adsorption characteristics of heavy metal ions onto a low cost biopolymeric sorbent from aqueous solution”, J. Hazard. Mater., Vol. 136, pp. 272~280.
  • Uchimiya M, Lima IM, Klasson KT, Chang SC, Wartelle LH, and Rodgers JE, 2010, “Immobilization of heavy metals ions (CuII, CdII, NiII, and PbII) by broiler litter-derived biochars in water and soil”. J Agric Food Chem 58, 5538–44.
  • Tu, Z.F., He, Q., Chang, X.J., Hu, Z., Gao, R., Zhang, L.N., Li, Z.H., 2009, “ 1-(2-Formamidoethyl)-3-phenylurea functionalized activated carbon for selective solid-phase extraction and preconcentration of metal ions”, Anal. Chim. Acta Vol. 649, pp. 252–257.
  • Trivett Vaughan, Chug W. Seo, Wayne. Marshall, 2001, “Removal of selected metal ions from aqueous solution using modified corncobs”, Bioresource Technology, Vol. 78, No, 2, pp. 133-139
  • Tiwari, D., Laldanwngliana, C., Choi, C., Lee, S.M., 2011, “Manganese-modified natural sand in the remediation of aquatic environment contaminated with heavy metal toxic ions”, Vol. 171, No. 3, pp. 958-966.
  • Thomas, W. J., Crittenden, B. D., 1998, “Adsorption technology and design”, Oxford Boston Butterworth-Heinemann.
  • Teng, S., Wang, S., Gong, W., Liu, X. and Gao, B., 2009, “Removal of fluoride by hydrous manganese oxide-coated alumina : erformance and mechanism,” J. Hazard. Mater., 168, 1004~1011(2009).
  • Teng, F., Santhanagopalan S. and Meng, D. D., 2010, “Microstructure control of MnO2/CNT hybrids under in-situ hydrothermal conditions,” Solid State Sci., 12, 1677~1682.
  • Tchobanoglous, G., Burton, F.L., Stensel, H.D., 2003, “Wastewater Engineering, Treatment and Reuse, Metcalf and Teddy”, McGraw Hill 1819 USA,
  • Taty-Costodes, V.C., Fauduet, H., Porte, C., Delacroixs, A., 2003 “Removal of Cd (II) and Pb(II) ions from aqueous solutions by adsorption onto sawdust of Pinus Sylvestris.” Journal of Hazardous Materials 105 (1-3), 121–142.
  • Taty-Costodes VC, Fauduet H, Porte C, Ho YS., 2005, “Removal of lead (II) ions from synthetic and real effluents using immobilized Pinus sylvestris sawdust: adsorption on a fixed-bed column”,J. Hazard. Mater. Vol. 123, No. 1-3, pp. 135-144.
  • Tang, J., Zhu, W., Kookana, R., and Katayama, A. (2013). “Characteristics of biochar and application remediation of contaminated soil”, Journal of Bioscience and Bioengineering, Vol. 116, p. 653-659.
  • Silva, E.L., Martins, A.O., Valentini, A., Favere, V.T., Carasek, E., 2004, “Application of silica gel organofunctionalized with 3(1-imidazolyl)propyl in an on-line preconcentration system for the determination of copper by FAAS”, Talanta Vol. 64, pp. 181–189.
  • Shawabkeh, R., Al-Harahsheh, A., Al-Otoom, A., 2004, “Copper and zinc sorption by treated oil shale ash”, Sep. Purif. Technol. Vol. 40 pp. 251–257.
  • Shahbazi, A., Younesi, H., Badiei, A., 2011, “Functionalized SBA-15 mesoporous silica by melamine-based dendrimer amines for adsorptive characteristics of Pb(II), Cu(II) and Cd(II) heavy metal ions in batch and fixed bed column”, Chemical Engineering Journal, Vol. 168, No. 2, pp. 505-518.
  • Seo, Y. C., Lee, H. J. and Kim, D. W., 2006, “Characteristics of heavy metals biosorption by penicillium biomass,” J. Kor. Soc. Environ. Anal., Vol. 9, pp. 49~-54.
  • Scheckel, K.G. and Ryan, J.A., 2003, “In vitro formation of pyromorphite via reaction of Pb sources with soft-drink phosphoric acid”, Science of the Total Environment, Vol. 302, pp. 253-265.
  • Sadrzadeha M, Mohammadi T, Ivakpour J, Kasiri N, 2009, “Neural network modelling of Pb2? removal from wastewater using electrodialysis”, Chem Eng Process Vol. 48, pp. 1371–1381
  • Ryan, J.A., Zhang, P., Hesterberg, D., Chou, J., Sayers, D.E., 2001, “Formation of chloropyromorphite in a lead-contaminated soil smended with hydroxyapatite”, Environmrntal Science and Technology, Vol. 35, No. 18, pp. 3798-3803.
  • Ryan, J. A., Zhang, P., Hesterberg, D., Chou, J. and Sayers, D. E., 2001, “Formation of chloropyromorphite in a lead-contaminated soil smended with hydroxyapatite”, Environmrntal Science and Technology, Vol. 35, pp. 3798-3803.
  • Ruthven, D. M., 1984, “Principle of adsroption and adsorption process,” John Wiley & Sons, U.S.A.
