• The second catalyst layer (132) is configured to contain a catalyst supported on a carrier.

    并且所述第二催化剂(132)含有负载于载体的催化剂。

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  • When the thickness of cathodic catalyst layer is decreased, the electrode potential is increase.

    阴极催化厚度减小,可提高电池输出电压

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  • The catalyst is prepared by forming the methanol dehydration catalyst layer around the methanol synthesis catalyst.

    催化剂通过甲醇合成催化剂颗粒周围形成甲醇脱水用催化剂制成

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  • A substrate for the growth of a carbon nanotube having a catalyst layer microparticulated by using an arc plasma gun.

    本发明涉及具有使用电弧等离子枪进行微粒催化剂纳米管成长板。

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  • Therefore, including the catalyst layer, the materials and structures of the MEA are considered to have most effects on PEMFC performance.

    膜电极包含催化剂材料结构等对PEMFC性能影响很大。

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  • Vapor grown carbon fiber (VGCF) was mixed in the catalyst layer of the air electrode for zinc-air battery, prepared by hot-pressing method.

    相生长碳纤维(VGCF)加入空气电池空气电极催化中,通过热压成型制备三相气体扩散电极。

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  • Upon contact with hydrogen gas, each catalyst layer reversibly hydrogenates the thin film based on photocatalysis to reversibly change the electrical resistance thereof.

    触媒接触氢气时,通过光触媒作用将薄膜可逆地氢化,并且使阻值可逆地变化

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  • The effect of pore structure in the anode catalyst layer on the performance of direct methanol fuel cell(DMFC) was investigated using ammonium carbonate as a pore former.

    采用碳酸作为剂,研究阳极催化结构直接甲醇燃料电池DMFC性能影响

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  • First, Fabrication and optimization of MEA are studied in many aspects, for example hot press parameters, components of catalyst layer and diffusion layer, PEM thickness, etc.

    首先,对MEA制备优化研究,主要从热压工艺参数催化组分优化、扩散质子交换膜的选择等方面考虑的。

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  • The optimal composition of catalyst layer in proton exchange membrane fuel cell (PEMFC) electrode was prepared through orthogonal method, which is called hydrophilic electrode.

    利用正交实验设计优选质子交换燃料电池(PEMFC)电极催化制备最佳条件,制备亲水电极。

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  • It includes electrolyte membrane, silicone rubber seal ring, multihole anode plate, and free lay mode formed granules of catalyst layer between said electrolyte membrane and multihole plate.

    包括电解质硅橡胶密封圈多孔阳极板,及在所述电解质膜多孔之间自由铺放方式形成催化剂颗粒

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  • Take gas diffusion electrode of zinc-air battery for example and add catalyst by layers, we studied the effect of changing catalyst layer location on the performance of gas diffusion electrode.

    空气电池气体扩散电极为研究对象,采用分层添加催化剂方式研究了改变催化位置气体扩散电极放电性能影响

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  • The decrease of active surface area in the anode caused by CO2 accumulation is reduced through treating the diffusion layer and catalyst layer with PTFE, resulting in increased DMFC performance.

    通过阳极扩散催化剂水处理,降低了阳极产生CO2导致的催化活性表面积损失,有效地提高了电池性能

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  • Specifically disclosed is an electrode catalyst layer characterized by containing an electrode catalyst composed of a metal oxide which is obtained by thermally decomposing a metal organic compound.

    发明电极催化剂其特征在于含有热分解金属有机化合物得到的金属氧化物形成的电极催化剂。

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  • An anode catalyst layer of a direct liquid feed fuel cell includes a Pt-Ru or Pt-Pd black catalyst; and a supported Pt-Ru or Pt-Pd catalyst having Pt-Ru or Pt-Pd supported on a carbon-based support.

    一种液相直接燃料电池阳极催化剂,其包含-铂-钯黑 催化剂载体上载有铂-钌或铂-钯的铂-钌或铂-钯载体催化剂。

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  • Specifically disclosed is a catalyst layer for solid polymer fuel cells which is composed of a catalyst obtained by reducing a platinum oxide, a hydrophobic agent and a proton conducting electrolyte.

    具体公开一种用于固态聚合物燃料电池催化剂包括:通过还原氧化物获得的催化剂;水剂;质子传导电解质。

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  • The influence of catalyst dosage on the reaction process was mainly the influence of adsorption capability of catalyst layer; and it was weakened gradually with the increase of the dosage of catalyst.

    催化剂用量反应过程影响主要催化剂吸附能力影响,随着催化剂用量的增加这种影响逐渐减弱

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  • We realized that the research on the sysnthsis and application of new layer materials in titania pillared catalyst would be promising in future.

    我们认为:材料研究应用可能柱粘土研究一个有希望方向

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  • A bottom layer of nickel catalyst was provided to promote the endothermic reaction of steam and methane.

    底层催化剂促进蒸汽甲烷吸热反应

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  • The introduced oxygen in the passivated procedure reacts with the catalyst surface to form the thin oxide layer.

    表面钝化过程中引入催化剂表面形成氧化

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  • The cause of low catalyst utilization rate in the lower part adiabatic layer of converter is analyzed. Modification measures and their valuable effectiveness are put forward.

    分析氨合成塔下绝热层催化剂利用率原因提出了提高利用率措施以及实施效果

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  • The sensor (10) further includes a sensing layer (22) having a catalyst suspended in a support structure.

    传感器(10)包括感测(22),其具有悬置支撑结构中的催化剂

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  • A catalytically active material may then be incorporated in the ceramic layer, so as to form a catalyst structure (16).

    然后陶瓷加入催化活性材料形成催化剂结构(16)。

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  • The time of sulfurization is shorter, the temperature of bed layer is stable, and the activity of catalyst is high, while it is used for the sulfurization of Co-Mo catalysts.

    进行钴—钼系催化剂硫化,具有硫化时间短温度平稳等特点,且催化剂可获更高活性

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  • By adopting the device, the vacuum tube can be always positioned on the back of the bed layer of the catalyst, thereby improving the conveying efficiency.

    使用该发明装置可以使真空管一直催化剂背部从而提高输送效率。

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  • The cause of low catalyst utilization rate in the lower part adiabatic layer of converter is analyzed.

    分析氨合成塔下绝热层催化剂利用率原因,提出了提高利用率措施以及实施效果。

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  • The method of the invention is that: inert fillers without the influence on the reaction are arranged at the bottom parts of each catalyst bed layer of a reactor.

    本发明方法反应器每个催化剂底部装入对反应没有影响惰性填料

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  • An in-situ method for regenerating a deactivated catalyst can remove a calcium sulfate layer masking active catalyst sites.

    一种失活催化剂进行原位再生方法,该方法除去掩蔽催化剂位点硫酸钙

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  • Longer nanostructured support elements provide increased surface area for supporting catalyst material, thus allowing higher catalyst loading across the layer.

    较长的纳米结构化支承元件提供了更支承催化剂材料表面积从而允许在所述上填塞更多的催化剂。

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  • Longer nanostructured support elements provide increased surface area for supporting catalyst material, thus allowing higher catalyst loading across the layer.

    较长的纳米结构化支承元件提供了更支承催化剂材料表面积从而允许在所述上填塞更多的催化剂。

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