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黄土丘陵区危险废物填埋场地下水环境影响评价

苏耀明,詹志薇,谭志,蔡勋江,梁炜   

  • 出版日期:2019-05-28 发布日期:2019-05-28

Identification and evaluation on groundwater environmental impact of hazardous waste landfill in loess hilly region

SU Yaoming,ZHAN Zhiwei,TAN Zhi,CAI Xunjiang,LIANG Wei   

  • Online:2019-05-28 Published:2019-05-28

摘要: 为系统识别危险废物填埋场项目建设可能对区域地下水环境造成的影响,结合黄土丘陵区特殊的水文地质条件特征,建立基于包气带污染物垂向迁移模拟的数值模型方法。从拟建危险废物填埋场工程布局及可能的污染风险识别出发,设置地下水环境影响评价要素及情景,开展地下水环境影响识别和预测分析。影响预测结果表明:在填埋区防渗层事故破损出现泄漏的情景下,随渗滤液进入土壤环境的铅、镍污染物穿透包气带需18~19 a,事故情景下污染物渗漏不会影响区域地下水环境。在按照相关技术规范要求对填埋场区采取有效防渗措施,并完善填埋场防渗系统的渗漏破损检测系统建设的前提下,该选址地下水环境保护目标可行。

关键词: 危险废物填埋场, 地下水环境影响评价, 包气带, 黄土丘陵区

Abstract: In order to systematically identify the possible impact of hazardous waste landfill construction project on regional groundwater environment, the numerical modeling method of vertical transport of pollutants in unsaturated zone are built based on the special characteristics of hydrogeological conditions in the loess hilly region of northwest China and the factors and scenes of the groundwater environmental impacts are identified and simulated based on the landfill site layout and the possible pollution risk. The prediction results show that it will take 18~19 years for Pb and Ni to pierce through the upper aeration zone and leakage of pollutants in accident scenarios will not affect the groundwater environment in this area. On the premise of taking effective anti-seepage measures for landfill area in accordance with the relevant technical specifications, and the construction of landfill leakage detection system, the groundwater environmental protection target for site selection of this hazardous waste landfill is reachable.

Key words: hazardous waste landfill, groundwater environmental impact assessment, aeration zone;loess hilly region