スレーキング抑制剤
    31.
    发明专利
    スレーキング抑制剤 有权
    消毒抑制剂

    公开(公告)号:JP2014231456A

    公开(公告)日:2014-12-11

    申请号:JP2013113081

    申请日:2013-05-29

    Abstract: 【課題】塩基性骨材に対し優れたスレーキング抑制効果を発揮し、且つ、塩基性骨材との混練時および施工時に良好な流動性が得られるスレーキング抑制剤の開発を課題とする。【解決手段】グリコール酸・クエン酸アルミニウム化合物からなるスレーキング抑制剤である。前記グリコール酸・クエン酸アルミニウム化合物の組成としては、グリコール酸/Al2O3(モル比)=1.0〜4.0の範囲であり、且つ、クエン酸/Al2O3(モル比)=0.1〜1.5の範囲であることが好ましい。【選択図】なし

    Abstract translation: 要解决的问题:提供对碱性骨料显示出优异的消光抑制效果的阻塞抑制剂的开发,并且允许在与碱性骨料的捏合中的良好的流动性和应用。解决方案:一种抑制剂包括乙醇酸铝/柠檬酸盐化合物。 乙醇酸/柠檬酸化合物的构成优选在乙醇酸盐/ AlO(摩尔比)= 1.0〜4.0的范围内,柠檬酸/ AlO(摩尔比)= 0.1〜1.5的范围。

    Precursor-dispersed solution for lithium ion conductive oxide
    33.
    发明专利
    Precursor-dispersed solution for lithium ion conductive oxide 有权
    用于锂离子导电氧化物的前驱体解决方案

    公开(公告)号:JP2014175065A

    公开(公告)日:2014-09-22

    申请号:JP2013043767

    申请日:2013-03-06

    Abstract: PROBLEM TO BE SOLVED: To provide a precursor solution having excellent adhesion with a base material and suitable for the production of a lithium ion conductive oxide thin film.SOLUTION: Provided is a precursor-dispersed solution for a lithium ion conductive oxide comprising lithium, lanthanum and zirconium as components, and in which, among the above components, the lanthanum and zirconium are present as colloidal dispersions. Further, the precursor-dispersed solution may further comprise one or more kinds among niobium, tantalum, aluminum and boron as a component(s).

    Abstract translation: 要解决的问题:提供一种与基材具有优异粘附性并适合于生产锂离子传导氧化物薄膜的前体溶液。解决方案:提供一种用于锂离子传导氧化物的前体分散溶液,其包含锂,镧 和锆作为组分,其中在上述组分中,镧和锆作为胶体分散体存在。 此外,前体分散溶液可以进一步包含铌,钽,铝和硼中的一种或多种作为组分。

    Method for producing tridymite aluminum orthophosphate supported alumina
    34.
    发明专利
    Method for producing tridymite aluminum orthophosphate supported alumina 审中-公开
    生产磷酸二氢铝磷酸铝的方法

    公开(公告)号:JP2014122121A

    公开(公告)日:2014-07-03

    申请号:JP2012277537

    申请日:2012-12-20

    Abstract: PROBLEM TO BE SOLVED: To provide an efficient method for producing tridymite-type aluminum orthophosphate supported alumina, which is useful as a catalyst carrier.SOLUTION: The method for producing tridymite-type aluminum orthophosphate supported alumina comprises steps of (1) obtaining a slurry by mixing one or more kinds of aluminum compounds selected from the group consisting of active alumina, alumina monohydrate, and an aluminum gel with a specific water-soluble phosphate compound and, if necessary, water, (2) drying the slurry obtained, and (3) calcinating the dried material obtained at 900 to 1300°C.

    Abstract translation: 要解决的问题:提供一种生产用作催化剂载体的鳞状石英型正磷酸铝负载氧化铝的有效方法。解决方案:制备鳞石英型正磷酸铝负载型氧化铝的方法包括以下步骤:(1)获得浆料 通过将选自活性氧化铝,一水合氧化铝和铝凝胶的一种或多种铝化合物与特定的水溶性磷酸盐化合物和必要时的水混合,(2)干燥获得的浆料和( 3)煅烧900〜1300℃得到的干燥物质。

    Biomaterial
    36.
    发明专利

    公开(公告)号:JP5435534B2

    公开(公告)日:2014-03-05

    申请号:JP2008218064

    申请日:2008-08-27

    Abstract: PROBLEM TO BE SOLVED: To provide a biological material to facilitate formation of bones or cartilage by using highly safe and biocompatible polymers without cytotoxicity for siRNA of Noggin mRNA, siRNA of Follistatin mRNA, siRNA of Sclerostatin mRNA, siRNA of Chordin mRNA, siRNA of DCR mRNA, and siRNA of BMPMER mRNA, and having high cell introduction efficiency and high expression efficiency after the introduction. SOLUTION: The biological material includes copolymers with hydroxycarboxylic acid and polyethylene glycol as main component units, and at least one kind of siRNA selected from siRNA of Follistatin mRNA, siRNA of Sclerostatin mRNA, siRNA of Chordin mRNA, siRNA of DCR mRNA and siRNA of BMPMER mRNA. If calcium phosphate and/or a cell growth factor having osteoinductive activity is included in the biological material, formation of bones and cartilage can be facilitated. COPYRIGHT: (C)2010,JPO&INPIT