  • Ruby, M. V., Davis, A., & Nicholson, A., 1994, “In situ formation of lead phosphates in soils as a method to immobilize lead”, Environmental Science and Technology, Vol. 28, pp/ 646 – 654.
  • Rogovska, N., D. Laird, R. Cruse, P. Fleming, T. Parkin, and D. Meek. 2011, “Impact of Biocharon Manure Carbon Stabilization and Greenhouse Gas Emissions”. Soil Sci. Soc. Am. J. Vol. 75, pp. 871-879
  • Rivera-Utrillia, J., Sάnchez-Polo, M., Gόmez-Serrano, V., lvarez, P. M., Alvim-Ferraz, M. C. M. and Dias, J. M., 2011, “Activated carbon modifications to enhance its water treatment applications. An overview”, Journal of Hazardous Materials, Vol. 187, No. 1∼3, pp. 1∼23.
  • Richter, M., Berndt. H., Eckelt, R., Schneider M. and Fricke, R., 1999, “Zeolite-mediated removal of NOx by NH3 from exhaust streams at low temperatures,” Catal. Today, Vol. 54, pp. 531~545.
  • ReverchonE. and Adami, R., 2006, “Nanomaterials and supercritical fluids”, Vol. 37, No. 1, pp. 1-22.
  • Rao R.A.K, Ikram S., Ahmad J., 2011, “Adsorption of Pb(II) on a composite material prepared from polystyrene-alumina and activated carbon: kinetic and thermodynamic studies”. Journal of the Iranian Chemical Society, Vol. 8, No. 4, pp. 931–943.
  • Puls, R.W. and Bohn, H.L., 1988, “Sorption of cadmium, nickel and zinc by kaolinite and montmorillonite suspensions”, Soil Science Society of America Journal, Vol.52, No.5, pp.1289-1292.
  • Prasad, M.N.V., Freitas, H., 2000, “Removal of toxic metals from solution by leaf, stem and root phytomass of Quercus ilex L. (holly oak)”, Environmental Pollution Vol. 110, pp. 277–283
  • Pellera, F.-M., Giannis, A., Kalderis, D., Anastasiadou, K., Stegmann, R., Wang, J.-Y. and Gidarakos, E., 2012, “Adsorption of Cu(II) ions from aqueous solutions on biochars prepared from agricultural by-products”, Journal of Environmental Management, Vol. 96, No. 1, pp. 35-42.
  • Park, J.H., Lamb, D., Paneerselvam, P., Choppala, G., Bolan, N., Chung, J. W. 2011, “Role of organic amendments on enhanced bioremediation of heavy metal(loid) contaminated soils”, J. Hazard. Mater., Vol. 185, pp. 549-574.
  • Park, J.H., Bolan, N.S., Chung, J.W., Naidu, R., Megharaj, M., 2011, “Environmental monitoring of the role of phosphate compounds in enhancing immobilization and reducing bioavailability of lead in contaminated soils”, Journal of Environmental Monitoring, Vol. 13, pp. 2234-2242.
  • Park, H.G., Kim, T.W., Chae, M.Y., Yoo, I., 2007, “Activated Carbon-Containing Alginate Adsorbent for the Simultaneous Removal of Heavy Metals and Toxic Organics”, Vol. 42, No. 10, pp.1371-1377.
  • Pan, J.Y., Wang, S., Zhang, R.F., 2006, “A novel Pb(II)-imprinted IPN for selective preconcentration of lead from water and sediments”, Int. J. Environ. Anal. Chem., Vol. 86 pp. 855–865.
  • Padmesh T. V. N., Vijayaraghavan K., Sekaran G. and Velan M., 2005, “Batch and column studies on biosorption of acid dyes on fresh water macro alga Azolla filiculoides”, Journal of Hazardous Materials, Vol. 125, No. 1-3, pp. 121~129.
  • P rez-Esteban J, Escol stico C, Masaguer A, Vargas C, and Moliner A., 2014, “Soluble organic carbon and pH of organic amendments affect metal mobility and chemical speciation in mine soils”, Chemosphere, Vol. 103, pp. 164–171.
  • Ok, Y.S., Yang, J.E., Zhang,, Y.S., Kim, S.J. and Chung, D.Y., 2007, “Heavy metal adsorption by a formulated zeolite-Portland cement mixture,” J. Hazard. Mater., Vol. 147, No. 1-2, pp. 91~96 .
  • Ok, Y.S., Oh SE, Ahmad M, Hyun S, Kim KR, Moon DH et al., 2010, “Effects of natural and calcined oyster shells on Cd and Pb immobilization in contaminated soils”, Environ Earth Sci, Vol. 61, pp. 1301–1309.
  • Ok, Y.S., Kim, S.C., Kim, D.K., Skousen, J.G., Lee, J.S., Cheong, Y.W., Kim, S.J., Yang, J., 2011, “Ameliorants to immobilize Cd in rice paddy soils contaminated by abandoned metal mines in Korea Environ”, Geochem Hlth, Vol. 33, pp. 23–30 (2011)
  • Ok YS, Usman ARA, Lee SS, Abd El-Azzem SAM, Choi B, Hashimoto Y et al., 2011, “Effects of rapeseed residue on lead and cadmium availability and uptake by rice plants in heavy metal contaminated paddy soil”. Chemosphere, Vol. 85, pp. 677–82.
