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Competitive effects of nondisplaceable organic compounds on trichloroethylene uptake by activated carbon. II. Model verification and applicability to natural organic matter

机译:不可替代的有机化合物对活性炭吸收三氯乙烯的竞争作用。二。模型验证和对天然有机物的适用性

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An experimental program was carried out to verify theoretical predictions of competitive effects exerted by nondisplaceable organic compounds on the uptake of TCE by activated carbon. Experimental findings were consistent with isotherm sensitivity analyses and thermodynamically based competitive adsorption model predictions. At low loadings of both trichlorobenzene and a natural humic acid, the most significant effect of preloading was to reduce the number of high-energy sites available to TCE. The loss of these sites caused a significant reduction in the site-energy heterogeneity and reduced the extent of adsorption in the low-concentration region. At higher levels of preloading, further changes in the site-energy heterogeneity were small, and uptake was reduced by a roughly equal percentage across a wide range of equilibrium concentrations, suggesting the possibility of a pore blockage tin the case of humic acid) or pore filling tin the case of TCB) mechanism. Measurements of adsorbent surface area and pore volume confirmed that observed reductions in TCE uptake by preloaded carbon were associated with changes in the physical characteristics of the adsorbent. However, reductions in adsorbent surface area could only account for a significant fraction of the observed reduction in TCE uptake when either the amount preloaded was high or the TCE concentration was high, increasing the ability of TCE to compete for adsorption sites. (C) 1998 Academic Press. [References: 17]
机译:进行了一个实验程序,以验证理论上有关不可替代有机化合物对活性炭对三氯乙烯(TCE)吸收的竞争作用的预测。实验结果与等温线敏感性分析和基于热力学的竞争吸附模型预测一致。在三氯苯和天然腐殖酸的低负荷下,预负荷的最显着效果是减少了TCE可获得的高能位点的数量。这些位点的损失导致位点能量异质性显着降低,并降低了低浓度区域的吸附程度。在较高的预加载水平下,位能异质性的进一步变化很小,并且在很宽的平衡浓度范围内,吸收率降低了大约相等的百分比,这表明在腐殖酸或毛孔的情况下可能会堵塞孔TCB机制)。吸附剂表面积和孔体积的测量结果证实,观察到的预载碳对TCE吸收的降低与吸附剂物理特性的变化有关。但是,当预加载量高或TCE浓度高时,吸附剂表面积的减少仅占所观察到的TCE吸收减少的很大一部分,从而增加了TCE竞争吸附位的能力。 (C)1998年学术出版社。 [参考:17]

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