印度尼西亚马杜拉Pademawu街道盐干塘2015-2020年地表地下水污染动态

W. A. Gemilang, U. J. Wisha, Mas Agus Mardyanto
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引用次数: 0

摘要

帕梅卡桑沿海地区是盐生产的中心,集中在帕德马乌分区,池塘面积为740.96公顷。盐池与定居区的距离足够近,这导致了一些问题,如浅层地下水盐碱化。本研究旨在确定盐池在五年(2015-2020年)内的退化情况及其对帕德马乌盐碱化问题的影响。我们比较了2015年和2020年调查的与盐池面积变化相关的地下水质量参数(电导率、TDS、浅层地下水深度和盐度)。经过五年的测量,发现电导率下降,达到2779.94µS/cm。根据TDS的恶化情况,2020年地下水从微咸水转变为淡水。相比之下,浅层地下水面的深度增加了近一米。根据电导率分类,淡水面积在五年内也增加了22%。地下水水质动态与盐池区域的变化有关。另一方面,降雨强度的显著增加对盐农不利,导致盐池面积恶化,从而由于含水层内Cl和地下水之间的相互作用较少,降低了Pademawu的地表地下水盐度。尽管2020年海水入侵和盐碱化导致的地下水污染有所下降,但重新组织盐池与帕德马武定居点之间的距离对于最大限度地减少地下水污染至关重要。关键词:动力学;污染地下水;盐业农业;Pademawu版权所有(c)2022 Geosfera Indonesia和詹伯大学地理教育系本作品根据知识共享署名共享类似4.0的国际许可证获得许可
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface Groundwater Pollution Dynamics Over 2015-2020 in the Salt Drying Pond of Pademawu Subdistrict, Madura, Indonesia
Pamekasan coastal area is the center of salt production concentrated in the Pademawu subdistrict with the ponds area of 740.96 ha. The sufficiently close distance of salt ponds to settlement areas allows several issues, such as shallow groundwater salinization. This study aimed to determine the salt pond’s degradation over five years (2015-2020) and its influence on the salinization issue in Pademawu. We compare groundwater quality parameters (conductivity, TDS, the depth of shallow surface groundwater, and salinity) surveyed in 2015 and 2020, correlated  to salt pond area alterations. Over five years of measurement, it was found that conductivity declined, reaching 2779.94 µS/cm. Based on TDS deterioration, groundwater transformed from brackish to freshwater in 2020. By contrast, the depth of shallow groundwater-surface increased by almost one meter. The freshwater area also increased by 22% over five years based on conductivity classification. Groundwater quality dynamics are related to the alteration of the salt pond area. On the other hand, the significant increase in rainfall intensity, which is not beneficial for salt agriculture, results in the salt pond area deterioration, thereby declining surface groundwater salinity in Pademawu due to the less interaction between Cl and groundwater within aquifers. Although the groundwater pollution  induced by seawater intrusion and salinization declined  in 2020, re-organizing the distance between salt ponds and the settlement area in Pademawu is crucial to minimize further groundwater pollution.   Keywords : Dynamics; pollution; groundwater; salt agriculture; Pademawu   Copyright (c) 2022 Geosfera Indonesia and Department of Geography Education, University of Jember This work is licensed under a Creative Commons Attribution-Share A like 4.0 International License
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