  • Ok YS, Lee SS, Jeon WT, Oh SE, Usman ARA, and Moon DH, 2011a, “Application of eggshell waste for the immobilization of cadmium and lead in a contaminated soil”, Environ Geochem Health, Vol. 33, pp. 31–9.
  • Novak JM, Lima I, Xing B, Gaskin JW, Steiner C, Das KC, Mohamed Ahmedna, Djaafar Rehrah, Donald W. Watts, Warren J. Busscher, Harry Schomberg, 2009, “Characterization of designer biochar produced at different temperatures and their effects on a loamy sand”, Annals of Environmental Science, Vol. 3, pp. 195–206.
  • Murthy ZV, Chaudhari LB. 2008, “Application of nanofiltration for the rejection of nickel ions from aqueous solutions and estimation of membrane transport parameters” Journal of hazardous materials, Vol. 160, No. 70–77.
  • Murray J., “The surface chemistry of hydrous manganese dioxide”. J Colloid Interface Sci., Vol. 1974, No. 46, pp. 357-71.
  • Mui, E. L. K., Cheung, W. H., Valix M. and McKay G., 2010, “Activated carbon from bamboo scaffolding using acid activation”, Separation and Purification Technology, Vol. 74, No. 2, pp. 213∼218.
  • Mugisidi, D., Ranaldo, A., Soedarsono, J.W., Hikam, M., 2007, “Modification of activated carbon using sodium acetate and its regeneration using sodium hydroxide for the adsorption of copper from aqueous solution”, Cabon, Vol. 45, No. 5, pp. 1081-1084.
  • Mohan, D. and Pittman Jr., C. U., 2006, “Activated carbons and low cost adsorbents for remediation of tri-and hexavalent chromium from water”, Journal of Hazardous Materials, Vol. 137, No. 2, pp. 762-811.
  • Mohan D., Singh K. P., 2002, “Single-and multi-component adsorption of cadmium and zinc using activated carbon derived from bagasse-an agricultural waste”, Water Research, Vol. 36, No. 9, pp. 2304-2318.
  • Mohan D, Sarswat A, Ok YS, and Pittman Jr CU, 2014, “Organic and inorganic contaminants removal from water with biochar, a renewable, low cost and sustainable adsorbent - A critical review”, Bioresour Technol., Vol. 160, pp. 191–202.
  • Mishra, P. C., Patel, R. K., 2009, "Removal of lead and zinc ions from water by low cost adsorbents", Journal of hazardous Material, Vol. 168, No. 1, pp. 319-325.
  • Min, S. H., 2004, "Development of surface modified wood filter media for removing toxic metal ions, Doctor of philosophy, University of wisconsin-madison.
  • Miller, W.P., Miller, M., 1987. “A micro pipette method for soil mechanical analysis”, Commun. Soil Sci. Plant Anal. Vol. 18, pp. 1-15.
  • Mcbride, M.B. 1989, “Reactions controlling heavy metal solubility in soils”, Advances in Soil Sciences, pp.1-56.
  • Martı n-Lara, M.A., , Bla zquez, G., Ronda, A., Rodrı guez, I.L., Calero, M., 2012 “Multiple biosorption–desorption cycles in a fixed-bed column for Pb(II) removal by acid-treated olive stone”, Journal of Industrial and Engineering Chemistry Vol. 18, No. 3, pp. 1006–1012.
  • Marrone, Philip A., Hong, Glenn T., Spritzer, Michael H.,“Developments in Supercritical Water as a Medium for Oxidation, Reforming, and Synthesis”, Vol. 10, No. 1, pp. 157-168(2007)
  • Ma, Y., Wang, S., Fan, M., Gong, W. and Gao, B., 2009, “Characteristics and defluoridation performance of granular activated carbons coated with manganese oxides”, Vol. 168, No. 2-3, pp. 1140-1146.
  • Lundh, M., J nsson, L., Dahlquist, J., 2000, “Experimental studies of the fluid dynamics in the separation zone in dissolved air flotation”, Water Research, Vol. 34, No. 1, pp. 21–30.
  • Lugo-Lugo, V., Herna ndez-Lo pez, S., Barrera-Dı az, F. Uren˜a-Nu n˜ez, C., Bilyeu, B., 2009, “A comparative study of natural, formaldehyde-treated and copolymer-grafted orange peel for Pb(II) adsorption under batch and continuous mode”, Journal of Hazardous Materials, Vol. 161, pp. 1255–1264.
  • Lu, K., Yang, X., Gielen, G., Bolan, N., Ok, Y.S., Niazi, N.K., Xu, S., Yuan, G., Chen, X., Zhang, X., Liu, D., Song, Z., Liu, X., Wang, H., 2016, “Effect of bamboo and rice straw biochars on the mobility and redistribution of heavy metals (Cd, Cu, Pb and Zn) in contaminated soil, Journal of Environmental Management, doi: 10.1016/j.jenvman.2016.05.068.
  • Liu, Z. and Zhang, F. S., 2009, “Removal of lead from water using biochars prepared from hydrothermal liquefaction of biomass”, Journal of Hazardous Materials, Vol. 167, No.1-3, pp. 933∼939.
  • Liu, Q.S., Zheng, T., Wang, P., Jiang, J.P., Li, N., 2010, “Adsorption isotherm, kinetic and mechanism studies of some substituted phenols on activated carbon fibers”, Chemical Engineering Journal, Vol. 157, No. 2–3, pp. 348–356.
