会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明专利
    • Combustion ash measurement device and combustion ash measurement method
    • 燃烧灰尘测量装置和燃烧ASH测量方法
    • JP2014145568A
    • 2014-08-14
    • JP2013015904
    • 2013-01-30
    • Ihi Corp株式会社Ihi
    • SATO NAOKIMATSUZAWA KATSUAKIONO EMITAMURA MASAHITO
    • F22B37/38
    • PROBLEM TO BE SOLVED: To measure an amount of combustion ash adhering to the inside of a combustion furnace without stopping the operation of the combustion furnace.SOLUTION: A combustion ash measurement device 200 measures an amount of combustion ash adhering to the inside of a combustion furnace 110, and includes: a body part 210 that can be inserted/extracted into/from a hole 116a of an observation port 116 provided in the combustion furnace 110; an adhesion surface 212 that is a part of the surface of the body part 210 and to which combustion ash adheres; and a guide part 260 that guides the insertion/extraction of the body 210 to the hole 116a provided in the combustion furnace 110, and holds the body part 210 at a position where the position of the adhesion surface 212 is inside the combustion furnace 110.
    • 要解决的问题:测量附着在燃烧炉内部的燃烧灰的量,而不停止燃烧炉的操作。燃烧灰测量装置200测量附着在燃烧内部的燃烧灰的量 炉110,并且包括:主体部分210,其可以从设置在燃烧炉110中的观察口116的孔116a中插入/抽出; 附着表面212,其是主体部分210的表面的一部分并且燃烧灰粘附到其上; 以及导向部260,其将主体210的插入/拔出引导到设置在燃烧炉110中的孔116a,并且将主体部210保持在粘合面212的位置在燃烧炉110的内部的位置。
    • 2. 发明专利
    • Contact angle measurement device and prediction method for behavior of combustion ash in boiler furnace
    • 联系角度测量装置和锅炉炉内燃烧行为的预测方法
    • JP2013029392A
    • 2013-02-07
    • JP2011164915
    • 2011-07-28
    • Ihi Corp株式会社Ihi
    • MURAMOTO TOMOYASATO NAOKI
    • G01N13/00
    • PROBLEM TO BE SOLVED: To provide a contact angle measurement device that can predict a wet state of combustion ashes in a boiler furnace by heating the interior of a chamber and cooling a pedestal, and a prediction method for behavior of combustion ashes in a boiler furnace.SOLUTION: There is provided a contact angle measurement device 1 which measures the contact angle of a sample 7 placed on a pedestal 6 provided in a container 4. The contact angle measurement device includes heating means 8 of heating the sample in the container; cooling means 9 of cooling the pedestal; first temperature detection means 10 of detecting temperature in the container; second temperature detection means 11 of detecting temperature of the pedestal; control means 14 of controlling the heating means and cooling means on the basis of detection results of the first temperature detection means and second temperature detection means; imaging means 12 of imaging a state of the sample heated by the heating means; and image analysis means 14 of determining the contact angle on the basis of an image picked up by the imaging means.
    • 要解决的问题:提供一种接触角测量装置,其可以通过加热室内部和冷却基座来预测锅炉炉中的燃烧灰分的湿润状态,以及用于燃烧灰的行为的预测方法 锅炉炉。 解决方案:提供了一种接触角测量装置1,其测量放置在容器4中的基座6上的样品7的接触角。接触角测量装置包括加热装置8,其加热容器中的样品 ; 用于冷却基座的冷却装置9; 第一温度检测装置10,检测容器内的温度; 检测基座的温度的第二温度检测单元11; 控制装置14根据第一温度检测装置和第二温度检测装置的检测结果控制加热装置和冷却装置; 成像装置12,其对由加热装置加热的样品的状态进行成像; 以及基于由成像装置拾取的图像来确定接触角的图像分析装置14。 版权所有(C)2013,JPO&INPIT
    • 3. 发明专利
    • Ash removal device
    • ASH拆卸装置
    • JP2012052740A
    • 2012-03-15
    • JP2010195989
    • 2010-09-01
    • Ihi Corp株式会社Ihi
    • SATO NAOKIMATSUZAWA KATSUAKI
    • F22B37/48F28G1/08
    • PROBLEM TO BE SOLVED: To provide an ash removal device achieving stable operation of a boiler by removing deposited ashes deposited on a heat transfer water tube in a boiler.SOLUTION: The ash removal device for removing the ashes deposited on the heat transfer water tube provided on a furnace wall of the boiler includes; a removal plate 11 which is provided so as to be extended in a direction intersecting the heat transfer water tube and which has an abutting part 11a curved along the heat transfer water tube; a support shaft 12; and a drive part 13 which reciprocally moves the removal plate 11 along the extending direction of the heat transfer water tube.
