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首页> 外文期刊>The Science of the Total Environment >Detection, provenance and associated environmental risks of water quality pollutants during anomaly events in River Atoyac, Central Mexico: A real-time monitoring approach
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Detection, provenance and associated environmental risks of water quality pollutants during anomaly events in River Atoyac, Central Mexico: A real-time monitoring approach

机译:墨西哥中部阿托亚克河异常事件期间水质污染物的检测,出处及相关的环境风险:实时监测方法

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River Atoyac is considered to be one of the most polluted rivers in Mexico due to the discharges of untreated or partially treated wastewater from industrial and municipal activities. In order to improve the river water quality, it is obligatory to identify the possible contaminant sources for upholding a well-balanced ecosystem. Henceforth, the present study incorporates the application of a continuous real-time monitoring system to identify the provenance of pollutants of the river mainly from anomaly events. Four monitoring stations were installed all along the River Atoyac in the State of Puebla, Central Mexico. The real-time monitoring systems have an ability to measure various water quality parameters for every 15 minutes such as Temperature (T), pH, Conductivity (EC), turbidity (TURB), Dissolved Oxygen (DO), Oxidation Reduction Potential (ORP) and Spectral Absorption Coefficient (SAC). In total, eight water samples of anomaly events (i.e.) 2 per monitoring station during rainy (August-September) and winter seasons (November-December), that were detected using the parameters previously mentioned were procured and also analyzed in the laboratory for evaluating almost 54 physicochemical, inorganic and organic characteristics. Statistical results of factorial analysis explained that 30% of the total variance corresponded to textile effluents, 23% related to discharges produced by automobile and petrochemical industries, and 18% of the total variance defined the agricultural activities. Additionally, indices like Overall Index Pollution, Heavy Metal Evaluation Index, Screening Quick Reference Table and Molecular ratios of hydrocarbons for PAH sources was also calculated to estimate the grade of pollution and associated ecotoxicological risks. The present study also enlightens the fact that the assessed results will definitely provide valuable information for the management of river water quality by developing stringent public policies by governmental agencies for the sustainable conservation of Atoyac River. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于工业和市政活动排放的未经处理或部分处理的废水,阿托亚克河被认为是墨西哥污染最严重的河流之一。为了改善河流水质,必须确定可能的污染源,以维护生态系统的均衡。从今以后,本研究结合了连续实时监测系统的应用,以主要从异常事件中识别河流污染物的出处。在墨西哥中部普埃布拉州的阿托亚克河沿岸安装了四个监测站。实时监测系统能够每15分钟测量各种水质参数,例如温度(T),pH,电导率(EC),浊度(TURB),溶解氧(DO),氧化还原电位(ORP)和光谱吸收系数(SAC)。总共采购了8个异常事件的水样本(即每个雨水监测站在雨季(8月至9月)和冬季(11月至12月)中采样了2个),并使用实验室中提到的参数进行了检测,并在实验室中进行了分析以进行评估几乎具有54种理化,无机和有机特征。因子分析的统计结果解释说,总差异的30%对应于纺织废水,23%与汽车和石化行业产生的排放有关,总差异的18%定义了农业活动。此外,还计算了诸如总指数污染,重金属评估指数,筛选快速参考表和多环芳烃来源的烃分子比之类的指数,以估算污染等级和相关的生态毒理风险。本研究还启发了这样一个事实,即评估结果肯定会通过政府机构制定严格的公共政策来保护Atoyac河的可持续性,为河流水质的管理提供有价值的信息。 (C)2019 Elsevier B.V.保留所有权利。

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