  • Liu, Q.-S., Zheng, T., Li, N., Wang, P., Abulikemu G., 2010, “Modification of bamboo-based activated carbon using mirowave radiation and its effects on the adsorption of methylene blue”, Applied Surface Science, Vol. 256, No. 10, pp. 3309-3315.
  • Liu, Q.-S., Zheng, T., Li, N., Wang, P. and Abulikemu G., 2010, “Modification of bamboo-based activated carbon using mirowave radiation and its effects on the adsorption of methylene blue”, Applied Surface Science, Vol. 256, No. 10, pp. 3309-3315.
  • Liu, J.S. , Y. Ma, T.W. Xu, G.Q. Shao, Preparation of zwitterionic hybrid polymer and its application for the removal of heavy metal ions from water, J. Hazard. Mater. 178 (2010) 1021–1029.
  • Liu, D., Li, S., Islam, E., Chen, J.R., Wu, J.S., Ye, Z.Q., Peng, D.L., Yan, W.B., Lu, K.P., 2015, “Lead accumulation and tolerance of Moso bamboo (Phyllostachys pubescens) seedlings: applications of phytoremediation”, J. Zhejiang Univ.-Sc., Vol. B16, pp. 123-130.
  • Lindsay, W. L., 1979, “Chemical Equilibria in Soils”, New York: Wiley.
  • Liang, S., Teng F., Bulgan, G., Zong, R. and Zhu, Y., 2008, “Effect of Phase Structure of MnO2 Nanorod Catalyst on the Activity for CO Oxidation,” J. Phys. Chem., Vol. 112, pp. 5307~5315.
  • Li, Y.H., Wang, S.G., Wei, J.Q., Zhang, X.F., Xu, C.L., Luan, Z.K., Wu, D.H., Wei, B. Q., 2002, “Lead adsorption on caron nanotubes,” Chemical Physics Letters, 357, 263~266.
  • Li L.Y., and Li, F., 2001, “Heavy metal sorption and hydraulic conductuvity studies using three types of bentonite admixes”, Journal of Environmental Engineering, Vol. 127, No. 5, pp. 420-429.
  • Lei Li, Patricia A., Quinlivan, Knappe, D.R.U., 2002, “Effects of activated carbon surface chemistry and pore structure on the adsorption of organic contaminants from aqueous solution”, Vol. 40, No. 12, pp. 2085-2100.
  • Lehmann, J., 2007, “A handful of carbon”, Nature, Vol. 447, p. 143-144.
  • Lehmann J. and Joseph S., 2009, “Biochar for environmental management,science and technology”, Earthscan, London
  • Lee, S. J., Lee, M. and Chung, J.W., 2014, “Comparison of heavy metal adsorption by manganese oxide-coated activated carbon according to manufacture method”, Journal of Korean Society of Environmental Engineers, Vol. 36, No. 1, pp. 7∼12.
  • Lee, M.E., Lee, C.Y., Chung, J.W., 2014, “Adsorption characteristics of Pb(II) by manganese oxide coated activated carbon in fixed bed column study”, Journal of the Korean Geo-Environmental Society, 15(8), pp. 39-44.
  • Lee, M. E., Park, J. H., Chung, J. W., Lee C. Y. and Kang, S., 2015, “Removal of Pb and Cu ions from aqueous solution by Mn3O4-coated activated carbon”, Journal of Industrial and Engineering Chemistry, Vol. 21, No. 25 pp. 470–475.
  • Lee, J.A., Marsden, I.D., Glover, C.N., 2010, “The influence of salinity on copper accumulation and its toxic effects in estuarine animals with differing osmoregulatory strategies”, Aquat. Toxicol., Vol. 99, pp. 65–72.
  • Lee, I.J., 2004, “Effect of carbonization temperature on the surface structure and properties of wood charcoal”, Applied Chemistry, Vol. 8, pp. 442-445.
  • Landaburu-Aguirre, J., Garc a, V., Pongr cz, E., Keiski, R.L., 2009, “The removal of zinc from synthetic wastewaters by micellarenhanced ultrafiltration: statistical design of experiments”, Desalination, Vol. 240, No. 1-3, pp. 262–269.
  • Lamb, D.T., Naidu, R., Ming, H., Megharaj, M., 2012, “Copper phytotoxicity in native and agronomical plant species”, Ecotoxicol. Environ. Saf., Vol. 85, pp. 23–29.
  • Kumpiene, J, Lagerkvist, A., and Maurice, C., 2008, “Stabilization of As, Cr, Cu, Pb and Zn in soil using amendments - A review”, Waste Manag, Vol. 28, pp. 215–25.
  • Ku, Y., Jung, I.L., 2001, “Photocatalytic reduction of Cr(VI) in aqueous solutions by UV irradiation with the presence of titanium dioxide”. Water Res., Vol. 35, pp. 135–142.
  • Ko D.C.K., Porter J.F. and McKay G., 2000, “Optimised correlations for the fixed-bed adsorption of metal ions on bone char”, Chemical Engineering Science, Vol. 55, No. 23 pp. 5819~5829.
  • Kim, B. K., Lim, J. W., Chang, Y. Y. and Yang, J. K., 2008, “Comparison of the As(III) Oxidation Efficiency of the Manganese-coated Sand Prepared With Different Methods,” Kor. J. Soil Groundwater Environ., Vol. 13, No, 2, pp. 62~69.
