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    • 4. 发明授权
    • Solid reagents
    • 固体试剂
    • US07399792B2
    • 2008-07-15
    • US11366467
    • 2006-03-03
    • Makoto KomatsuKazuyoshi Takeda
    • Makoto KomatsuKazuyoshi Takeda
    • C08F291/00C08J7/18
    • D06M14/18C08F255/00C08F255/02C08F255/023C08F255/026C08F257/02C08F259/00C08F291/00D06M14/26D06M14/28
    • An object of the present invention is to provide a novel solid reagent capable of solving the problems of conventional solid reagents based on resin beads.The present invention relates to a solid reagent comprising an organic polymer base in which a polymer side chain is introduced onto the backbone of the organic polymer base via graft polymerization and a reactive functional group is introduced onto the polymer side chain. The organic polymer base is preferably in the form of a fiber, a woven or nonwoven fabric consisting of an assembly of fibers, a porous membrane or a hollow fiber membrane. The graft polymerization is preferably a radiation-induced graft polymerization. Solid reagents according to the present invention can be used in various organic synthetic reactions.
    • 本发明的目的是提供一种能够解决基于树脂珠的常规固体试剂问题的新型固体试剂。 本发明涉及包含有机聚合物基质的固体试剂,其中通过接枝聚合将聚合物侧链引入有机聚合物基体的主链上,并将反应性官能团引入到聚合物侧链上。 有机聚合物基质优选为由纤维,多孔膜或中空纤维膜组成的纤维,织造或非织造织物的形式。 接枝聚合优选是辐射诱导的接枝聚合。 根据本发明的固体试剂可用于各种有机合成反应。
    • 5. 发明申请
    • Solid reagents
    • 固体试剂
    • US20060148998A1
    • 2006-07-06
    • US11366467
    • 2006-03-03
    • Makoto KomatsuKazuyoshi Takeda
    • Makoto KomatsuKazuyoshi Takeda
    • C08F32/00
    • D06M14/18C08F255/00C08F255/02C08F255/023C08F255/026C08F257/02C08F259/00C08F291/00D06M14/26D06M14/28
    • An object of the present invention is to provide a novel solid reagent capable of solving the problems of conventional solid reagents based on resin beads. The present invention relates to a solid reagent comprising an organic polymer base in which a polymer side chain is introduced onto the backbone of the organic polymer base via graft polymerization and a reactive functional group is introduced onto the polymer side chain. The organic polymer base is preferably in the form of a fiber, a woven or nonwoven fabric consisting of an assembly of fibers, a porous membrane or a hollow fiber membrane. The graft polymerization is preferably a radiation-induced graft polymerization. Solid reagents according to the present invention can be used in various organic synthetic reactions.
    • 本发明的目的是提供一种能够解决基于树脂珠的常规固体试剂问题的新型固体试剂。 本发明涉及包含有机聚合物基质的固体试剂,其中通过接枝聚合将聚合物侧链引入有机聚合物基体的主链上,并将反应性官能团引入到聚合物侧链上。 有机聚合物基质优选为由纤维,多孔膜或中空纤维膜组成的纤维,织造或非织造织物的形式。 接枝聚合优选是辐射诱导的接枝聚合。 根据本发明的固体试剂可用于各种有机合成反应。
    • 7. 发明申请
    • METHOD OF EVALUATING FOAM-HOLDING PROPERTIES OF FERMENTED MALT DRINK AND MARKER FOR EVALUATING FOAM-HOLDING PROPERTIES
    • 用于评估泡沫保持性能的发酵麦芽饮料和标记的泡沫保持性能评估方法
    • US20100062118A1
    • 2010-03-11
    • US12530099
    • 2008-03-07
    • Takashi IimureKazutoshi ItoKazuyoshi Takeda
    • Takashi IimureKazutoshi ItoKazuyoshi Takeda
    • C12C1/00G01N33/02
    • G01N33/146G01N33/68
    • The present invention provides a method for determination of the foam stability of a fermented malt beverage, wherein the concentration of protein Z7 (MZ7) in seeds of a barley which is used as a material for the fermented malt beverage, a malt obtained from the seeds, a wort obtained from the malt, a fermented malt beverage obtained by fermenting the wort, or a pre-fermentation or fermenting material solution of the fermented malt beverage, is used as an index having a negative correlation with the foam stability of the fermented malt beverage, to determine the foam stability of the fermented malt beverage. According to the determination method of the invention, it is possible to determine the foam stability from the concentration of a prescribed protein in the barley seeds, malt, wort, fermented malt beverage or the like without directly measuring the head retention of the fermented malt beverage.
    • 本发明提供一种用于测定发酵麦芽饮料的泡沫稳定性的方法,其中用作发酵麦芽饮料的材料的大麦种子中的蛋白质Z7(MZ7)的浓度,从种子获得的麦芽 使用从麦芽中获得的麦芽汁,通过发酵麦芽汁获得的发酵麦芽饮料或发酵麦芽饮料的发酵前发酵物质溶液作为与发酵麦芽的泡沫稳定性呈负相关的指标 饮料,以确定发酵麦芽饮料的泡沫稳定性。 根据本发明的测定方法,可以从大麦种子,麦芽,麦芽汁,发酵麦芽饮料等中的规定蛋白质的浓度确定泡沫稳定性,而不直接测量发酵麦芽饮料的头部保留 。
    • 8. 发明授权
    • Ozone removing material and method for preparing the same
    • 除臭材料及其制备方法
    • US07291312B2
    • 2007-11-06
    • US10333337
    • 2001-07-17
    • Seiji IimuraKazuyoshi TakedaKunio FujiwaraMari Katsumine
    • Seiji IimuraKazuyoshi TakedaKunio FujiwaraMari Katsumine
    • B01J41/12D04H1/00B01D50/00
    • B01D53/8675B01J31/08B01J35/06Y02A50/2347Y10T442/696
    • An object of the present invention is to solve problems of conventional ozone-scavenging materials and to provide an ozone-scavenging material capable of effectively decomposing/removing ozone at low cost. To attain the above object, the present invention provides an ozone-scavenging material characterized in that a metal having ozone-decomposing ability or an oxide thereof is supported on an organic polymer base having a polymer side chain having an ion exchange group on the backbone of a polymer. Said ozone-scavenging material can be prepared by introducing a polymer side chain having an ion exchange group onto the backbone of an organic polymer base, bringing the resulting organic polymer material into contact with a salt of a metal having ozone-decomposing ability to support the ion of said metal on the ion exchange group, and then precipitating fine particles of said metal or an oxide of said metal on the organic polymer material by oxidation or reduction.
    • 本发明的目的是解决常规的臭氧清除材料的问题,并提供能够以低成本有效地分解/除去臭氧的臭氧清除材料。 为了实现上述目的,本发明提供了一种臭氧清除材料,其特征在于具有臭氧分解能力的金属或其氧化物负载在具有离子交换基团的聚合物侧链的有机聚合物基体上, 一种聚合物。 所述臭氧清除材料可以通过将具有离子交换基团的聚合物侧链引入有机聚合物基质的主链上来制备,使得到的有机聚合物材料与具有臭氧分解能力的金属的盐接触,以支持 离子交换基团上的所述金属的离子,然后通过氧化或还原在所述有机聚合物材料上沉淀所述金属的微粒或所述金属的氧化物。