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    • 12. 发明专利
    • System for treating object to be treated and method for treating object to be treated
    • 用于处理待处理对象的系统和处理要处理的对象的方法
    • JP2004249203A
    • 2004-09-09
    • JP2003041592
    • 2003-02-19
    • Toshiba Corp株式会社東芝
    • NOMA TAKESHIAMAMIYA TAKASHIIDE KATSUNORIISHIGE TAKAYUKIKIMURA SHINICHIHANAWA SHINICHI
    • B09B3/00C10K1/02C10K1/06
    • Y02E50/30
    • PROBLEM TO BE SOLVED: To provide a system for treating an object to be treated which can cool a thermally decomposed gas generated therein by a cooling liquid sprayed from a multi-fluid nozzle without deteriorating the quality of the thermally decomposed gas. SOLUTION: The system 1 for treating an object to be treated comprises thermal decomposition apparatuses 2 and 3, gas cooling mechanisms 4 and 5 installed in the rear stage of the thermal decomposition apparatuses 2 and 3, and a dust collecting apparatus 6 installed in the rear stage of the gas cooling mechanisms 4 and 5. The gas cooling mechanisms 4 and 5 are provided with a multi-fluid nozzle 12. The multi-fluid nozzle 12 is made to spray a spraying solution for cooling to the thermally decomposed by utilizing an oxygen-free spraying gas (e.g., steam or the like). COPYRIGHT: (C)2004,JPO&NCIPI
    • 要解决的问题:提供一种用于处理待处理物体的系统,其可以通过由多流体喷嘴喷射的冷却液冷却其中产生的热分解气体,而不会降低热分解气体的质量。 解决方案:用于处理待处理物体的系统1包括热分解装置2,3,安装在热分解装置2,3的后级的气体冷却机构4,5,以及安装在集尘装置6上的集尘装置 在气体冷却机构4和5的后级中。气体冷却机构4和5设置有多流体喷嘴12.多流体喷嘴12被制成喷射用于冷却的喷射溶液以由 利用无氧喷雾气体(例如蒸汽等)。 版权所有(C)2004,JPO&NCIPI
    • 15. 发明专利
    • SUPERCONDUCTOR CONNECTING DEVICE
    • JPH08153563A
    • 1996-06-11
    • JP29641294
    • 1994-11-30
    • TOSHIBA CORP
    • HANAWA SHINICHI
    • H01R4/68H01R43/00
    • PURPOSE: To lessen drop of the critical current by placing electroconductive pushing members in grooves provided in a conductive housing in such a way that the projecting parts of the pushing members are in engagement, subjecting them to pressurizing and heating in a single piece, and connecting filaments with one another by solid phase diffusion. CONSTITUTION: Superconductive element wires with filaments at the ends of superconductors 1, 2 exposed are inserted in a conductor inserting hole provided in a copper housing 8 and a conductor inserting hole provided in a pushing member 11 in such a way as facing the opposing sides in the condition that grooves 10 in the housing and projections 13 on the pushing member 11 are confronting, and are placed in the grooves 10 in engagement. Filaments to be connected 14a, 14b distributed according to the number of grooves are placed in the respective grooves 10. The pushing member 11 is placed in the housing 8 in such a way that the projections 13 are engaged by the grooves 10, and a guide tube having an inside diameter equal to the housing is put on the periphery, followed by pressurization from over and under and heating so that the filaments 14a, 14b are joined together by solid phase diffusion.
    • 17. 发明专利
    • CARBON DIOXIDE SEPARATING AND REMOVING DEVICE
    • JPH06210131A
    • 1994-08-02
    • JP655793
    • 1993-01-19
    • TOSHIBA CORP
    • HANAWA SHINICHI
    • B01D53/62B01D53/34C01B32/50F25J3/00C01B31/20
    • PURPOSE:To separate and remove a large amt. of CO2 while saving water by setting an electromagnet outside an absorption tower to generate a magnetic field in the tower and providing a screw in the tower, a cathode along the inner tower wall and a soln. discharge pipeline at the center of the tower bottom. CONSTITUTION:A screw 8 is provided in an absorption tower 1 and rotated to form a circumferential flow of a soln. 9. A circumferential magnetic field B generated by a electromagnet 11 furnished outside the tower 1 is impressed on the flow 10, hence H ion 6 is moved toward the periphery and HCO3 ion 7 toward the center by the Lorentz force, and both ions are separated. The H ion 6 collected close to the inner wall of the tower is attracted by a cathode 13 cylindrically set along the inner wall, provided with an electron and converted to gaseous hydrogen 14 which ascends in the soln. Meanwhile HCO3 ion 7 is collected around the center of the tower 1 and sent to a recovery tower 16 through an insulating soln. delivery pipeline set at the bottom center of the tower 1.
    • 18. 发明专利
    • Pyrolytic melting device
    • 热熔胶装置
    • JP2007309643A
    • 2007-11-29
    • JP2007178596
    • 2007-07-06
    • Toshiba Corp株式会社東芝
    • HANAWA SHINICHIIMAI KIYOSHIMATSUI HIROSHI
    • F23G5/00B09B3/00C02F11/12
    • PROBLEM TO BE SOLVED: To provide a pyrolytic melting device capable of making harmless a solid separately-generated form washing drain water for molten gas, by melting it, and enabling reuse of a resource as a slag.
      SOLUTION: The solid is separation-generated by a solid generator 33 through a dewatering process from the washing drain water with which the molten slag containing flyash drawn out from a slag chute 27 is washed. A particle size of the generated solid is regulated into a prescribed particle size by a particle size regulator 42, and the solid regulated into the prescribed particle size is fed into a melting furnace 22 by a feeder 44.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种热解熔融装置,其能够使得熔融气体的排出水的洗涤分离生成无害化,并且能够使作为炉渣的资源被再利用。 解决方案:固体发生器33通过来自洗涤排水的脱水过程分离,从炉渣槽27抽出的含有粉煤灰的熔融炉渣被清洗。 通过粒度调节器42将生成的固体的粒径调节成规定的粒度,并且通过进料器44将调节成规定粒径的固体进料到熔化炉22中。(C) 2008年,日本特许厅和INPIT