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Nonideal Transport of Contaminants in Heterogeneous Porous Media: 9. Impact of Contact Time on Desorption and Elution Tailing

机译:非均相多孔介质中的污染物的非膜运输:9。接触时间对解吸和洗脱拖尾的影响

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摘要

A series of miscible-displacement experiments was conducted to examine the impact of sorption contact time on desorption and elution of trichloroethene from a well-characterized soil. A large number of contact times were examined, spanning 1 hour to 4 years (~2·106 h). Effluent trichloroethene concentrations were monitored over a range of greater than six orders of magnitude, allowing characterization of potential asymptotic tailing. The results of the column experiments showed that trichloroethene exhibited extensive elution tailing for all experiments. Each increase in contact time resulted in a successive increase in the extent of tailing. In total, the number of pore volumes of water flushing required to reach the analytical detection limit increased from approximately 1000 for the one-hour contact time to almost 9000 for the four-year contact time. These results indicate that a contact time of less than one hour produced a sorbed phase that is relatively resistant to desorption, and that a progressive increase in resistance to desorption occurred with increased contact time. A mathematical model incorporating nonlinear, rate-limited sorption/desorption described by a continuous-distribution reaction function was used to successfully simulate the measured data. The nonlinear sorption, the apparent rapid development of desorption resistance, and the progressive increase in resistance with increasing contact time are consistent with behavior anticipated for sorbate interactions with hard-carbon components of the soil.
机译:进行了一系列混溶性偏移实验,以检测吸附接触时间对来自特征良好的土壤的解吸和洗脱的吸附接触时间。检查大量的接触时间,跨越1小时至4岁(〜2·10 6 h)。在大于六个数量级的范围内监测流出的三氯乙烯浓度,允许表征潜在的渐近拖尾。柱实验的结果表明,三氯乙烯对所有实验表现出广泛的洗脱拖尾。每次接触时间的增加导致拖尾程度的连续增加。总共,达到分析检测限所需的水冲洗的孔量数量从一小时接触时间增加到大约1000,为四年接触时间几乎9000。这些结果表明,不到1小时的接触时间产生了吸附相对于解吸的吸附阶段,并且发生了对解吸抗解吸抗解吸的逐渐增加。使用连续分布反应功能描述的非线性,限速吸附/解吸的数学模型用于成功模拟测量的数据。非线性吸附,解吸性的表观快速发展,并且随着接触时间的增加,耐抗性的逐渐增加与预期的山梨酸盐与土壤硬碳成分相互作用的行为一致。

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