壳聚糖络合-陶瓷膜耦合技术处理低浓度含铜废水

张晨牧, 刘景洋, 孙晓明, 徐同宽, 白卫南. 壳聚糖络合-陶瓷膜耦合技术处理低浓度含铜废水[J]. 环境工程学报, 2015, 9(1): 83-88. doi: 10.12030/j.cjee.20150114
引用本文: 张晨牧, 刘景洋, 孙晓明, 徐同宽, 白卫南. 壳聚糖络合-陶瓷膜耦合技术处理低浓度含铜废水[J]. 环境工程学报, 2015, 9(1): 83-88. doi: 10.12030/j.cjee.20150114
Zhang Chenmu, Liu Jingyang, Sun Xiaoming, Xu Tongkuan, Bai Weinan. Treatment of wastewater containing low concentration of Cu ion using complexation-ceramic membrane with chitosan[J]. Chinese Journal of Environmental Engineering, 2015, 9(1): 83-88. doi: 10.12030/j.cjee.20150114
Citation: Zhang Chenmu, Liu Jingyang, Sun Xiaoming, Xu Tongkuan, Bai Weinan. Treatment of wastewater containing low concentration of Cu ion using complexation-ceramic membrane with chitosan[J]. Chinese Journal of Environmental Engineering, 2015, 9(1): 83-88. doi: 10.12030/j.cjee.20150114

壳聚糖络合-陶瓷膜耦合技术处理低浓度含铜废水

  • 基金项目:

    国家"水体污染控制与治理"科技重大专项(2012ZX07-202-001)

    国际科技合作项目(2010DFB90590)

  • 中图分类号: X703.1

Treatment of wastewater containing low concentration of Cu ion using complexation-ceramic membrane with chitosan

