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Effects of residence time and degree of water saturation on sorption nonequilibrium parameters

机译:停留时间和水饱和度对吸附非平衡参数的影响

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This study reports the impact of the degree of water saturation on sorption nonequilibrium parameters. Two nonionic organic compounds (benzene and dimethylphthalate) and three nonag- gregated sandy soils were utilized. Local equilibrium assumptions were found to be invalid for describing the transport of these compounds even at pore-water velocities as low as 0.7 cm/h. Sorption nonequilibrium appeared to be of a diffusive nature rather than due to a slow chemical reaction. Sorption mass-transfer coefficients varied proportionally with pore-water velocity. A strong correlation between the mass-transfer coefficient and residence time was found utilizing present and previously reported laboratory data. A similar relationship was also found for the mass-transfer coefficient between mobile and immobile water regions. Field data indicate that the sorption mass--transfer coefficient may continue to decrease in a consistent way even at residence times as large as 5 × 10~3 h. Variations in the degree of water saturation had no impact on the value of the sorption mass-transfer coefficient other than what would be expected due to changes in the residence time. This suggested that movement into the solid grains of the large emptied pores through diffusion from the water-filled pores into stagnant water covering these grains was relatively fast compared to the sorption rate.
机译:这项研究报告了水饱和度对吸附非平衡参数的影响。使用了两种非离子有机化合物(苯和邻苯二甲酸二甲酯)和三种非聚集的沙土。发现即使在低至0.7 cm / h的孔隙水速度下,局部平衡假设也无法描述这些化合物的运输。吸附非平衡似乎具有扩散性,而不是由于缓慢的化学反应。吸附传质系数与孔隙水速度成比例地变化。利用当前和先前报告的实验室数据发现了传质系数与停留时间之间的强相关性。在流动和不流动的水域之间的传质系数也发现了类似的关系。现场数据表明,即使在长达5×10〜3 h的停留时间下,吸附传质系数也可能以一致的方式持续降低。除了由于停留时间的变化而预期的以外,水饱和度的变化对吸附传质系数的值没有影响。这表明,通过从充满水的孔扩散到覆盖这些颗粒的停滞水中,进入大的空孔的固体颗粒中的运动与吸附速率相比相对较快。

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