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    • 1. 发明专利
    • Gasification system for raw material to be gasified and tar removing method
    • 用于原料气化的气化系统和塔式除尘方法
    • JP2011157446A
    • 2011-08-18
    • JP2010019169
    • 2010-01-29
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • KATAGIRI MANABUMIYAJI TAKESHIFUJITA MASATOSUGIMOTO TOMIO
    • C10K1/20C10J3/00C10K1/08
    • PROBLEM TO BE SOLVED: To provide a tar removing system and a tar removing method for removing tar and the like included in a gas (in a synthesis gas) generated in a gasifier and improving a tar recovery ratio to perform gasification efficiently.
      SOLUTION: A tar removal part is arranged in a post step of the gasifier 1. After using a raw material M to be gasified as a tar adsorbent to adsorb tar in the removal part to remove the tar in a gas produced by the gasifier 1, the raw materials M' to be gasified having adsorbed the tar is taken out from the removal part, and then, supplied to the gasifier 1 as a raw material. In this way, the tar contained in the produced gas is removed and gasification is carried out efficiently.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 解决问题的方案:提供一种用于除去在气化器中产生的气体(合成气体)中所含的焦油等的焦油去除系统和焦油去除方法,并且提高焦油回收率以有效地进行气化。 解决方案:在气化器1的后续步骤中布置焦油去除部分。在将原料M气化为焦油吸附剂以吸附除去部分中的焦油以除去由 气化炉1中,从被除去部分取出要吸附焦油的气化原料M',然后供给作为原料的气化炉1。 以这种方式,除去产生的气体中所含的焦油并有效地进行气化。 版权所有(C)2011,JPO&INPIT
    • 3. 发明专利
    • Reaction simulation apparatus and gasifier
    • 反应模拟装置和气化器
    • JP2012229326A
    • 2012-11-22
    • JP2011098085
    • 2011-04-26
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社Kyushu Univ国立大学法人九州大学
    • KATAGIRI MANABUFUJITA MASATOMIYAJI TAKESHISUGIMOTO TOMIONORINAGA YUKIYASU
    • C10J3/00B09B3/00B09B5/00
    • PROBLEM TO BE SOLVED: To provide a reaction simulation apparatus and a gasifier which can cope with a herb-based biomass material, by calculating the composition of a reaction product gas with the reaction simulation apparatus in order to obtain a product gas with a desired gas composition from the mixed raw materials, when a feed rate of a gasifying agent to be supplied to the gasifier is made to change to a suitable state in the case that kinds of mixed raw materials or the mixing ratio thereof are changed.SOLUTION: The reaction simulation apparatus calculates the composition of gasification reaction product gas, performed by feeding a gasifying agent in a gas state to a volatile component obtained by pyrolyzing mixed biomass raw materials, based on inputted various data. As the various data, a group of elementary reaction formulae determined beforehand corresponding to chemical species composing the volatile component obtained by pyrolyzing each of individual raw materials at a predetermined temperature is included, which includes at least a group (A) of the herb-based elementary reaction formulae corresponding to the herb-based biomass.
    • 要解决的问题:为了提供能够处理草本生物质材料的反应模拟装置和气化器,通过与反应模拟装置计算反应产物气体的组成以获得具有 当混合原料的种类或其混合比发生变化的情况下,当供给到气化器的气化剂的进料速率变为适当状态时,混合原料的期望的气体组成。 解决方案:反应模拟装置基于输入的各种数据,计算气态反应产物气体的组成,其通过将气态气化剂供给到通过热解混合生物质原料而获得的挥发性成分。 作为各种数据,包括预先对应于构成通过在预定温度下热解各个原料而获得的挥发性组分的化学物质的一组基本反应式,其至少包括基于草本的 对应于草本生物量的基本反应式。 版权所有(C)2013,JPO&INPIT
    • 4. 发明专利
    • Gasification apparatus and method for operating gasification apparatus
    • 气化装置和操作气化装置的方法
    • JP2011225844A
    • 2011-11-10
    • JP2011071931
    • 2011-03-29
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • MIYAJI TAKESHIMIYAGAWA MITSURUKATAGIRI MANABUSUGIMOTO TOMIOKANDA NOBUYASUNORINAGA YUKIYASU
    • C10J3/00C01B3/34
    • PROBLEM TO BE SOLVED: To facilitate change of a feed rate of a gasifying agent to be fed to a gasification apparatus into an appropriate state, when a kind and a mixing ratio of a mixed raw material are changed, in obtaining a generated gas with a desired gas composition from the mixed raw material using a gasification apparatus.SOLUTION: There is provided the gasification apparatus 1 which obtains the generated gas with a desired gas composition by feeding the gasifying agent to a volatile component obtained by performing thermal decomposition of the mixed raw material of biomass in a vapor phase and performing a gasification reaction. The gasification apparatus 1 includes a reaction simulation device 12 to calculate a composition of a reaction product gas based on various input data, and a feed rate of the gasifying agent determining section 13 to determine the feed rate of the gasifying agent. In the gasification apparatus 1, the feed rate of the gasifying agent determining section determines whether the result of calculation of the reaction simulation device coincides with the desired gas composition or not and determines the feed rate of the gasifying agent as a set value, and the gasification apparatus is operated with the gasifying agent with the determined feed rate fed thereto.
