Potential Impacts of Climate Change on Reservoir Water Quality in An Giang Province, Vietnam

IF 0.7 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
Luu Kim Phung, Tran Gia Han, Tran Thi Thuy An, Kim Lavane, Pankaj Kumar, N. Downes, Huỳnh Vương Thu Minh
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引用次数: 0

Abstract

As water scarcity puts over 80% of the world’s population at risk, water quality has become a major environmental topic. In particular, climate change has jeopardised the quality of water within the Vietnamese Mekong Delta (VMD), a key agronomic and aquaculture hub. A modest canal system and small to medium-sized reservoirs in the semi-mountain region of An Giang province contribute to a less abundant water supply and a tendency for water quality reservoirs to deteriorate. The water quality index method and descriptive technique were used in this study. The results show that in the period 2017–2020, some water quality indicators exceeded the permissible limits of the Vietnamese standards for domestic surface water in column B1 (NO3-, Total Coliform, BOD5, COD, N-NH4+) but are consistent, but are allowed for use in irrigation purposes. Findings show that for many years, WQI values in Tinh Bien and Tri Ton districts have diminished because of wastewater pollution. WQI values near the shores of O Tuk Sa Reservoir (Tinh Bien), Lo^˜i đánh máy (Tri Ton), and O Ta Soc Reservoir (Tri Ton) diminished over time. According to the WQI index, the water quality at the reservoir monitoring stations has fluctuated throughout the years, so it is advised that people implement water purification techniques for long-term well-being.
气候变化对越南安江省水库水质的潜在影响
由于水资源短缺使世界上80%以上的人口处于危险之中,水质已成为一个重大的环境话题。特别是,气候变化已经危及越南湄公河三角洲(VMD)的水质,这是一个重要的农业和水产养殖中心。安江省半山区水渠系统不发达,水库规模较小,供水不足,水库水质有恶化趋势。本研究采用了水质指数法和描述法。结果表明:2017-2020年期间,部分水质指标(NO3-、总大肠菌群、BOD5、COD、N-NH4+)均超过越南生活地表水B1项标准允许范围,但基本一致,但允许用于灌溉。研究结果表明,多年来,由于废水污染,亭边和三屯地区的WQI值有所下降。O Tuk Sa水库(Tinh Bien)、Lo^ ~ i đánh máy (Tri Ton)和O Ta Soc水库(Tri Ton)海岸附近的WQI值随着时间的推移而降低。根据WQI指数,水库监测站的水质多年来一直存在波动,因此建议人们实施水净化技术,以实现长期健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Climate Change
Journal of Climate Change METEOROLOGY & ATMOSPHERIC SCIENCES-
自引率
16.70%
发文量
18
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