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首页> 外文期刊>Sustainable Water Resources Management >Impact of lockdown due to COVID-19 pandemic on groundwater salinity in Punjab, India: some hydrogeoethics issues
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Impact of lockdown due to COVID-19 pandemic on groundwater salinity in Punjab, India: some hydrogeoethics issues

机译:由于Covid-19旁遮普地区地下水盐度的锁定影响:一些水文素质问题

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In the present study, a total of 48 groundwater samples (13 from shallow aquifers depth < 50 m and 35 samples from deep aquifers in the depth range 50-200 m) were collected from three industrial dominant districts (Ludhiana, Jalandhar and Moga) of Punjab after the lockdown period and before the start of southwest monsoon in the month of June, 2020 (pre-monsoon). The values for total dissolved solids (TDS) observed in Monsoon season (August, 2020) and November-December, 2019 (post-monsoon) were compared with the values taken in June, 2020 (pre-monsoon) to see the impact of lockdown due to COVID-19 pandemic on groundwater salinity. ~60% of samples were found to have TDS values more than acceptable limit (500 mg/l) before lockdown (post-monsoon season of 2019) period and after or during lockdown period (June, 2020) number of samples more than the acceptable limit (500 mg/l) reduced to 45%. Average TDS values reduced by 25% in shallow aquifers after lockdown and area under TDS values in acceptable limit (500 mg/l) increased by 23% of samples as compared to the TDS values found in monsoon season of year 2019. In deeper aquifers, increase of only 3% area under TDS values in acceptable limit of 500 mg/l was found. Reductions in TDS values in shallow aquifers clearly show that there is an urgent need for proper management of salinity causing elements and regulating these to check groundwater contaminations using the holistic and hydro-geoethical approach.
机译:在本研究中,从三个工业主导地区(Ludhiana,Jalandhar和Moga)收集了总共48个地下水位(13来自浅含水层深度<50米和深度含水层深度含水层50米和35个样品)邮政局在锁定期间和西南季风起到6月,2020年6月(季风前)的开始前。在季风季节(8月,2020年)和2019年11月(季风)中观察到总溶解固体(TDS)的值与6月,2020年(季风普通话)所采取的值进行比较,以查看锁定的影响由于Covid-19关于地下水盐度的大流行。 〜60%的样品被发现比锁定前的可接受限制(500 mg / L)有更多的可接受的限制(2019年后季节)期间和之后或在锁定期间(6月,2020年)的样品数量超过可接受的样品极限(500 mg / L)降至45%。在可接受的极限下锁定和区域下的TDS值下的锁定和区域下的浅含水层的平均TDS值减少了25%(500 mg / L)增加了23%的样本相比于2019年的季风季节。在更深层次的含水层中,发现在可接受的限制500mg / L下的TDS值下仅增加3%面积。在浅含水层中减少TDS值,清楚地表明,迫切需要适当管理盐度导致元素,并使用整体和水力地理学方法来检查地下水污染。

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