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    • 1. 发明专利
    • 加圧流動焼却炉設備、及び加圧流動焼却炉設備の制御方法
    • 加压流化床焚烧炉设备和加压流化床焚化炉设施控制方法
    • JP2015049012A
    • 2015-03-16
    • JP2013182506
    • 2013-09-03
    • 月島機械株式会社Tsukishima Kikai Co Ltd
    • NISHIYAMA MAMORUYAMAMOTO TAKAFUMI
    • F23C10/16F23C10/28F23G5/50F23G7/06
    • F23G5/50F23C10/16F23C10/28F23G5/006F23G5/30F23G7/001F23G2202/30
    • 【課題】焼却炉へ供給する燃焼空気の流量を所定量に保つ制御と、過給機のコンプレッサ入口側に設けられる機器や配管の制御とを独立に行うことができ、かつ、設備を構成する設備機器をコンパクトにすることが可能となる加圧流動焼却炉設備を提供する。【解決手段】加圧流動焼却炉1と、タービン2aと、コンプレッサ2bと、を有する過給機2と、加圧流動焼却炉1の燃焼開始時に、燃焼空気を加圧流動焼却炉1に供給する送風機49_1と、加圧流動焼却炉1の燃焼開始時に、送風機49_1からの吐出空気をコンプレッサ2bの空気入口側から空気出口側へと通し、加圧流動焼却炉1の燃焼開始後に、空気出口側の圧力が空気入口側の圧力より大きくなった後、空気出口側の圧力に応じて、コンプレッサ2bから加圧流動焼却炉1に供給される燃焼空気の一部を空気出口側から空気入口側へと循環させる過給機空気バイパス弁CV3と、を備える。【選択図】図1
    • 要解决的问题:提供加压流化床焚化炉设备,其能够独立地进行控制,以将供应给焚化炉的燃烧空气的流量保持在预定体积,并控制设置在压缩机的入口上的设备和管道 增压器和构成设备的设备仪器紧凑。解决方案:加压流化床焚烧炉设施包括:加压流化床焚烧炉1; 包括涡轮机2a和压缩机2b的增压器2; 在加压流化床焚烧炉1的燃烧开始时向加压流化床焚烧炉1供给燃烧空气的鼓风机49_1; 以及在加压流化床焚化炉1的燃烧开始时将来自鼓风机49_1的排出空气从空气入口通向压缩机2b的空气出口的增压器空气旁通阀CV3,并使供给的一部分燃烧空气循环 在空气出口处的压力高于燃烧开始后的空气入口处时,从压缩机2b到加压流化床焚化炉1响应于空气出口处的压力从空气出口到空气入口 加压流化床焚烧炉1。
    • 2. 发明专利
    • 加圧流動焼却炉設備、及び加圧流動焼却炉設備の制御方法
    • 加压流化床焚化炉设备的加压流化床焚化炉设备的控制方法
    • JP2015049011A
    • 2015-03-16
    • JP2013182501
    • 2013-09-03
    • 月島機械株式会社Tsukishima Kikai Co Ltd
    • NISHIYAMA MAMORUYAMAMOTO TAKAFUMI
    • F23C10/16F23C10/28F23G5/50F27B15/10F27B15/18F27D17/00
    • 【課題】新たな設備を追加することなく、既存の設備を利用し、加圧流動焼却炉設備の通常運転時において、余剰排ガスのエネルギーをインバータの回生電力に変換し、変換後のエネルギーを有効利用することができる加圧流動焼却炉設備を提供する。【解決手段】加圧流動焼却炉1と、タービン2aとタービン2aの回動に伴って回動されるコンプレッサ2bとを有する過給機2と、コンプレッサ2bの空気入口側に設けられ、コンプレッサ2bに空気を供給する起動用送風機49と、加圧流動焼却炉1の起動時に、電力を起動用送風機49に供給し、起動用送風機49を起動させる電力回生機能付きインバータ49aと、加圧流動焼却炉1への被処理物供給開始後に、コンプレッサ2bの空気入口側の圧力を変化させ、起動用送風機49を介して外部からコンプレッサ2bに空気が導入されることで電力回生機能付きインバータ49aから回生電力を得る制御装置19と、を備える。【選択図】図1
    • 要解决的问题:为了提供能够使用现有设施的加压流化床焚化炉设施,当加压流化床焚化炉设施正常运行时,将剩余废气能量转换为逆变器再生电力并有效地使用转化后的能量,而不需要增加新的设施 加压流化床焚烧炉设备包括:加压流化床焚烧炉1; 包括涡轮机2a的增压器2和随着涡轮机2a旋转而旋转的压缩机2b; 设置在压缩机2b的空气入口的启动鼓风机49,向压缩机2b供给空气; 在启动加压流化床焚化炉1时,向启动鼓风机49供给电力并起动启动鼓风机49的再生电力功能增加型逆变器49a; 以及控制器19,其在待处理物体被供给到加压流化床焚化炉之后,改变压缩机2b的入口处的压力,并且经由启动鼓风机49从外部将空气引入压缩机2b 从再生电力功能增加型逆变器49获得再生电力。
    • 3. 发明专利
    • Apparatus and method for charging powder
    • 用于充电粉末的装置和方法
    • JP2014105054A
    • 2014-06-09
    • JP2012257818
    • 2012-11-26
    • Tsukishima Kikai Co Ltd月島機械株式会社
    • KANEKO SHINJI
