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符合法规要求的过滤措施对控制城市径流中沉积物和金属污染的成本效益。

Cost effectiveness of regulation-compliant filtration to control sediment and metal pollution in urban runoff.

作者信息

Smith C Scott, Lejano Raul P, Ogunseitan Oladele A, Hipi J Aaron

机构信息

Department of Planning, Policy, and Design, University of California, Irvine 92697, USA.

出版信息

Environ Sci Technol. 2007 Nov 1;41(21):7451-8. doi: 10.1021/es062775z.

Abstract

The implementation of Total Maximum Daily Load (TMDL) to control urban runoff presents major structural and managerial challenges for cities. We developed a decision support system (DSS) for TMDL compliance at the city level to solve for a phased, least-cost strategy toward meeting four TMDLs using stormwater filtration. Based on a case-study city, we modeled wet weather flows and associated discharge of Total Suspended Sediment (TSS), cadmium, copper, and zinc to receiving waters by coupling U.S. EPA's Storm Water Management Model (SWMM v. 5.0) with the geographic dataset of the urban drainage network. We linked a mixed integer linear programming algorithm to the watershed model for deriving cost-effective selection and placement of curb inlet filters to meet mass- and concentration-based TMDL requirements. The least cost solution for meeting the city's TMDL waste load allocations for TSS (73.9% reduction), Cd (50.6% reduction), Cu (30.0% reduction), and Zn (55.7% reduction) would require 1071 filter inserts at a cost of $1.7 million. In contrast, random placement of 1071 filters or uniform placement of 1266 filters is effective only for TSS and would cost $4.0 million and $4.8 million, respectively. Our results demonstrate the increases in cost-effectiveness of using an optimization-based DSS for urban watershed management.

摘要

实施总最大日负荷(TMDL)以控制城市径流给城市带来了重大的结构和管理挑战。我们开发了一个城市层面的TMDL合规决策支持系统(DSS),以求解一种分阶段、成本最低的策略,通过雨水过滤来满足四项TMDL要求。基于一个案例研究城市,我们通过将美国环境保护局的雨水管理模型(SWMM v. 5.0)与城市排水管网的地理数据集相结合,对潮湿天气流量以及总悬浮固体(TSS)、镉、铜和锌向受纳水体的相关排放进行了建模。我们将混合整数线性规划算法与流域模型相链接,以推导符合成本效益的路边进水口过滤器的选择和布置,以满足基于质量和浓度的TMDL要求。满足该城市TMDL对TSS(减少73.9%)、镉(减少50.6%)、铜(减少30.0%)和锌(减少55.7%)的废物负荷分配的最低成本解决方案需要1071个过滤器滤芯,成本为170万美元。相比之下,随机布置1071个过滤器或均匀布置1266个过滤器仅对TSS有效,成本分别为400万美元和480万美元。我们的结果表明,使用基于优化的DSS进行城市流域管理可提高成本效益。

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