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Chapter 1 Evaluation of Combined Heat and Power Technologies for Wastewater Treatment Facilities payback period or internal rates of return. Provision has been made to factor in the availability of monetary grants and, where applicable, the potential credits for reduction of greenhouse gas emissions. In summary, the LCAMER model is intended to guide wastewater professionals through the requisite technical and economic considerations for selecting the most effective energy recovery system for their site-specific digester gas application. The Combined Heat and Power System Evaluation Tool (CHP-SET) was also commissioned by WERF and was designed to aid CHP operators in tracking system performance. The CHP-SET was used to develop several case studies of operating CHP systems. The case studies and a more detailed explanation of the CHP- SET are provided in Chapter 6 of this document. 1.5 References ASERTTI (Association of State Energy Research & Technology Transfer Institutions). 2009. Strategic CHP Deployment Assistance for Wastewater Treatment Facilities. Association of State Energy Research & Technology Transfer Institutions, Madison, Wisconsin. http://www .naseo .org/news/newsletter/documents/2010-01-21-CHP_Project_Summary .pdf Bailey,O.,E.Worrell. 2005. CleanEnergyTechnologies: APreliminaryInventoryofthePotentialforElectricity Generation (DE-AC02-05CH11231). U.S. Department of Energy, Washington, DC. Crawford, G. 2009. Best Practices for Sustainable Wastewater Treatment: Initial Case Study Incorporating European Experience and Evaluation Tool Concept (OWSO4R07a). WERF (Water Environment Research Foundation), Alexandria, Virginia. EPRI (Electric Power Research Institute). 2000. Water and Sustainability: U.S. Electricity Consumption for Water Supply & Treatment – The Next Half Century (1006787). Electric Power Research Institute, Palo Alto, California. Kalogo, Y., H. Monteith. 2008. State of Science Report: Energy and Resource Recovery from Sludge (OWSO3R07). WERF (Water Environment Research Foundation), Alexandria, Virginia. Lynch, E., W. Fitzgerald. 2010. Shifting the Paradigm: Anaerobic Digestion and Combined Heat and Power for Small Treatment Plants. Water Environment & Technology, 64. August 2010. Monteith, H., D. Bagley, H. MacLean, Y. Kalogo. 2007. An Assessment Tool for Managing Cost-Effective Energy Recovery from Anaerobically Digested Wastewater Solids (01CTS18UR). WERF (Water Environment Research Foundation), Alexandria, Virginia. Morris, G. 2008. Bioenergy and Greenhouse Gases. The Renewable Energy Program of the Pacific Institute, Berkeley, California. Parry, D. 2008. Fueling the Flames: Maximizing Biogas Use Can Improve the Bottom Line. Water Environment & Technology, 120. September 2008. Schwarzenbeck, N., E. Bomball, W. Pfeiffer. 2008. Can a Wastewater Treatment Plant be a Power Plant? A Case Study. Water Science & Technology. Sonoma County, California. 2009. Sustainable Energy Practices Guidebook for Public Agencies. Brown and Caldwell. USEPA (United States Environmental Protection Agency) Combined Heat and Power Partnership. 2007. Biomass Combined Heat and Power Catalog of Technologies. U.S. Environmental Protection Agency, Washington, DC. 1-10PDF Image | Combined Heat and Power Technologies for Wastewater Facilities
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