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Influence of sulfide, chloride and dissolved organic matter on mercury adsorption by activated carbon in aqueous system

机译:硫化物,氯化物和溶解有机质对水性系统活性炭的影响

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Using activated carbon (AC) as thin layer capping to reduce mercury (Hg) released from contaminated sediment is a feasible and durable remediation approach. However, several aqueous factors could greatly affect the Hg fate in the aquatic system. This study thus intends to clarify the influences on Hg adsorption by AC with the presence of sulfide, dissolved organic matter (DOM), and chloride. The lab-scale batch experiments were divided into two parts, including understanding (1) AC adsorption performance and (2) Hg distribution in different phases by operational definition method. Results showed that the Hg adsorption rate by AC was various with the presence of sulfide, chloride, and DOM (from fast to slow). Hg adsorption might be directly bonded to AC with Hg-Cl and Hg-DOM complexes and the rate was mainly controlled by intraparticle diffusion. In contrast, “Hg + sulfide” result was better described by pseudo-second order kinetics. The Hg removal efficiency was 92–95% with the presence of 0–400?mM chloride and approximately 65–75% in the “Hg?+?sulfide” condition. Among the removed Hg, 24–29% was formed into aqueous-phase particles and about 30% Hg was adsorbed on AC with 2–20?μM sulfide. Increasing DOM concentration resulted in more dissolved Hg. The proportion of dissolved Hg increased 31% by increasing DOM concentration from 0.25 to 20?mg C L??1. Simultaneously, the proportion of adsorbed Hg by AC decreased by 47%. Overall, the presence of chloride increases the Hg adsorption by AC. In contrast, the presence of sulfide and DOM causes a negative effect on AC adsorption.
机译:使用活性炭(AC)作为薄层封盖以减少受污染的沉积物释放的汞(Hg)是一种可行和耐用的修复方法。然而,几个水性因素可以大大影响水生系统中的HG命运。因此,本研究旨在通过硫化物,溶解的有机物质(DOM)和氯化物的存在,阐明AC对Hg吸附的影响。实验室标准批量实验分为两部分,包括通过操作定义方法对不同阶段的AC吸附性能和(2)HG分布。结果表明,AC的Hg吸附速率与硫化物,氯化物和Dom的存在(从快速变慢)。 Hg吸附可以直接与Hg-Cl和Hg-Dom复合物直接键合,并且主要由骨质下扩散控制。相反,伪二次阶动力学更好地描述了“Hg +硫化物”结果。 HG去除效率为92-95%,存在0-400毫米氯化物,“Hg?+硫化物”条件下约65-75%。在除去的Hg中,将24-29%形成为水相颗粒,约30%Hg吸附在Ac上,硫化物2-20℃。增加Dom浓度导致更溶解的Hg。溶解的Hg的比例通过将DOM浓度从0.25-20℃增加而增加31%。同时,AC吸附Hg的比例降低了47%。总体而言,氯化物的存在增加了AC的Hg吸附。相反,硫化物和DOM的存在导致对Ac吸附的负面影响。

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