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首页> 外文期刊>Journal of environmental sciences >Kinetic and thermodynamic studies on partitioning of polychlorinated biphenyls (PCBs) between aqueous solution and modeled individual soil particle grain sizes
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Kinetic and thermodynamic studies on partitioning of polychlorinated biphenyls (PCBs) between aqueous solution and modeled individual soil particle grain sizes

机译:水溶液与模拟各个土壤粒度尺寸的多氯联苯(PCBS)分配的动力学和热力学研究

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摘要

The significance of soil mineral properties and secondary environmental conditions such as pH, temperature, ionic strength and time in the partitioning of eight selected polychlorinated biphenyl (PCB) congeners between aqueous solution and soil particles with different grain sizes was studied. The mineral properties of a model soil sample were determined, and Brunauer–Emmett–Teller (BET) adsorption–desorption isotherms were employed to observe the surface characteristics of the individual modeled soil particles. Batch adsorption experiments were conducted to determine the sorption of PCBs onto soil particles of different sizes. The results revealed that the sorption of PCB congeners onto the soil was dependent on the amount of soil organic matter, surface area, and pore size distribution of the various individual soil particles. Low pH favored the sorption of PCBs, with maximum sorption occurring between pH6.5 and 7.5 with an equilibration period of 8hr. Changes in the ionic strength were found to be less significant. Low temperature favored the sorption of PCBs onto the soil compared to high temperatures. Thermodynamic studies showed that the partition coefficient (Kd) decreased with increasing temperature, and negative and low values of ΔH° indicated an exothermic physisorption process. The data generated is critical and will help in further understanding remediation and cleanup strategies for polluted water.
机译:研究了土壤矿物质和次级环境条件如pH,温度,离子强度和时间在八种选定的多氯联苯(PCB)在水溶液和土壤粒子之间的分配中的分配中的次要环境条件的重要性。测定模型土壤样品的矿物质,采用Brunauer-Emmett-exerser(Bet)吸附 - 解吸等温度观察各种模型土壤颗粒的表面特征。进行批量吸附实验以确定PCB的吸附到不同尺寸的土壤颗粒上。结果表明,PCB同志物到土壤上的吸附取决于各种土壤颗粒的土壤有机质,表面积和孔径分布的量。低pH赞成PCB的吸附,最大吸附在pH6.5和7.5之间发生,平衡周期为8小时。发现离子强度的变化不太显着。与高温相比,低温有助于PCB的吸附到土壤上。热力学研究表明,分隔系数(KD)随温度的增加而降低,ΔH°的阴性和低值表明了放热的物理吸附过程。生成的数据至关重要,将有助于进一步了解污染水的修复和清理策略。

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