›› 2012, Vol. 24 ›› Issue (6): 0-1095.

• 论文 •    

硫酸盐还原条件下水稻土中六氯乙烷厌氧脱氯的研究

金彩霞1,赵保真1,李明亮1,薛万新1,吴春艳2,*,陈婉秋1   

  1. 1河南师范大学 环境学院,河南省环境污染控制重点实验室,黄淮水环境与污染防治省部共建教育部重点实验室, 河南 新乡 453007;2浙江省农业科学院 环境资源与土壤肥料研究所,浙江 杭州 310021
  • 收稿日期:1900-01-01 修回日期:1900-01-01 出版日期:2012-11-25 发布日期:2012-11-25

The anaerobic biodegradation of hexachloroethane under sulfate\|reducing conditions in paddy soils

JIN Caixia;ZHAO Baozhen;LI Mingliang;XUE Wanxin;WU Chunyan;*;CHEN Wanqiu   

  1. 1Henan Key Laboratory of Environmental Pollution Control, Key Laboratory for Yellow River and Huai He River Water Environmental and Pollution Control, Ministry of Education, College of Environmental Science, Henan Normal University, Xinxiang 453007, China;2Institute of Environmental Resources and Soil Fertilizer, Zhejiang Academy of Agricultural Sciences, Hangzhou 310021, China
  • Received:1900-01-01 Revised:1900-01-01 Online:2012-11-25 Published:2012-11-25

摘要: 通过在实验室模拟不同的环境条件,研究常用有机氯化合物——六氯乙烷(HCE)在水稻土中的降解及硫酸盐对水稻土硫酸盐还原菌厌氧脱氯的贡献。结果表明:HCE的降解速率随土壤中HCE起始浓度增加而增加,达到一定质量浓度(≥60 mg·kg-1)后,则随HCE起始浓度增加而降低;HCE在土壤中降解时,生物降解占较大比例;土壤硫酸盐含量的增加提高了硫酸盐还原菌活性,加快了HCE的降解,但过量的硫酸盐(≥60 mg·kg-1)则不利于硫酸盐还原菌的生长和HCE的降解;加入硫酸盐和HCE 21 d后,土壤中pH、Eh值达到硫酸盐还原菌适宜生长值,此时硫酸盐还原菌活性也达到最大,而后变化不明显。通过试验初步得出,可以通过控制土壤的pH值、Eh值或添加适量浓度硫酸盐等方法加速HCE的降解,以降低其对土壤和水体产生的环境风险。

关键词: 六氯乙烷, 脱氯, 厌氧, 硫酸盐还原菌

Abstract: The degradation of hexachloroethane (HCE) in the paddy soil and the effect of sulfate on sulfate\|reducing bacteria were investigated through simulating different environmental conditions. Results showed that the degradation rate of HCE increased with the increasing initial HCE concentration in the soil, However, the degradation rate of HCE decreased when it reached a certain quality concentration (≥60 mg·kg-1). The degradation activity of sulfate\|reducing bacteria (SRB) was enhanced and the HCE degradation rate was speeded up with the increasing soil sulfate. But the growth of sulfate\|reducing bacteria and the degradation of HCE were restrained when sulfate was excessive(≥60 mg·kg-1). The soil pH and Eh values were optimal for the growth of sulfate\|reducing bacteria after 21 days with addition of sulfate and HCE, and then the rate of sulfate degration also reached the maximum. The result showed the degradation of HCE was accelerated through controlling the soil pH and Eh values or adding proper concentration of sulfate to soil in order to reduce the risk of HCE in soil.

Key words: hexachloroethane, dechlorinate, anaerobic, sulfate-reducing bacteria