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Potential of Rainwater Harvesting and Greywater Reuse for Water Consumption Reduction and Wastewater Minimization

机译:雨水收集和中水回用在减少水消耗和减少废水方面的潜力

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Northeastern Mexico is a semiarid region with water scarcity and a strong pressure on water sources caused by the rapid increase of population and industrialization. In this region, rainwater harvesting alone is not enough to meet water supply demands due to the irregular distribution of rainfall in time and space. Thus, in this study the reliability of integrating rainwater harvesting with greywater reuse to reduce water consumption and minimize wastewater generation in the Tecnológico de Monterrey, Monterrey Campus, was assessed. Potable water consumption and greywater generation in main facilities of the campus were determined. Rainwater that can be potentially harvested in roofs and parking areas of the campus was estimated based on a statistical analysis of the rainfall. Based on these data, potential water savings and wastewater minimization were determined. Characterization of rainwater and greywater was carried out to determine the treatment necessities for each water source. Additionally, the capacity of water storage tanks was estimated. For the selected treatment systems, an economic assessment was conducted to determine the viability of the alternatives proposed. Results showed that water consumption can be reduced by 48% and wastewater generation can be minimized by 59%. Implementation of rainwater harvesting and greywater reuse systems in the Monterrey Campus will generate important economic benefits to the institution. Amortization of the investments will be achieved in only six years, where the net present value (NPV) will be on the order of US $50,483.2, the internal rate of return (IRR) of 4.6% and the benefits–investment ratio (B/I) of 1.7. From the seventh year, the project will present an IRR greater than the minimum acceptable rate of return (MARR). In a decade, the IRR will be 14.4%, more than twice the MARR, the NPV of US $290,412.1 and the B/I of 3.1, denoting economic feasibility. Based on these results, it is clear that integrating rainwater harvesting with greywater reuse resulted in a more feasible and reliable strategy than those strategies based only on rainwater harvesting. Furthermore, the investments can be amortized in a shorter period of time.
机译:墨西哥东北部是一个半干旱地区,由于人口的快速增长和工业化的发展,水资源短缺,水资源压力很大。在这个地区,由于降雨在时间和空间上的不规则分布,仅靠雨水收集不足以满足供水需求。因此,在这项研究中,评估了在蒙特雷校区的Tecnológicode Monterrey将雨水收集与中水回用相结合以减少水消耗并使废水产生最小化的可靠性。确定了校园主要设施中的饮用水消耗和灰水生成。根据对降雨的统计分析,估算了可能在校园的屋顶和停车场收集的雨水。根据这些数据,确定了潜在的节水和废水最小化的方法。对雨水和中水进行了表征,以确定每种水源的处理必要性。另外,估计了储水箱的容量。对于选定的处理系统,进行了经济评估,以确定拟议替代方案的可行性。结果表明,耗水量可减少48%,废水产生量可减少59%。在蒙特雷校区实施雨水收集和中水回用系统将为该机构带来重要的经济利益。投资的摊销将仅在六年内完成,其中净现值(NPV)约为50,483.2美元,内部收益率(IRR)为4.6%,收益与投资比率(B / I) )的1.7。从第七年开始,该项目的内部收益率将大于最低可接受收益率(MARR)。十年内,IRR将为14.4%,是MARR的两倍,NPV为290,412.1美元和B / I为3.1,这表明经济可行性。根据这些结果,很明显,与仅基于雨水收集的策略相比,将雨水收集与中水回用相结合产生了一种更加可行和可靠的策略。此外,投资可以在更短的时间内摊销。

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