[1] Kurniawan T A, Chan G Y S, Lo W H,et al. Physico-chemical treatment techniques for wastewater laden with heavy metals [J].Chemical Engineering Journal,2006,118(1/2):83-98.
[2] Swamin D,Buddhi D. Removal of contaminants from industrial wastewater through various non-conventional technologies: a review[J]. International Journal of Environment and Pollution,2006,27(4):324-326.
[3] Kurniawan T A, Chan G Y S, Lo W H, et al. Comparisons of lowcost adsorbents for treating wastewaters laden with heavy metals[J].Science of the Total Environment,2006,366(2/3):409-426.
[4] Ngah W S W, Hanafiah M A K M. Removal of heavy metal ions from wastewater by chemically modified plant wastes as adsorbent:a review[J]. Bioresource Technology,2008,99(10):3935-3948.
[5] 马前,张小龙. 国内外重金属废水处理新技术的研究进展[J].环境工程学报,2007,1(7):10-14.
[6] 马萌,魏永宁,张胜利,等. 石灰水预处理垃圾渗滤液的实验研究[J].工业安全与环保,2008,34(3):7-8.
[7] 张学洪,许立巍,朱义军,等. 石灰石和方解石预处理酸性含氟废水的试验研究[J].矿冶工程,2005,25(2):49-52.
[8] 来风习,王九思,杨玉华. 铁氧体法处理重金属废水研究[J].甘肃联合大学学报,2006,20(3):64-66.
[9] Barrado E, Prieto F, Vega M, et al. Optimization of the operational variables of a medium-scale reactor for metal-containing wastewater puprification by ferrite formation [J].Water Research,1998,32(10):3055-3061.
[10] 曾祥峰, 王祖伟. 改进铁氧体法去除污泥处理液中重金属的实验研究[J].再生资源研究,2007(5):39-42.
[11] 丁明, 曾桓兴. 铁氧体工艺处理重金属污水研究现状及展望[J].环境科学,1992,13(2):59-68.
[12] 王绍文,姜风有. 重金属废水治理技术[M]. 北京:冶金工业出版社,2003:32.
[13] 张自杰. 排水工程[M]. 4 版. 北京: 中国建筑工业出版社,2000:487.
[14 ] Eccles H. Removal of heavy metals from effluent streams,why select a biolodical process [J ].International Biodeterioration& Biodegradation,1995,35 (1/2/3 ) :329-336.
[15] Matlock M M, Howerton B S, Atwood D A. Chemical precipitation of heavy metals from acid mine drainage [J].WaterResearch,2002,36(19):4757-4764.
[16] Navarro R R, Wada S, Tatsumi K. Heavy metal precipitation by polycation-polyanion complex of PEI and its phosphonomethylated derivative[J]. Journal of Hazardous Materials,2005,123(1/2/3):203-209.
[17] Godea F, Pehlivan E. A comparative study of two chelating ionexchange resins for the removal of chromium (Ⅲ) from aqueous solution[J]. Journal of Hazardous Materials,2003,100 (1/2/3):231-243.
[18] Taylor P. Removal of trace concentrations of heavy metals using complexing ion-exchange resins[J]. Separation Science and Technology,2006,41(11):2575-2579.
[19] Wartelle L H, Marshall W. Quaternized agricultural by-products as anion exchange resins[J]. Journal of Environmental Management,2006,78(2):157-162.
[20] Donia A M, Atia A A, Heniesh A M. Efficient removal of Hg(Ⅱ)using mangnetic chelaing resin derived from copolymerization of bisthiourea/thiourea/glutaraldehyde[J]. Separation and Purification Technology,2008,60(1):46-53.
[21] Rengaraj S, Joo C K, Kim Y, et al. Kinetics of removal of chromium from water and electronic process wastewater by ion exchange resins:1200H, 1500H and IRN97H[J]. Journal of Hazardous Materials,2003,102(2/3):257-275.
[22] Rengaraj S, Moon S H. Kinetic of adsorption of Co(Ⅱ) from water and wastewater by ion exchange resin [J]. Water Research,2002,36(7):1783-1793.
[23] Sapari N, Idris A, Hamid N H A. Total removal of heavy metal from mixed plating rinse wastewater[J]. Desalination, 1996,106(1/2/3):419-422.
