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    • 2. 发明授权
    • Proton conductor
    • 质子导体
    • US07781535B2
    • 2010-08-24
    • US11072940
    • 2005-03-03
    • Teruaki KomiyaTadahiro Shiba
    • Teruaki KomiyaTadahiro Shiba
    • C08F8/22
    • H01B1/122H01M8/1023H01M8/1025H01M8/1027H01M8/103H01M8/1058H01M2300/0082
    • An acidic group-containing polymer which has an acidic group such as sulfonic acid group, phosphoric acid group, and phosphonic acid group, and a proton acceptor which has a boiling point at 1 atmosphere higher than 100° C. and which functions as a medium for conducting proton dissociated from the acidic group are retained in pores of a porous member. Preferred examples of the proton acceptor include a salt structure composed of an anion and a cation derived from a basic organic compound, a basic organic compound, and a dissociation-facilitating polymer which facilitates dissociation of proton. Any one of the acidic group-containing polymer and the proton acceptor may be retained first, or both may be retained simultaneously.
    • 具有磺酸基,磷酸基和膦酸基等酸性基团的含酸性基团的聚合物和沸点在100℃以上的沸点,作为介质的功能的质子受体 用于将从酸性基团离解的导电的质子保留在多孔构件的孔中。 质子受体的优选实例包括由阴离子和衍生自碱性有机化合物的阳离子,碱性有机化合物和促离子促进聚合物组成的盐结构,其促进质子的解离。 可以首先保留含酸性基团的聚合物和质子受体中的任何一种,或者可以同时保留两者。
    • 3. 发明授权
    • Proton conductive solid polymer electrolyte and method for producing the same
    • 质子导电固体聚合物电解质及其制备方法
    • US07045241B2
    • 2006-05-16
    • US10623064
    • 2003-07-18
    • Hiroshi AkitaTeruaki Komiya
    • Hiroshi AkitaTeruaki Komiya
    • H01M8/10C08G69/26
    • C08J5/20C08G73/18C08J5/2275C08J2379/06H01B1/122H01M8/1023H01M8/1027H01M8/103H01M8/1044H01M8/1048H01M8/1081H01M2300/0082Y02P70/56
    • A monomer to produce polybenzimidazole is dissolved in polyphosphoric acid. For example, polysulfated phenylene sulfonic acid (acidic group-possessing polymer) is further dissolved in this solution. In this procedure, the acidic group-possessing polymer and the monomer are adsorbed to one another in accordance with the acid-base interaction. When the monomer is polymerized, for example, by means of dehydration polymerization in this state, then polybenzimidazole is synthesized, and the polybenzimidazole and the acidic group-possessing polymer are compatibilized with each other to produce a compatibilized polymer. When the compatibilized polymer is deposited as a solid, and the solid is separated from polyphosphoric acid, then the compatibilized polymer is obtained. A proton conductive solid polymer electrolyte as a final product is manufactured by forming the compatibilized polymer to have a predetermined shape.
    • 将产生聚苯并咪唑的单体溶解在多磷酸中。 例如,多硫酸化亚苯基磺酸(含酸性基团的聚合物)进一步溶解在该溶液中。 在该方法中,具有酸性基团的聚合物和单体根据酸碱相互作用彼此吸附。 当在该状态下,例如通过脱水聚合使单体聚合时,合成聚苯并咪唑,使聚苯并咪唑和含酸性基团的聚合物相互增容,生成相容化的聚合物。 当相容的聚合物作为固体沉积,并且将固体与多磷酸分离时,获得相容的聚合物。 作为最终产品的质子传导性固体聚合物电解质通过将相容化的聚合物形成为具有预定形状来制造。
    • 8. 发明授权
    • Method of operating phosphoric acid fuel cell
    • 操作磷酸燃料电池的方法
    • US06703152B2
    • 2004-03-09
    • US09896412
    • 2001-06-28
    • Teruaki KomiyaMasaru IguchiMasahiro Ise
    • Teruaki KomiyaMasaru IguchiMasahiro Ise
    • H01M804
    • H01M8/04H01M8/04007H01M8/04089
    • The operating condition is set so that a phosphoric acid concentration, at which an amount of reaction product water to lower a concentration of phosphoric acid and an amount of water evaporated from phosphoric acid are equilibrated, can be not less than a reference phosphoric acid concentration to maintain desired performance, when a phosphoric acid fuel cell is operated under a condition where the reaction product water exists as liquid water. Specifically, an equilibrium phosphoric acid concentration-setting system is used to control, if necessary, gas flow rate control systems, gas temperature control systems, and pressure control systems so as to effectively prevent the performance of the phosphoric acid fuel cell and its power generation from being worsened. Accordingly, it is possible to suitably operate the phosphoric acid fuel cell at a low temperature without additional equipments.
    • 操作条件设定为使磷酸浓度降低至磷酸浓度降低的反应产物水量和从磷酸蒸发的水量的磷酸浓度可以不小于参考磷酸浓度 当磷酸燃料电池在作为液体水存在反应产物水的条件下操作时,保持期望的性能。 具体而言,如果需要,使用平衡磷酸浓度设定系统来控制气体流量控制系统,气体温度控制系统和压力控制系统,以有效地防止磷酸燃料电池的性能及其发电 从恶化。 因此,可以在没有附加设备的情况下在低温下适当地操作磷酸燃料电池。