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Optimization of catalyst preparation conditions for hydrogen generation in the presence of Co-B using taguchi method

机译:使用Taguchi方法在CO-B存在下的催化剂制备条件的优化

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摘要

Efficient hydrogen generation is a significant prerequisite of future hydrogen economy. Therefore, the development of efficient non-noble metal catalysts for hydrolysis reaction of sodium borohydride (NaBH4) under mild conditions has received extensive interest. Since the transition metal boride based materials are inexpensive and easy to prepare, it is feasible to use these catalysts in the construction of practical hydrogen generators. In this work, temperature, pH, reducing agent concentration, and reduction rate were selected as independent process parameters and their effects on dependent parameter, such as hydrogen generation rate, were investigated using response surface methodology (RSM). According to the obtained results of the RSM prediction, maximum hydrogen generation rate (53.69 L. min(-1)g(cat)(-1)) was obtained at temperature of 281.18 K, pH of 5.97, reducing agent concentration of 31.47 NaBH4/water and reduction rate of 7.16 ml min(-1). Consequently, after validation studies it was observed that the RSM together with Taguchi methods are efficient experimental designs for parameter optimization. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:高效的氢生成是未来氢经济的重要前提。因此,在温和条件下,硼氢化钠(NABH4)水解反应的有效非贵金属催化剂的发展受到了广泛的兴趣。由于过渡金属硼化物的材料廉价且易于制备,因此在实用的氢气发生器的构造中使用这些催化剂是可行的。在该作品中,选择温度,pH,降低剂浓度和还原率作为独立的工艺参数,并使用响应面方法(RSM)研究了对依赖参数的依赖性参数的影响。根据RSM预测的得到结果,在281.18k,pH的温度下获得最大氢气产生率(53.69升MIN(-1)g(猫)( - 1)),降低5.97的pH值,降低剂量为31.47 nBH4 /水和减少率为7.16mL min(-1)。因此,在验证研究之后,观察到RSM与Taguchi方法一起是有效的参数优化实验设计。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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