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首页> 外文期刊>Thin Solid Films >Cermet-type hydrogen separation membrane obtained from fine particles of high temperature proton-conductive oxide and palladium
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Cermet-type hydrogen separation membrane obtained from fine particles of high temperature proton-conductive oxide and palladium

机译:由高温质子传导性氧化物和钯的微粒获得的金属陶瓷型氢分离膜

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摘要

A mixed ionic and electronic conducting hydrogen separation membrane, which consisted of proton-conductive oxide and metallic palladium, was fabricated. A porous alumina tube was employed as a support, and proton-conductive oxide particles were introduced into a microporous top layer of the support by an impregnation method. Palladium particles were deposited into the same porous layer by chemical vapor deposition. Hydrogen permeated preferentially via the membrane thus obtained with a hydrogen permeance (PH_2) of 1.2 x 10~(-9) mol·m~(-2)·s~(-1)·Pa~(-1) at 873 K. Selectivity for hydrogen (PH_2/PN_2) increased with the operating temperature due to an increase in proton conductivity of the membrane, and PH_2/PN_2 = 5.7 was attained at 873 K.
机译:制备了由质子传导性氧化物和金属钯组成的离子电导混合氢分离膜。使用多孔氧化铝管作为载体,并且通过浸渍方法将质子传导性氧化物颗粒引入到载体的微孔顶层中。通过化学气相沉积将钯颗粒沉积到相同的多孔层中。氢优先通过如此获得的膜渗透,在873 K下的氢渗透率(PH_2)为1.2 x 10〜(-9)mol·m〜(-2)·s〜(-1)·Pa〜(-1)。氢的选择性(PH_2 / PN_2)由于膜的质子传导率的增加而随操作温度的增加而增加,在873 K下达到PH_2 / PN_2 = 5.7。

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