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    • 33. 发明专利
    • Method of treating waste analysis liquid of halogenated organic compound and equipment for the same
    • 处理有机化合物废水分析液及其设备的方法
    • JP2003062115A
    • 2003-03-04
    • JP2001251012
    • 2001-08-22
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YOSHIMURA KEIJIOGASAWARA HIROAKIHARA KENJIHORI KEIICHIKURITA KOICHIIIDA KOZOWAKAMOTO IKUOOZORA HIROYUKIOKAI TAKASHITACHIBANA SHINYA
    • A62D3/15A62D3/34A62D3/36A62D101/08A62D101/22A62D101/28B01D1/00B01D3/00B01J19/00B01J19/12C02F1/04G01N1/10G01N1/20G01N31/00A62D3/00
    • PROBLEM TO BE SOLVED: To provide a method which is capable of easily performing non-polluting treatment of a waste analysis liquid of a halogenated chemical compound and an equipment for the same.
      SOLUTION: The treatment equipment 100 is constituted to have a concentrator 110 which heats and concentrates the waste analysis liquid 1 containing the halogenated organic compound, a mixer 120 which prepares a treating solution 6 by mixing the waste concentrate 3 of the waste analysis liquid 1, a hydrogen donative solvent 4 and an alkali 5, a solvent supplying device 130 which supplies the hydrogen donative agent 4 into the mixer 120, an alkali supplying device 140 which supplies the alkali 5 into the mixer 120, an electron beam treating equipment 150 which subjects the non-polluting treatment by irradiating the treating solution 6 with an electron beam 9, a solid-liquid separator 160 which subjects the solid 7 treated by the electron beam treating equipment 150 and the non-polluting solution 8 to a solid-liquid separation, a supply pump 170 which supplies the non-polluting solution 8 subjected to the solid- liquid separation to the mixer 120 and a distillation refining device 180 which distillates and refines the non-polluting solution 8 subjected to the solid-liquid separation and supplies the resulted hydrogen donative solvent 4 to the solvent supply device 130.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供能够容易地对卤化化合物的废液分析液进行无污染处理的方法及其设备。 解决方案:处理设备100构成为具有加热浓缩含有卤化有机化合物的废液分析液1的浓缩器110,通过混合废液分析液1的废浓缩物3制备处理溶液6的混合器120, 供氢溶剂4和碱5,将供氢剂4供给到混合器120中的溶剂供给装置130,将碱5供给到混合器120中的碱供给装置140,电子束处理装置150 通过用电子束9照射处理溶液6进行无污染处理,使由电子束处理设备150处理的固体7和非污染溶液8进行固液分离的固液分离器160, 将经过固液分离的无污染溶液8供给到混合器120的供给泵170和蒸馏精炼装置180 ch馏出并且对经过固液分离的无污染溶液8进行精制并将所得的氢供体溶剂4供给到溶剂供给装置130。
    • 37. 发明专利
    • Operation method of dehydrator
    • 脱水器的操作方法
    • JP2011083694A
    • 2011-04-28
    • JP2009238135
    • 2009-10-15
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TANAKA YUKIOTACHIBANA SHINYAOZORA HIROYUKIOGINO SHINJIHIRAYAMA HARUAKI
    • B01D61/36B01D65/00
    • PROBLEM TO BE SOLVED: To provide an operation method of a dehydrator, which is adopted for a dehydrator in which a water separation membrane is used to recover or maintain suitably the performance of the water separation membrane.
