Wintertime water quality assessment via integrated indexical approaches with reference to drinking and irrigation standards in NW India

Q1 Environmental Science
Saloni Kamboj, Nirankar Singh
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引用次数: 0

Abstract

To assess the wintertime toxicity linked with the characteristics of public supply water, tap water samples were collected from the selected sites of Ambala district in India during October 2022 to February 2023 covering winter season. Following the standard procedures and protocols recommended by APHA, BIS and WHO, several characteristics were explored in order to find their linkages with the health issues of adults and children during winters. The irrigation water quality parameters were also taken into consideration during characterization. The high levels of toxic elements (Pb, As, Cd, and Ni) were observed at various sites during this period exceeding the BIS acceptable limits. The average levels of F-, Cl-, NO3, SO42-, PO43- and HCO3 were found to be 0.261 mg L-1, 27.95 mg L-1, 0.234 mg L-1, 47.99 mg L-1, 0.210 mg L-1 and 5.97 mg L-1 respectively. Levels of As, Ni, Cd, Co, Cr, Cu, Pb, and Zn remained at 123.62 µgL-1, 56.24 µgL-1 2.59 µgL-1, 1.367 µgL-1, 9.45 µgL-1, 8.79 µgL-1, 77.92 µgL-1, and 10.79 µgL-1 respectively. The mean hazard indices were found greater than one (>1) for children and adults both (0.96–5.5, 0.96–2.61) during this winter season. Owing to low body weight, children found more prone than adults to health issues. The mostly sites had good water quality indices (WQIs). Based on the SAR, RSC, MAR, SSP values, mostly samples were found in excellent category of water source for irrigation. Several statistical and geographic distributions were used to evaluate the samples for direct human consumption along with the associated health risk at the study area. This study, first time reports the toxicity levels associated with the tap water characteristics in the chosen area and discusses the novel findings of the hazard analysis with reference to direct intake of freshwater and water for irrigation.

Abstract Image

参考印度西北部饮用和灌溉标准,通过综合指数方法进行冬季水质评价
为了评估与公共供水特征相关的冬季毒性,在2022年10月至2023年2月期间,从印度Ambala地区的选定地点收集了冬季自来水样本。按照卫生保健协会、国际卫生组织和卫生组织建议的标准程序和方案,探讨了若干特征,以便找出它们与冬季成人和儿童健康问题的联系。表征时还考虑了灌溉水质参数。在此期间,在多个地点观察到高水平的有毒元素(铅、砷、镉和镍)超过了国际清算银行的可接受限度。F-、Cl-、NO3 -、SO42-、PO43-和HCO3 -的平均含量分别为0.261 mg L-1、27.95 mg L-1、0.234 mg L-1、47.99 mg L-1、0.210 mg L-1和5.97 mg L-1。As、Ni、Cd、Co、Cr、Cu、Pb和Zn的含量分别为123.62µgL-1、56.24µgL-1、2.59µgL-1、1.367µgL-1、9.45µgL-1、8.79µgL-1、77.92µgL-1和10.79µgL-1。冬季儿童和成人的平均危害指数(0.96 ~ 5.5,0.96 ~ 2.61)均大于1 (>1)。由于体重过轻,儿童比成年人更容易出现健康问题。大部分站点水质指数较好。基于SAR、RSC、MAR、SSP值,大部分样品属于灌溉水源的优类。使用了几种统计和地理分布来评估研究区域人类直接消费的样本以及相关的健康风险。本研究首次报道了选定地区自来水特性的毒性水平,并讨论了直接取用淡水和灌溉用水危害分析的新发现。
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来源期刊
Environmental Nanotechnology, Monitoring and Management
Environmental Nanotechnology, Monitoring and Management Environmental Science-Water Science and Technology
CiteScore
13.00
自引率
0.00%
发文量
132
审稿时长
48 days
期刊介绍: Environmental Nanotechnology, Monitoring and Management is a journal devoted to the publication of peer reviewed original research on environmental nanotechnologies, monitoring studies and management for water, soil , waste and human health samples. Critical review articles, short communications and scientific policy briefs are also welcome. The journal will include all environmental matrices except air. Nanomaterials were suggested as efficient cost-effective and environmental friendly alternative to existing treatment materials, from the standpoints of both resource conservation and environmental remediation. The journal aims to receive papers in the field of nanotechnology covering; Developments of new nanosorbents for: •Groundwater, drinking water and wastewater treatment •Remediation of contaminated sites •Assessment of novel nanotechnologies including sustainability and life cycle implications Monitoring and Management papers should cover the fields of: •Novel analytical methods applied to environmental and health samples •Fate and transport of pollutants in the environment •Case studies covering environmental monitoring and public health •Water and soil prevention and legislation •Industrial and hazardous waste- legislation, characterisation, management practices, minimization, treatment and disposal •Environmental management and remediation
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