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o Lack of innovative designs that allow use of condensing heat exchangers (gas- water) without having the corrosive effects of carbonic acid produced from CO2 in flue products. Steam discharged as vented steam or steam leaks. o No major technical barriers. The major barriers are cost and return on investment for the collection of steam, the cooling system, condensate collection and, in some cases, the cleaning system. Other gaseous streams. o Application-specific barriers. Clean heated water discharged from indirect cooling systems such as process or product cooling or steam condensers. This stream does not contain any solids or gaseous contaminants. o Lack of use of low-grade heat within the plant. Lack of economically justifiable heat recovery systems that can convert low-grade heat into a transportable and usable form of energy, such as electricity. Hot water that contains large amounts of contaminants such as solids from the process or other sources, but does not contain organic liquids or vapors mixed with the water. o No major technical barriers for cleaning the water (removing the solids). o Lack of use of low-grade heat within the plant or economically justifiable energy conversion systems. Hot water or liquids containing dissolved perceptible solids, dissolved gases (e.g., CO2 and SO2) or liquids. o No major technical barriers for filtering the water (removing the solids). o The presence of SO2, CO2, and other dissolved gases presents problems of high PH values for water use within a plant. There is no simple method of neutralizing the water. o Lack of use of low-grade heat within the plant or economically justifiable energy conversion systems. Hot solids that are cooled after processing in an uncontrolled manner. o Economically justifiable cooling air collection system. o Lack of use of low-temperature heat within the plant or economically justifiable energy conversion systems. o Variations in cooling air temperatures and the presence of microscopic particulates prevent their use in combustion system (burners). Hot solids that are cooled after processing used water or air-water mixture. Examples include hot coke, ash, slag, and heat treated parts. o No major technical barriers for filtering the water (removing the solids). o Lack of use of low-grade heat within the plant or economically justifiable energy conversion systems. Hot liquids and vapors that are cooled after thermal processing. Examples include fluids heated in petroleum reefing or the chemical, food, mining, or paper industries. o No major technical barriers for recovering heat if there is sufficient temperature “head.” o Lack of use of low-grade heat within the plant or economically justifiable energy conversion systems. Industrial Waste Heat Recovery Page 25PDF Image | Industrial Waste Heat Recovery: Potential
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