    • 要解决的问题为了促进供给到气化装置的气化剂的进料速率变化到适当的状态,当混合原料的种类和混合比发生变化时,为了获得所产生的 使用气化装置从混合原料获得具有所需气体成分的气体。 解决方案:提供一种气化装置1,其通过将气化剂供给到通过在气相中进行生物质的混合原料的热分解而得到的挥发性成分,从而获得具有所需气体组成的所产生的气体,并执行 气化反应。 气化装置1包括基于各种输入数据计算反应产物气体的组成的反应模拟装置12以及气化剂测定部13的进料速率,以确定气化剂的进料速率。 在气化装置1中,气化剂判定部的供给速度判定反应模拟装置的计算结果是否与期望的气体组成一致,将气化剂的进料速度确定为设定值, 气化装置与气化剂一起操作,送入其中确定的进料速率。 版权所有(C)2012,JPO&INPIT
    • 5. 发明专利
    • Method for producing alcohol
    • 生产醇的方法
    • JP2008253153A
    • 2008-10-23
    • JP2007095733
    • 2007-03-30
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • TOYAMA MASAYUKIKATAGIRI MANABUTAKAOKA KAZUE
    • C12P7/10
    • Y02E50/16
    • PROBLEM TO BE SOLVED: To provide a method for producing an alcohol, by which saccharification using an enzyme and alcohol fermentation using a yeast can efficiently be performed in one reaction tank.
      SOLUTION: This method for producing the alcohol, comprising saccharifying cellulose originated from wood-based biomass into glucose by an enzymatic reaction and then supplying the glucose to a yeast comprising Saccharomyces cerevisiae AM12 strain to subject the glucose to alcohol fermentation, is such that by controlling the temperature in the reaction tank to 40 to 45°C, when the saccharification reaction for saccharifying the cellulose with the enzyme and the alcohol fermentation using the yeast comprising the AM12 strain are performed simultaneously.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 待解决的问题:提供一种生产醇的方法,通过该方法,可以在一个反应​​槽中有效地使用使用酵母的酶和醇发酵进行糖化。 解决方案:用于生产醇的方法包括通过酶反应将源自木质生物质的纤维素糖化为葡萄糖,然后将葡萄糖供应到包含酿酒酵母AM12菌株的酵母以使葡萄糖进行酒精发酵, 通过将反应罐中的温度控制在40〜45℃,同时进行使用含有AM12菌株的酵母进行酶的纤维素糖化和醇发酵的糖化反应。 版权所有(C)2009,JPO&INPIT
    • 7. 发明专利
    • Waste gasification apparatus
    • 废气装置
    • JP2007246620A
    • 2007-09-27
    • JP2006069599
    • 2006-03-14
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • UCHIYAMA IZUMIKIDOGUCHI AKIRAMIYAJI TAKESHIUSHIGOE JUNTAROKATAGIRI MANABU
    • C10J3/00B09B3/00F27D21/02F27D25/00
    • PROBLEM TO BE SOLVED: To improve gasification efficiency by facilitating the work for removing deposits on the jetting burner in a reforming furnace and stabilizing the combustion in the furnace.
