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Phytoremediation of polychlorinated biphenyl (PCB)-contaminated sediment: a greenhouse feasibility study

机译:植物修复多氯联苯(PCB)污染的沉积物:温室可行性研究

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摘要

Contaminated sediments dredged from navigable waterways often are placed in confined disposal facilities to prevent further spread of the pollutants. Reducing contaminants to acceptable levels would allow for disposal of the sediments and further dredging activity. A greenhouse study was conducted to evaluate plant treatments and the addition of an organic amendment to decrease the concentration of PCB congeners found in Arochlor 1260. Sediment treated with the amendment and either low transpiring plants or no plants had the greatest removal of the PCB congeners. High-transpiring plants apparently prevented the highly reducing conditions required for reductive dechlorination of highly chlorinated PCBs. Most likely, the amendment provided labile carbon that initiated the reducing conditions needed for dechlorination. The sediment moisture content and moisture-related plant parameters were significant predictors of the PCB loss. Carex aquatalis and Spartina pectinata are predicted to be the most effective plant treatments for phytoremediation of PCBs.
机译:从通航水道挖出的受污染的沉积物通常被放置在密闭的处置设施中,以防止污染物进一步扩散。将污染物减少到可接受的水平将允许沉积物的处置和进一步的疏activity活动。进行了温室研究以评估植物的处理方法,并添加了有机改良剂以降低Arochlor 1260中发现的PCB同类物的浓度。用该修正剂处理的沉积物和低蒸发量的植物或无植物的PCB同类物去除量最大。高蒸腾的植物显然阻止了高度氯化的PCB还原脱氯所需的高度还原条件。该修正案很可能提供了不稳定的碳,从而引发了脱氯所需的还原条件。沉积物水分含量和与水分有关的工厂参数是PCB损失的重要预测指标。据预测,Aquatalis Carex和Spartina pectinata是对PCBs进行植物修复的最有效的植物处理方法。

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