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20 Release of polyaromatic hydrocarbons from coal tar contaminated soils

机译:20来自煤焦油受污染土壤的多芳烃烃的释放

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A variety of process wastes generated from manufactured gas production (MGP) have contaminated soils and groundwater at production and disposal sites. Coal tar, consisting of a complex mixture of hydrocarbons present as a nonaqueous phase liquid, makes up a large portion of MGP wastes. Of the compunds in coal tar, polyaromatic hydrocarbons (PAHs) are the major constituents of environmetal concern due to their potential mutagenic and carciogenic hazards. Characterization of the release of PAHs from the waste-soil matrix is essential to quantifying long-term environmental impacts in soils and groundwater. Currently, conservative estimates for the release of PAHs to the groundwater are made assuming equilibrium condition and using re-lationships derived from artificially contaminated soils. Preliminary work suggests that aged coal tar contaminated soils have much lower rates of desorption and a greater affinity for retaining organic contaminants. To obtain better estimates of desorption rates, the release of PAHs from a coal tar soil was investigated using a flow-interruption, iscible displacement technique. Methanol/water solutions were employed to enhance PAH concentrations above limits of detection. For each methanol/water solution employed, a series of flow interrupts of varying times was invoked. Release rates from each methanol/water solution were estimated from the increase in concentration with duration of flow interruption. Aqueous-phase release rates were then estimated by extrapolation using a log-linear cosolvency model.
机译:从制造的天然气生产(MGP)产生的各种过程废物在生产和处置场地具有受污染的土壤和地下水。煤焦油,由作为非水相液体存在的烃的复杂混合物组成,构成了大部分MGP废物。煤焦油中的多芳烃(PAH)是环境诱导和致癌危害的主要组成部分。从废物 - 土壤基质中释放PAHs的表征对于量化土壤和地下水中的长期环境影响至关重要。目前,假设均衡条件和使用从人工受污染的土壤源的重新构思,对地下水释放PAH的保守估计。初步工作表明,老年煤焦油受污染的土壤具有较低的解吸率和对保留有机污染物的更大亲和力。为了获得更好的解吸速率估计,使用流量中断,耐受位移技术研究了来自煤焦油土壤的PAHs。使用甲醇/水溶液来增强高于检测限的PAH浓度。对于所用的每种甲醇/水溶液,调用各种不同时间的一系列流动中断。从浓度的增加估计来自流量中断的浓度的增加,估计来自每种甲醇/水溶液的释放速率。然后使用Log-Log-Log-Log-Linear Cosolvency模型通过外推估计水相释放速率。

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