WASTE TREATMENT DEVICE

PROBLEM TO BE SOLVED: To provide a waste treatment device capable of improving recovery efficiency of waste heat. SOLUTION: This waste treatment device has an incinerator 1 for burning wastes, a dust collection means 3 for catching soot and dust that exhaust gas generated in the incinerator 1 contai...

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Hauptverfasser: MARUMOTO TAKAHIRO, OYATSU NORIYUKI
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creator MARUMOTO TAKAHIRO
OYATSU NORIYUKI
description PROBLEM TO BE SOLVED: To provide a waste treatment device capable of improving recovery efficiency of waste heat. SOLUTION: This waste treatment device has an incinerator 1 for burning wastes, a dust collection means 3 for catching soot and dust that exhaust gas generated in the incinerator 1 contains, a waste heat recovery boiler 9 for recovering heat of exhaust gas from the dust collection means 3, a melting furnace 5 for melting soot and dust caught by the dust collection means 3 and turning them into slag, and an independent superheater 7 for recovering heat of exhaust gas from the melting furnace 5 to lead exhaust gas from the independent superheater 7 onto the upstream side of the waste heat recovery boiler 9. In this configuration, since exhaust gas exhausted when soot and dust caught by the dust collection means 3 are melted in the melting furnace 5 and are turned into slag contains scarcely hydrogen chloride, temperature of steam circulating in a heat transfer pipe of the independent superheater 7 is raised above that of the waste heat recovery boiler 9. Even the waste heat recovery boiler 9 can recover waste heat from exhaust gas from the dust collection means 3 and the independent superheater 7, thereby improving recovery efficiency of waste heat. COPYRIGHT: (C)2004,JPO&NCIPI
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SOLUTION: This waste treatment device has an incinerator 1 for burning wastes, a dust collection means 3 for catching soot and dust that exhaust gas generated in the incinerator 1 contains, a waste heat recovery boiler 9 for recovering heat of exhaust gas from the dust collection means 3, a melting furnace 5 for melting soot and dust caught by the dust collection means 3 and turning them into slag, and an independent superheater 7 for recovering heat of exhaust gas from the melting furnace 5 to lead exhaust gas from the independent superheater 7 onto the upstream side of the waste heat recovery boiler 9. In this configuration, since exhaust gas exhausted when soot and dust caught by the dust collection means 3 are melted in the melting furnace 5 and are turned into slag contains scarcely hydrogen chloride, temperature of steam circulating in a heat transfer pipe of the independent superheater 7 is raised above that of the waste heat recovery boiler 9. Even the waste heat recovery boiler 9 can recover waste heat from exhaust gas from the dust collection means 3 and the independent superheater 7, thereby improving recovery efficiency of waste heat. 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SOLUTION: This waste treatment device has an incinerator 1 for burning wastes, a dust collection means 3 for catching soot and dust that exhaust gas generated in the incinerator 1 contains, a waste heat recovery boiler 9 for recovering heat of exhaust gas from the dust collection means 3, a melting furnace 5 for melting soot and dust caught by the dust collection means 3 and turning them into slag, and an independent superheater 7 for recovering heat of exhaust gas from the melting furnace 5 to lead exhaust gas from the independent superheater 7 onto the upstream side of the waste heat recovery boiler 9. In this configuration, since exhaust gas exhausted when soot and dust caught by the dust collection means 3 are melted in the melting furnace 5 and are turned into slag contains scarcely hydrogen chloride, temperature of steam circulating in a heat transfer pipe of the independent superheater 7 is raised above that of the waste heat recovery boiler 9. Even the waste heat recovery boiler 9 can recover waste heat from exhaust gas from the dust collection means 3 and the independent superheater 7, thereby improving recovery efficiency of waste heat. 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SOLUTION: This waste treatment device has an incinerator 1 for burning wastes, a dust collection means 3 for catching soot and dust that exhaust gas generated in the incinerator 1 contains, a waste heat recovery boiler 9 for recovering heat of exhaust gas from the dust collection means 3, a melting furnace 5 for melting soot and dust caught by the dust collection means 3 and turning them into slag, and an independent superheater 7 for recovering heat of exhaust gas from the melting furnace 5 to lead exhaust gas from the independent superheater 7 onto the upstream side of the waste heat recovery boiler 9. In this configuration, since exhaust gas exhausted when soot and dust caught by the dust collection means 3 are melted in the melting furnace 5 and are turned into slag contains scarcely hydrogen chloride, temperature of steam circulating in a heat transfer pipe of the independent superheater 7 is raised above that of the waste heat recovery boiler 9. Even the waste heat recovery boiler 9 can recover waste heat from exhaust gas from the dust collection means 3 and the independent superheater 7, thereby improving recovery efficiency of waste heat. COPYRIGHT: (C)2004,JPO&amp;NCIPI</abstract><edition>7</edition><oa>free_for_read</oa></addata></record>
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subjects BLASTING
COMBUSTION APPARATUS
COMBUSTION PROCESSES
CONSUMING WASTE PRODUCTS BY COMBUSTION
CREMATION FURNACES
DISPOSAL OF SOLID WASTE
HEATING
LIGHTING
MECHANICAL ENGINEERING
METHODS OF STEAM GENERATION
PERFORMING OPERATIONS
RECLAMATION OF CONTAMINED SOIL SOIL
STEAM BOILERS
STEAM GENERATION
SUPERHEATING OF STEAM
TRANSPORTING
WEAPONS
title WASTE TREATMENT DEVICE
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