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Electrical and Hydrogen Transport Properties of SrCe_(0.8)Y_(0.2)O_(3-δ)/Ni Cermet Membranes

机译:SrCe_(0.8)Y_(0.2)O_(3-δ)/ Ni金属陶瓷膜的电和氢输运性质

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Research on hydrogen separation membranes is motivated by the increasing demand for an environmentally benign, inexpensive technology for separating hydrogen from gas mixtures. Although most studies of hydrogen separation membranes have focused on proton-conducting oxides by themselves, the addition of metal to these oxides increases their hydrogen permeability and improves their mechanical stability. This study began by determining the electrical and hydrogen permeation properties of SrCe_(0.8)Y_(0.2)O_(3-δ)(SCYb). The results showed that the hydrogen permeation rate is limited by electron flow at the investigated temperatures (600 - 900℃). To further enhance hydrogen permeability, a cermet (i.e., ceramic-metal composite) membrane was made by adding Ni to the SCYb. The cermet showed no phase change after sintering in a reducing atmosphere. At 900℃, with 20% H_2 /balance He as a feed gas (pH_2O = 0.03 atm), the hydrogen permeation rate was 0.113 cm~3/min-cm~2 for Ni/SCYb (0.43-mm thick) and 0.008 cm~3/min-cm~2 for SCYb (0.7-mm thick). The dependences of hydrogen permeability on temperature, thickness, and hydrogen partial pressure gradients are also determined. The results demonstrate that adding Ni to SCYb considerably increases its hydrogen permeability by increasing its electron conductivity.
机译:对氢分离膜的研究是出于对从气体混合物中分离氢的环境友好,廉价的技术的日益增长的需求。尽管大多数氢分离膜的研究本身都集中在质子传导性氧化物上,但向这些氧化物中添加金属可提高其氢渗透性并改善其机械稳定性。这项研究开始于确定SrCe_(0.8)Y_(0.2)O_(3-δ)(SCYb)的电和氢渗透特性。结果表明,在研究温度(600-900℃)下,氢的渗透率受到电子流的限制。为了进一步提高氢渗透性,通过将Ni添加到SCYb中来制造金属陶瓷(即,陶瓷-金属复合物)膜。在还原性气氛中烧结后,金属陶瓷没有相变。在900℃下,以20%H_2 /平衡He作为原料气(pH_2O = 0.03 atm),Ni / SCYb(0.43 mm厚)和0.008 cm氢气的透过率分别为0.113 cm〜3 / min-cm〜2 SCYb(0.7毫米厚)〜3 / min-cm〜2。还确定了氢渗透率对温度,厚度和氢分压梯度的依赖性。结果表明,将Ni添加到SCYb中可通过增加其电子电导率来大大提高其氢渗透性。

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