      SOLUTION: The waste gasification apparatus is provided with a waste gasification furnace, in which the combustion zone is formed by feeding an oxidizer from the bottom of the pile of the waste introduced in the vessel to cause partial combustion and the generated gas is discharged from the top of the vessel, and a reforming furnace in which the generated gas discharged from the waste gasification furnace is accepted and heated. The reforming furnace is equipped with a burner 22 which is installed on the wall of the furnace and jets the generated gas into the furnace, a poker 23 which advances toward the tip of the burner 22 through a guiding space 24 formed around the burner 22 and retreats from the inside of the furnace and is put back in the guiding space 24 and a driving means 26 which moves the poker 23 back and forth.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:通过促进去除重整炉中的喷射燃烧器上的沉积物的工作并且稳定炉中的燃烧来提高气化效率。 解决方案:废气化装置设置有废气化炉,其中通过从引入容器中的废物的堆的底部供给氧化剂而形成燃烧区以引起部分燃烧,并且产生的气体为 从容器的顶部排出的废气,从废气化炉排出的产生气体被接受和加热的重整炉。 重整炉配备有燃烧器22,其安装在炉壁上并将产生的气体喷射到炉中,扑克23通过形成在燃烧器22周围的引导空间24朝向燃烧器22的尖端前进; 从炉内回退并放回到引导空间24和使扑克23前后移动的驱动装置26。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • System for detecting gas-flow-through part in gasification furnace
    • 在气化炉中检测气体流通部分的系统
    • JP2006265328A
    • 2006-10-05
    • JP2005083360
    • 2005-03-23
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • KATAGIRI MANABUKIDOGUCHI AKIRAMIYAJI TAKESHIUSHIGOE JUNTARO
    • C10J3/00B09B3/00
    • Y02E50/30Y02W30/78
    • PROBLEM TO BE SOLVED: To three-dimensionally measure temperature distribution of a combustion zone in a gasification furnace to identify a gas-flow-through part of the combustion zone. SOLUTION: In a gasification furnace 1, a thermal decomposition zone Zc is provided with a plurality of thermometers 20 1 -20 3 in a multistage configuration, and the temperature distribution in the vertical and horizontal directions in the thermal decomposition zone Zc is measured by the thermometer group 20a. When a thermometer of the thermometers 20 1 -20 3 composing the thermometer group 20a indicates an elevated temperature from a set temperature, the location of the thermometer is determined to be a gas-flow-through part C. The thermometer at the location is fed toward the central part of the thermal decomposition zone Zc more frequently to destroy the gas-flow-through part C while measuring temperature distribution in the horizontal direction of the thermal decomposition zone Zc. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:三维地测量气化炉中的燃烧区的温度分布,以识别燃烧区的气体流通部分。 解决方案:在气化炉1中,热分解区域Zc以多级配置设置有多个温度计20 -20 3 ,并且温度 热分解区域Zc中的垂直和水平方向的分布由温度计组20a测量。 构成温度计组20a的温度计20的温度计表示从设定温度升高的温度,将温度计的位置确定为气体 通过部分C.在该位置处的温度计更频繁地被馈送到热分解区Zc的中心部分以破坏气体流通部分C,同时测量热分解区域Zc的水平方向上的温度分布 。 版权所有(C)2007,JPO&INPIT
    • 9. 发明专利
    • Waste gasifying device
    • 废气加热装置
    • JP2006220365A
    • 2006-08-24
    • JP2005034525
    • 2005-02-10
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • MIYAJI TAKESHIUSHIGOE JUNTAROKATAGIRI MANABUKIDOGUCHI AKIRA
    • F23G5/24B09B3/00C02F11/10C10J3/00F23G5/44F23G7/00F23G7/04
    • Y02E50/30
    • PROBLEM TO BE SOLVED: To provide a waste gasifying device capable of enhancing gasification efficiency of sludge.
      SOLUTION: In this waste gasifying device 1 equipped with a sludge supply means to supply sludge to the inside of a longitudinal gasifying furnace 3 having a charging port 9 through which waste is charged on the upper part of the furnace, a gas supply port 13 for supplying an oxidizer to the waste in the gasifying furnace 3 and the layer filled with sludge from the lower part, a gas exhausting port 11 to exhaust generated gas from the upper part of the gasifying furnace 3, and an exhausting means 15 to exhaust combustion residues produced by burning the waste and sludge from the bottom part of the furnace, a sludge charging means has a sludge supply pipe 31 inserted through the side wall of the gasifying furnace 3, and a cylindrical nozzle 35 provided by inclining it horizontally or downward in the gasifying furnace 3 by making it communicate with the tip part of the sludge supply pipe 31, the nozzle 35 is rotatably supported by the sludge supply pipe 31, and a plurality of sludge discharging holes are provided in the extending direction of the nozzle 35.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供能够提高污泥的气化效率的废气处理装置。 解决方案:在具有污泥供给装置的废气处理装置1中,向具有在炉上部带有废料的充气口9的纵向气化炉3的内部供给污泥, 用于向气化炉3中的废物供给氧化剂的端口13和从下部填充污泥的层,排气口11,从气化炉3的上部排出产生的气体,以及排气装置15, 通过从炉底部燃烧废物和污泥而产生的废气燃烧残渣,污泥装料装置具有通过气化炉3的侧壁插入的污泥供给管31和通过水平方向倾斜而设置的圆柱形喷嘴35, 通过使其与污泥供给管31的前端部连通,在气化炉3中,喷嘴35由污泥供给管31可旋转地支撑,多个污泥二 在喷嘴35的延伸方向设置有充电孔。(C)2006年,JPO&NCIPI