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微电解—微生物法组合工艺处理含铬电镀废水
引用本文:张子间,李彩虹,陈凡植.微电解—微生物法组合工艺处理含铬电镀废水[J].山东理工大学学报,2004,18(2):16-20.
作者姓名:张子间  李彩虹  陈凡植
作者单位:[1]山东理工大学资源与环境工程学院,山东淄博255049 [2]广东工业大学环境科学与工程学院,广东广州510090
基金项目:广东省科技计划资助项目(020099)
摘    要:针对单一生物法净化含铬电镀废水存在着效率低、处理成本高的问题,采用一种新的组合工艺—微电解—生物法来处理含铬电镀废水.在实验过程中,重金属离子通过微电解法去除90%以上,剩余部分被后续工艺的微生物功能菌去除.实验结果表明:Cr^6 含量为50mg/L,Cu^2 含量为15mg/L,Ni^2 含量为10mg/L的废水经处理后,重金属离子的净化率达99.9%,且无二次污染.

关 键 词:微电解  微生物法  含铬电镀废水  废水处理  重金属离子
文章编号:1672-6197(2004)02-0016-05
修稿时间:2003年11月17

Treatment of electroplate waste water containing Cr6+ with combined process of micro-electrolysis and microbe
ZHANG Zi-jian,LI Cai-hong,CHEN Fan-zhi.Treatment of electroplate waste water containing Cr6+ with combined process of micro-electrolysis and microbe[J].Journal of Shandong University of Technology:Science and Technology,2004,18(2):16-20.
Authors:ZHANG Zi-jian  LI Cai-hong  CHEN Fan-zhi
Institution:ZHANG Zi-jian~1,LI Cai-hong~1,CHEN Fan-zhi~2
Abstract:A novel combined process of microelectrolysis and microbe was utilized to treat waste water containing Cr~(6+) in order to solve the low efficiency and high cost of the single microbe process. Heavy metal ions(Cr~(6+)), more than 93%, was removed through microelectrolysis, and the (other) was absorbed by microbe. The results show that after the waste water, which consists of Cr~(6+) ( 50mg/L), Cu~(2+) (15mg/L), Ni~(2+) (10mg/L), was treated, the purification rate of them was up to 99.9%, without any secondary pollution.
Keywords:micro-electrolysis  microbes  electroplating waste water
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