首页> 外文期刊>International journal of hydrogen energy >Influence of the using of methanol instead of water in the preparation of Co-B-TiO2 catalyst for hydrogen production by NaBH4 hydrolysis and plasma treatment effect on the Co-B-TiO2 catalyst
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Influence of the using of methanol instead of water in the preparation of Co-B-TiO2 catalyst for hydrogen production by NaBH4 hydrolysis and plasma treatment effect on the Co-B-TiO2 catalyst

机译:NaBH4水解制备甲醇制氢用Co-B-TiO2催化剂中使用甲醇代替水的影响以及等离子体处理对Co-B-TiO2催化剂的影响

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In this work, methanol was used as an alternative to water. Our objective is to study the influence of the using of methanol instead of water in the preparation of Co-B-TiO2 catalyst. It is also expected to improve the activity of Co-B-TiO2 catalyst by plasma treatment for the hydrogen generation from hydrolysis of NaBH4. The prepared catalysts were characterized using BET (N-2 adsorption), SEM (scanning electron microscopy), XRD (X-ray diffraction) and FTIR (Fourier transform infrared) methods. The Co-B-TiO2 catalyst prepared in methanol shows maximum hydrogen generation rate, which is about 3.0 times higher than that obtained for Co-B-TiO2 catalyst prepared in water. The maximum hydrogen generation rates for the Co-B-TiO2 catalysts prepared in water and methanol were 1017 and 3031 mL/min/g, respectively. In addition, the maximum hydrogen generation rates for the plasma treated Co-B-TiO2 catalysts prepared in water and methanol were 1320 and 2656 mL/min/g, respectively. The activation energies of nth-order reaction model for the hydrogen production from hydrolysis of NaBH4 with the plasma treated Co-B/TiO2 catalyst prepared in methanol and Co-B/TiO2 catalyst prepared in methanol can be obtained from the slope and intercept of the regression line, being 41.29 and 36.24 kJ/mol, respectively. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项工作中,甲醇被用作水的替代品。我们的目的是研究使用甲醇代替水对Co-B-TiO2催化剂制备的影响。还期望通过等离子体处理提高NaBH4水解产生氢的Co-B-TiO2催化剂的活性。使用BET(N-2吸附),SEM(扫描电子显微镜),XRD(X射线衍射)和FTIR(傅立叶变换红外)方法对制备的催化剂进行表征。在甲醇中制备的Co-B-TiO2催化剂显示出最大的氢气生成速率,比在水中制备的Co-B-TiO2催化剂获得的氢气生成速率高约3.0倍。在水和甲醇中制备的Co-B-TiO2催化剂的最大氢气产生速率分别为1017和3031 mL / min / g。另外,在水和甲醇中制备的经等离子体处理的Co-B-TiO2催化剂的最大氢气产生速率分别为1320和2656 mL / min / g。可以通过甲醇的斜率和截距获得用甲醇制得的等离子体处理过的Co-B / TiO2催化剂和甲醇制得的Co-B / TiO2催化剂将NaBH4水解产生氢的n阶反应模型的活化能。回归线分别为41.29和36.24 kJ / mol。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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