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模拟苯在饮用水高密度聚乙烯(HDPE)管道中的渗透。

Modeling benzene permeation through drinking water high density polyethylene (HDPE) pipes.

作者信息

Mao Feng, Ong Say Kee, Gaunt James A

机构信息

Arizona Department of Environmental Quality, 1110 West Washington Street, Phoenix, AZ 85007, USA E-mail:

Department of Civil, Construction and Environmental Engineering, Iowa State University, Ames, IA 50010, USA.

出版信息

J Water Health. 2015 Sep;13(3):758-72. doi: 10.2166/wh.2015.183.

Abstract

Organic compounds such as benzene, toluene, ethyl benzene and o-, m-, and p-xylene from contaminated soil and groundwater may permeate through thermoplastic pipes which are used for the conveyance of drinking water in water distribution systems. In this study, permeation parameters of benzene in 25 mm (1 inch) standard inside dimension ratio (SIDR) 9 high density polyethylene (HDPE) pipes were estimated by fitting the measured data to a permeation model based on a combination of equilibrium partitioning and Fick's diffusion. For bulk concentrations between 6.0 and 67.5 mg/L in soil pore water, the concentration-dependent diffusion coefficients of benzene were found to range from 2.0×10(-9) to 2.8×10(-9) cm2/s while the solubility coefficient was determined to be 23.7. The simulated permeation curves of benzene for SIDR 9 and SIDR 7 series of HDPE pipes indicated that small diameter pipes were more vulnerable to permeation of benzene than large diameter pipes, and the breakthrough of benzene into the HDPE pipe was retarded and the corresponding permeation flux decreased with an increase of the pipe thickness. HDPE pipes exposed to an instantaneous plume exhibited distinguishable permeation characteristics from those exposed to a continuous source with a constant input. The properties of aquifer such as dispersion coefficients (DL) also influenced the permeation behavior of benzene through HDPE pipes.

摘要

受污染土壤和地下水中的苯、甲苯、乙苯以及邻二甲苯、间二甲苯和对二甲苯等有机化合物,可能会透过用于输水系统中输送饮用水的热塑性管道。在本研究中,通过将测量数据拟合到基于平衡分配和菲克扩散相结合的渗透模型,估算了25毫米(1英寸)标准内径比(SIDR)9的高密度聚乙烯(HDPE)管中苯的渗透参数。对于土壤孔隙水中6.0至67.5毫克/升的总体浓度,发现苯的浓度依赖性扩散系数范围为2.0×10⁻⁹至⒉8×10⁻⁹平方厘米/秒,而溶解度系数确定为23.7。HDPE管的SIDR 9和SIDR 7系列苯的模拟渗透曲线表明,小直径管道比大直径管道更容易受到苯的渗透影响,并且随着管道厚度的增加,苯进入HDPE管的穿透受到阻碍,相应的渗透通量降低。暴露于瞬时羽流的HDPE管与暴露于恒定输入的连续源的HDPE管表现出明显不同的渗透特性。含水层的性质,如弥散系数(DL),也会影响苯通过HDPE管的渗透行为。

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