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A rapid experimental protocol to determine the desorption resistant fraction of sediment-sorbed hydrophobic organic contaminants

机译:一种快速的实验方案,以确定沉积物吸附疏水性有机污染物的解吸抗性分数

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摘要

Desorption of hydrophobic organic contaminants (HOCs) from sedimentary materials plays a vital role in dictating the fate and transport of HOCs in the environment. Desorption irreversibility is a commonly observed phenomenon in laboratory sorption/desorption studies of HOCs. A desorption-resistant fraction (DRF) typically exists during the desorption process. To correctly evaluate the DRF of HOCs can considerably contribute to the understanding of availability and bioavailability of HOCs. This can substantially benefit contaminant remediation and cleanup operations. Conventional batch method to measure the DRF replies on repetitive washing of the sediments, which is time-consuming and can be impractical. This study presents an experimental protocol to quantify the DRF of the sediment-sorbed organic contaminants in a rapid manner. This protocol utilizes cosolvent to expedite desorption kinetics and adopts an ultrafiltration/centrifugation combined method to achieve a complete separation of sediment and solution phases. This proposed experimental protocol can facilitate the quantification of the DRF of sorbed contaminants to understand and minimize the uncertainties associated with risk-based pollution remediation approach. This protocol has the potential to be widely used in environmental studies to characterize sorption and desorption properties of HOCs with soil and sedimentary materials.
机译:从沉积材料解吸疏水性有机污染物(HOC)在对环境中的命运和运输中的命运和运输中起着至关重要的作用。解吸不可逆转性是Hocs的实验室吸附/解吸研究中的常见现象。在解吸过程中通常存在解吸抗性级分(DRF)。为了正确评估HOCS的DRF可以促进对HOCS的可用性和生物利用度的理解。这可以基本上受益于污染物修复和清理操作。传统的批量方法测量DRF回复沉积物的重复洗涤,这是耗时的,并且可能是不切实际的。该研究提出了一种实验方案,以快速方式量化沉积物吸附有机污染物的DRF。该方案利用共溶剂来加快解吸动力学,采用超滤/离心组合方法来实现沉积物和溶液相的完全分离。该提出的实验方案可以促进吸附污染物DRF的定量,以了解和最小化与基于风险的污染修复方法相关的不确定性。该方案具有广泛应用于环境研究的潜力,以表征HOCS与土壤和沉积材料的吸附和解吸性能。

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