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Spatial Variations of Trace Metals and Their Complexation Behavior with DOM in the Water of Dianchi Lake China

机译:滇池水体中痕量金属的空间变异及其与DOM的络合行为

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摘要

The dynamics of trace metals and the complexation behavior related to organic matter in the interface between water and sediment would influence water quality and evolution in the lake system. This study characterized the distribution of trace metals and the optical properties of dissolved organic matter (DOM) on the surface, and the underlying and pore water of Dianchi Lake (DC) to understand the origin of metals and complexation mechanisms to DOM. Some species of trace metals were detected and Al, Ti, Fe, Zn, Sr and Ba were found to be the main types of metals in the aquatic environment of DC. Ti, Fe, Sr and Ba predominated in water above the depositional layer. Al, Ti, Fe and Sr were the most abundant metallic types in pore water. Mn and Zn were the main type found at the southern lake site, reflecting the contribution of pollution from an inflowing river. The correlations between DOM and metals suggested that both originated from the major source as particulate organic matter (POM), associated with weathering of Ca-, Mg-carbonate detritus and Fe- or Mn-bearing minerals. High dynamics of DOM and hydrochemical conditions would change most metal contents and speciation in different water compartments. Proportions of trace metals in dissolved organic carbon (DOC) in natural waters were correlated with both DOM molecular weight and structure, different metals were regulated by different organic properties, and the same metal also had specific binding characteristic with DOM in various water compartments. This study highlighted the interrelation of DOM and metals, as well as the pivotal role that organic matter and nutrients played during input, migrations and transformations of metals, thereby reflecting water quality evolution in the lake systems.
机译:水与沉积物之间的界面中的痕量金属动力学和与有机物有关的络合行为会影响水质和湖泊系统的演化。这项研究表征了微量金属的分布和表面可溶性有机物(DOM)的光学特性,以及滇池(DC)的底层和孔隙水,以了解金属的起源和DOM的络合机理。发现了一些微量金属,发现铝,钛,铁,锌,锶和钡是直流水生环境中的主要金属类型。 Ti,Fe,Sr和Ba在沉积层上方的水中占主导地位。 Al,Ti,Fe和Sr是孔隙水中最丰富的金属类型。锰和锌是在南部湖区发现的主要类型,反映了流入河水造成的污染。 DOM与金属之间的相关性表明,两者均起源于颗粒有机物(POM)的主要来源,与钙,镁碳酸盐碎屑和含铁或锰矿物的风化有关。 DOM和水化学条件的高动态将改变不同水室中大多数金属的含量和形态。天然水中溶解有机碳(DOC)中痕量金属的比例与DOM的分子量和结构相关,不同的金属受不同的有机特性调节,并且同一金属在不同的水室中也具有与DOM的特异性结合特性。这项研究强调了DOM和金属的相互关系,以及有机物和养分在金属的输入,迁移和转化过程中所起的关键作用,从而反映了湖泊系统中水质的演变。

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