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Biomass Combined Heat and Power Catalog of Technologies

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Biomass Combined Heat and Power Catalog of Technologies ( biomass-combined-heat-and-power-catalog-technologies )

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EPA Combined Heat and Power Partnership Biomass CHP Catalog siting, and system configuration. The goal of the CHP Partnership’s technical assistance efforts is to provide energy users with technology, fuel, and vendor neutral information regarding CHP projects. CHP Project Development Process (www.epa.gov/chp/project-development/index.html) CHP technology and applications are proven and running successfully nationwide; however, potential CHP users do not always understand all of the steps required to complete a successful project. To streamline the complex and time-intensive task of CHP implementation, those considering CHP systems for their facilities should understand the entire project development process. The CHP Partnership has developed a series of key questions, considerations, and decisions that will be part of any CHP development project—outlined as a five-stage process on this Web site. The CHP Partnership offers services and tools to help project developers, end users, and others at each stage of project development. Municipal Wastewater Facilities Strategic Market (www.epa.gov/chp/markets/wastewater.html) Wastewater treatment facilities (WWTFs) that use anaerobic digesters to treat their waste are an excellent technical fit for CHP. At a WWTF, the biogas flow from the digester can be used as “free” fuel to generate electricity and power in a CHP system using a turbine, microturbine, fuel cell, or reciprocating engine. Installing a CHP system at a WWTF offers in a number of benefits: • Producing power at a cost below retail electricity. • Displacing purchased fuels for thermal needs. • Qualifying as a renewable fuel for green power programs. • Enhancing power reliability for the plant. • Offering a cost-effective opportunity to reduce greenhouse gas and other air emissions. The CHP Partnership recently analyzed the potential market and technical fit for CHP in this sector. A report describing this work is now available from the CHP Partnership: • Opportunities and Benefits of Combined Heat and Power at Wastewater Treatment Facilities (www.epa.gov/chp/documents/wwtf_opportunities.pdf) A report on WWTFs throughout the country, engineering rules of thumb for estimating the generation potential at a WWTF, and numerous links to case studies showing the benefits of CHP at WWTFs. Dry Mill Ethanol Strategic Market (www.epa.gov/chp/markets/ethanol.html) The CHP Partnership has been working with the ethanol industry since 2003 and has developed many useful documents that discuss the benefits of CHP for ethanol production facilities. Relevant case studies and presentations are also available on the Web site. Key documents include: • Combined Heat and Power: An Energy-Efficient Choice for the Ethanol Industry (www.epa.gov/chp/markets/ethanol_fs.html) A four-page fact sheet that explains the efficiency gains of CHP over separate heat and power, discusses the strong technical fit for CHP at ethanol production facilities, and provides information on some ethanol facilities currently employing CHP. • Assessment of the Potential for Energy Savings in Dry Mill Ethanol Plants from the Use of Combined Heat and Power (CHP) (www.epa.gov/chp/documents/ethanol_energy_assessment.pdf) A report on the energy savings from using CHP to generate electricity and steam for ethanol production instead of natural gas– and coal-fired, state-of-the-art boilers to generate steam and purchase grid electricity. Reductions in total fuel use are shown to be greater than 12 percent versus natural gas and 10 percent versus coal. The report includes a detailed discussion of performance and output characteristics and estimation methodologies. Appendix B 98

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