  • Khodadoust, S., Ghaedi, M., Sahraei, R., Daneshfar, A., 2014, “Application of experimental design for removal of sunset yellow by copper sulfide nanoparticles loaded on activated carbon”, Journal of Industrial and Engineering Chemistry, Vol. 20, No. 25, pp. 2663-2670.
  • Khan S., Chao C., Waqas M., Arp, H.P.H, Zhu, Y.G., 2013, “Sewage sludge biochar influence upon rice (Oryza sativa L) yield, metal bioaccumulation and greenhouse gas emissions from acidic paddy soil”, Environ Sci Technol, Vol. 47, pp. 8624–32.
  • Kavitha, D., Namasivayam, C., 2007, “Experimental and kinetic studies on methylene blue adsorption by coir pith carbon”, Bioresource Technology, Vol. 98, No. 1, pp. 14–21.
  • Kamari, A., Yusoff, S.N.M., Abdullah, F., Putrra, W.P., 2014, “Biosorptive removal of Cu(II), Ni(II) and Pb(II) ions from aqueous solutions using coconut dregs residue: Adsorption and characterisation studies”, Journal of Environmental Chemical Engineering, Vol. 2 pp. 1912–1919.
  • Kalavathy, M.H., Karthikeyan, T., Rajgopal, S., Miranda, L.R., 2005, “Kinetic and isotherm studies of Cu(II) adsorption onto H3PO4-activated rubber wood sawdust”, Journal of Colloid and Interface Science, Vol. 292, No. 2, pp. 354–362.
  • Kalavathy, H., Karthik, B., Mirada, L.R., 2010, “Removal and recovery of Ni and Zn from aqueous solution using activated carbon from hevea brasiliensis: batch and column studies”, Colloids and Surfaces B: Biointerfaces, Vol. 78, No. 2, pp. 291-302.
  • Jo, T.S., Lee, O.K., Choi, J.W., Byun, J.K., 2008, “Adsorption of cadmium ion by wood charcoalprepared with Red oak (Quercus mongolica), Mokchae Konghak, Vol. 36, pp. 93-100.
  • Jo, T.S., Lee, O.K., Ahn, B.J., Choi, J.W., 2006, “Some physical properties and adsoptive behaviors of wood charcoal carbonized with domestic wood”, J. Kor. For. En. Vol. 25, pp. 9-17.
  • Jiang , M., Jin, X., Lu, X. Q. Chen, Z., 2010, “Adsortion of Pb(Ⅱ), Cd(Ⅱ), Ni(Ⅱ), and Cu(Ⅱ) onto natural kaolinite clay”, Dealination, Vol. 252, pp. 33-39.
  • Jeon, D.Y., Lee, K.S., Shin, H.H. and Oh, K.J., 2006, “Adsorption characteristics of heavy metals for waste sludge and oyster shell,” J. Environ. Sci. Soc., 15, 1053~1059.
  • J rup L., 2003, "Hazards of heavy metal contamination",British Medical Bulletin, Vol. 68No. 1, pp. 167-182.
  • Islam, A., Laskar, M.A., Ahmad, A., 2010, “Characterization of a novel chelating resin of enhanced hydrophilicity and its analytical utility for preconcentration of trace metal ions”, Talanta, Vol. 81, pp. 1772–1780.
  • Ioannidou, O. and Zabaniotou, A., 2007, “Agricultural residues as precursors for activated carbon production-a review”, Renewable and Sustainable Energy Reviews, Vol. 11, No. 9, pp. 1966∼2005.
  • Imamoglu, M. and Tekir, O., 2008, “Removal of copper(II) and lead(II) ions from aqueous solutions by adsorption on activated carbon from a new precursor hazelnut husks”, Desalnation, Vol. 228, No. 1∼3, pp. 108∼113.
  • Huang, C.Z., Jiang, Z.C., Hu, B., 2007, “Mesoporous titanium dioxide as a novel solidphase extraction material for flow injection micro-column preconcentration on-line coupled with ICP-OES determination of trace metals in environmental samples”, Talanta, Vol. 73 pp. 274–281.
  • Ho, Y.S., 2006, “Review of second-order models for adsorption systems”, Journal of Hazardous Materials, Vol. 136, pp. 681∼689.
  • Ho, Y.S., 2006, “Review of second-order models for adsorption systems”, Journal of Hazardous Materials, B136, pp. 681∼689.
  • Ho, Y.S. and McKay, G., 1999, “Pseudo-second order model for sorption processes”, Process Biochemistry, Vol. 34, No. 5, pp. 451∼465.
  • Hettiarachchi, G.M., and Pierzynski, G.M., 2004, “Soil Lead Bioavailability and in Situ Remediation of Lead-Contaminated Soils: A Review”, DOI: 10.1002/ep.10004
  • Hettiarachchi, G.M., Pierzynski, G.M., and Ransom, M.D., 2001, “In situ stabilization of soil lead using phosphorus”, Journal of Environmental Quality, Vol. 30, No. 4, 1214-1221.
  • Heidmann, I., Calmano, W., 2008, “Removal of Zn(II), Cu(II), Ni(II), Ag(I) and Cr(VI) present in aqueous solutions by aluminium electrocoagulation”, Journal of Hazardous Materials, Vol. 152, No. 3, pp. 934–941.