    • 要解决的问题:提供通过去除沉积在锅炉中的传热水管上的沉积的灰尘来实现锅炉的稳定操作的除灰装置。 解决方案:用于去除沉积在设置在锅炉的炉壁上的传热水管上的灰分的除灰装置包括: 拆卸板11,其设置成沿与传热水管相交的方向延伸,并具有沿着传热水管弯曲的抵接部11a; 支撑轴12; 以及驱动部13,其沿着传热水管的延伸方向往复移动移除板11。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Mercury removal device
    • MERCURY拆除装置
    • JP2012055797A
    • 2012-03-22
    • JP2010198951
    • 2010-09-06
    • Ihi Corp株式会社Ihi
    • SATO NAOKIMATSUZAWA KATSUAKIKAMATA HIROYUKINAITO TOSHIYUKI
    • B01D53/64B01D53/50B01D53/56B01D53/77F23J15/02
    • PROBLEM TO BE SOLVED: To provide a mercury removal device easily installable even in an existing facility and capable of effectively removing Hgfrom exhaust gas.SOLUTION: This mercury removal device for removing zero-valent mercury included in exhaust gas flowing in a flue X includes: a denitrification device 2 including piping 22 through which ammonia flows, and a nozzle 23 connected to the piping 22 for supplying gas into the flue X for reacting nitrogen oxide in the exhaust gas with a reducing gas to reduce the nitrogen oxide; an oxidizing gas supply device 6 including piping 65 connected to the piping 22 for supplying hydrogen chloride for oxidizing the zero-valent mercury into the flue X through the nozzle 23; and a removal part arranged on the downstream side of the nozzle 23 in the flue X for bringing cleaning water into contact with the exhaust gas; wherein the oxidizing gas supply device 6 includes a decomposition part 64 for heating a material liquid generating the oxidizing gas by heating, a supply part for supplying the material gas to the decomposition part 64, and piping 65 for connecting the decomposition part 64 to the piping 22, and the decomposition part 64 is arranged in the outside of the flue X.
    • 要解决的问题:即使在现有设施中也能够容易地安装除汞装置,并且能够有效地从废气中去除Hg 0 。 解决方案:用于去除在烟道X中流动的废气中包含的零价汞的该汞去除装置包括:脱氮装置2,其包括氨流动的管道22和连接到用于供给气体的管道22的喷嘴23 进入用于使废气中的氮氧化物与还原气体反应的烟道X,以还原氮氧化物; 氧化剂气体供给装置6,其包括连接到管道22的管道65,用于通过喷嘴23供应用于将零价汞氧化成烟道X的氯化氢; 以及排出部,配置在烟道X的喷嘴23的下游侧,使清洗水与废气接触; 其特征在于,所述氧化剂气体供给装置6包括:通过加热来加热产生氧化剂气体的原料液体的分解部64;向分解部64供给原料气体的供给部;以及将分解部64连接到配管 22,分解部64配置在烟道X的外侧。版权所有(C)2012,JPO&INPIT
    • 5. 发明专利
    • Measuring device, ash removal system and combustion furnace
    • 测量装置,除尘系统和燃烧炉
    • JP2012052771A
    • 2012-03-15
    • JP2010197859
    • 2010-09-03
    • Ihi Corp株式会社Ihi
    • SATO NAOKIMATSUZAWA KATSUAKI
    • F22B37/38F22B37/56
    • PROBLEM TO BE SOLVED: To provide a measuring device for measuring the amount of ashes that is used as an index for estimating the amount of ashes to be deposited, in order to accurately estimate the amount of the deposited ashes inside a combustion furnace.SOLUTION: The measuring device 4 measuring the deposited amount of the combustion ashes inside the combustion furnace 1 includes: a probe 41 which is arranged in a discharge route of exhaust gas produced in the combustion furnace 1 and which causes the combustion ashes to be deposited to the own surface; and a meter 42 which is arranged outside the combustion furnace 1 while the probe 41 is connected to the meter 42 and which measures the weight of the probe 41.
    • 要解决的问题:提供一种用于测量作为用于估计要沉积的灰分量的指标的灰分量的测量装置,以便精确地估计燃烧炉内的沉积灰量 。 解决方案:测量燃烧炉1内的燃烧灰分沉积量的测量装置4包括:探针41,其布置在燃烧炉1中产生的废气排放路径上,并使燃烧灰分 沉积在自己的表面上; 以及在探头41连接到仪表42并且测量探头41的重量时布置在燃烧炉1外部的仪表42。(C)2012,JPO&INPIT
    • 6. 发明专利
    • Exhaust gas treatment method and exhaust gas treatment equipment
    • 排气处理方法和排气处理设备
    • JP2011025123A
    • 2011-02-10
    • JP2009171834
    • 2009-07-23
    • Ihi Corp株式会社Ihi
    • SATO NAOKIUENO SHUNICHIROKAMATA HIROYUKI
    • B01D53/94B01D53/86
    • PROBLEM TO BE SOLVED: To provide an exhaust gas treatment method which can inhibit the adsorption of ammonia by a catalyst for mercury oxidation reaction and simplify treatment steps as a whole, as well as exhaust gas treatment equipment.
