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Developing a Cutting Edge, Closed-Loop Organics-to-Energy Project - Roseville Case Study

机译:开发尖端,闭环有机能量项目 - 罗斯维尔案例研究

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The City of Roseville (City) is developing an Energy Recovery project to collect and digest food waste, or pre-processed source-separated organics (SSO) and fats, oil, and grease (FOG) at the Pleasant Grove Wastewater Treatment Plant (PGWWTP). The additional gas production from high strength waste (HSW), FOG and SSO will help drive a new digester gas (DG) upgrading project aimed at delivering renewable vehicle fuel to City's solid waste collection fleet. Anaerobic digesters, which will be constructed as part of the PGWWTP Expansion project, are not only a proven process for stabilizing wastewater solids, but are also increasingly recognized as a preferred pathway for codigestion of organics that would otherwise be landfilled. The Energy Recovery Project began with a comprehensive analysis aimed at determining the best use of DG in terms of net present value (NPV). The various alternatives, the analysis methodology, and the results are outlined in this paper. DG utilization alternatives included engine-based combined heat and power (CHP) systems, microturbine-based CHP systems, direct sale to an adjacent power plant, and DG separation for use as vehicle fuel. All technologies were evaluated across a range of DG production rates, which assumed various levels of co-digestion of trucked organic waste. Alternatives were compared to a status quo alternative that assumed DG would be used to operate hot water boilers for digester heat, as needed, with excess DG being flared. Alternatives were ranked based on 20-year NPV. The key findings of the analysis are listed below:1. All alternatives benefitted from increased DG production from co-digestion of organic HSW 2.Upgraded DG for use as vehicle fuel provides the greatest apparent NPV compared to CHP systems or direct sale to the adjacent power plant 3.A hybrid microturbine and vehicle fuel project affords greater potential for funding opportunities since both standalone projects have grant and rebate possibilities.
机译:罗斯维尔(市)正在开展能源回收项目,在宜人的树丛废水处理厂(PGWWTP)(PGWWTP)(PGWWTP)收集和消化食物废物,或预加工的源分离有机物(SSO)和脂肪,油,油脂)(PGWWTP )。高强度废物(HSW),雾和SSO的额外气体生产将有助于推动新的掘进气体(DG)升级项目,旨在将可再生车辆燃料提供给城市的固体废物收集舰队。作为PGWWTP扩展项目的一部分构建的厌氧消化器不仅是稳定废水固体的经过验证的方法,而且还越来越被认为是有机物的多数民用填埋的优选途径。能量回收项目开始旨在确定在净目前值(N​​PV)方面最佳使用DG的综合分析。本文概述了各种替代品,分析方法和结果。 DG利用替代方案包括基于发动机的组合热量和功率(CHP)系统,基于MicroBine的CHP系统,直接销售到相邻的电厂,以及DG分离用作车辆燃料。所有技术都在一系列DG生产率中进行了评估,这假设卡车运输有机废物的各种各样的共消化。将替代品与现状替代相比,假设DG将根据需要使用用于蒸煮热的热水锅炉,多余的DG被喇叭形。替代品根据20年的NPV排名。分析的关键结果如下:1。与有机HSW共同消化的DG生产增加的所有替代品都是upgroded dg作为车辆燃料,与CHP系统或直接销售到相邻的电厂3.A混合微炮和车辆燃料项目提供了最大的明显NPV。由于两个独立项目都有授予和折扣可能性,因此提供资金机会的更大潜力。

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