  • Fund Project:
  • 摘要: 采用孔径为200 nm的陶瓷膜,以壳聚糖为络合剂,研究了络合-陶瓷膜耦合技术处理低浓度含铜废水过程。考察了溶液pH、壳聚糖/ Cu2+质量浓度比、络合剂浓度、离子强度、操作压力及体积浓缩因子等对处理效果的影响。结果表明,壳聚糖投加量与pH是影响处理效果的关键因素,当壳聚糖/Cu2+质量浓度比≥10、pH=6时,Cu2+截留率接近100%,膜通量趋于稳定;在较高浓度外加盐(NaCl和Na2SO4)存在时,Cu2+截留率仍可达到99%以上。将壳聚糖-铜络合物浓缩液酸化解络后通过陶瓷膜过滤分离壳聚糖和游离态的Cu2+,可实现壳聚糖的循环回用;采用回用的壳聚糖处理含铜废水时,Cu2+截留率可达到95.8%。
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  • [1] 胡海祥.重金属废水治理技术概况及发展方向.中国资源综合利用,2008,26(2):22-25 Hu Haixiang.The summary and trend of heavy metals liquid waste processing technique.China Resources Comprehensive Utilization,2008,26(2):22-25(in Chinese)
    [2] Spivakov B.Y.,Geckeler K.,Bayer E.Liquid-phase polymer-based retention the separation of metals by ultrafiltration on polychelatogens.Nature,1985,315(6017):313-315
    [3] Fan M.,Hu Q.L.,Shen K.Preparation and structure of chitosan soluble in wide pH range.Carbohydrate Polymers,2009,78(1):66-71
    [4] 汪锰,王湛,李政雄.膜材料及其制备.北京:化学工业出版社,2003
    [5] 徐南平,邢卫红,赵宜江.无机膜分离技术与应用.北京:化学工业出版社,2003
    [6] 崔佳,王鹤立,龙佳.无机陶瓷膜在水处理中的研究进展.工业水处理,2011,31(2):13-16 Cui Jia,Wang Heli,Long Jia.Research on inorganic ceramic membranes applied to water treatment.Industrial Water Treatment,2011,31(2):13-16(in Chinese)
    [7] 曾坚贤.络合-超滤耦合新技术及过程模拟研究.长沙:中南大学博士学位论文,2006 Zeng Jianxian.A novel coupling technology of complexation-ultrafiltration and its models.Changsha:Doctor Dissertation of Central South University,2006(in Chinese)
    [8] 陈红盛,叶裕才,白庆中,等.聚合物辅助陶瓷膜处理重金属废水.膜科学与技术,2005,25(6):45-50 Chen Hongsheng,Ye Yucai,Bai Qingzhong,et al.Treatment of heavy metal wastewater by polymer-assisted ceramic membrane separation technology.Membrane Science and Technology,2005,25(6):45-50(in Chinese)
    [9] Rhazi M.,Desbrieères J.,Tolaimate A.,et al.Contribution to the study of the complexation of copper by chitosan and oligomers.Polymer,2002,43(4):1267-1276
    [10] 胡惠媛,朱虹.壳聚糖及其衍生物对重金属离子的吸附.化学进展,2012,24(11):2212-2220 Hu Huiyuan,Zhu Hong.Adsorption of heavy metal ions by chitosan and its derivatives.Progress in Chemistry,2012,24(11):2212-2220(in Chinese)
    [11] 姚春鸣,范益群.聚合物强化陶瓷膜处理低浓度重金属废水.膜科学与技术,2009,29(5):79-82 Yao Chunming,Fan Yiqun.Removal of low-levelheavy metal ions by polymer-enhanced ceramic membrane filtration process.Membrane Science and Technology,2009,29(5):79-82(in Chinese)
    [12] Vonk P.,Noordman R.,Schippers D.,et al.Ultrafiltration of a Polymer-electrolyte mixture.Journal of Membrane Science,1997,130(1-2):249-263
    [13] Tsapiuk E.A.Ultrafiltration separation of aqueous solutions of poly(ethylene glycol)s on the dynamic membrane formed by gelatin.Journal of Membrane Science,1996,116(1):17-29
    [14] Kryvoruchko A.,Yurlova L.,Kornilovich B.Purification of water containing heavy metals by chelating-enhanced ultrafiltration.Desalination,2002,144(1-3):243-248
    [15] 张永锋,许振良.络合-超滤-电解集成过程处理重金属工业废水 Ⅰ络合-超滤耦合过程.化学世界,2002,(S1):171-174 Zhang Yongfeng,Xu Zhenliang.Treatment of heavy metal wastewater using a hybird process of polymer complexation-ultrafiltration-electrolysis Ⅰ.Complexation-ultrafiltration coupling process.Chemical World,2002,(S1):171-174(in Chinese)
    [16] 张永峰.络合-超滤-电解集成过程处理重金属废水的研究.上海:华东理工大学博士学位论文,2003 Zhang Yongfeng.Study on wastewater containing heavy metal treatment with a hybrid process of complexation-ultrafiltration-electrolysis.Shanghai:Doctor Dissertation of East China University of Science and Technology,2003(in Chinese)
    [17] 秦姝.络合-超滤耦合工艺对溶液中镍离子和钴离子去除的研究.上海:上海交通大学硕士学位论文,2012 Qin Shu.Removal of nick and cobalt ions from aqueous solution using complexation-ultrafiltration process.Shanghai:Master Dissertation of Shanghai Jiaotong University,2012(in Chinese)
    [18] 王宗海.络合一超滤技术处理镍离子废水.大连:大连理工大学硕士学位论文,2008 Wang Zonghai.Treatment of nickel ions in waste water by complexation-ultrafiltration technology.Dalian:Master Dissertation of Dalian University of Technology,2008(in Chinese)
    [19] 相波,刘亚菲,李义久,等.壳聚糖及其衍生物对重金属吸附性能的研究.工业水处理,2004,24(5):10-12 Xiang Bo,Liu Yafei,Li Yijiu,et al.Study on the adsorption of heavy metals by chitosan and its derivatives.Industrial Water Treatment,2004,24(5):10-12(in Chinese)
    [20] Churchill S.A.,Walters J.V.,Churchill P.F.Sorption of heavy metals by prepared bacterial cell surfaces.Journal of Environmental Engineering,1995,121(10):706-711
    [21] 夏强,李琛.壳聚糖及其衍生物在废水处理中的应用进展.化工技术与开发,2013,42(3):40-43 Xia Qiang,Li Chen.Research Progress on Wastewater Treatment with Chitosan and it's Derivatives.Technology and Development of Chemical Industry,2013,42(3):40-43(in Chinese)
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出版历程
  • 收稿日期:  2014-02-06
  • 刊出日期:  2014-12-30
张晨牧, 刘景洋, 孙晓明, 徐同宽, 白卫南. 壳聚糖络合-陶瓷膜耦合技术处理低浓度含铜废水[J]. 环境工程学报, 2015, 9(1): 83-88. doi: 10.12030/j.cjee.20150114
引用本文: 张晨牧, 刘景洋, 孙晓明, 徐同宽, 白卫南. 壳聚糖络合-陶瓷膜耦合技术处理低浓度含铜废水[J]. 环境工程学报, 2015, 9(1): 83-88. doi: 10.12030/j.cjee.20150114
Zhang Chenmu, Liu Jingyang, Sun Xiaoming, Xu Tongkuan, Bai Weinan. Treatment of wastewater containing low concentration of Cu ion using complexation-ceramic membrane with chitosan[J]. Chinese Journal of Environmental Engineering, 2015, 9(1): 83-88. doi: 10.12030/j.cjee.20150114
Citation: Zhang Chenmu, Liu Jingyang, Sun Xiaoming, Xu Tongkuan, Bai Weinan. Treatment of wastewater containing low concentration of Cu ion using complexation-ceramic membrane with chitosan[J]. Chinese Journal of Environmental Engineering, 2015, 9(1): 83-88. doi: 10.12030/j.cjee.20150114

壳聚糖络合-陶瓷膜耦合技术处理低浓度含铜废水

  • 1.  中国环境科学研究院国家环境保护生态工业重点实验室, 北京 100012
  • 2.  大连工业大学轻工与化学工程学院, 大连 116034
基金项目:

国家"水体污染控制与治理"科技重大专项(2012ZX07-202-001)

国际科技合作项目(2010DFB90590)

摘要: 采用孔径为200 nm的陶瓷膜,以壳聚糖为络合剂,研究了络合-陶瓷膜耦合技术处理低浓度含铜废水过程。考察了溶液pH、壳聚糖/ Cu2+质量浓度比、络合剂浓度、离子强度、操作压力及体积浓缩因子等对处理效果的影响。结果表明,壳聚糖投加量与pH是影响处理效果的关键因素,当壳聚糖/Cu2+质量浓度比≥10、pH=6时,Cu2+截留率接近100%,膜通量趋于稳定;在较高浓度外加盐(NaCl和Na2SO4)存在时,Cu2+截留率仍可达到99%以上。将壳聚糖-铜络合物浓缩液酸化解络后通过陶瓷膜过滤分离壳聚糖和游离态的Cu2+,可实现壳聚糖的循环回用;采用回用的壳聚糖处理含铜废水时,Cu2+截留率可达到95.8%。

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