    Ceramic forming composition
    37.
    发明专利
    Ceramic forming composition 审中-公开
    陶瓷成型组合物

    公开(公告)号:JP2014005182A

    公开(公告)日:2014-01-16

    申请号:JP2012143507

    申请日:2012-06-26

    Abstract: PROBLEM TO BE SOLVED: To provide an improvement of mechanical strength at a form removal in the ceramics molding and an improvement of inhibition effects of additional slaking on the monolithic refractory in the case of using a basic organic acid aluminum.SOLUTION: A ceramic forming composition comprises a water-soluble metal sulfate and a basic organic acid aluminum in which an organic acid is a lactic acid only or both of a lactic acid and a glycolic acid, the ratio of the lactic acid and the glycolic acid is 100:0 to 20:80 by molar ratio and the molar ratio of the organic acid/AlOis 1 to 3.

    Abstract translation: 要解决的问题:为了提高陶瓷成形体中的形状去除时的机械强度,以及在使用碱性有机酸铝的情况下提高对整体耐火材料的附加切削的抑制效果。溶液:陶瓷成形组合物 包括其中有机酸仅为乳酸或乳酸和乙醇酸两者的水溶性金属硫酸盐和碱性有机酸铝,乳酸和乙醇酸的比例为100:0至20 :摩尔比为80,有机酸/ AlO的摩尔比为1〜3。

    Lithium ion-conductive oxide and method of manufacturing the same
    38.
    发明专利
    Lithium ion-conductive oxide and method of manufacturing the same 有权
    锂离子导电氧化物及其制造方法

    公开(公告)号:JP2013184848A

    公开(公告)日:2013-09-19

    申请号:JP2012050783

    申请日:2012-03-07

    CPC classification number: Y02E60/12

    Abstract: PROBLEM TO BE SOLVED: To provide a lithium ion-conductive oxide which can be sintered at a low temperature when it is manufactured and has a good lithium ion conduction property, and a method of manufacturing the same.SOLUTION: A method of manufacturing a lithium ion-conductive oxide includes a first process in which a liquid reactant containing at least a water-soluble or organic solvent-soluble lithium compound, a water-soluble or organic solvent-soluble lanthanum compound and a water-soluble or organic solvent-soluble zirconium compound is prepared, and a second process in which the dried liquid reactant is sintered once or more in the presence of a boron compound and an aluminum compound. This lithium ion-conductive oxide contains lithium, lanthanum, zirconium, boron and aluminum.

    Abstract translation: 要解决的问题:提供一种在制造时可以在低温下烧结并具有良好的锂离子传导性的锂离子传导性氧化物及其制造方法。解决方案:制备锂的方法 离子导电氧化物包括第一种方法,其中含有至少水溶性或有机溶剂可溶性锂化合物,水溶性或有机溶剂可溶性镧化合物的液体反应物和水溶性或有机溶剂可溶性锆 制备化合物,其中在硼化合物和铝化合物的存在下将干燥的液体反应物烧结一次或多次的第二种方法。 该锂离子传导性氧化物含有锂,镧,锆,硼和铝。

    Method for binding inorganic material
    39.
    发明专利
    Method for binding inorganic material 有权
    用于结合无机材料的方法

    公开(公告)号:JP2013133258A

    公开(公告)日:2013-07-08

    申请号:JP2011284604

    申请日:2011-12-27

    Abstract: PROBLEM TO BE SOLVED: To use, as a binding agent, an aluminum-based binder having stronger binding force than basic aluminum lactate having excellent binding force, when binding an inorganic material.SOLUTION: This method for binding an inorganic material uses alumina colloid-containing aqueous solution satisfying following requirement (a)-(c). (a) The pH of the alumina colloid-containing aqueous solution is in the range of 5.5-9. (b) A product (A) of the number of moles of an organic acid in the alumina colloid-containing aqueous solution and the number of carboxy groups in the organic acid, and the number (B) of moles of AlOsatisfy following equation: A/B=1.0-2.0. (c) The content of AlOin a filtrate obtained by filtering the alumina colloid-containing aqueous solution by an ultrafiltration membrane having molecular cutoff of 10,000 is 5-50 mass% with respect to AlOin the aqueous solution before filtration.

    Abstract translation: 要解决的问题:当结合无机材料时,使用具有比具有优异结合力的碱性乳酸铝更强的结合力的铝基粘合剂作为粘合剂。结论:该无机材料的结合方法使用氧化铝胶体 - (a) - (c))。 (a)含氧化铝胶体的水溶液的pH在5.5-9的范围内。 (b)含有氧化铝胶体的水溶液中的有机酸的摩尔数与有机酸中的羧基数的摩尔数(A)和下述式(A)的摩尔数(B):A /B=1.0-2.0。 (c)通过分子截留值为10,000的超滤膜将含氧化铝胶体的水溶液过滤得到的滤液中的AlO的含量相对于过滤前的水溶液中的AlO为5-50质量%。

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