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首页> 外文期刊>The Science of the Total Environment >Effects of acidification on the optical properties of dissolved organic matter from high and low arsenic groundwater and surface water
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Effects of acidification on the optical properties of dissolved organic matter from high and low arsenic groundwater and surface water

机译:酸化对高,低砷地下水和地表水中溶解有机物光学特性的影响

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The optical properties of bulk dissolved organic matter (DOM) at ambient pH and upon acidification (pH similar to 2) by hydrochloric acid (HCl) or nitric acid (HNO3) were examined in groundwater and surface water samples from the Bengal Basin. Samples of shallow high arsenic (As) and deep low As groundwaters and surface waters from the same geographic area were collected and preserved with HCl and HNO3. The optical properties of groundwater samples responded to acidification differently than those of the surface water samples. The intensity of humic-like and protein-like fluorescence decreased by 47% and 80%, respectively, upon acidification with HCl in groundwater but remained unchanged in surface water samples. Similarly, the humification index (HIX) decreased only in surface waters (from 6.6 to 3.7) and remain unchanged in groundwaters upon HCl acidification. The absorbance at 254 nm (Abs(254)) was not affected by HCl acidification; however, HNO3 acidification increased Abs(254) in groundwater (by 9-fold) as well as in surface water samples (by 3-fold), possibly due to inherent absorbance of HNO3 at 254 nm. Humic-and protein-like fluorescence intensities decreased by HNO3 acidification by 49% and 78% respectively, which may be attributed to aggregation losses and changes in the protonation states of amines, hydroxyls and carboxylic functional groups. Parallel factor (PARAFAC) analysis revealed a unique component that resulted from the acidification of samples with HNO3. The other fluorescence indices such as fluorescence index (FI) and freshness index (beta:alpha) remained unchanged upon either type of acidification of surface water as well as groundwater samples. These results reflect the effects of pH perturbation in groundwater environments where DOC concentrations may be lower as compared to surface water environments and provide insights into the structural, molecular and reactive properties of DOM in these environments. (c) 2018 Elsevier B.V. All rights reserved.
机译:在孟加拉盆地的地下水和地表水样品中,检查了环境pH以及通过盐酸(HCl)或硝酸(HNO3)酸化(pH类似于2)时大块溶解有机物(DOM)的光学性质。收集来自同一地理区域的浅高砷(As)和深浅As(低)地下水和地表水样品,并用HCl和HNO3保存。地下水样品的光学特性对酸化的响应不同于地表水样品。在地下水中用HCl酸化后,类腐质和类蛋白荧光强度分别降低了47%和80%,但在地表水样品中保持不变。同样,腐殖化指数(HIX)仅在地表水中降低(从6.6降至3​​.7),而在HCl酸化后在地下水中保持不变。 254 nm(Abs(254))的吸光度不受HCl酸化的影响;然而,HNO3酸化会使地下水和地表水样品中的Abs(254)增加9倍(增加3倍),这可能是由于HNO3在254 nm处固有的吸收。 HNO3酸化分别降低了腐殖质和蛋白质样的荧光强度,分别降低了49%和78%,这可能归因于聚集损失以及胺,羟基和羧基官能团质子化状态的变化。平行因子(PARAFAC)分析显示了一种独特的成分,该成分是由HNO3酸化样品产生的。在地表水和地下水样品酸化的任何一种类型下,其他荧光指数(如荧光指数(FI)和新鲜度指数(beta:alpha))均保持不变。这些结果反映了pH扰动在地下水环境中DOC浓度可能低于地表水环境的影响,并提供了对这些环境中DOM的结构,分子和反应特性的了解。 (c)2018 Elsevier B.V.保留所有权利。

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