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不连续渗透吸附阻隔层设计和成本分析:优化的方法研究。

Discontinuous permeable adsorptive barrier design and cost analysis: a methodological approach to optimisation.

机构信息

Dipartimento di Ingegneria Civile, Design, Edilizia e Ambiente, Università degli Studi della Campania "L. Vanvitelli", Via Roma, 9, 81031, Aversa (CE), Italy.

School of Water, Energy and Environment, Cranfield University, College Road, Cranfield, MK43 0AL, UK.

出版信息

Environ Sci Pollut Res Int. 2018 Sep;25(27):26793-26800. doi: 10.1007/s11356-017-0220-y. Epub 2017 Sep 19.

Abstract

The following paper presents a method to optimise a discontinuous permeable adsorptive barrier (PAB-D). This method is based on the comparison of different PAB-D configurations obtained by changing some of the main PAB-D design parameters. In particular, the well diameters, the distance between two consecutive passive wells and the distance between two consecutive well lines were varied, and a cost analysis for each configuration was carried out in order to define the best performing and most cost-effective PAB-D configuration. As a case study, a benzene-contaminated aquifer located in an urban area in the north of Naples (Italy) was considered. The PAB-D configuration with a well diameter of 0.8 m resulted the best optimised layout in terms of performance and cost-effectiveness. Moreover, in order to identify the best configuration for the remediation of the aquifer studied, a comparison with a continuous permeable adsorptive barrier (PAB-C) was added. In particular, this showed a 40% reduction of the total remediation costs by using the optimised PAB-D.

摘要

以下论文提出了一种优化不连续渗透吸附屏障(PAB-D)的方法。该方法基于通过改变 PAB-D 设计的一些主要参数来比较不同的 PAB-D 配置。具体来说,改变了各个被动井之间的距离、两列井之间的距离以及井的直径,并对每个配置进行了成本分析,以确定性能最佳且最具成本效益的 PAB-D 配置。作为案例研究,考虑了位于意大利那不勒斯北部一个城区的受苯污染的含水层。就性能和成本效益而言,直径为 0.8 米的井的 PAB-D 配置是最佳优化布局。此外,为了确定修复研究含水层的最佳配置,还添加了与连续渗透吸附屏障(PAB-C)的比较。具体而言,通过使用优化的 PAB-D 可将总修复成本降低 40%。

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