Analysis for Recovering Energy from Industrial Waste Heat

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Analysis for Recovering Energy from Industrial Waste Heat ( analysis-recovering-energy-from-industrial-waste-heat )

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1 SURVEY OF CHEMICAL EMISSIONS Table 24. Calculation of CH4 Emissions Using Fuel Consumption Data from Tables 2.1 and 2.2 of EIA Annual Energy Review [5] 1990 1998 Corrected PJ CH4 Fuel TBtu Corrected PJ CH4 TBtu Emission Fuel TBtu (Gg) 2762 27.6 8073 40.4 8297 16.6 1521 45.6 20653 130.2 PJ CH4 Emission (Gg) 2494 24.9 9150 45.8 8633 17ÏC.3 1743 52.3 22020 140.2 Table 24 gives the methane Annual Energy Review. As from total energy consumption (for electricity and for industrial processes). To deter- mine the contribution of each fuel to CH4 emissions within each industrial sector, we used the data for total CO2 emissions for year 1998 within each sector [2]. We calculated the energy consumption using an appropriate CO2 emission coefficient for each sector. To calculate the amount of CH4 emitted from each industrial sector and each fuel type, we used the CH4 emission coefficient values given in the IPCC revised 1996 report. The total energy data used for this report was from the manufacturing sub-sector of the industrial sector, excluding agriculture, mining, and construction. Coal 2756 2618 Natural gas 8502 7652 Petroleum 8278 7864 Wood 1442 1442 Total 20978 19576 1995 Fuel TBtu Corrected TBtu Coal 2488 2363 Natural gas 9637 8673 Petroleum 8614 8183 Wood 1652 1652 Total 22391 20872 Coal 2335 Natural gas 9806 Petroleum 9116 Wood 1603 Total 22860 2218 2340 23.4 8825 9311 46.6 8660 9137 18.3 1603 1691 50.7 21307 22479 139.0 2001 Corrected PJ CH4 TBtu Emission (Gg) Fuel TBtu Coal 2230 Natural gas 8725 Petroleum 9220 Wood 1443 Total 21618 2119 2235 22.4 7853 8284 41.4 8759 9241 18.5 1443 1522 45.7 20173 21283 127.9 emission values using fuel consumption from the EIA 2003 expected, the CH4 emissions energy consumption is less than 23 TBtu Emission (Gg)

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