[24] Kabay N, Arda M, Saha B, et al. Removal of Cr(Ⅵ) by solvent impregnated resins(SIR) containing aliquat 336[J]. Reactive and Functional Polymers,2003,54(1/2/3):103-115.
[25] O'Connell W D, Birkinshaw C, O'Dwyer T F. Heavy metal adsorbents prepared from the modification of cellulose: A review[J].Bioresource Technology,2008,99(15):6709-6724.
[26] 孟冠华,李爱民,张全兴. 活性炭的表面含氧官能团及其对吸附影响的研究进展[J]. 离子交换与吸附,2007,23(1):88-94.
[27] 王湖坤,龚文琪,陈灵.累托石/ 粉煤灰复合颗粒材料制备及处理铜冶炼废水研究[J]. 非金属矿,2008,31(2):51-53.
[28] 朱利中, 陈宝梁. 有机膨润土及其在污染控制中的应用[M].北京:科学出版社,2006:105.
[29] Ai Zhihui, Cheng Ying, Zhang Lizhi, et al. Efficient removal of Cr ( Ⅵ ) from aqueous solution with Fe@Fe2O3 core - shell nanowires[J]. Environmental Science and Technology,2008,42(18):6955-6960.
[30] Zhang W, Sing P, Paling E, et al. Arsenic removal from contaminated water by natural iron ores [J]. Minerals Engineering,2004,17(4):517-524.
[31] Kratochvil D,Volesky B. Advances in the biosorption of heavy metals[J]. Trends in Biotechnology,1998,16(7):291-230.
[32] Ngah W S W, Hanafiah M A K M. Biosorption of copper ions from dilute aqueous solutions on base treated rubber (Hevea brasiliensis) leaves powder: kinetics, isotherm, and biosorption mechanisms[J]. Journal of Environmental Sciences,2008,20(10):1168-1176.
[33] Santosa S J, Siswanta D, Sudiono S,et al. Chitin-humic acid hybrid as adsorbent for Cr(Ⅲ) in effluent of tannery wastewater treatment[J]. Applied Surface Science,2008,254(23):7846-7850.
[34] 王婷,尹华,彭辉,等. 十溴联苯醚(BDE209)对蜡状芽孢杆菌吸附/释放金属离子的影响[J]. 生态毒理学报,2007,2(3):339-345.
[35] Qdais H A, Moussa H. Removal of heavy metals from wastewater by membrane process: A comparative study[J]. Desalination,2004,164(2):105-110.
[36] 尚天宠. 反渗透技术在苦咸水淡化工程中的应用[J]. 工业水处理,1998,18(2):33-36.
[37] 朱贤,陈桂娥,叶琳. 膜分离在镀镍废水处理中的应用[J]. 上海应用技术学院学报,2006, 6(2):141-143.
[38] 王湛. 膜分离技术基础[M]. 北京:化学工业出版社,2000:175.
[39] 许振良. 膜法水处理技术[M]. 北京:化学工业出版社,2001:28.
[40] Hafez A I, EI-Manharawy M S, Khedr M A. RO membrane removal of unreacted chromium from spent tanning effluent. A piolot-scale study, Part 2[J]. Desalination,2002,144(1/2/3):237-242.
[41] Kosutie K, Furac L, Sipos L, et al. Removal of arsenic and pesticides from drinking water by nanofiltration membranes [J].Separation and Purification Technology,2005,42(2):137-144.
[42] Sato Y, Kang M, Kamei T, et al. Performance of nanofiltration for arsenic removal[J]. Water Research,2002, 36(13):3371-3377.
[43] Wang Zhi, Liu Guangchun, Fan Zhifeng, et al. Experimental study on treatment of electroplating wastewater by nanofiltration [J].Journal of Membrane Science, 2007,305(1/2):185-195.
[44] 钟常明,方夕辉,许振良. 纳滤膜脱除矿山酸性废水中重金属离子实验研究[J]. 环境科学与技术, 2000,30(7):10-12.
[45] Lodeiro P, Rey-Castro C, Barriada J L,et al. Biosorption of cadmium by the protonated macroalga Sargassum muticum: Binding analysis with a nonideal, competitive, and thermodynamically consistent adsorption (NICCA) model [J]. Journal of Colloid and Interface Science,2005,289(2):352-358. |