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A Planning Tool for Optimizing Investment to Reduce Drinking Water Risk to Multiple Water Treatment Plants in Open Catchments

机译:优化投资的规划工具,以减少对开放集水区多次水处理厂的饮用水风险

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摘要

Supplying safe, secure, and reliable drinking water is a growing challenge particularly in regions where catchments have diverse land uses, rapidly growing populations, and are subject to increasing weather extremes such as in the subtropics. Catchments represent the first barrier in providing ecosystem services for water quality protection and bulkwater suppliers are therefore investing in mitigation measures to reduce risk to drinking water quality for consumers. This paper presents an approach to combine data on erosion processes, pathogenic bacteria and protozoa from several sources, determine the highest risks from these hazards and identify an optimum portfolio of intervention activities that provide maximum risk reduction at water treatment plants (WTP) for a given budget using a simulated annealing optimizer. The approach is demonstrated in a catchment with six WTPs servicing small rural to urban populations. The catchment is predominantly used for agriculture. Results show that drinking water risk from protozoa can be reduced for most WTPs for moderate investment budget, while bacteria risk reduction requires significantly larger budget due to the greater number of significant source sites relative to protozoa. Total suspended sediment loads remain a very high risk to most of the WTPs due to the large extent of channel and gully erosion and landslides. A map of priority areas and associated suite of interventions are produced to guide on groundwork.
机译:提供安全,安全,可靠的饮用水是在流域有不同的土地用途,人口增长迅速,并受到天气越来越走极端,例如在亚热带地区尤为越来越大的挑战。流域代表的第一道屏障在水质保护生态系统提供的服务和bulkwater供应商的减缓措施,因此投资风险降低到饮用水质量,为消费者。本文提出了一种方法来在侵蚀过程,致病细菌和原生动物数据从多个来源相结合,确定从这些危害风险最高,并确定在污水处理厂(WTP)提供最大的风险降低干预活动的最佳组合对于给定使用预算模拟退火优化。该方法是体现在集水区有六个水厂维修小农村到城市的人口。集水主要是用于农业。结果表明,原生动物饮水风险可能由于相对于原生动物显著源站点的更多数目的减少对于大多数水厂的适度投资预算,同时减少细菌风险需要显著更大的预算。总悬浮泥沙量仍然非常高的风险,大部分水厂的由于很大程度上通道沟壑侵蚀和山体滑坡。优先领域和干预的关联的套件的地图产生以指导基础。

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