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Performance and Long-Term Stability of Pd/PSS and Pd/Al2O3 Membranes for Hydrogen Separation

机译:Pd / PSS和Pd / Al2O3膜用于氢分离的性能和长期稳定性

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摘要

The present work is focused on the investigation of the performance and long-term stability of two composite palladium membranes under different operating conditions. One membrane (Pd/porous stainless steel (PSS)) is characterized by a ~10 µm-thick palladium layer on a porous stainless steel substrate, which is pretreated by means of surface modification and oxidation; the other membrane (Pd/Al2O3) is constituted by a ~7 µm-thick palladium layer on an asymmetric microporous Al2O3 substrate. The operating temperature and pressure ranges, used for studying the performance of these two kinds of membranes, are 350–450 °C and 200–800 kPa, respectively. The H2 permeances and the H2/N2 selectivities of both membranes were investigated and compared with literature data. At 400 °C and 200 kPa as pressure difference, Pd/PSS and Pd/Al2O3 membranes exhibited an H2/N2 ideal selectivity equal to 11700 and 6200, respectively, showing stability for 600 h. Thereafter, H2/N2 selectivity of both membranes progressively decreased and after around 2000 h, dropped dramatically to 55 and 310 for the Pd/PSS and Pd/Al2O3 membranes, respectively. As evidenced by Scanning Electron Microscope (SEM) analyses, the pinholes appear on the whole surface of the Pd/PSS membrane and this is probably due to release of sulphur from the graphite seal rings.
机译:目前的工作集中在研究两种复合钯膜在不同操作条件下的性能和长期稳定性。一种膜(Pd /多孔不锈钢(PSS))的特征在于,在多孔不锈钢基底上的钯层厚度约为10 µm,可通过表面改性和氧化进行预处理。另一膜(Pd / Al2O3)由不对称微孔Al2O3基板上约7 µm厚的钯层构成。用于研究这两种膜性能的工作温度和压力范围分别为350–450°C和200–800 kPa。研究了两种膜的H2渗透率和H2 / N2选择性,并与文献数据进行了比较。在压力差为400°C和200 kPa的情况下,Pd / PSS和Pd / Al2O3膜分别具有等于11700和6200的H2 / N2理想选择性,在600小时内表现出稳定性。此后,两个膜的H2 / N2选择性逐渐降低,大约2000h后,对于Pd / PSS和Pd / Al2O3膜,其选择性分别急剧下降至55和310。正如扫描电子显微镜(SEM)分析所证明的,针孔出现在Pd / PSS膜的整个表面上,这可能是由于硫从石墨密封环中释放出来。

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