    • B65G65/23B65G65/32
    • PROBLEM TO BE SOLVED: To provide an inversion throw-in type apparatus for charging powders where the dusting of the powders can be suppressed and the powders are efficiently charged without polluting the environment around the charging apparatus.SOLUTION: An apparatus for charging powders where the powders stored in a cylindrical storage container 1 with a bottom are transferred to another container 15 comprises: a chute 12 which covers the opening of the storage container 1 with a charging port 12A so as to seal the opening of the storage container 1; an inversion and elevation mechanism 14 which elevates the storage container 1 together with the chute 12 and which inverts the bottom of the storage container 1 being downward in a falling position so as to be upward in a rising position; and a flexible hose 16 to connect the charging port 12A of the chute 12 to the charging port 15A of another container 15.
    • 要解决的问题:提供一种用于对粉末进行粉末充填的粉末倒置装置,其中可以抑制粉末的粉尘并且粉末被有效地充电,而不会污染充电装置周围的环境。解决方案:一种用于对粉末进行充电的装置, 储存在具有底部的圆筒形储存容器1中的粉末被转移到另一容器15,包括:斜槽12,其用充电口12A覆盖存储容器1的开口,以密封存储容器1的开口; 反转升降机构14,其使贮存容器1与滑槽12一起升起,并使储存容器1的底部在下降位置向下倾斜,使其向上升起; 以及将滑槽12的充气口12A连接到另一容器15的充气口15A的柔性软管16。
    • 4. 发明专利
    • Treatment system and treatment method for biomass
    • 生物质处理系统和处理方法
    • JP2014003915A
    • 2014-01-16
    • JP2012140022
    • 2012-06-21
    • Tsukishima Kikai Co Ltd月島機械株式会社
    • HAYAKAWA TOMOMOTOMIZUNO HIDEAKIKATO AYAKO
    • C12M1/00B09B3/00C12P7/06C12P7/40C13K1/02
    • Y02E50/17Y02E50/30
    • PROBLEM TO BE SOLVED: To provide a treatment system and a treatment method for biomass in which an effluent exhausted from a rectification apparatus can be effectively utilized.SOLUTION: The treatment method for biomass includes: a step of reacting biomass with an amylase to cause saccharification by a saccharification-fermentation means, and reacting the saccharification product with fermentation microorganisms to cause fermentation; a step of evaporating alcohol or organic acid from a fermentation mash by an evaporation apparatus; and a step of rectifying an evaporation liquid from the evaporation apparatus by a rectification apparatus. An effluent exhausted from the rectification apparatus is returned for being utilized to the saccharification-fermentation means, distillation apparatus or rectification apparatus.
