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生物酶生态修复重金属污染土壤
引用本文:林维晟, 吴海泉, 胡家朋, 黄雪婷, 徐颖惠. 生物酶生态修复重金属污染土壤[J]. 环境工程学报, 2015, 9(12): 6147-6153. doi: 10.12030/j.cjee.20151280
作者姓名:林维晟  吴海泉  胡家朋  黄雪婷  徐颖惠
作者单位:1.武夷学院生态与资源工程学院, 绿色化工技术福建省高校重点实验室, 武夷山 354300; 2.福建邵化化工有限公司, 邵武 354000
基金项目:福建省科技厅区域重大项目(2012Y3008) 福建省教育厅高校专项项目(JK2011058) 南平市科技局科技计划项目(N2012Z06(4))
摘    要:以多种重金属污染的土壤为材料,研究了酶对重金属的去除效果.在单因素实验基础上,采用响应面法对重金属去除的反应条件进行优化,结果表明,α-淀粉酶质量浓度0.2%、pH 3.5、反应时间12 h为最佳淋洗修复条件,Cd、Cr、Cu、Ni、Zn去除率分别为82.36%、75.02%、38.38%、34.69%和57.54%,去除率的大小顺序为Cd >Cr >Zn >Cu >Ni.酶作为土壤的组成部分,利用酶修复重金属污染的土壤,可以降低环境风险,具有较好应用前景.

关 键 词:α-淀粉酶   修复   重金属   响应面法   土壤
收稿时间:2014-10-27

Bioremediation of heavy metal contaminated soil by enzymes
Lin Weisheng, Wu Haiquan, Hu Jiapeng, Huang Xueting, Xu Yinghui. Bioremediation of heavy metal contaminated soil by enzymes[J]. Chinese Journal of Environmental Engineering, 2015, 9(12): 6147-6153. doi: 10.12030/j.cjee.20151280
Authors:Lin Weisheng  Wu Haiquan  Hu Jiapeng  Huang Xueting  Xu Yinghui
Affiliation:1.Key Laboratory of Green Chemical Technology of Fujian Higher Education, Ecology and Resources Engineering College, Wuyi University, Wuyishan 354300, China; 2.Fujian Shao Hua chemical Co. Ltd., Shaowu 354000, China
Abstract:The removal efficiencies of various heavy metals from contaminated soil were analyzed by leaching methods such as enzyme. Based on the single factor experiment,the reaction conditions of heavy metals from contaminated soil were optimized by using response surface method.The results showed that the optimum conditions were as follows:α-amylase mass concentration of 0.2%, pH value of 3.5, the reaction time of 12 hours. Then the removal efficiency could reach 82.36%, 75.02%, 38.38%, 34.69% and 57.54% for Cd, Cr, Cu, Ni and Zn, respectively. The removal efficiency of heavy metals was in a sequence of Cd > Cr > Zn > Cu > Ni.It also shows that enzyme is the component of soil, using enzyme to remediate heavy metal contaminated soils can reduce environmental risks, it has a great application prospect.
Keywords:α-amylase  bioremediation  heavy metal  response surface method  soil
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