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金属矿山 ›› 2015, Vol. 44 ›› Issue (07): 147-151.

• 安全与环保 • 上一篇    下一篇

喷射床电沉积法处理模拟含镍废水

陈熙,徐新阳,赵冰,邢家良   

  1. 东北大学资源与土木工程学院,辽宁 沈阳 110819
  • 出版日期:2015-07-15 发布日期:2015-08-06
  • 基金资助:

    * 辽宁省自然科学基金项目(编号:2014020036),辽宁省教育厅一般项目(编号:L2014101),辽宁省博士启动基金项目(编号:20141017),国家水体污染与治理重大专项(编号:2014ZX07201-009-04)。

Treating Simulative Wastewater Containing Nickel by Spouted Bed Electro-deposition Method

Chen Xi,Xu Xinyang,Zhao Bing,Xing Jialiang   

  1. College of Resources and Civil Engineering,Northeastern University,Shenyang 110819,China
  • Online:2015-07-15 Published:2015-08-06

摘要: 为检验恒电流喷射床微粒电沉积法高效、低成本处理含镍废水的可行性,以实验室模拟酸性含镍废水为研究对象,进行了工艺条件优化研究。结果表明:①Ni2+去除率和电流效率随pH值的增大先升后降;电流值增大Ni2+去除率上升、电流效率下降;沉积液温度升高,Ni2+去除率和电流效率下降;微粒粒径越小,Ni2+去除率和电流效率越高;氮气的鼓入可提高电流效率和Ni2+去除率。②DO值随pH值和电流强度增大而增大,随温度升高而降低,氮气的鼓入可有效降低DO值。③氮气的鼓入主要通过降低沉积液的DO值来抑制沉积金属镍的返溶,也削弱了因浓差极化导致的Ni2+去除率和电流效率下降的问题。④Ni2+浓度为1 g/L的废水,在pH=4.5,微粒粒径为1.8 mm,电流强度为15 A,沉积液的温度为25 ℃,有氮气鼓入的情况下,电沉积180 min的Ni2+去除率为74.77%,平均电流效率为67.67%,比不鼓入氮气分别高28个百分点和16.66个百分点。由于电沉积可以直接得到金属镍单质,因此,从实践上讲,该方法具有显著的经济和环境效益,亦可作为离子交换或膜分离法前的预处理方法。

关键词: 电沉积, 喷射床, Ni2+去除率, 电流效率, DO值

Abstract: In order to find out the feasibility in dealing with Ni2+ containing wastewater with constant current spouted bed particle electro-deposition method,the technical conditions optimization research has been conducted with simulated acid Ni2+ wastewater.The results are as follows:①with the increase of pH value,the removal rate of Ni2+ and current efficiency increased first and then decreased; with the increase of current value,the removal rate of Ni2+ increased,current efficiency decreased; both removal rate of Ni2+ and current efficiency decreased as the temperature increased; ②DO value increased with the increase of pH and current value,while decreased with temperature.Blowing nitrogen effectively reduced the DO value.③Blowing nitrogen prevented the nickel deposited back to dissolve,also weakened the concentration polarization which could result in the decline of the Ni2+ removal rate and current efficiency.④under the conditions of Ni2+ concentration 1 g/L,pH=4.5,particle size 1.8 mm,current intensity 15 A,electrolyte temperature 25 ℃ and blowing N2 for 180 min,the removal rate of Ni2+ was 74.77%,the average current efficiency was 67.67%,which were higher by 28 and 16.66 percentage points than that without N2 respectively.Since electro-deposition can directly obtain nickel metal from wastewater,this method has remarkable economic and environmental benefits in practice,and also can be set as a pretreatment method before ion exchange and membrane separation.

Key words: Electro-deposition, Spouted bed, Removal rate of Ni2+, Current efficiency, DO value