改性膨润土联合混凝剂处理微污染水中有机物

吴光锋, 聂锦旭, 谢伟楠, 陈仕稳, 范恒. 改性膨润土联合混凝剂处理微污染水中有机物[J]. 环境工程学报, 2014, 8(10): 4301-4306.
引用本文: 吴光锋, 聂锦旭, 谢伟楠, 陈仕稳, 范恒. 改性膨润土联合混凝剂处理微污染水中有机物[J]. 环境工程学报, 2014, 8(10): 4301-4306.
Wu Guangfeng, Nie Jinxu, Xie Weinan, Chen Shiwen, Fan Heng. Treatment of organic matters from micro-polluted water by combining modified bentonite with coagulant[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4301-4306.
Citation: Wu Guangfeng, Nie Jinxu, Xie Weinan, Chen Shiwen, Fan Heng. Treatment of organic matters from micro-polluted water by combining modified bentonite with coagulant[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4301-4306.

改性膨润土联合混凝剂处理微污染水中有机物

  • 基金项目:

    广东省教育部产学研项目(2012B090400030)

  • 中图分类号: X703.1

Treatment of organic matters from micro-polluted water by combining modified bentonite with coagulant

  • Fund Project:
  • 摘要: 采用十二烷基多糖苷季铵盐作为改性剂制备改性膨润土,研究了改性膨润土联合混凝剂去除有机物的效果,考察了有机改性剂用量、微波辐射功率、辐射时间、膨润土投加量、pH值对有机物去除效果的影响,探讨了改性膨润土的改性和去除机理。结果表明,经微波改性后,实现了十二烷基多糖苷季铵盐阳离子对膨润土的插层,增大了层间距,提高了膨润土的吸附性能。联合混凝剂投加改性膨润土能够改善絮凝性能,显著提高有机物的去除效果。在最佳条件下,改性膨润土与PAC联合后的强化混凝,对初始浓度15.3 mg/L的微污染水中有机物的去除率达到95%以上,吸附符合Freundlich吸附等温方程。
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  • [1] 肖羽堂,张晶晶,吴鸣,等.我国水资源污染与饮用水安全性研究.长江流域资源与环境,2001,10(1):51-59 Xiao Yutang,Zhang Jingjing,Wu Ming,et al.Pollution of water resource and the safety of drinking water.Resources and Environment in the Yangtze Basin,2001,10(1):51-59(in Chinese)
    [2] Shannon M.A.,Bohn P.W.,Elimelech M.,et al.Science and technology for water purification in the coming decades.Nature,2008,452(7185):301-310
    [3] 李大鹏.饮用水质安全保障的研究与技术发展趋势:Ⅰ.污染风险源及控制目标.环境工程学报,2010,4(8):1681-1686 Li Dapeng.Research and technological development trends on drinking water safety assurance:Ⅰ.Pollution sources and control targets.Chinese Journal of Environmental Engineering,2010,4(8):1681-1686(in Chinese)
    [4] 赵艳玲,姚伟,陶勇.农村饮用水和环境卫生与介水传染病的相关性研究.环境与健康杂志,2009,26(1):6-7 Zhao Yanling,Yao Wei,Tao Yong.Relationship among rural drinking water,sanitation and waterborne infectious diseases.Journal of Environment and Health,2009,26(1):6-7(in Chinese)
    [5] 潘碌亭.中国微污染水源水处理技术研究现状与进展.工业水处理,2006,26(6):6-10 Pan Luting.Progress of treatment technology of water from micro-polluted water sources in China.Industrial Water Treatment,2006,26(6):6-10(in Chinese)
    [6] 刘云南,尹华升,夏黄建.微絮凝-超滤工艺处理微污染水源水的中试研究.环境污染治理技术与设备,2006,7(12):122-125 Liu Yunnan,Yin Huasheng,Xia Huangjian.Study on micropolluted water treatment with microflocculation-UF process in pilot plant.Techniques and Equipment for Environmental Pollution Control,2006,7(12):122-125(in Chinese)
    [7] 章琪,姚萱.高锰酸盐复合药剂预处理巢湖微污染原水.中国给水排水,2002,18(8):36-39 Zhang Qi,Yao Xuan.Permanganate composite chemicals preoxidation process for treatment of micro-polluted water from Cao Lake.China Water & Wastewater,2002,18(8):36-39(in Chinese)
    [8] 才振刚.低温低浊微污染水源处理工艺的选择.工程建设与设计,2013,(2):111-114 Cai Zhengang.The selection of low temperature and low turbidity slightly polluted source water.Construction & Design for Project,2013,(2):111-114(in Chinese)
