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碱性煤灰处置场孔隙水中的砷浓度:菱铁矿沉淀/溶解和土壤覆盖的作用

Arsenic concentration in porewater of an alkaline coal ash disposal site: Roles of siderite precipitation/dissolution and soil cover.

作者信息

Kim Kangjoo, Park Sung-Min, Kim Jinsam, Kim Seok-Hwi, Kim Yeongkyoo, Moon Jeong-Tae, Hwang Gab-Soo, Cha Wang-Seog

机构信息

Department of Environmental Engineering, Kunsan National University, Jeonbuk, South Korea.

出版信息

Chemosphere. 2009 Sep;77(2):222-7. doi: 10.1016/j.chemosphere.2009.07.029. Epub 2009 Aug 13.

Abstract

The geochemical behavior of As in porewaters of an alkaline coal ash disposal site was investigated using multilevel samplers. The disposal site was in operation from 1983 until 1994 and was covered with 0.3-0.5m thick soils in 2001 when this study was initiated. Sequential extraction analyses and batch leaching experiments were also performed using the coal ash samples collected from the disposal site. The results suggest the important roles of siderite (FeCO(3)) precipitation/dissolution and soil cover, which have been ignored previously. Arsenic levels in the porewater were very low (average of 10microgL(-1)) when the site was covered with soil due to coprecipitation with siderite. The soil cover enabled the creation of anoxic conditions, which raised the Fe concentration by the reductive dissolution of Fe-(hydr)oxides. Because of the high alkalinity generated from the alkaline coal ash, even a small increase in the Fe concentration (0.66mgL(-1) on average) could cause siderite precipitation. When the soil cover was removed, however, an oxidizing condition was created and triggered the precipitation of dissolved Fe as (hydr)oxides. As a result, the dissolution of previously precipitated As-rich siderite caused higher As concentration in the porewater (average of 345microgL(-1)).

摘要

利用多级采样器研究了碱性粉煤灰处置场孔隙水中砷的地球化学行为。该处置场于1983年至1994年运行,2001年本研究开始时覆盖着0.3 - 0.5米厚的土壤。还对从处置场采集的粉煤灰样品进行了顺序提取分析和批量浸出实验。结果表明菱铁矿(FeCO₃)沉淀/溶解和土壤覆盖的重要作用,而这些作用此前一直被忽视。当场地被土壤覆盖时,孔隙水中的砷含量非常低(平均为10微克/升),这是由于与菱铁矿共沉淀所致。土壤覆盖使得缺氧条件得以形成,通过铁(氢)氧化物的还原溶解提高了铁的浓度。由于碱性粉煤灰产生的高碱度,即使铁浓度有小幅增加(平均为0.66毫克/升)也会导致菱铁矿沉淀。然而,当去除土壤覆盖后,形成了氧化条件并引发溶解态铁以(氢)氧化物形式沉淀。结果,先前沉淀的富含砷的菱铁矿溶解导致孔隙水中砷浓度升高(平均为345微克/升)。

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