  • He, Q., Hu, Z., Jiang, Y., Chang, X.J., Tu, Z.F., Zhang, L.N., 2010, “Preconcentration of Cu(II),Fe(III) and Pb(II) with 2-((2-aminoethylamino)methyl)phenol-functionalized activated carbon followed by ICP-OES determination”, J. Hazard. Mater. Vol. 175, No. 1-3, pp. 710–714.
  • Hashimoto, Y., Matsufuru, H., Takaoka. M., Tanida, H. and Sato, T., 2009, “Impacts of chemical amendments and plant growth on lead speciation and enzyme activities in a shooting range soil: An X-ray absorption fine structre investigation”, Journal of Environmental Quality, Vol. 38. pp. 1420-1428.
  • Hasan, S.H., Srivastava, P., Talat, M., 2010, “Biosorption of lead using iosorption of lead using immobilized Aeromonas hydrophila biomass in up flow column system: Factorial design for process optimization”, Journal of Hazardous Materials, Vol. 177, No. 1-3, pp. 312–322.
  • Harter, R.D., 1983, “Effect of soil pH on adsorption of Lead, copper, zine, nickel”, Soil Science Society American Journal, Vol. 20, pp. 111.
  • Han, R., Zou, W., Zhang, Z, Shi, J., Yang, J., 2006, “Removal of copper(II) and lead(II) from aqueous solution by manganese oxide coated sand : II. Equilibrium study and competitive adsorption”, Journal of Hazardous Materials, Vol. 137, No. 1, pp. 480-488.
  • Han, H., Wang, R., Zou, Y., Wang, W., Shi, Y., 2007, “Comparison of linear and nonlinear analysis in estimating the Thomas model parameters for methylene blue adsorption onto natural zeolite in fixed-bed column,” J. Hazard. Mater., Vol. 145, pp. 331-335.
  • Grant, I.F., Tingle, C.C.D., 2002, “Ecological monitoring methods for the assessment of pesticide impact in the Tropics Natural Resources Institute”, Chatham, UK.
  • Goel, J., Kadirvelu, K., Rajagopal, C., Garg, V.K., 2005, “Removal of lead(II) by adsorption using treated granular activated carbon: Batch and column studies”, Journal of Hazardous Materials, Vol. 25, No. 1–3, pp. 211–220.
  • Gisi, S.D., Lofrano, G., Grassi, M., Notarnicola, M., 2016, “Characteristics and adsorption capacities of low-cost sorbents for wastewater treatment: A review”, Sustainable Materials and Technologies, Vol. 9, pp. 10–40
  • Ghaedi, M., Ansari, A., Habibi, M.H. and Asghari, A.R., 2014, “Removal of malachite green from aqeuous solution by zinc oxide nanoparticle loaded on activated carbon: Kinetics and iotherm study”, Journal of Industrial and Engineering Chemistry, Vol, 20, No. 1, pp. 17∼28.
  • Gaskin, J.W., C. Steiner, K. Harris, K.C. Das, and B. Bibens. 2008. Effect of low-temperature pyrolysis conditions on biochar for agricultural use. Transactions of the ASABE. 51:2061-2069.
  • G zel, F., Yakut, H., Topal, G., 2008, “Determination of kinetic and equilibrium parameters of the batch adsorption of Mn(II), Co(II), Ni(II) and Cu(II) from aqueous solution by black carrot (Daucus carota L.) residues”, J. Hazard. Mater., Vol. 153, pp. 1275–1287.
  • Faust S.D., Aly, O.M., 1987, “Adsorption processes for water treatment”, Butterworth Publishers, Stoneham
  • Farrah, H., and Pickering, W., F., 1977, “Influence of clay-solute interactions on aqueous heavy metal ion levels” Water, Air and Soil Pollution, Vol. 8, pp.189-197.
  • Evans, J., Kaake, R.H., Orr, M., Watwood, M., 1998, “A comparison of ultrasonication and soxhlet methods for DDT extraction from soil”, Journal of soil contamination, Vol. 7, No. 5, pp. 589-597.
  • Evanko, C.R., and Dzombak, D.A., 1997, “Twchnology evaluation report: remediation of metals-contaminated soils and groundwater,” Ground-water Remediation Technologies Analysis Center, Pittsburgh, PA,
  • Esposito, A., Pagnanelli, F., Beolchini, F., Dovi, V., Veglio, F., 2001, “Cadmium and copper biosorption on Sphaerotilus natans: influence of pH and biomass concentrations, Hydrometallurgy, Vol. 60, pp. 12–141.
  • Emine, M., Nuhoglu, Y., Dundar, M., 2006, “Adsorption of chromium(Ⅵ) on pomace-an oive oil industry waste:batch and column studies”, Journal of hazardous materials, Vol. B138, pp. 142-151.
  • Elliott, H.A., Liberati, M.R., Huang, C.P., 1985, “Competitive adsorption of heavy metals by soils”, Journal of Environmental Quality“, Vol. 15, No. 3, pp. 429-435.
  • Dwivedi, C.P., Sahu, J.N., Mohanty, C.R., Mohan, B.R., Meikap, B.C., 2008 “Column performance of granular activated carbon packed bed for Pb(II) removal”, J. Hazard. Mater. Vol. 156, No. 156, pp. 1-3.