    [9] 邓忠良,朱云,肖锦.强化混凝用于微污染水源水处理.工业水处理,2002,22(8):4-6 Deng Zhongliang,Zhu Yun,Xiao Jin.Application of enhanced coagulation to micro-polluted source water treatment.Industrial Water Treatment,2002,22(8):4-6(in Chinese)
    [10] 郭一飞,曹文平,张永明.利用蒙脱石吸附氧化处理微污染水源水.水处理技术,2008,34(4):56-60 Guo Yifei,Cao Wenping,Zhang Yongming.Adsorption and oxidization by montmorillonite treated micro-pollution raw water.Technology of Water Treatment,2008,34(4):56-60(in Chinese)
    [11] 刘玲,刘海卿,李喜林,等.不同吸附剂及其组合工艺对微污染水源水预处理试验研究.非金属矿,2014,37(1):72-74 Liu Ling,Liu Haiqing,Li Xilin,et al.Experimental study on pretreatment of slightly-polluted water source for different adsorbents and combined process.Non-Metallic Mines,2014,37(1):72-74(in Chinese)
    [12] Bilgi C.,Topalogˇlu Yazlcl D,Karakehya N.,et al.Surface and interface physicochemical aspects of intercalated organo-bentonite.International Journal of Adhesion & Adhesives,2014,50:204-210
    [13] 聂锦旭,唐文广,刘汩,等.有机-无机复合膨润土的制备及其对磷吸附特性研究.环境工程学报,2011,5(7):1572-1575 Nie Jinxu,Tang Wenguang,Liu Mi,et al.Study on adsorption properties of phosphor with inorganic/organic composite modified bentonite in wastewater.Chinese Journal of Environmental Engineering,2011,5(7):1572-1575(in Chinese)
    [14] Motshekga S.C.,Ray S.S.,Onyango M.S.,et al.Microwave-assisted synthesis,characterization and antibacterial activity of Ag/ZnO nanoparticles supported bentonite clay.Journal of Hazardous Materials,2013,262:439-446
    [15] Anirudhan T.S.,Ramachandran M.Removal of 2,4,6-trichlorophenol from water and petroleum refinery industry effluents by surfactant-modified bentonite.Journal of Water Process Engineering,2014,1:46-53
    [16] 齐德生,刘凡,于炎湖,等.蒙脱石对黄曲霉毒素B1的吸附作用.矿物学报,2004,24(4):341-346 Qi Desheng,Liu Fan,Yu Yanhu,et al.Study on the adsorption of aflatoxin B1 on montmorillonite.Acta Mineralogica Sinica,2004,24(4):341-346(in Chinese)
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  • 收稿日期:  2014-07-09
  • 刊出日期:  2014-09-28
吴光锋, 聂锦旭, 谢伟楠, 陈仕稳, 范恒. 改性膨润土联合混凝剂处理微污染水中有机物[J]. 环境工程学报, 2014, 8(10): 4301-4306.
引用本文: 吴光锋, 聂锦旭, 谢伟楠, 陈仕稳, 范恒. 改性膨润土联合混凝剂处理微污染水中有机物[J]. 环境工程学报, 2014, 8(10): 4301-4306.
Wu Guangfeng, Nie Jinxu, Xie Weinan, Chen Shiwen, Fan Heng. Treatment of organic matters from micro-polluted water by combining modified bentonite with coagulant[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4301-4306.
Citation: Wu Guangfeng, Nie Jinxu, Xie Weinan, Chen Shiwen, Fan Heng. Treatment of organic matters from micro-polluted water by combining modified bentonite with coagulant[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4301-4306.

改性膨润土联合混凝剂处理微污染水中有机物

  • 1. 广东工业大学土木与交通工程学院, 广州 510006
基金项目:

广东省教育部产学研项目(2012B090400030)

摘要: 采用十二烷基多糖苷季铵盐作为改性剂制备改性膨润土,研究了改性膨润土联合混凝剂去除有机物的效果,考察了有机改性剂用量、微波辐射功率、辐射时间、膨润土投加量、pH值对有机物去除效果的影响,探讨了改性膨润土的改性和去除机理。结果表明,经微波改性后,实现了十二烷基多糖苷季铵盐阳离子对膨润土的插层,增大了层间距,提高了膨润土的吸附性能。联合混凝剂投加改性膨润土能够改善絮凝性能,显著提高有机物的去除效果。在最佳条件下,改性膨润土与PAC联合后的强化混凝,对初始浓度15.3 mg/L的微污染水中有机物的去除率达到95%以上,吸附符合Freundlich吸附等温方程。

English Abstract

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