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Preparation, proton conduction, and application in ammonia synthesis at atmospheric pressure of La0.9Ba0.1Ga1– x Mg x O3–α

机译:La 0.9 Ba 0.1 Ga 1–x Mg x 的制备,质子传导及其在常压氨合成中的应用sub> O 3-α

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摘要

La0.9Ba0.1Ga1–x Mg x O3–α (0 ≤ x ≤ 0.25) was prepared by the microemulsion method. A single phase of LaGaO3 perovskite structure was formed when x was ≥0.15. Electrochemical hydrogen permeation (hydrogen pumping) proved that La0.9Ba0.1Ga1–x Mg x O3–α had proton conduction, and the proton conduction was measured by AC impedance spectroscopy method from 400 to 800 °C in hydrogen atmospheres. Among these samples, La0.9Ba0.1Ga0.8Mg0.2O3–α has the highest proton conductivity with the values of 9.51 × 10−4 to 4.68 × 10−2 S cm−1 at 400–800 °C. Ammonia was synthesized from nitrogen and hydrogen at atmospheric pressure in an electrolytic cell using La0.9Ba0.1Ga0.8Mg0.2O3–α as electrolyte. The rate of NH3 formation was 1.89 × 10−9 mol s−1 cm−2 at 520 °C upon imposing a current of 1 mA through the cell.
机译:La 0.9 Ba 0.1 Ga 1–x Mg x O 3-α( (0≤x≤0.25)通过微乳液法制备。当x≥0.15时,形成LaGaO 3 钙钛矿结构单相。电化学氢渗透(氢抽运)证明La 0.9 Ba 0.1 Ga 1-x Mg x O 3-α具有质子传导性,并且在氢气氛中通过交流阻抗谱法在400至800°C下测量质子传导性。在这些样品中,La 0.9 Ba 0.1 Ga 0.8 Mg 0.2 O 3-α的质子传导率最高,在400–800时值为9.51×10 −4 至4.68×10 −2 S cm -1 ℃。使用La 0.9 Ba 0.1 Ga 0.8 Mg 0.2 O 3-α作为电解质。在520°时NH 3 的形成速率为1.89×10 −9 mol s −1 cm -2 施加1 mA的电流通过电池时,C。

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