Waste Heat to Energy Tech Opportunities in US Industry

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Waste Heat to Energy Tech Opportunities in US Industry ( waste-heat-energy-tech-opportunities-us-industry )

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Index of Tables Table A ­ Research, Development, and Demonstration Needs for Addressing Waste ­ Heat Recovery Barriers xv­ Table 1 ­ Example Waste Heat Sources and End­Uses 2­ Table 2 ­ Furnace Efficiency Increase with Combustion Air Preheat 3­ Table 3 ­ Estimates of Waste Heat Loss and Recovery Potential 4­ Table 4 ­ Temperature Classification of Waste Heat Sources and Related ­ Recovery Opportunity 8 ­ Table 5 ­ General Range Of Heat Transfer Coefficients for Sensible Heat ­ Transfer in Tubular Exchangers 10­ Table 6 ­ Operating Parameters and Costs for Different Heat Pumps 23­ Table 7 ­ Options for Heat Recovery via Power Generation 25­ Table 8 ­ Comparison of Heat Recovery Technologies 30­ Table 9 ­ Status of Waste Heat Recovery Technologies in Selected Applications 31­ Table 10 Table 11 Table 12 Table 13 Table 14 Table 15 Table 16 Table 17 Table 18 Table 19 Table 20 Table 21 Table 22 Table 23 Table 24 Table 25 ­ Unrecovered Waste Heat and Work Potential from Exhaust ­ Gases in Glass Melting 35­ ­ Unrecovered Waste Heat and Work Potential from Exhaust ­ Gases in Cement Kilns 36­ ­ Unrecovered Waste Heat and Work Potential from Selected ­ Process Exhaust Gases in the Iron and Steel Industry 37­ ­ Typical Coke Oven Gas Composition 38­ ­ Basic Oxygen Furnace Off­gas Composition 40­ ­ Unrecovered Sensible Heat Losses from Hot Solid Streams In ­ Iron/Steel Production 42­ ­ Unrecovered Waste Heat and Work Potential from Exhaust Gases ­ In Aluminum Refining and Melting 43­ ­ Unrecovered Waste Heat and Work Potential from Selected ­ Process Exhaust Gases in Metal Casting 45­ ­ Unrecovered Waste Heat and Work Potential from Industrial ­ Boiler Exhaust Gases 48­ ­ Unrecovered Waste Heat and Work Potential from Ethylene Furnaces 49­ ­ Unrecovered Waste Heat and Work Potential from Selected Process ­ Exhaust Gases 53­ ­ Unrecovered Waste Heat in Different Temperature Groups 55­ ­ Comparison of Current Units with and Without Heat Recovery 56­ ­ Typical Furnace Capacities and Waste Heat Losses In Different ­ Segments of Glass Industry 59­ ­ Waste Heat Losses from Other Sources In Addition To Exhaust Gases 61­ ­ Summary of Research, Development, and Demonstration Opportunities ­ and Barriers Addressed 67­ viii ­

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