[1] 奚旦立, 陈季华, 马春燕. 印染废水处理现状及存在问题[C].全国纺织印染废水深度处理及回用和污水达标排放学术研讨会,2005.
[2] 吴晓翔. 硅藻精土新技术在印染废水深度处理中的应用[C] .全国纺织印染废水深度处理及回用和污水达标排放学术研讨会,2005.
[3] 何文杰, 韩宏大.洗染废水处理回用研究[J].中国给水排水, 1994,10(3): 45-47.
[4] Giovanni B, Roberto B, Francesca M. GAC adsorption of ozonated secondarytextile effluents for industrial water reuse[J]. Wat. Sci. Tech.,1999, 40(4-5): 435-442.
[5] 张健俐. 采用二级组合处理并回用印染废水的应用研究[J]. 水处理技术, 2003, 29(2): 117- 118.
[6] Lin S, Lai C. Kinetic characteristics of textile wastewater ozonation influidized and fixed activated carbon beds [J]. Wat. Res., 2000, 34(3): 763-772.
[7] 夏志新. 吸附电解氧化法深度处理印染废水的研究[D]. 广州: 广东工业大学, 2001.
[8] Lin S, Chen M. Treatment of textile wastewater by chemical methodsfor reuse[J].Wat. Res., 1997, 31(4): 868-876.
[9] KimT, Park C, Lee J, et al. Pilot scale treatment of textile wastewaterby combined process(fluidized biofilmprocess-chemical coagulationelectrochemicaloxidation) [J].Wat.Res., 2002, 36(16): 3 979-3 988.
[10] Li X, Zhao Y. Advanced treatment of dyeing wastewater for reuse[J].Wat. Sci. Tech., 1999, 39(10-11): 249-255.
[11] 孙文中, 崔玉民, 朱亦仁, 等. 用复相光催化剂WO3/CdS/W深度处理印染废水的研究[J]. 水处理技术, 2002, 28(5): 278-280.
[12] 王涛, 阮新潮, 曾庆福, 等. 微波无极紫外光氧化处理印染终端废水回用中试[J]. 武汉科技学院学报, 2005, 18(8): 55-58.
[13] 耿士锁. 生物接触氧化-生物炭流化床在毛纺印染废水深度处理中的应用[J]. 环境与开发, 1997, 12(4): 28-30.
[14] 秦永生, 孙长虹, 武江津. 生物活性炭工艺用于废水深度处理的设计[J]. 中国给水排水, 2003, 19(9): 88-91.
[15] 肖玉南. 加压曝气增氧生物炭滤池深度处理印染废水的特性研究[D]. 上海: 东华大学, 2005.
[16] 张华, 田晴, 陈季华. 加压富氧生物活性炭在碱减量印染废水深度处理中的应用研究[J]. 给水排水, 2004, 30(4): 46-49.
[17] Rott U.OverviewofWastewater Treatment and Recycling in the TextileProcessing Industry[J]. Wat. Sci. Tech., 1999, 40(1): 137-144.
[18] 郑俊. 曝气生物滤池污水处理新技术及工程实例[M]. 北京: 化学工业出版社, 2002: 26-39.
[19] 周锋.BAF 处理印染废水二级出水试验研究[D]. 上海: 东南大学, 2004.
[20] 黄瑞敏. 印染废水回用处理技术研究[J].工业水处理, 2004, 24项目MBR出水NF出水回用标准COD/(mg·L-1)280 23.3 30光谱吸收系数(436nm)/m-14.6 0.11电导率/(mS·cm-1)0.650 0.175 1.8专论与综述工业水处理2007-09, 27(9)(7): 33-35.
[21] 陈保雄. 废水的循环再生工艺———针织毛衣厂洗涤水闭路循环[J].生态科学, 1996, 15(2): 83-84.
[22] Bottino A, Capannelli G, Tocchi G, et al. Membranes processes fortextile wastewater treatment aimed at its reuse[C]. Prec. 8th WorldFiltration Congress, Symposium and Exhibition, Brighton, 2000:521-524.
[23] 杜启云, 李然, 戴海平, 等. 膜集成技术处理鄂尔多斯羊绒集团生产废水中试研究[J]. 膜科学与技术, 2002, 22(6): 34-37.
[24] Rozzi A, Antonelli M, Arcari M. Membrane treatment of secondarytextile effluents for direct reuse [J]. Wat. Sci. Tech., 1999, 40(4-5): 409- 416.
[25] Rozzi A. Textile Wastewater Reuse in Northern Italy(COMO) [J].Wat. Sci. Tech., 1999, 39(5): 121-128.
[26] Marcucci M, Nosenzo G, Capan nelli G, et al. Treatment and reuse oftextile effluents based on new ultrafiltration and other membrane technologies[J]. Desalination, 2001, 138(1-3): 75-82.
[27] Malpei F, Bonomo L, Rozzi A. Feasibility study to upgrade a textilewastewater treatment plant by a hollowfibre membrane reactor for effluentreuse[J]. Wat. Sci. Tech., 2003, 47(10-11): 33-39.
[28] Krull, Doepkens E. Recycling of dyehouse effluents by biologicaland chemical treatment[J]. Wat. Sci. Tech., 2004, 49(4): 311-317.
[29] Schoeberl P. Treatment and recycling of textile wastewater-case studyand development of a recycling concept[J]. Desalination, 2005, 171(2): 173-183.
[30] Rozzi A, Malpei F, Bianchi R, et al. Pilot-scale membrane bioreactorand reverse osmosis studies for direct reuse of secondary textileeffluents [J]. Wat. Sci. Tech., 2000, 41(10-11): 189-195.
[31] Brik M, Schoeberl P, ChamamB, et al. Advanced treatment of textilewastewater towards reuse using a membrane bioreactor [J]. ProcessBiochemistry, 2006, 41(8): 1 751-1 757. |