  • Demirbas, A., 2004, “Effects of temperature and particle size on bio-charyield from pyrolysis of agricultural residues”. J. Anal. Appl. Pyrolysis, Vol. 72, pp. 243-248.
  • Contreras, C., de la Rosa, G., Peralta-Videa, J.R., Gardea-Torresdey, J.L., 2006, “Lead adsorption by silica-immobilized humin under flow and batch conditions: assessment of flow rate and calcium and magnesium interference”, J. Hazard. Mater., Vol. 133, No. 1-3, pp. 79-84.
  • Choi, I.W., Kim, S.U., Seo, D.C., Kang, B.H., Sohn, B.K., Rim, Y.S., Heo, J.S., Cho J.S., 2005, “Biosorption of heavy metals by biomass of seaweeds, Laminaria species, Ecklonia stolonifera, Gelidium amansii and Undaria pinnatifida”, Korean Journal of Environmental Agriculture, Vol. 24, No. 4, pp. 370∼378.
  • Choi, H.W., Jung, E., Hahn, S.H., 2010, “Photocatalytic activity of Au-buffered WO3 thin films prepared by RF magnetron sputtering”, Vol. 161, No. 1-2, pp. 285-288.
  • Chen, J.P., and Wu S., 2004, "Acid/base-treated activated carbons: characterization of functional groups and metal adsorptive properties", Langmuir, Vol. 20, pp. 2233-2242.
  • Chen, B., Zhou, D. and Zhu, L., 2008, “Transitional adsorption and partition of nonpolar and polar aromatic contaminants by biochars of pine needles with different pyrolytic temperature”, Environmental Science and Technology, Vol. 42, No. 14, pp. 5137∼5143.
  • Chang, Q., Zhang, M., Wang, J., 2009 “Removal of Cu2+ and turbidity from wastewater by mercaptoacetyl chitosan”, Journal of hazardous materials, Vol. 169, No. 1-3, pp. 621-625.
  • Chan, K. Y., L.Van Zwieten, I. Meszaros, A. Downie, and S, Joseph, 2007, “Agronomic values of green waste biochar as a soil amendment”, Aust. J. Soil. Res., Vol. 45, pp. 629-634.
  • Cao, X., Ma. Liang, Y., Gao, B. AND Harris, W., 2011, “Simultaneous immobilization of lead and atrazine in contaminated soils uing dairy-manure biochar”, Environmental Science and Technology, Vol. 45, pp. 4884-4889.
  • Cao X, Ma L, Liang Y, Gao B, and Harris W., 2011, “Simultaneous immobilization of lead and atrazine in contaminated soils using dairymanure biochar”, Environ Sci Technol, Vol. 45, pp. 4884–9.
  • Byrappa, K., Adschin, T., 2007, “Hydrothermal technology for nanotechnology”, Vol. 53, No. 2, pp. 117-166.
  • Bridle, T. R., and D. Pritchard, 2004, “Energy and nutrientrecovery from sewage sludge via pyrolysis”, Water. Sci. Technol., Vol. 50, pp. 169-175
  • Brallier S., Harrison R.B., Henry C.L., Dongsen, X., 1996, “Liming effects on availability of Cd, Cu, Ni and Zn in a soil amended with sewage sludge 16 years previously”, Water Air Soil Pollut, Vol. 86, pp. 195–206.
  • 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, Vol. 56, No. 5, pp. 1946–1955.
  • Boparai, H.K., Joseph, M., O’Carroll, D.M., 2011, “Kinetics and thermodynamics of cadmium ion removal by adsorption onto nano zerovalent iron particles”, Journal of Hazardous Materials, Vol. 186, No. 1, pp. 458–465.
  • Bonomo, L., 2008, “Wastewater Treatment, McGraw Hill Education”, Italy, 637 (srl).
  • Bonelli, P.R., P.A. Della Rocca, E.G. Cerrella, and A.L. Cukierman, 2001, “Effect of pyrolysis temperature on composition, surface propertiesand thermal degradation rates of BrazilNut shells”, Biores. Sci. Technol., Vol. 76, pp. 15-22.
  • Bolan, N., Kunhikrishnan, A., Thangarajan, R., Kumpiene, J., Park, J., Makino, T., Kirkham, M.B., Scheckel, K., 2014, “Remediation of heavy metal(loid)s contaminated soilseto mobilize or to immobilize?”, Journal Of Hazardous Materialsr, Vol. 266, pp. 141-166.
  • Bilal, M., Shah, J.A., Ashfaq, T., Gardazi, S.M.H., Tahir, A.A., Pervez, A., Haroon, H., Mahmood, Q., 2013, “Waste biomass adsorbents for copper removal from industrial wastewater—A review”, Journal of Hazardous Materials, Vol. 263, pp. 322–333.
  • Bak, Y.-C., Cho, K.-J. and Choi, J.-H., 2005, “Production and CO2 adsorption characteristics of activated carbon from bamboo by CO2 activation method”, Korean Chemical Engineering Research, Vol. 43, No. 1, pp. 146∼152.
  • Aydın, H., Bulut, Y., Yerlikaya, ., 2008, “Removal of copper (II) from aqueous solution by adsorption onto low-cost adsorbents”, Journal of Environmental Management, Vol. 87, No. 1, pp. 37–45.
