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公开(公告)号:JP2006289321A
公开(公告)日:2006-10-26
申请号:JP2005117642
申请日:2005-04-15
发明人: TRANQUILLA JAMES M
CPC分类号: H05B6/804
摘要: PROBLEM TO BE SOLVED: To provide a reducing method of a mercury level in mercury-polluted matter using microwave energy.
SOLUTION: This mercury removal method comprises processes for: (a) charging mercury-polluted matter into a microwave reactor; (b) supplying a gas flow to the microwave reactor for agitating the mercury-polluted matter; and (c) exposing the mercury-polluted matter to microwave radiation to raise the temperature at least to 357°C and forming a vapor phase containing mercury and treated matter. By using a double composition fluidized layer added with a microwave-sensitive matter containing no carbon besides the mercury-polluted matter, the mercury level and carbon level in the treating object substance are reduced at the same time.
COPYRIGHT: (C)2007,JPO&INPIT摘要翻译: 要解决的问题:使用微波能量提供汞污染物质中汞含量的还原方法。 解决方案:该汞去除方法包括以下步骤:(a)将汞污染物质装入微波反应器; (b)向微波反应器供应气流以搅拌汞污染物质; 和(c)将汞污染的物质暴露于微波辐射,将温度升高至357℃,形成含有汞和处理物质的气相。 除了汞污染物质之外,通过使用添加有不含碳的微波敏感物质的双组分流化层,处理对象物质中的汞含量和碳含量同时降低。 版权所有(C)2007,JPO&INPIT
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公开(公告)号:JP2001198433A
公开(公告)日:2001-07-24
申请号:JP2000011471
申请日:2000-01-20
发明人: OSUMI KAZUO , KAWAMURA HIDEO , HIUGA HIDEKI
摘要: PROBLEM TO BE SOLVED: To provide a CO2 adsorption equipment having a greater CO2 adsorption capacity when using an activated carbon based adsorbent. SOLUTION: The CO2 adsorption equipment is provided with a CO2 adsorption part having the CO2 adsorbent packed so that it can be blown up, wherein the CO2 adsorbent comprises a gas adsorbent comprising carbon as a main component and a charging agent. The CO2 adsorption part is insulated electrically with other parts and is connected with a ground wire so that it can be conducted and circuit-broken.
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公开(公告)号:JPH08502237A
公开(公告)日:1996-03-12
申请号:JP51010894
申请日:1993-10-06
IPC分类号: B01J8/42 , B01J8/24 , B01J19/02 , B01J19/12 , C01B33/027 , C01B33/037
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公开(公告)号:JPS62216906A
公开(公告)日:1987-09-24
申请号:JP30666586
申请日:1986-12-24
申请人: SANTRADE LTD
发明人: LUX BENNO
IPC分类号: B24B37/00 , B01J8/18 , B01J8/42 , B24D3/00 , B32B15/02 , B32B15/04 , B32B18/00 , C01B21/064 , C01B21/082 , C01B31/06 , C04B35/58 , C04B35/5831 , C04B35/628 , C04B41/45 , C04B41/50 , C04B41/81 , C04B41/85 , C04B41/87 , C09K3/14 , C22F1/02 , C23C4/06 , C23C4/10 , C23C4/12 , C23C16/06 , C23C16/22 , C23C16/26 , C23C16/27 , C23C16/30 , C23C16/34 , C23C16/38 , C23C16/44 , C23C16/442 , C23C16/48 , C23C16/50 , C30B29/04 , C30B29/38 , C30B33/00
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公开(公告)号:JPS6114856B2
公开(公告)日:1986-04-21
申请号:JP9444578
申请日:1978-08-02
CPC分类号: B01J8/24 , B01J8/42 , Y10S423/16
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公开(公告)号:JPS58124538A
公开(公告)日:1983-07-25
申请号:JP681282
申请日:1982-01-21
发明人: ODAJIMA MASAMI , SATOU HAJIME
IPC分类号: C01G43/025 , B01J8/42 , B01J19/12 , F26B3/08 , F26B3/34
摘要: PURPOSE:To effectively carry out the dehydration of a matter to be treated under heating, by heating the matter to be treated in such a state that a ferrite powder is mixed in a fluidized bed. CONSTITUTION:The interior of a wave guide tube type fluidized bed 2 is heated by microwave transmitted from a microwave oscillator 1 and, to the upper end of the wave guide tube type fluidized bed 2, a spray nozzle 4 spraying a uranyl nitrate solution sent from a supply apparatus 3 and an exhaust line 6 sending a fine powder accompanied by rising air to an exhaust gas treating apparatus 5 are provided. To the lower end of the fluidized bed 2, a dispersing plate 15. An air supply line 8 supplying air sent from an air supply apparatus 7 into said fluidized leed and an exhaust line 10 exhausting a mixed powder of a ferrite powder and a dried product to a mixed powder recovery apparatus 9 are provided. The mixed powder is separated by an electromagnetic fractionator 11 to be recovered in a product container 12.
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公开(公告)号:JPS5858144A
公开(公告)日:1983-04-06
申请号:JP15730781
申请日:1981-10-02
申请人: KOGYO GIJUTSUIN
摘要: PURPOSE:To make it possible to control the titled dust generating speed under a same amount of a gas, by a method wherein a particulate material and fine particles on a dispersing plate are fluidized by a gas and only fine particles are generated from a fluidized layer as well as the generating speed thereof is controlled by electric force. CONSTITUTION:A particulate material and fine particles having a particle size considerably larger than that of the former are accumulated on a dispersing plate 1 provided to the bottom part of a fluidized layer type dust generating apparatus and a gas is blown thereinto from the lower part of the dispersing plate 1 as shown by an arrow G to from a fluidized layer 3. In this case, only fine particles are flied out to generate fluidized layer dust. On the other hand, high voltage is applied between a discharge electrode 4 provided to the inside of the fluidized layer type dust generating apparatus and an earth electrode 5 of the outer periphery thereof. When said high voltage is applied, fine particles flied out from the fluidized layer 3 are accompanied between the electrodes 4, 5 by the gas and, while carried as generated dust as shown by an arrow D, collected to the electrode by electric force. Therefore, by appropriately controlling the applied voltage, the generation concn. of the fluidized layer dust can be varied.
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公开(公告)号:JPS5573342A
公开(公告)日:1980-06-03
申请号:JP14820078
申请日:1978-11-30
发明人: KANEKO TOMOAKI
摘要: PURPOSE:To provide stable glow discharge by generating AC glow discharge between two electrodes provided within an airtight vessel, a material to be treated being supported by at least one electrode. CONSTITUTION:An electrode 2 supporting a material 5 to be treated and an electrode 3 insulated from the electrode 2 are provided within an airtight vessel 1 connected to a vacuum pump 6 and a gas tank 7. The electrode 2 is inserted from the upper part of the vessel through a seal part 4 acting as an insulator into the vessel. The electrode 3 is provided inside the vessel 1 so as to surround the materials 5 to be treated. The electrode 3 and the vessel 1 are earthed. Alternating current from a terminal T is sent through a control circuit 8 to a booster 9, thereby glow discharge is generated between the electrodes 2 and 3. Heating current is detected by a current detector 10, and the temperature of the material 5 to be treated is detected by a temperature detector 12. The control circuit 8 is controlled by a regulator 11.
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