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循环井水力激发下多相污染物的迁移转化规律

刘忠建 伍世杰 李博文

环境工程学报2024,Vol.18Issue(4):1066-1072,7.
环境工程学报2024,Vol.18Issue(4):1066-1072,7.DOI:10.12030/j.cjee.202310046

循环井水力激发下多相污染物的迁移转化规律

Migration and transformation of multiphase contaminant under hydraulic excitation by circulation well

刘忠建 1伍世杰 1李博文1

作者信息

  • 1. 成都理工大学地质灾害防治与地质环境保护国家重点实验室,成都 610059||成都理工大学国家环境保护水土污染协同控制与联合修复重点实验室,成都 610059
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摘要

Abstract

Benzene,chlorobenzene,aniline and phenol with different soluble and volatile properties were taken as the target contaminant in a two-dimensional sandbox simulation experiment to analyze the concentration variations of dissolved phase,adsorbed phase and volatile phase during the operation of circulation well,and explore the migration and transformation rule of multiphase contaminants under the hydraulic excitation of circulation well.The results showed that the hydraulic excitation of the circulation well acted directly on the dissolved phase and the contaminant concentration decreased exponentially.After 96 h operation,the removal rates of dissolved benzene,chlorobenzene,aniline and phenol were 93.8%,89.9%,99.8%and 95.0%,respectively.The adsorbed phase and volatile phase contaminants are transferred and transformed into dissolved phase under the action of concentration gradient,and then removed by the hydraulic excitation of circulation well.The migration and transformation of adsorbed phase was related to the solubility of contaminants,and the adsorbed phase proportion of benzene,chlorobenzene,aniline and phenol decreased by 56.1%,71.2%,21.1%and 76.4%compared with the initial content,respectively.The migration and transformation of volatile phase was related to the volatility of contaminants and the removal rates of volatile chlorobenzene and benzene were only 16.1%and 15.7%.The comparison results showed that the hydraulic excitation of circulation well has the best removal effect on dissolved phase,followed by adsorbed phase,and the worst removal effect on volatile phase.This study can provide reference for site remediation design of circulation well.

关键词

循环井/水力激发/相态分布/迁移转化/去除率

Key words

circulation well/hydraulic excitation/phase distribution/migration and transformation/removal rate

分类

资源环境

引用本文复制引用

刘忠建,伍世杰,李博文..循环井水力激发下多相污染物的迁移转化规律[J].环境工程学报,2024,18(4):1066-1072,7.

基金项目

国家重点研发计划资助项目(2020YFC1808300) (2020YFC1808300)

国家自然科学基金资助项目(42007167) (42007167)

环境工程学报

OA北大核心CSTPCD

1673-9108

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