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高分辨率洞察天然沉积物中重金属的竞争吸附作用:基于点位能分布。

High-resolution insight into the competitive adsorption of heavy metals on natural sediment by site energy distribution.

机构信息

School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.

School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.

出版信息

Chemosphere. 2018 Apr;197:411-419. doi: 10.1016/j.chemosphere.2018.01.056. Epub 2018 Jan 16.

Abstract

Investigating competitive adsorption on river/lake sediments is valuable for understanding the fate and transport of heavy metals. Most studies have studied the adsorption isotherms of competitive heavy metals, which mainly comparing the adsorption information on the same concentration. However, intrinsically, the concentration of each heavy metal on competitive adsorption sites is different, while the adsorption energy is identical. Thus, this paper introduced the site energy distribution theory to increase insight into the competitive adsorption of heavy metals (Cu, Cd and Zn). The site energy distributions of each metal with and without other coexisting heavy metals were obtained. It illustrated that site energy distributions provide much more information than adsorption isotherms through screening of the full energy range. The results showed the superior heavy metal in each site energy area and the influence of competitive metals on the site energy distribution of target heavy metal. Site energy distributions can further help in determining the competitive sites and ratios of coexisting metals. In particular, in the high-energy area, which has great environmental significance, the ratios of heavy metals in the competitive adsorption sites obtained for various competitive systems were as follows: slightly more than 3:1 (Cu-Cd), slightly less than 3:1 (Cu-Zn), slightly more than 1:1 (Cd-Zn), and nearly 7:2:2 (Cu-Cd-Zn). The results from this study are helpful to deeply understand competitive adsorption of heavy metals (Cu, Cd, Zn) on sediment. Therefore, this study was effective in presenting a general pattern for future reference in competitive adsorption studies on sediments.

摘要

研究河流/湖泊沉积物上的竞争吸附对于了解重金属的归宿和迁移非常有价值。大多数研究都研究了竞争重金属的吸附等温线,主要是比较相同浓度下的吸附信息。然而,本质上,竞争吸附位点上每种重金属的浓度不同,而吸附能相同。因此,本文引入了点位能分布理论,以更深入地了解重金属(Cu、Cd 和 Zn)的竞争吸附。得到了有和没有其他共存重金属时每种金属的点位能分布。结果表明,通过筛选全能量范围,点位能分布比吸附等温线提供了更多的信息。结果表明,点位能分布可以进一步帮助确定共存金属的竞争位点和比例。特别是在具有重要环境意义的高能区,各种竞争体系中竞争吸附位点上重金属的比例如下:Cu-Cd 略大于 3:1,Cu-Zn 略小于 3:1,Cd-Zn 略大于 1:1,Cu-Cd-Zn 接近 7:2:2。本研究的结果有助于深入了解重金属(Cu、Cd、Zn)在沉积物上的竞争吸附。因此,本研究对于深入了解沉积物上重金属的竞争吸附具有重要意义,为今后的竞争吸附研究提供了参考。

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