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陈 晨, 李 亮, 彭 阳, 刘玉洁, 杨尚静, 李向楠.二维电极电解法去除水中硝酸盐试验研究水资源与水工程学报[J].,2014,25(5):60-64
二维电极电解法去除水中硝酸盐试验研究
Experiment on removal of nitrate from water by electrolysis with two-dimensional electrode
  
DOI:10.11705/j.issn.1672-643X.2014.05.013
中文关键词:  电化学方法  Cl-浓度  硝酸盐  地下水水质  地下水处理
英文关键词:electrochemical method  chloride ion concentration  nitrate  water quality of groundwater  groundwater treatment
基金项目:国家自然科学基金项目(51208299);上海市科学技术委员会基础研究重点课题(11JC1408700);上海理工大学大学生创新创业训练计划(XJ2013198)
作者单位
陈 晨, 李 亮, 彭 阳, 刘玉洁, 杨尚静, 李向楠 (上海理工大学 环境与建筑学院 上海 200093) 
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中文摘要:
      目前硝酸盐污染已经严重影响了地下水水质,对饮用水安全构成了一定威胁。本研究拟采用电化学方法去除水体中硝酸盐,探究其机理、动力学、影响因素及实际地下水处理方法,为地下水脱氮提供参考。研究结果表明:在无氯离子体系下,30.0 mg/L的硝酸盐在2.0 A电流下电解,其一级反应动力学常数为0.040 h-1,产物中54%为氨氮,46%为氮气。在添加300.0 mg/L氯离子条件下电解,一级反应动力学常数为0.029 h-1,其产物主要为氮气。硝酸盐去除速率随着硝酸盐初始浓度和电流增加而增加,随着氯离子浓度增加而略微减少。对实际地下水水样的电解结果表明,20.0 mg/L的硝酸盐在2.0 A、100.0 mg/L氯离子条件下电解,其一级反应动力学常数为0.031 h-1,产物主要为氮气。二维电极电解过程中,硝酸盐扩散至阴极表面速率较慢,电解效率较低。
英文摘要:
      The nitrate contamination has greatly affected the quality of groundwater and threatened the safty of drinking water at present. The paper used electrolysis method to removal nitrate in water body,and investigated the mechanism, kinetics, impact factors and treatment method of underground water.The method can provide reference for the removal of nitrate from groundwater.Experiment results showed that when 30.0 mg/L nitrate solution was electrolyzed under 2.0 A, the first order kinetic constant is 0.040 h-1, and 54% of product is ammonia and 46% of that is gaseous nitrogen under the system without chloride ion. When 300.0 mg/L chloride ion is added into the system, the first order kinetic constant is reduced to 0.029 h-1,and the main products are nitrogen. Moreover, the removal rate of nitrate is increased with the increase of initial nitrate concentration and current, but decreased with the increase of chloride ion concentration. The treatment of underground by electrolysis showed that when 20.0 mg/L nitrate is electrolyzed under 2.0 A and 100.0 mg/L chloride ion, the first order kinetic constant is 0.031 h-1, and the main products are gaseous nitrogen. The electrode efficiency of nitrate is lower due to the slow diffusion rate of nitrate to cathode in the process of two-dimensional electrode.
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