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A soil column study to evaluate treatment of trace elements from saline industrial wastewater

机译:一种土壤柱研究,评价盐水工业废水中微量元素的处理

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Industrial wastewater from the flue gas desulfurization (FGD) process is characterized by the presence of trace elements of concern, such as selenium (Se) and boron (B) and relatively high salinity. To simulate treatment that FGD wastewater undergoes during transport through soils in subsurface treatment systems, a column study (140-d duration) was conducted with native Kansas soil and saline FGD wastewater, containing high Se and B concentrations (170 mu g/L Se and 5.3 mg/L B) and negligible arsenic (As) concentration (similar to 1.2 mu g/L As). Se, B, and As, and dissolved organic carbon concentrations and organic matter spectroscopic properties were measured in the influent and outflow. Influent Se concentrations were reduced by only similar to half in all treatments, and results suggest that Se sorption was inhibited by high salinity of the FGD wastewater. By contrast, relative concentrations (C/C-o) of B in the outflow were typically <10%, suggesting that B sequestration may have been enhanced by higher salinity. Unexpected elevated As concentrations in the outflow (at >150 mu g/L in the treatment with labile organic carbon addition) suggest that soils not previously known to be geogenic arsenic sources have the potential to release As to groundwater in the presence of high salinity wastewater and under reducing conditions.
机译:来自烟道气脱硫(FGD)工艺的工业废水的特征在于存在痕量的关注元素,例如硒(SE)和硼(B)和相对高的盐度。为了模拟处理FGD废水在地下处理系统中运输过程中的运输过程中,用天然堪萨斯土壤和盐水FGD废水进行柱研究(140-D持续时间),含有高SE和B浓度(170μmg/ l se和5.3 mg / lb)和可忽略不计的砷(AS)浓度(类似于1.2μg/ l AS)。在流入和流出物中测量Se,B和溶解的有机碳浓度和有机物质光谱性能。通过所有治疗中的一半减少了影响的Se浓度,结果表明通过FGD废水的高盐度抑制了Se吸附。相比之下,流出中的B的相对浓度(C / C-O)通常<10%,表明B螯合剂可以通过更高的盐度提高。由于流出中的浓度意外升高(用稳定性有机碳添加处理>150μmg/ l)表明,前面已知的土壤未知是造环砷来源的可能性在高盐度废水存在下可能释放到地下水中在还原条件下。

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