[1] Rydh C J,Svard B. Impact on global metal flows arising from the use of portable rechargeable batteries[J]. Science of the Total Environment,2003,302(1/2/3):167-184.
[2] Sciban M , Radetic B , Kevresan Z , et al. Adsorption of heavy metals from‘lectroplating wastewater by wood、,dust[J]. Bioresourcc Technology,2007,98(2):402-409.
[3] O’Conncll DW,Birkinshaw C,O’Dwyer T F. Heavy metal adsorbents prepared from the modification of(‘1lulosc;A rcvicw[J].Bioresource Technology,2008, 99 (15):6709-6724.
[4] Bhattacharyya K G,Gupta S S. Adsorption of a few heavy metals on natural and modified kaolinite and montmorillonite;A review[J]. Advanced Colloid Interfac‘Scicncc,2008,140(2):114-131.
[5] Ju Xiaojie,Zhang Shibo,Zhou Miniryu,et al. Novel heavy metal adsorption material;Ion-recognition P (NIPAM-co-BCAm) hydrogels for removal of lead ( 11)ions [J]. J. Hazard. Matcr.,2009,167(1/2/3):114-118.
[6] Sud D,Mahajan G,Kaur M P. Agricultural waste material as potcntial adsorbent for sequestering heavy metal ions from aqueous solulions ; A review[J]. Bioresourc‘Technoloiry, 2008,99(14):6017-6027.
[7] Lima E C,Royer B,Vaghetti C P,et al. Adsorption of Cu( 11)on Araucaria angustifolia wastes ; Determination of the optimal conditions by statistic design of experiments[J]. J. Hazard. Mater. , 2007,140(1/2 ) : 211-220.
[8] Liu Feng, Luo Xuegang, Lin Xiaoyan. Removal of Zn (Ⅱ)from aqucous solution by copolymer of grafting acrylic acid onto deacetylated konjac glucomannan [J]. Materials Science Forum,2009,620/622(12);611-614.
[9] Hefnel J A , Mekhemc:wK , Alandis N M. Kinetic and thermos ynamic study of the adsorption of Pb (II)from aqueous solution to the natural and treated bentonite[J]. International Journal of Physical Scicnces,2008,3(11):281-288.
[10] Unuabonah E I,Adebowalc K O,O wolabi O,‘t al. Adsorption of Pb ( II)and Cd(II)from aqueous solutions onto sodium tetrabo-rate-modified Kaolinite e1ay;Equilibrium and thermodynamic studies[J]. Hydrometallurgy,2008,93(1/2):1-9.
[11] Feng Yuan, Gong Jilai, Zeng G uangming, et al. Adsorption of Cd(II) and Zn ( II)from aqueous solutions using magnetic hydroxyapatitc nanoparticles as adsorbents [J]. Chemical Engineering Journal,2010,162(2);487-494.
[12] Chen Changlun,wang Xiangk<.Adsorption of Ni ( II)from aqueous solution using oxidized multiwall carbon nanotubes [J]. Ins. Eng. Chem. Res. , 2006 , 45 (26 ) : 9144-9149.
[13] Zhou Liming, Liu Zhirong, Liu Jinhui, et al. Adsorption of Hg ( II) from aqueous solution by ethylenediamine modified magnetic (rosslinking chitosan microspheres[J] . Desalination , 2010, 258 (1/2/3)41-47.
[14] Chen Guiqiu,Zhang Wcnjun,Zcng (}uangming,‘t al. Surlac;cmodified Phnnerochncte chryso.sporium as a biosorbent for Cr( UI)-contaminated wastewater [J]. J. Hazard. Mater.,2011,186 ( 2/3 ):2138-2143.
[15] Chen Jianhua,Li (}uoping,Liu (}inglin. Cr川)ionic imprinted polyvinyl alcohol/sodium alginate (PVA/SA) porous composite membranes for selective adsorption of Cr(川)ions [J]. Chemical Engineering Journal , 2010 ,165 ( 3):465-473.
[16] w‘(khuysen B M,Wachs I E,Schoonhcyd R A. Surlac‘chemistry and spectroscopy of chromium in inorganic oxide、[J]. Chcm. Rev.,1996,96(6);3327-3349.
[17] Dabrowski A , Hubicki Z, Podko P. Selective removal of the heavy metal ions from waters and industrial wastewaters by ion-exchange method[J].Chcmosphcrc,2004,56(2):91一106.
