植物修复处理MGP站点土壤中多环芳烃的潜力

S. Pradhan, J. Conrad, J. Paterek, V. Srivastava
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引用次数: 180

摘要

植物修复是一种自然的、美观的、低成本的技术,它利用植物影响的微生物、化学和物理过程来修复受污染的土壤和水。气体技术研究所(IGT)进行了一项实验室研究,以确定植物修复修复被多核芳烃(PAHs)污染的土壤的潜力。用于研究的土壤是从新泽西州纽瓦克的一个前人造气厂(MGP)收集的。植物修复被评价为主要的修复技术和土壤处理的最后抛光步骤。在为期6个月的实验室研究中,采用了苜蓿(Medicago sativa)、柳枝草(Panicum virgatum)和小蓝茎草(Schizachyrium scoparium) 3种植物。采用苜蓿和曲枝草对多环芳烃污染土壤进行初步处理,处理6个月后,多环芳烃总浓度降低了57%。最后用紫花苜蓿打磨土壤……
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Potential of Phytoremediation for Treatment of PAHs in Soil at MGP Sites
Phytoremediation is a natural, aesthetically pleasing, low-cost technology that employs plant-influenced microbial, chemical, and physical processes to remediate contaminated soils and waters. The Institute of Gas Technology (IGT) conducted a laboratory study to determine the potential of phytoremediation to remediate soils contaminated with polynuclear aromatic hydrocarbons (PAHs). The soils used for the study were collected from a former manufactured gas plant (MGP) site in Newark, NJ. Phytoremediation was assessed both as a primary remediation technology and as a final polishing step for soil treatment. The following three plant species were used for the 6-month laboratory study: alfalfa (Medicago sativa), switch grass (Panicum virgatum), and little bluestem grass (Schizachyrium scoparium). Using both alfalfa and switch grass for primary treatment of PAH-contaminated soil, a 57% reduction in total PAH concentration was observed after 6-months of treatment. Final polishing of that soil using alfalfa fur...
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