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D APPENDIX D: TECHNOLOGY SOLUTIONS FOR ENERGY RECOVERY References 1. N. Nersessian, H.B. Radousky and G.P. Carman. “Energy Harvesting Using A Compound Thermoelectric Material.” LLNL File Number IL-11328. Filed as a provisional patent March 2004. 2. N. Nersessian, V. Pecharsky), G. P. Carman and H. B. Radousky. “Large Power Generation in Gd5Si2Ge2 and Piezoelectric Laminates.” APS Meeting. March 2004. 3. For a review on Gd5Si2Ge2, see Pecharsky, V.K. and K.A. Gschneidner, Jr. Advanced Materials. 13:683. 2001. 4. N.Nersessian, S. Or, G.P. Carman, W. Choe, H.B. Radousky, M. McElfresh, V.K. Pecharsky, and A.O Pecharsky. “A New Gd5Si2Ge2 Composite for Actuator Applications.” Applied Physics Letters, in press. 2.0 Metal Processing In this synopsis, several areas where efficiency can be improved will not be addressed such as motors, compressed air systems and controls. Opportunities for process insertion/research & development include the following: • Energy Management Systems and Programs • Combined Heat and Power • Direct Heating • Alternative Fuels • Boiler – Recover Heat from Flue Gas Energy Management Systems (EMS) and Programs Changing or implementing an overall energy management system is often the most successful and cost-effective way to bring about energy-efficiency improvements. Energy management systems can include sub-metering and monitoring systems, control systems, and/or changes in staff behavior through a feedback registration system. The U.S. EPA Energy Star Program is working with the industrial sector to develop strategic Energy Management Systems. Combined Heat and Power (CHP) For industries that have process heat, steam, or cooling and electricity requirements, the use of combined heat and power systems can save energy and reduce pollution. Cogeneration plants are significantly more efficient than standard power plants because they take advantage of what are losses in standard plants by utilizing the waste heat. In addition, distribution losses are minimized when CHP systems are located at or near the assembly plant. For systems requiring cooling, absorption cooling can be combined with CHP to use waste heat to produce cooling power. For example, in the vehicle manufacturing industry, hot water is used for process functions, such as washing and degreasing vehicle components, and maintaining paint at correct temperatures for spraying, while electricity is used to power the motors, pumps, 119PDF Image | Analysis for Recovering Energy from Industrial Waste Heat
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