工业水处理 ›› 2022, Vol. 42 ›› Issue (4): 158-163. doi: 10.19965/j.cnki.iwt.2021-0731

• 工程实例 • 上一篇    下一篇

高效吹脱技术应用于氯代烃污染地下水修复

侯盾1(), 徐青松2, 张志强3, 刘海涛4, 陈选平5, 曲丹1, 李佳璐1, 熊惠磊1,6()   

  1. 1. 宝航环境修复有限公司, 北京 100012
    2. 西宁湟水环境资源开发有限公司, 青海 西宁 810021
    3. 农业农村部规划设计研究院, 北京 100125
    4. 湘南学院, 湖南 郴州 423099
    5. 湖南大自然环保科技有限公司, 湖南 郴州 423099
    6. 北京协同创新研究院, 北京 100094
  • 收稿日期:2022-03-09 出版日期:2022-04-20 发布日期:2022-06-07
  • 作者简介:

    侯盾(1969— ),硕士,E-mail:

    熊惠磊,博士,高级工程师,E-mail:

Technology of high efficiency stripping for remediation of chlorohydrocarbon contaminated groundwater

Dun HOU1(), Qingsong XU2, Zhiqiang ZHANG3, Haitao LIU4, Xuanping CHEN5, Dan QU1, Jialu LI1, Huilei XIONG1,6()   

  1. 1. Baohang Environment Co. ,Ltd. ,Beijing 100012,China
    2. Xining Huangshui Environmental Resources Development Co. ,Ltd. ,Xining 810021,China
    3. Academy of Agricultural Planning and Engineering,MARA,Beijing 100025,China
    4. Xiangnan University,Chenzhou 423099,China
    5. Hunan Nature Environmental Protection Technology Co. ,Ltd. ,Chenzhou 423099,China
    6. Beijing Institute of Collaborative Innovation,Beijing 100094,China
  • Received:2022-03-09 Online:2022-04-20 Published:2022-06-07

摘要:

氯代烃类化合物广泛用于塑料、橡胶、染料、润滑油、农药和电子等行业的生产过程,是一种重要的化工原料。在生产使用、存储与处置等环节中,氯代烃类化合物易渗入地下水,对地下水环境造成污染。在某氯代烃污染场地的地下水修复工程中应用高效吹脱技术,以实现污染羽的有效控制。工程实践结果表明:抽出处理后出水中的四氯化碳、1,1,2-三氯乙烷、1,2-二氯乙烷、三氯乙烯和三氯甲烷等污染物浓度均达到《山东省南水北调沿线水污染物综合排放标准》(DB 37/599—2006)和《地下水质量标准》(GB/T 14848—2017)Ⅳ类标准的要求,可为类似挥发性有机物污染场地的地下水修复提供一定技术借鉴和工程示范。

关键词: 地下水修复, 高效吹脱, 氯代烃, 抽出处理

Abstract:

Chlorohydrocarbon, which is widely used in the production process of plastics, rubber, dyes, lubricants, pesticides and electronics industries, is an important chemical raw material. In the process of production, storage and disposal, chlorohydrocarbon is easily infiltrated into groundwater and causes pollution to the groundwater environment. High efficiency stripping technology was used in a remediation of chlorohydrocarbon contaminated groundwater project, in order to achieve effective control of pollution plume. The engineering results showed that the concentrations of carbon tetrachloride, 1,1,2-trichloroethane, 1,2-dichloroethane, trichloroethylene and trichloromethane after treatment met the requirements of Integrated Discharge Standards of Water Pollutants along the South-North Water Diversion Project in Shandong Province (DB 37/599—2006) and Class Ⅳ of Standard for Groundwater Quality(GB/T 14848—2017). It can provide technical reference and demonstration for groundwater remediation of VOC-contaminated sites.

Key words: groundwater remediation, high efficiency stripping, chlorohydrocarbon, pumping treatment

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