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Identification of hydrochemical genesis and screening of typical groundwater pollutants impacting human health: A case study in Northeast China

机译:水化学成因的识别和影响人类健康的典型地下水污染物的筛选:以东北地区为例

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Concentrations of common pollutants in groundwater continue to increase, and emerging pollutants are also increasingly found worldwide, thereby increasingly impacting human activities. In this new situation, it is necessary, albeit more difficult, to once again recognize the hydrochemical genesis of groundwater and to subsequently screen the typical pollutants. Taking the groundwater of the Songnen Plain of Northeast China as an example, the hydrochemical genesis was identified using space interpolation, characteristic element ratio and factor analysis methods based on 368 groundwater samples. Subsequently, the typical pollutants with potential impacts on the health of the local residents were screened by the index system method newly established. All the measured hydrochemical compositions show an obvious spatial variation, with a uniform hydrochemical type of HCO3-Ca in the whole area. Both the major compositions (K, Na, Ca, Mg, HCO3, Cl and SO4) and trace compositions (Fe, Mn, Cu, Zn, Pb, As, F, I and Se) are mainly protogenetic in an environment impacted by the lixiviation of groundwater in the migration process in the strata, although these compositions have been impacted by human activities to varying degrees. The mass concentration of NO3-N has exceeded most of the major compositions except for HCO3 and Ca, which means the nitrogen pollution problem is already very serious; and this problem is mainly caused by the utilization of fertilizers and the discharge of industrial wastewater and domestic sewage. Human activities have obviously disrupted the natural dynamic balance of these chemicals between the environment and the groundwater, thereby intensifying the release of F, Fe and Mn from the environment. TDS, total hardness, tri-nitrogen, F, Fe, Mn, Pb and As in some parts are found to exceed the standards of groundwater quality to varying degrees. As, Pb, Fe, NO3-N, NO2-N, Mn, F and NH4-N are finally screened as the typical pollutants. (C) 2019 Elsevier Ltd. All rights reserved.
机译:地下水中常见污染物的浓度继续增加,在世界范围内也越来越多地发现新出现的污染物,从而对人类活动产生越来越大的影响。在这种新情况下,尽管更加困难,还是有必要再次认识到地下水的水化学成因,并随后筛选典型的污染物。以东北松嫩平原地下水为例,利用空间插值,特征元比和因子分析方法,基于368个地下水样品,确定了水化学成因。随后,通过新建立的指标体系方法筛选了对当地居民健康有潜在影响的典型污染物。所有测得的水化学成分均表现出明显的空间变化,整个区域内的HCO3-Ca水化学类型均一。主要成分(K,Na,Ca,Mg,HCO3,Cl和SO4)和痕量成分(Fe,Mn,Cu,Zn,Pb,As,F,I和Se)都主要在受铅影响的环境中发生。尽管这些成分在不同程度上受到人类活动的影响,但在地层的迁移过程中地下水的浸出作用。除了HCO3和Ca,NO3-N的质量浓度已超过大多数主要成分,这意味着氮污染问题已经非常严重。这个问题主要是由于化肥的利用以及工业废水和生活污水的排放造成的。人类活动显然破坏了这些化学物质在环境和地下水之间的自然动态平衡,从而加剧了环境中F,Fe和Mn的释放。发现某些部分的总溶解固体,总硬度,三氮,氟,铁,锰,铅和砷的含量在不同程度上超过了地下水水质标准。砷,铅,铁,三氧化氮,三氧化二氮,锰,氟和氨氮最终被选为典型污染物。 (C)2019 Elsevier Ltd.保留所有权利。

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