关于湄公河地下水中区域砷来源及其分布的案例研究

Kah Yee Seah, Thipphachanh Souliyavong, Bounphak Lorbriayao, K. Phan, Kyoung-Woong Kim
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引用次数: 0

摘要

湄公河的砷污染是一个众所周知的环境问题,但由于其跨境性质,这进一步限制了其获取和数据收集。此外,控制湄公河次区域地下水中砷释放的关键机制分布不均,且可能因地区而异。本项目的主要目的是确定区域砷污染水平,以期帮助政府将区域地下水砷风险降低政策纳入其近期规划。于2022年5月和8月分别在柬埔寨和老挝进行了抽样。调查结果显示,与老挝相比,柬埔寨某些地区的地形暴露出地下水中砷的浓度明显较高。柬埔寨约33%的采样点显示出高砷污染(> 10微克/升,世卫组织指南),其浓度范围为47.7±0.8至696.9±5.6 ppb。理化性质表明两个研究区对砷的控制机制完全不同。在区域层面开展更多与气候变化和砷水文相关的区域和特定地点砷污染研究,以确保特定区域的水安全规划。此外,我们相信这项研究的结果将有利于湄公河的政策和区域水安全计划,特别是在柬埔寨。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A case study on regional arsenic sources and its distribution in Mekong River groundwater
Arsenic contamination in the Mekong River is a well-known environmental issue yet to be resolved due to its transboundary nature which further limits its access and data collection. Other than that, the key mechanisms that controlling the arsenic release in Mekong sub-region groundwater was heterogeneously distributed and can be varied from region to region. The main purpose of this project is to identify the regional arsenic contamination levels in the hope of helping the government integrate regional groundwater arsenic risk reduction policy in their near future planning. Sampling was conducted during May and August 2022 in Cambodia and Laos, respectively. The findings revealed that the topography of certain areas in Cambodia has exposed significantly high concentrations of arsenic in groundwater compared to those in Laos. About 33% of the sampling sites in Cambodia had shown a high arsenic contamination (> 10 µg/L, WHO guideline) with its concentration ranging from 47.7 ± 0.8 to 696.9 ± 5.6 ppb. The physicochemical properties revealed that the arsenic controlling mechanisms were totally different between both study area. More regional and site-specific arsenic contamination research related to climate change and arsenic hydrology at regional levels should be carried out to ensure the water safety plan in specific regions. Further, we believe that the findings of this study will be beneficial to policy and regional water safety plans for the Mekong River, especially in Cambodia.
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