    • 要解决的问题:提供一种用于生物质的处理系统和处理方法,其中可以有效地利用从精馏装置排出的流出物。解决方案:生物质的处理方法包括:使生物质与淀粉酶反应以引起糖化的步骤 通过糖化 - 发酵装置,并使糖化产物与发酵微生物反应以引起发酵; 通过蒸发装置从发酵醪中蒸发醇或有机酸的步骤; 以及通过整流装置对来自蒸发装置的蒸发液进行精馏的步骤。 从精馏装置排出的废液返回,用于糖化发酵装置,蒸馏装置或整流装置。
    • 6. 发明专利
    • Structure for notch chain of sludge collector
    • 垃圾收集器的缺口结构
    • JP2013121596A
    • 2013-06-20
    • JP2013024431
    • 2013-02-12
    • Tsukishima Kikai Co Ltd月島機械株式会社
    • ISOGAYA SHIGENORIHIROMOTO MANABU
    • B01D21/18B65G19/20
    • PROBLEM TO BE SOLVED: To provide a structure for a notch chain which can definitely perform a circulation movement in a sludge collector.SOLUTION: In a structure for a synthetic resin made notch chain which engages with a sprocket wheel of a sludge collector, each link constituting the notch chain has one end with a narrow width and the other end with a wide width and has a pair of branches at left and right; wherein the part with the narrow width of the other link is fitted to a space between the branches, and the links are pivotally attached to each other at a connection axis.
    • 要解决的问题:提供一种能够确定地在污泥收集器中进行循环运动的缺口链的结构。 解决方案:在用于与污泥收集器的链轮啮合的合成树脂制造的切口链的结构中,构成切口链的每个连杆的一端具有窄的宽度,另一端具有宽的宽度,并且具有 左右两对分支; 其中所述另一连杆的宽度窄的部分安装在所述分支之间的空间中,并且所述连杆在连接轴线处彼此枢转地附接。 版权所有(C)2013,JPO&INPIT
    • 7. 发明专利
    • Filter press apparatus and method for opening its plate
    • 过滤器装置和打开其板的方法
    • JP2013099752A
    • 2013-05-23
    • JP2013045428
    • 2013-03-07
    • Tsukishima Kikai Co Ltd月島機械株式会社
    • AOYANAGI HIROKITAKIZAWA KENJIYAMANE YOICHI
    • B01D25/19B01D25/172
    • PROBLEM TO BE SOLVED: To obtain a filter press apparatus whose installation space can be reduced by reducing a plate opening distance between filter plates while simplifying its structure and reducing a production cost.SOLUTION: Three pieces of first middle filter plates 11A to 11C and three pieces of second middle filter plates 12A to 12C are alternately arranged in turn among seven pieces of reference filter plates 10A to 10G to constitute a filter plate group. Each of first cylinders 21A, 21B is arranged at a position near the upper side of a fixed head 3 or a loose head 6 and respective first middle filter plates 11A to 11C are connected with one another via a first joint 15 and the first middle filter plates 11A, 11C are connected with first cylinders 21A, 21B via the first joint 15. Each of second cylinders 22A, 22B is arranged at a position near the lower side of the fixed head 3 or the loose head 6, respective second middle filter plates 12A to 12C are connected with each other via a second joint 16 and the second middle filter plates 12A, 12C are connected with second cylinders 22A, 22B via the second joint 16.
    • 要解决的问题:为了获得通过减少过滤板之间的板开口距离可以减小安装空间的压滤装置,同时简化其结构并降低生产成本。 解决方案:七个第一中间过滤板11A至11C和三个第二中间过滤板12A至12C之间依次交替地布置在七个参考过滤板10A至10G之间,以构成过滤板组。 第一气缸21A,21B中的每一个布置在靠近固定头3或松散头6的上侧的位置,并且各自的第一中间过滤板11A至11C经由第一接头15和第一中间过滤器 板11A,11C经由第一接头15与第一气缸21A,21B连接。第二气缸22A,22B中的每一个布置在靠近固定头3或松散头6的下侧的位置,各自的第二中间过滤板 12A〜12C经由第二接头16相互连接,第二中间滤板12A,12C经由第二接头16与第二气缸22A,22B连接。(C)2013,JPO&INPIT
    • 8. 发明专利
    • Filter press apparatus and method of operating the same
    • 过滤器装置及其操作方法
    • JP2012200626A
    • 2012-10-22
    • JP2011064978
    • 2011-03-23
    • Tsukishima Kikai Co Ltd月島機械株式会社
    • AOYANAGI HIROKITAKAHASHI HIROKI
    • B01D25/19B01D25/12
    • PROBLEM TO BE SOLVED: To achieve a simplified structure, compactness, space saving and low cost.SOLUTION: A filter press apparatus includes: a fastening means 51, 51 which are disposed between a reaction force seat body 11 and a loose head 4 disposed in an outer direction of one side end of a filter plate in a filter plate group comprising a plurality of filter plates which are freely expanded, contracted, opened and shut in a plate thickness direction and which mechanically moves the loose head 4 to the filter thickness direction to fasten the filter plate group; a reaction force receiving means 52 for receiving the reaction force that allows the loose head 4 to move the side opposite to the fastening direction during compression at the position where the receiving head mechanically moved to the filter thickness direction; and a fastening load detection means 80, 80 for detecting the fastening force in the step for fastening the filter plate group by the fastening means 51, 51. In the filter press apparatus, the reaction force in place of the fastening by the fastening means 51, 51 is received by the reaction force receiving means 52 if the fastening force detected by the load detection means 80, 80 exceeds the reference value in the step of fastening.
