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纳米碳管在电解法处理含铜废水中的应用研究
引用本文:李云东,江辉,刘世亮,李根生.纳米碳管在电解法处理含铜废水中的应用研究[J].中国农学通报,2009,25(18):439-442.
作者姓名:李云东  江辉  刘世亮  李根生
作者单位:1. 河南农业大学机电工程学院,郑州,450002
2. 河南农业大学资源与环境学院,郑州,450002
基金项目:河南省教育厅自然科学基金项目"工矿废水中重金属污染土壤的防治" 
摘    要:为了解决含铜工业废水对环境、土壤及生物的危害,以镀有纳米碳管的钢板为阴极,对含铜废液进行了电解研究。测定了不同影响因素下(电解时间及电流等)重金属铜的去除率,并分析了含纳米碳管阴极电解法去除Cu2+的机理。结果表明,在其它条件相同的条件下,随着时间和电流的增加,去除率逐渐上升。而且随钢板上纳米碳管的数量升高,去除率明显升高。本试验最佳情况下,含有纳米碳管的阴极钢板比没有含有纳米碳管的阴极钢板去除率高40%左右。

关 键 词:互花米草盐沼    互花米草盐沼    微生物区系    时空变化
收稿时间:2009-04-30
修稿时间:2009-06-15

Electrolysis Treatment of Cu2+-containing Wastewater Using Carbon Nanotube Co-deposits as the Cathode
Li Yundong,Jiang Hui,Liu Shiliang,Li Gensheng.Electrolysis Treatment of Cu2+-containing Wastewater Using Carbon Nanotube Co-deposits as the Cathode[J].Chinese Agricultural Science Bulletin,2009,25(18):439-442.
Authors:Li Yundong  Jiang Hui  Liu Shiliang  Li Gensheng
Institution:Li Yundong, Jiang Hui, Liu Shiliang, Li Gensheng(1.College of Mechanical and Electrical, Henan Agricultural University, Zhengzhou 450002;2.College of Resources and Environment, Hertan Agricultural University, Zhengzhou 450002)
Abstract:In order to eliminate the detrimental impacts of nickel ions-containing industrial wastewater on the environment, soil and organisms, this article conducted a study on removing nickel ions from the water through electrolysis technique using carbon nanotube-containing co-deposit as the cathode. The ion removal efficiency of carbon nanotube-containing cathode produced by co-deposition with different depositing period of time was detected and desirable electrolysis parameters (e.g. time and current density) were determined. The results showed that under the same conditions, with the increase in electrolysis time and current density, the removal efficiency of nickel ions in the water goes up significantly while a more remarkable increase could be observed with the increase of co-depositing period during which nanotube was planted. A maximum 50% higher efficiency over that of cathode containing no carbon nanotube could be obtained, which was believed to result from the increased cathode surface area due to the introduction of electro-conductive carbon nanotube on its surface.
Keywords:electrolysis treatment  carbon nanotube  Cu-containg wastewater  removal efficiency
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