首页> 外文期刊>Journal of Chemical Engineering of Japan >Synthesis of Perovskite-Type La_(0.7)Sr_(0.3)3Co_(0.5)Fe0,5O_(3-δ) Oxide Membranes and Their Oxygen Permeation Performance in Different Atmospheres for Carbon Dioxide-Oxygen Separation
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Synthesis of Perovskite-Type La_(0.7)Sr_(0.3)3Co_(0.5)Fe0,5O_(3-δ) Oxide Membranes and Their Oxygen Permeation Performance in Different Atmospheres for Carbon Dioxide-Oxygen Separation

机译:钙钛矿型La_(0.7)Sr_(0.3)3Co_(0.5)Fe0,5O_(3-δ)氧化物膜的合成及其在不同气氛下的氧透过性能用于二氧化碳-氧气的分离

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摘要

In the present study, La_(0.7)Sr_(0.3)Co_(0.5)Fe_(0.5)O_(3-δ) powders have been prepared by thermal decomposition of amorphous citrate precursors by calcination at high temperature. The material properties are characterized by ther-mogravimetric-differential thermal analysis, X-ray diffraction, and four probe method. A perovskite structure with rhombohedral symmetry has been certified for the selected La_(0.7)Sr_(0.3)Co_(0.5)Fe_(0.5)O_(3-δ) oxide membranes. The electrical conductivity of sintered La_(0.7)Sr_(0.3)Co_(0.5)Fe_(0.5)O_(3-δ) ceramics increases with temperature through a maximum, then decreases at relatively higher temperatures, due to oxygen vacancy formation. Oxygen permeation was performed between 700 and 950°C under different oxygen partial pressures (0.21, 0.42, and 0.63 atm) and carbon dioxide concentrations (300, 500, and 700 ppm According to Arrhenius' law, the oxygen permeation flux of the membranes with a thickness of 1.1 mm increases with temperature and oxygen partial pressure. A maximum oxygen flux of ~0.33 mL/min · cm~2 and ~0.25 mL/cm2 · min was measured at 950°C at high oxygen pressure (P_(O2) = 0.63 atm) and under carbon dioxide concentration range from 300 to 700 ppm, respectively.
机译:在本研究中,La_(0.7)Sr_(0.3)Co_(0.5)Fe_(0.5)O_(3-δ)粉末是通过高温煅烧将非晶态柠檬酸盐前体热分解而制备的。材料性能通过热重差热分析,X射线衍射和四探针法进行表征。已针对所选的La_(0.7)Sr_(0.3)Co_(0.5)Fe_(0.5)O_(3-δ)氧化膜证明了具有菱面体对称性的钙钛矿结构。烧结的La_(0.7)Sr_(0.3)Co_(0.5)Fe_(0.5)O_(3-δ)陶瓷的电导率随温度升高到最大值,然后由于氧空位的形成而降低。氧气渗透是在700至950°C的温度下,不同的氧气分压(0.21、0.42和0.63 atm)和二氧化碳浓度(300、500和700 ppm)下进行的。根据阿伦尼乌斯定律,厚度随温度和氧气分压的增加而增加1.1毫米,在高氧气压(950℃)下测得的最大氧气通量分别为〜0.33 mL / min·cm〜2和〜0.25 mL / cm2·min = 0.63 atm)和二氧化碳浓度范围分别为300至700 ppm。

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