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Combining Remediation Techniques Increases Kinetics for Removal of Persistent Organic Contaminants from Soil

机译:结合修复技术可提高去除土壤中持久性有机污染物的动力学

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摘要

A number of techniques, both mechanical and biological, have been investigated for the remediation of persistent organic contaminants from soils. However, most of these techniques have been applied independently. As a consequence of using only one process, remediation usually is slow for persistent organic contaminants. To improve remediation, multiple techniques that complement different aspects of contaminant removal have been applied to soils in combination. This resulted in an enhanced multi-process phytoremediation system that improved and accelerated the overall remediation resulting in removal of 95% of total PAHs. The remediation system includes physical (volatilization), photochemical (photooxidation), microbial degradation and plant growth (phytoremediation) processes. The techniques applied to realize these processes are land farming (aeration and light exposure), microbial remediation (introduction of contaminant degrading bacteria) and phytoremediation (plant growth with plant growth promoting rhizobacteria). This system was very effective at removal of persistent, strongly bound contaminants from soil. It appears that the combination of these components may be a viable solution for remediating persistent organic contaminants from soils.
机译:为了修复土壤中的持久性有机污染物,已经研究了许多机械和生物技术。但是,大多数这些技术已独立应用。由于仅使用一种方法,对持久性有机污染物的修复通常很慢。为了改善补救措施,已将多种补充污染物去除不同方面的技术组合应用于土壤。这导致了一个增强的多步骤植物修复系统,该系统改善并加速了整体修复,从而去除了95%的总PAH。修复系统包括物理(挥发),光化学(光氧化),微生物降解和植物生长(植物修复)过程。用于实现这些过程的技术是土地耕作(曝气和光照),微生物修复(引入降解污染物的细菌)和植物修复(植物生长并促进根瘤菌生长)。该系统在去除土壤中持久性强结合污染物方面非常有效。看来,这些成分的组合可能是用于补救土壤中持久性有机污染物的可行解决方案。

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