Combined Heat and Power Technologies for Wastewater Facilities

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Combined Heat and Power Technologies for Wastewater Facilities ( combined-heat-and-power-technologies-wastewater-facilities )

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Chapter 2 Evaluation of Combined Heat and Power Technologies for Wastewater Treatment Facilities Table 2-9. Steam Turbine Generators With Steam Boilers Advantages • CanproducelowlevelsofNOxandCOexhaustemissions. • Boilersrequirefuelpressurizedtoonly3to5psig, approximately. • Steam turbines are typically very reliable and long-lasting machines. • Requiresonlymoderatefuelgastreatment. 2.6 References Disadvantages • Electricalpowergenerationefficiencyisusuallylow. • Usuallyonlyapplicableforfacilitieswithverylargebiogasquantities. • Requiresalargeboiler,producinghighpressuresteam. • High pressure steam boilers must be continually staffed. • Mustprovidealargecondensertocoolthesteamforoptimal performance. 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, WI. http://www .naseo .org/news/newsletter/documents/2010-01-21-CHP_Project_Summary .pdf EPRI (Electric Power Research Institute). 2006. Comparison of Distributed Generation Technology Options, 250 - 400 kW: Micro-turbines, Carbonate Fuel Cells, Internal Combustion Engines (1010527). Electric Power Research Institute, Palo Alto, CA. EPRI (Electric Power Research Institute). 2006. Assessment of Fuel Gas Cleanup Systems for Waste Gas Fueled Power Generation (1012763). Electric Power Research Institute, Palo Alto, CA. Kalogo, Y., H. Monteith. 2008. State of Science Report: Energy and Resource Recovery from Sludge (OWSO3R07). WERF (Water Environment Research Foundation), Alexandria, VA. The Literary Digest for July 6, 1929. 1929. Engines Run on Sewage Gas. McDannel, M., E. Wheless. 2007. The Power of Digester Gas, a Technology Review from Micro to Megawatts. In Proceedings of the Water Environment Federation’s 80th Annual Technical and Educational Conference, Chicago, IL, October 2007. Monteith, H., D. Bagley, H. MacLean, Y. Kalogo. 2006. An Assessment Tool for Managing Cost-effective Energy Recovery (01CTS18UR). WERF (Water Environment Research Foundation), Alexandria, VA. Noone, G., B. Bell, M. Donaldson. 1984. Digestion Gas Package Power Generation – Some Recent Experiences Within Severn-Trent Water Authority. Water Pollution Control. ONSITE SYCOM Energy Corporation. 1999. Review of Combined Heat and Power Technologies. ONSITE SYCOM Energy Corporation. Resource Dynamics Corporation. 2001. Assessment of Distributed Generation Technology Applications. Resource Dynamics Corporation. USEPA (United States Environmental Protection Agency) Combined Heat and Power Partnership. 2008. Catalog of CHP Technologies. U.S. Environmental Protection Agency, Washington, DC. USEPA (United States Environmental Protection Agency) Combined Heat and Power Partnership. 2007. Opportunities for and Benefits ofCombined Heat and Power at Wastewater Treatment Facilities. U.S. Environmental Protection Agency, Washington, DC. http://www.epa.gov/chp/documents/wwtf_opportunities.pdf 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. 2-19

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