[18] Idris S A, Harvey S R, Gibson L T. Selective extraction of mercury(II)from water sample、using mcrcapto functionalised-MCM-41 and regeneration of the sorbcnt using microwave digestion [J]. J. Hazard. Mater. , 2011,193:171-176.
[19] DcnizliA,Kc、‘nci K,Arica K. Dithiocarbamate incorporated monosize polystyrene microsphcrcs for selective removal of mercury ions[J]. Reactive and Functional Polymcrs,2000,科(8);235-243.
[20] Kagaya S,Miyazaki H,Kanbara T. Selective removal of mercury(II)from wastewater using polythioamidcs [J]. J. Hazard. Mater.,2010,175(7):1113-1115.
[21] (;‘nc(),Arpa C,Bayramoglu(;.Selective recovery of mercury by Procion Brown MX SBR immobilized poly (hydroxycthylmcthacry-late/chitosan)(ompositc membranes [J]. Hydromctallurgy,2002,45 (1):53-62.
[22] 汪竹青,沈玉永,吴根华.双重印迹法制各求离r印迹聚合物及其性能研究[J].分析化学研究简报,2009,37(3):449-453.
[23] Liu Changkun,Bai Rcnbi,Ly Q S. Selective removal of copper and lead ions by dicthylcnctriaminc-functionalizcd adsorbent; Bcha-viors and mechanisms [J].Watcr Rescarch,2008,42(6/7):1511-1522.
[24] Chen Yiliang,Pan Bingcai,Zhang Shujuan,et al. Immobilization of polyethylenimine nanoclusters onto a ration exchange resin through、‘lF-crosslinking for、‘lectivc Cu(II)removal [J]. J. Hazard.Mater. , 2011,190 (1/2/3)1037-1044.
[25] Chen Yiliang , Pan Bingcai , Li Haiyan , et al. Selective removal of Cu(II)ions by using ration-exchange resin-supported leneimine(PEI) nanoclusters [J]. Environment Science try,2010,44(9):3508-3513.polycthy-T[J]cholo-
[26] Chouyyokw,Shin Y S , SamuclsW D. Selective removal of copper(II)from natural waters by nanoporous sorbents角nctionalized with c;hdating diamincs [J].Environment Scienc‘Technoloiry,2010,科(16):6390-6395.
[27] Ren Yueming,Zhang Milin,Zhao Dan. Synthesis and propertic、of magnetic Cu(II)ion imprinted composite adsorbent for selective removal of copper[J]. Desalination , 2008 , 228 (1/2/3 ):135149.
[28] LiuYan,LiuZhanchao,GaoJic,‘t al. Selective adsorption behavior of Pb ( II)by mesoporous silica SBA-15-supported Pb(II)-imprinted polymer based on surface molecularly imprinting tcchniquc[J].J.Hazard.Matcr.,2011,186(1):197-205.
[29] Sated A,Iqbal M,Akhtar M W.Removal and recovery of lead ( II)from single and multimetal (Cd, Cu, Ni, Zn) solutions by crop milling wastc(blac;k gram husk)[J]. J. Hazard. Mater. ,2005,117(1):65-73.
[30] Zeng Guangming , Pang Ya , Zeng Zhuotong , et al. Removal and recowry of Zm` and Ph` by imine-functionalized magnetic nanopar-titles with tunable、‘lectivity[J]. Langmuir,2012,28(1) :468-473.
[31] Lam K F,Ycung K L, Mckay(;.Efficient approach for Cdr` and Nir`removal and recovery using mesoporous adsorbent with tunable、‘lcctivity [J].Environment Science Technology,2007,41(9):3329-3334.
[32] Mahmoud M E , Osman M M , Osama F. Removal and preconcentralion of lead(II)and other heavy metals from water by alumina adsorbents developed by surlac‘adsorbed dithizone[J].Desalination,2010,251(2):123-130.
[33] Pang Ya , Zeng Guangming , Tang Lin. Preparation and application of stability enhanced magnetic nanoparticles for rapid removal of Cr(Vl)[J]. Chemical Engineering Journa1,2011,175 (12 ) : 222-227.
[34] Hu Jing,Chen Guohua,Lo I M C. Removal and recovery of Cr( VI) from wastewater by maghemite nanopartick、[J].Water Research,2005,39(18):4528-4536.
[35] Deng S B , Ting Y P. Polyethylenimine-modified fungal biomass as a high capacity biosorbentfor Cr( VI)anions; Sorption(apacity and uptake mechanisms [J]. Environment Science Technoloiry , 2005 , 39(21)8490-8496. |