      SOLUTION: This exhaust gas treatment equipment 1 is for sending an exhaust gas to a denitrification device 5 from a fire furnace 2, and the denitrification device 5 includes a first catalyst 10 which brings about mercury oxidation reaction and a second catalyst 11 which generates a denitrification reaction downstream of the first catalyst 10. In addition, an ammonia adding line 12 which adds ammonia, is arranged between the first catalyst 10 and the second catalyst 11. When the exhaust gas is treated, a halogenated gas is kept in such a state that it coexists in the exhaust gas from the fire furnace 2, and a hardly soluble metallic mercury contained in the exhaust gas is transformed to a water-soluble divalent mercury with the help of the first catalyst 10. Next, the exhaust gas is denitrified by the second catalyst 11 with the addition of ammonia supplied from the ammonia adding line 12.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够抑制由用于汞氧化反应的催化剂吸附氨的废气处理方法,并且简化整个处理步骤以及废气处理设备。 解决方案:该废气处理设备1用于将废气从消防炉2送至脱氮装置5,脱氮装置5包括引起汞氧化反应的第一催化剂10和第二催化剂11, 在第一催化剂10的下游产生脱氮反应。此外,在第一催化剂10和第二催化剂11之间配置有添加氨的氨添加管线12.当处理废气时,将卤化气体保持在 在来自火炉2的废气中共存的状态,废气中含有的难溶金属汞在第一催化剂10的帮助下转变为水溶性二价汞。接下来,废气为 通过加入从氨添加管线12供应的氨,由第二催化剂11反硝化。版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Exhaust gas clarification method and equipment
    • 排气净化方法和设备
    • JP2010000453A
    • 2010-01-07
    • JP2008161748
    • 2008-06-20
    • Ihi Corp株式会社Ihi
    • SATO NAOKIUENO TOSHIICHIROKAMATA HIROYUKINAITO TOSHIYUKI
    • B01D53/64B01D53/50C01G13/00C02F1/46
    • PROBLEM TO BE SOLVED: To reduce cost than before by regenerating and reusing a used oxidizing agent thereby suppressing a consumption amount of an oxidizing agent. SOLUTION: An exhaust gas clarification method is disclosed in which by spraying treating liquid 2 into exhaust combustion gas 1, water-soluble bivalent mercury is recovered into the treating liquid 2 together with harmful components contained in the exhaust combustion gas 1. In the method, the oxidizing agent 10 is added to the treating liquid 2 for promoting an oxidizing reaction of hardly soluble metal mercury to the bivalent mercury and suppressing the reducing reaction of the bivalent mercury, and at least a part of the treating liquid 2 is circulated for reuse, and in the course of the circulation, the treating liquid 2 is electrolyzed to regenerate the oxidizing agent 10. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:通过再生和再利用所使用的氧化剂从而降低成本,从而抑制氧化剂的消耗量。 解决方案:公开了一种废气澄清方法,其中通过将处理液体2喷射到排气燃烧气体1中,将水溶性二价汞与废气燃烧气体1中包含的有害成分一起回收到处理液体2中。 该方法中,将氧化剂10加入到处理液体2中,用于促进难溶性金属汞与二价汞的氧化反应,并抑制二价汞的还原反应,至少部分处理液2循环 为了再利用,并且在循环过程中,处理液体2被电解以再生氧化剂10.版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • Catalytic device
    • 催化装置
    • JP2011025122A
    • 2011-02-10
    • JP2009171833
    • 2009-07-23
    • Ihi Corp株式会社Ihi
    • SATO NAOKI
    • B01J32/00B01D53/86F23J15/00
    • PROBLEM TO BE SOLVED: To provide a catalytic device which can restrain a space where a catalyst is arranged in a flow passage or the distance of a flow passage. SOLUTION: This catalytic device includes a storage container 1 where a fluid to be treated is made to flow out and flow in, and a catalyst 4 which is arranged inside the storage container 1 and has a face 2 and a back 3. The storage container 1 has one surface 9 which forms an inlet 11 for the fluid to be treated so as to be opposite to the face 2 of the catalyst 4, and the other surface 10 which forms an outlet 12 for the fluid so as to be opposite to the back 3 of the catalyst 4. In addition, the catalyst 4 has a plurality of first apex parts 13 extending in one direction as kept in contact with the inner surface side of one surface 9 of the storage container 1, a plurality of second apex parts 14 extending in one direction as kept in contact with the inner surface side of the other surface 10 of the storage container 1, and an extension surface 15 extending to the first apex part 13 and the second apex part 14. Besides, a gap 21 is arranged between both end sides of the storage container 1 and the catalyst 4. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够抑制催化剂在流路中设置的空间或流路的距离的催化装置。 解决方案:该催化装置包括:待处理流体流出并流入的储存容器1;以及设置在储存容器1内部并具有面2和背面3的催化剂4。 储存容器1具有一个表面9,该表面形成用于待处理流体的入口11以与催化剂4的表面2相对,而另一个表面10形成用于流体的出口12 催化剂4的背面3相反。另外,催化剂4具有多个第一顶点部分13,其沿一个方向延伸,与保存容器1的一个表面9的内表面侧保持接触;多个 与保持容器1的另一个表面10的内表面保持接触的一个方向延伸的第二顶点部分14以及延伸到第一顶点部分13和第二顶点部分14的延伸表面15。 间隙21设置在储存器c的两端侧之间 贵宾1和催化剂4.版权所有(C)2011,JPO&INPIT