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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. The solids can be filtered out without further treatment of water. Examples include quenching or cooling water used to cool hot parts in the metals industry, paper industry, or cement industry. Hot water or liquids containing dissolved solids, dissolved gases (e.g., CO2, SO2), or liquids. These liquids (water) require further treatment before their use or discharge in the streams. Examples include scrubber water; wash water from chemical processes or from the food, paper, or textile industries. Heated Products or By-Products Heated products or by-products can be classified in the following categories: Hot solids that are cooled after processing in an uncontrolled manner. Examples are hot slabs, mineral products, paper or textile web, and food cereals. These products are usually cooled by natural or forced cooling using air, but the heat is not recovered. Hot solids that are cooled after processing using water or an air-water mixture. Examples include hot coke, ash, slag, and heat- treated parts. Hot liquids and vapors that are cooled after thermal processing. Examples include fluids heated in petroleum refining, chemical, food, mining, and paper industries. By-products or wastes that are discharged from thermal processes. These materials contain sensible, latent, and chemical heat that is not recovered prior to its disposal. Examples include ash from coal- or solid-waste-fired boilers, slag from steel melting operations, dross from aluminum melters, and bottom waste from reactors or sludge. High-Temperature Surfaces High-temperature surfaces can be classified in the following categories: Furnace or heater walls where a large amount of heat is lost due to convection and radiation. Extended surfaces or parts used in furnaces or heaters. Exhibit 6 lists the different types of waste streams, the industries in which they are generated, and the temperature regimes for their waste stream, which is coded by color. This table does not give additional details on composition or other characteristics of the waste stream. These are discussed in separate tables for each of the industries examined in this study. Industrial Waste Heat Recovery Page 22PDF Image | Industrial Waste Heat Recovery: Potential
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