  • Asai, H., Samson, B.K., Stephan, H.M., K. Songyikhangsuthor, K., Homma, K., Kiyono, Y., Inoue, Y., Shiraiwa, T., Horie, T., 2009, “Biochar amendment techniques for upland rice production in northern Laos”, Soil physical properties, Field Crops Research, Vol. 111, No. 1, pp. 81-84.
  • Apiratikula, R., Pavasant, P., 2008, “Batch and column studies of biosorption of heavy metals by Caulerpa lentillifera”, Bioresource Technology, Vol. 99, No. 8, pp. 2766-2777.
  • An, H.K., Park, B.Y., Kim, D.S., 2001, “Crab shell for the removal of heavy metals from aqueous solution”, Water Res., pp. 35, pp. 3551-3556.
  • An, G., Yu, P,, Xiao, M., Liu, Z., Miao, Z., Ding, K., Mao, L., 2008, “Low-temperature synthesis of Mn3O4 nanoparticles loaded on multi-walled carbon nanotubes and their application in electrochemical capacitors”, Vol. 19, No. 27,
  • Amonette, J.E. and Joseph, S., 2009, “Characteristics of biochar: Microchemical properties. In Biochar for Environmental Management Science and Technology”, Lehmann J and Joseph S, pp. 33–52.
  • Aly z, B. and Veli, S., 2009, “Kinetics and equilibrium studies for the removal of nickel and zinc from aqueous solutions by ion exchange resins”, Vol. 167, No. 1–3, pp. 482–488.
  • Alto, P., 1984, Chemical Attenuation Rates, Coefficients, and Constants in Leachate Migration, Electric Power Research Institute,14-1.
  • Almaroai YA, Vithanage M, Rajapaksha AU, Lee SS, Dou X, Lee YH et al., 2014, “Natural and synthesized iron-rich amendments for As and Pb immobilization in agricultural soil”, Journal of Chemical Ecology, Vol. 30, pp. 267–79.
  • Allen, E., Fu, G., Cowan, C., 1991, “Adsorption of Cadmium and Copper by Manganese Oxide”, Soil Sci., Vol. 152, pp. 72–81.
  • Allen E, Fu G, Cowan C., 1991, “Adsorption of cadmium and copper by manganese oxide”. Soil Science, Vol. 152, pp. 72–81.
  • Aksu, Z., 2002, “Determination of the equilibrium, kinetic and thermodynamic parameters of the batch biosorption of nickel(II) ions onto Chlorella vulgaris”, Process Biochemistry, Vol. 38, No. 1, pp. 89–99.
  • Aksu Z. and G nen F., 2004, “Biosorption of phenol by immobilized activated sludge in a continuous packed bed : prediction of breakthrough curves, Process Biochemistry”, Vol. 39, No. 5, pp. 599~613.
  • Akar, S.T., Akar, T., Kaynak, Z., Anilan, B., Cabuk, A., Tabak, .z., Demir, T.A., Gedikbey, T., 2009, “Removal of copper(II) ions from synthetic solution and real wastewater by the combined action of dried Trametes versicolor cells and montmorillonite”, Hydrometallurgy, Vol. 97, pp. 98–104.
  • Aimable, A., Muhr, H., Gentric, C., Bemard, F., Cras, F. Le, Aymes, D., 2009, “Continuous hydrothermal synthesis of inorganic nanopowders in supercritical water: Towards a better control of the process”, Vol. 190, No. 1-2, pp. 99-106.
  • Ahmad, M., Lee, S.S., Lim, J.E., Lee, S.E., Cho, J.S., Moon, D.H., Hashimoto, Y., Ok, Y.S., 2014a, “Speciation and phytoavailability of lead and antimony in a small arms range soil amended with mussel shell, cow bone and biochar: EXAFSspectroscopy and chemical extractions”. Chemosphere Vol. 95, pp. 433–41.
  • Ahmad, M., Lee, S.S, Dou, X., Mohan, D., Sung, J.K., Yang, J.E., Ok, Y.S., 2012, “Effects of pyrolysis temperature on soybean stover- and peanut shellderived biochar properties and TCE adsorption in water”, Bioresour Technol, Vol. 118, pp. 536–44.
  • Ahmad M, Rajapaksha AU, Lim JE, Zhang M, Bolan N, Mohan D, Vithanage, M., Lee, S.S., Ok, Y.S., 2014, “Biochar as a sorbent for contaminant management in soil and water: A review”, Chemosphere, Vol. 99, pp.19–33.
  • Acharya J, Sahu J N, Mohanty C R, Meikap B C, 2009, “Removal of lead(II) from wastewater by activated carbon developed from Tamarind wood by zinc chloride activation”, Chemical Engineering Journal, Vol. 149, No. 1-3, pp. 249–262.
  • Abulbasher M. Shahalam, A. S. Al-Harthy, Alaa Al-Zawhry, 2002, “Feed water pretreatment in RO systems: Unit processes in the Middle East”, Desalination, Vol. 150, No. 3 pp. 235-245.
  • Abd El-Azeem SAM, Ahmad M, Usman ARA, Kim KR, Oh SE, Lee SS et al. (2013) Changes of biochemical properties and heavy metal bioavailability in soil treated with natural liming materials. Environ Earth Sci 70, 3411–20.Adriano DC (2001) Trace