Chen Ting-Chien, Hseu Zeng-Yei, Jean Jiin-Shuh, Chou Mon-Lin
Department of Environmental Science and Engineering, National Pingtung University of Science and Technology, Pingtung 92101, Taiwan.
Department of Agricultural Chemistry, National Taiwan University, Taipei 10617, Taiwan.
Chemosphere. 2016 Sep;159:214-220. doi: 10.1016/j.chemosphere.2016.06.007. Epub 2016 Jun 10.
The formation of an arsenic (As)-dissolved organic matter (DOM) complex is important in driving the release of arsenic in groundwater. This study collected groundwater samples from a 20 m deep well throughout 2014 and separated each into three subsamples by ultrafiltration: high molecular weight-DOM (HDOM, 0.45 μm-10 kDa), medium molecular weight-DOM (MDOM, 10-1 kDa), and low molecular weight-DOM (LDOM, <1 kDa) solutions. The fractional DOM was measured with a three-dimensional excitation-emission matrix (EEM) via fluorescence spectroscopy. A fluorescence quenching method was used to calculate the apparent stability constant (Ks) between arsenic and the fractional DOM. Based on the EEM records, three fluorescence indicators were further calculated to characterize the DOM sources, including the fluorescence index (FI), the biological index (BI), and the humification index (HI). The experimental results indicated that arsenic in the groundwater was mainly partitioned into the MDOM and LDOM fractions. All fractional DOMs contained humic acid-like substances and were considered as microbial sources. LDOM had the highest humification degree and aromaticity, followed by MDOM and HDOM. The As and DOM association could be formed by a Fe-bridge, which was demonstrated by the Ks values and fourier transform infrared (FTIR) spectra of the DOM. The formation of AsFe-DOM complex was only significant in the MDOM and LDOM.
砷(As)与溶解有机物(DOM)形成的络合物对于推动地下水中砷的释放具有重要意义。本研究在2014年全年从一口20米深的井中采集了地下水样本,并通过超滤将每个样本分为三个子样本:高分子量DOM(HDOM,0.45μm - 10 kDa)、中分子量DOM(MDOM,10 - 1 kDa)和低分子量DOM(LDOM,<1 kDa)溶液。通过三维激发 - 发射矩阵(EEM)荧光光谱法测定了DOM的分级情况。采用荧光猝灭法计算了砷与分级DOM之间的表观稳定常数(Ks)。基于EEM记录,进一步计算了三个荧光指标来表征DOM来源,包括荧光指数(FI)、生物指数(BI)和腐殖化指数(HI)。实验结果表明,地下水中的砷主要分配到MDOM和LDOM组分中。所有分级的DOM都含有类腐殖酸物质,被认为是微生物来源。LDOM的腐殖化程度和芳香性最高,其次是MDOM和HDOM。As与DOM的结合可能通过铁桥形成,这通过DOM的Ks值和傅里叶变换红外(FTIR)光谱得到了证明。AsFe - DOM络合物的形成仅在MDOM和LDOM中显著。