    • 要解决的问题:实现结构简单,紧凑,节省空间,成本低。 解决方案:压滤装置包括:紧固装置51,51,其设置在反作用力座椅主体11和设置在过滤板组中的过滤板的一个侧端的外侧方向上的松动头部4之间 包括多个过滤板,其在板厚方向上自由地膨胀,收缩,打开和关闭,并且将松散头4机械地移动到过滤器厚度方向以紧固过滤板组; 反作用力接收装置52,用于接收在接收头机械地移动到过滤器厚度方向的位置处,在压缩期间允许松散头部4移动与紧固方向相反的一侧的反作用力; 以及用于检测用于通过紧固装置51,51紧固滤板组的步骤中的紧固力的紧固载荷检测装置80,80。在压滤装置中,反作用力代替紧固装置51的紧固 如果在紧固步骤中由负载检测装置80,80检测到的紧固力超过参考值,则反作用力接收装置52接收到51。 版权所有(C)2013,JPO&INPIT
    • 10. 发明专利
    • Solid content separation method of suspension
    • 固体含量分离方法
    • JP2012170871A
    • 2012-09-10
    • JP2011034538
    • 2011-02-21
    • Hiroshima UnivTsukishima Kikai Co Ltd国立大学法人広島大学月島機械株式会社
    • SAKOHARA SHUJIYAMANE YOICHIIMAGAWA YOSUKE
    • B01D21/01C02F1/56C02F11/14C08F220/56
    • PROBLEM TO BE SOLVED: To provide a solid content separation method with which the solid content of a suspension can be agglomerated at a temperature lower than the prior arts.SOLUTION: The solid content separation method of a suspension includes adding cationic temperature-sensitive polymers and anionic temperature-sensitive polymers which change from hydrophilicity to hydrophobicity with a transition temperature as a boundary to the suspension and mixing them, and agglomerating and separating a solid content. In the solid content separation method, the ratio of constituent units having hydrophobic groups occupied in all the constituent units in the anionic temperature-sensitive polymers is higher than that in the cationic temperature-sensitive polymers, and the ratio of constituent units having hydrophobic groups occupied in all the constituent units in the cationic temperature-sensitive polymers is 3 mol% or less. The cationic temperature-sensitive polymers and the anionic temperature-sensitive polymers are added to and mixed with the suspension at a hydrophilic temperature zone lower than a transition temperature before mixing them. Thereafter, the temperature of the suspension is set to a hydrophobic temperature zone equal to or higher than the transition temperature after mixing the cationic temperature-sensitive polymers and the anionic temperature-sensitive polymers, and the solid content is separated.
    • 要解决的问题:提供一种固体含量分离方法,其悬浮液的固体含量可以在比现有技术低的温度下聚集。 解决方案:悬浮液的固体含量分离方法包括将阳离子温度敏感性聚合物和阴离子温度敏感聚合物从亲水性改变为疏水性,转变温度作为悬浮液的边界,并将其混合并分离 坚实的内容。 在固体成分分离方法中,阴离子性温度敏感性聚合物中所有构成单元中具有疏水性基团的构成单元的比例高于阳离子性温度敏感性聚合物,并且具有疏水性基团的构成单元的比例 在阳离子型温度敏感性聚合物的所有构成单元中,为3摩尔%以下。 将阳离子温度敏感性聚合物和阴离子温度敏感性聚合物在混合它们之前,在低于转变温度的亲水性温度区域中加入并与悬浮液混合。 此后,将阳离子温度敏感性聚合物和阴离子性温度敏感性聚合物混合后,将悬浮液的温度设定为等于或高于转变温度的疏水性温度区域,并分离固体成分。 版权所有(C)2012,JPO&INPIT