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通过穿透曲线确定大肠杆菌的滤过情况。

Determining straining of Escherichia coli from breakthrough curves.

作者信息

Foppen J W A, Mporokoso A, Schijven J F

机构信息

UNESCO-IHE Institute for Water Education, Department of Water Engineering, P.O. Box 3015, 2601 DA Delft, The Netherlands.

出版信息

J Contam Hydrol. 2005 Feb;76(3-4):191-210. doi: 10.1016/j.jconhyd.2004.08.005.

Abstract

Though coliform bacteria are used world wide as an indication of faecal pollution, the parameters determining the transport of Escherichia coli in aquifers are relatively unknown, especially for the period after the clean bed collision phase brought about by prolonged infiltration of waste water. In this research, the breakthrough curves of E. coli after total flushing of 50-200 pore volumes were studied for various influent concentrations in various sediments at different pore water flow velocities. The results indicated that straining in Dead End Pores (DEPs) was an important process that dominated bacteria breakthrough in fine-grained sediment (0.06-0.2 mm). The filling of the DEP space with bacteria took 5-65 pore volumes and was dependent on concentration. Column breakthrough curves were modelled and from this the DEP volumes were determined. These volumes (0.21-0.35% of total column volume) corresponded well with values calculated with a formula based on purely geometrical considerations and also with values calculated with a pore size density function. For this function the so-called Van Genuchten parameters of the sediments used in the experiments were determined. The results indicate that straining might be a dominant process affecting colloid transport in the natural environment and therefore it is concluded that proper knowledge of the pore size distribution is crucial to an understanding of the retention of bacteria.

摘要

尽管大肠菌群在全球范围内被用作粪便污染的指示物,但确定大肠杆菌在含水层中运移的参数相对未知,特别是对于废水长期渗入导致的清洁床碰撞阶段之后的时期。在本研究中,针对不同孔隙水流速下各种沉积物中不同进水浓度,研究了在总冲洗50 - 200孔隙体积后大肠杆菌的穿透曲线。结果表明,死端孔隙(DEP)中的截留是一个重要过程,它主导了细颗粒沉积物(0.06 - 0.2毫米)中细菌的穿透。DEP空间被细菌填充需要5 - 65个孔隙体积,且取决于浓度。对柱穿透曲线进行了建模,并据此确定了DEP体积。这些体积(占柱总体积的0.21 - 0.35%)与基于纯几何考虑的公式计算值以及用孔径密度函数计算的值吻合良好。对于该函数,确定了实验中所用沉积物的所谓范格内uchten参数。结果表明,截留可能是影响自然环境中胶体运移的一个主导过程,因此得出结论,对孔径分布的正确认识对于理解细菌的截留至关重要。

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