对美国陆军关键设施分散式中水回用系统的财务分析

IF 3.1 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Andy Y. Hur, Martin A. Page, Jeremy S. Guest and Christine M. Ploschke
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引用次数: 0

摘要

由于气候变化加剧了干旱和其他极端事件的发生频率,分散式水回用正日益被视为通过减少市政净水需求和紧急补给需求来提高复原力和可持续性的一个关键机会。最初的建筑规模方法,如现场处理和回用于冲厕所的废水,在许多情况下并不具有经济效益。相对于节省的成本,此类项目的投资回报率(ROI)受到资本支出和年度支出的限制。本研究采用综合建筑规模成本模型来评估更先进的分散式中水回用框架(如用于淋浴和洗衣的再生灰水、用于服务器冷却的再生灰水)的潜在经济效益,最终目的是提供更经济的方法来提高美国陆军设施建筑的可持续性和复原力。本研究开发了不同建筑中水回用框架的生命周期成本模型,以确定系统的相关生命周期成本和投资回报收益。在一个有 500 人居住的现有营房建筑中,用于冲厕所的灰水和黑水处理及回用系统在 20 年的系统设计寿命内无法带来经济效益。将淋浴和洗衣等更广泛的终端用水纳入系统后,26 年后就能产生经济效益,在建筑占用率较高的情况下效益更大。此外,每天需要 130 千加仑用于服务器冷却的陆军数据中心也存在经济上有利的中水回用机会。通过对一系列关键参数(水单价、系统资本成本、贴现率和废水回收百分比)进行敏感性分析,确定了投资回报率的最重要驱动因素。根据现行的《2020-03 军队指令--设施能源与水弹性政策》,研究结果支持在军事设施中实施中水回用的经济可行方法,这种方法还能减少电网故障或其他紧急情况下的补给需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Financial analysis of decentralized water reuse systems in mission critical facilities at U.S. Army installations†

Financial analysis of decentralized water reuse systems in mission critical facilities at U.S. Army installations†

Financial analysis of decentralized water reuse systems in mission critical facilities at U.S. Army installations†

Given increased frequency of droughts and other extreme events exacerbated by climate change, decentralized water reuse is being increasingly considered as a key opportunity for increasing resiliency and sustainability by reducing net municipal water demand and emergency resupply needs. Initial building scale approaches, such as onsite treatment and reuse of wastewater for toilet flushing has not been economically favorable in many cases. Return on investment (ROI) of such projects is limited by the capital and annual expenditures relative to the cost savings. This study applied integrated building scale cost models to assess the potential economic benefits of more advanced decentralized water reuse frameworks (e.g., reclaimed gray water for shower and laundry, reclaimed gray water for server cooling), with the ultimate aim of providing more economical approaches to increase sustainability and resiliency of buildings at U.S. Army installations. This study developed life cycle cost models of different building water reuse frameworks to characterize associated life cycle costs of systems and benefits in terms of return on investment. In an existing barracks building occupied with 500 personnel, both gray and black water treatment and reuse systems for toilet flushing do not provide economic benefit within system design life of 20 years. Incorporating broader water end uses such as shower and laundry resulted in a financial benefit after 26 years, with greater benefits at higher building occupancies. Also, economically favorable water reuse opportunities exist at Army data centers that require 130 kgal per day for server cooling. By performing sensitivity analysis over a range of key parameters – unit price of water, system capital costs, discount rate, and wastewater recovery percentage – the most important drivers of ROI were identified. In the context of current Army Directive 2020-03 Installation Energy and Water Resiliency Policy, the results support financially viable approaches for implementation of water reuse in military facilities that can also reduce resupply demands in grid-down or other emergency scenarios.

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来源期刊
Environmental Science: Water Research & Technology
Environmental Science: Water Research & Technology ENGINEERING, ENVIRONMENTALENVIRONMENTAL SC-ENVIRONMENTAL SCIENCES
CiteScore
8.60
自引率
4.00%
发文量
206
期刊介绍: Environmental Science: Water Research & Technology seeks to showcase high quality research about fundamental science, innovative technologies, and management practices that promote sustainable water.
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