首页> 外国专利> DEGRADABLE POLYMER MATERIAL, HYBRID MATERIAL AND INORGANIC MOLDING MATERIAL, HYBRID MOLDED ARTICLE IN WHICH THESE ARE USED, INORGANIC MOLDED ARTICLE, AND POLYMER REMOVAL OR RECOVERY METHOD

DEGRADABLE POLYMER MATERIAL, HYBRID MATERIAL AND INORGANIC MOLDING MATERIAL, HYBRID MOLDED ARTICLE IN WHICH THESE ARE USED, INORGANIC MOLDED ARTICLE, AND POLYMER REMOVAL OR RECOVERY METHOD

机译:可降解的聚合物材料,混合材料和无机模制材料,使用的混合模制材料,无机模制制品以及聚合物的去除或回收方法

摘要

The present invention provides: a degradable polymer material having high degradation efficiency of the polymer, the degradable polymer material being applicable to polymer and inorganic materials recycling technology, metal and ceramic molding, etc.; a hybrid material and an inorganic molding material in which the degradable polymer material is used; a hybrid molded article in which these are used; an inorganic molded article; and a polymer removal or recovery method. A degradable polymer material in which a nano catalyst having catalytic activity for a degradation reaction of the polymer is dispersed in the polymer. A recyclable hybrid material containing the degradable polymer material and an inorganic filler, and a hybrid molded article in which the hybrid material is used. An inorganic molding material containing an inorganic material and a binder, the molding material being used in the molding of an inorganic molded article, wherein the binder is the above degradable polymer material; and an inorganic molded article in which the inorganic molding material is used. A polymer removal or recovery method using a nano catalyst having catalytic activity for a degradation reaction of a polymer.
机译:本发明提供:具有高聚合物降解效率的可降解聚合物材料,该可降解聚合物材料适用于聚合物和无机材料的回收技术,金属和陶瓷成型等。杂化材料和使用可降解聚合物材料的无机成型材料;使用这些的混合成型品;无机成型品;以及聚合物去除或回收方法。一种可降解的聚合物材料,其中具有用于聚合物降解反应的催化活性的纳米催化剂分散在聚合物中。包含可降解聚合物材料和无机填料的可循环利用的杂化材料,以及其中使用杂化材料的杂化成型品。包含无机材料和粘合剂的无机成型材料,该成型材料用于无机成型品的成型中,其中所述粘合剂是上述可降解的聚合物材料。以及使用了无机成型材料的无机成型品。一种使用具有对聚合物的降解反应具有催化活性的纳米催化剂的聚合物去除或回收方法。

著录项

  • 公开/公告号WO2020022336A1

    专利类型

  • 公开/公告日2020-01-30

    原文格式PDF

  • 申请/专利权人 TOHOKU UNIVERSITY;

    申请/专利号WO2019JP28863

  • 发明设计人 AJIRI TADAFUMI;

    申请日2019-07-23

  • 分类号C08L101;B01J23/10;B01J23/26;B01J35/02;B82Y30;C08K3/08;C08K3/22;C08K9/02;C08K9/04;

  • 国家 WO

  • 入库时间 2022-08-21 11:13:42

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