      SOLUTION: The operation method of the dehydrator 1 is provided. The dehydrator 1 is provided with a water separation membrane unit having a water separation membrane part 2 consisting of the water separation membrane, and a shell part 3 defined with the outer lateral surface of the water separation membrane part 2 and a device body inner wall. When the concentration of a leakage component in a gas permeating from the water separation membrane 2 exceeds a set value, the running of the dehydrator 1 stops, an acid is added to a raw material liquid 7 to operate, and a water separation membrane is reproduced. Alternatively, the acid is added to the raw material liquid to operate so as to maintain the performance of the water separation membrane.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种脱水机的操作方法,其用于使用水分离膜来适当地回收或维持水分离膜的性能的脱水机。 解决方案:提供脱水器1的操作方法。 脱水器1设置有具有由水分离膜构成的水分离膜部分2和由水分离膜部分2的外侧表面限定的壳体部分3和装置主体内壁的水分离膜单元。 当从水分离膜2渗透的气体中的渗漏成分的浓度超过设定值时,停止脱水器1的运转,将酸添加到原料液7中进行操作,并且再现水分离膜 。 或者,将酸加入到原料液体中以进行操作,以保持水分离膜的性能。 版权所有(C)2011,JPO&INPIT
    • 38. 发明专利
    • Method and device for purifying coal gasification gas
    • 用于净化煤气化气体的方法和装置
    • JP2010241949A
    • 2010-10-28
    • JP2009091954
    • 2009-04-06
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YUKIMOTO ATSUHIROTACHIBANA SHINYASEIKI YOSHIOIMAI TETSUYAYASUTAKE SATONOBU
    • C10K1/02C10K1/10C10K3/00
    • PROBLEM TO BE SOLVED: To provide a method and device, that is for purifying a raw material gas obtained by coal gasification and that can reduce amount of process steam supplied to a shift converter by increasing amount of steam added to gas discharged from a scrubber, and also can control deposition of ammonium chloride in a heat exchanger.
      SOLUTION: The method is to perform shift reaction comprised of introducing a raw material gas, that is generated by coal gasification in a coal gasification furnace 1, into a scrubber 4, bringing the raw gas into gas-liquid contact with wash water whose temperature is elevated in heat exchangers 8 and 9, then introducing the raw gas into shift converter 6 after the gas-liquid contact operation.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种方法和装置,其用于净化由煤气化获得的原料气体,并且可以通过增加添加到从...排出的气体中的蒸汽量来减少供给到换档转换器的工艺蒸汽量 洗涤器,并且还可以控制氯化铵在热交换器中的沉积。 解决方案:该方法是进行包括将在煤气化炉1中通过煤气化产生的原料气体引入洗涤器4的变换反应,使原料气体与洗涤水气液接触 其温度在热交换器8和9中升高,然后在气液接触操作之后将原料气体引入移位转换器6。 版权所有(C)2011,JPO&INPIT
    • 40. 发明专利
    • Desulfurization method, fuel cell system and hydrogen production system
    • 脱硫方法,燃料电池系统和氢生产系统
    • JP2006143754A
    • 2006-06-08
    • JP2004331375
    • 2004-11-16
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YONEMURA MASANAOKOBAYASHI KAZUTOTACHIBANA SHINYATANAKA YUKIOYASUTAKE SATONOBU
    • C10L3/10C01B3/38H01M8/06H01M8/10
    • Y02P20/52
    • PROBLEM TO BE SOLVED: To provide a desulfurization method, a fuel cell system and a hydrogen production system which can effectively and securely remove from a raw material gas a sulfur compound which is added to the gas as an odorant at the supply stage. SOLUTION: The desulfurization system is characterized by adsorbing and removing a sulfur compound from the gas containing the sulfur compound under pressurization of 0.2-4 MPa by using a desulfurization agent in which a catalytically active metal is supported on a crystalline silicate represented by the general formula (1): (1±0.8)R 2 O-[aM 2 O 3 -bLO-cAl 2 O 3 ]-ySiO 2 . The fuel cell system or the hydrogen production system is characterized by comprising a compressor for pressurizing a raw material gas to be desulfurized at the preceding stage of a reformer or a hydrogen production apparatus, and a desulfurizer for adsorbing and removing a sulfur compound from the raw material gas containing the sulfur compound at the latter stage of the compressor and at the preceding stage of the reformer or the hydrogen production apparatus. COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决问题:提供脱硫方法,燃料电池系统和氢气生产系统,其可以有效且可靠地从原料气体中除去在供给阶段作为气味剂添加到气体中的硫化合物 。 解决方案:脱硫系统的特征在于,通过使用脱硫剂在0.2-4MPa的加压下从含硫化合物的气体中吸附和除去硫化合物,其中催化活性金属负载在由 通式(1):(1±0.8)R 2 ○○SB- 0 3 ] - ySiO 2 。 燃料电池系统或氢气生产系统的特征在于包括用于在重整器或氢气制备装置的前一阶段加压要脱硫的原料气体的压缩机和用于从原料中吸附和除去硫化合物的脱硫器 在压缩机的后段和重整器的前段,或氢气制造装置中含有硫化合物的原料气体。 版权所有(C)2006,JPO&NCIPI