REGULARITIES OF HYDROGEN GENERATION BY HYDROLYSIS OF SODIUM BOROHYDRIDE ON IMMOBILIZED PLATINUM CATALYSTS

Yuriy Pirskyy, F. Manilevich, A. Kutsyi
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Abstract

Sodium borohydride hydrolysisis one of the most productive hydrogengeneration methods, which can be used, inparticular, to power fuel cells with a hydrogenanode. In alkaline solutions, the interaction of NaBH4 with water practically does not occur, which makes it possible to store such solutions for a longtime. However, in the presence of catalysts, the borohydride hydrolysis reaction actively proceeds at room temperature with the formation of hydrogenand sodium metaborate. More than 300 homogeneous and heterogeneous catalysts for the hydrolysis of sodium borohydride are known, among which the most active metal catalysts are nanodispersed rhodium, ruthenium, and platinum immobilized on various substrates. The activity of such catalysts depends on the conditions of the reduction and immobilization of metals, the nature of used precursors, the amount of active phase of the catalyst, and the type of substrate. In this work, platinum catalysts immobilized on several substrates are developed, and the regularities of hydrolysis of sodium borohydride in alkaline solution when using such catalysts in flowing flat and cylindrical reactors are investigated. Using various methods, platinum was deposited on carbon black and carbon cloth, onactivated granular carbon, on titanium crumb, and on synthetic cordierite of honey combstructure with surface, previously modified by alumina. It is shown that nanodisperse platinum catalysts immobilized on carbon black and carbon cloth and especially on synthetic cordierite of cellular structure with surface previously modified by Al2O3 layer are active and reliable. The average rate of hydrogen evolution during hydrolysis of NaBH4 on such catalysts increases with increasing flow rate of its solution through the reactor, but the degree of conversion of sodium borohydride decreases due to the reduced duration of contact of the solution with the catalyst. Nanodisperse platinum catalysts on surface-modified cordierite provide a highandstable rate of hydrogengeneration with moderate heating of NaBH4 solution (60±5°C). The use of hydrogen generators with such catalysts in combination with fuel cell batteries is promising for the creation of autonomous powers ources.
固定化铂催化剂上硼氢化钠水解制氢的规律
硼氢化钠水解是最有效的制氢方法之一,尤其可用于为带有氢阳极的燃料电池提供动力。在碱性溶液中,NaBH4与水几乎不发生相互作用,这使得这种溶液可以长期储存。然而,在催化剂的存在下,硼氢化物水解反应在室温下活跃地进行,形成氢和偏硼酸钠。目前已知的用于硼氢化钠水解的均相和非均相催化剂有300多种,其中最活跃的金属催化剂是固定在各种底物上的纳米分散铑、钌和铂。这类催化剂的活性取决于金属的还原和固定化条件、所用前驱体的性质、催化剂活性相的数量和底物的类型。本文研究了不同底物上固定化铂催化剂,研究了这种催化剂在流动平板反应器和圆柱形反应器中水解硼氢化钠的规律。通过不同的方法,将铂沉积在炭黑和炭布上、活性炭上、钛屑上、以及经过氧化铝修饰的具有表面的蜂蜜复合结构的合成堇青石上。结果表明,纳米分散铂催化剂固定在炭黑和碳布上,特别是固定在表面经过Al2O3修饰的蜂窝结构的合成堇青石上,具有良好的活性和可靠性。随着NaBH4溶液通过反应器的流速的增加,NaBH4在催化剂上水解时的平均析氢速率增加,但由于溶液与催化剂接触时间的减少,硼氢化钠的转化率降低。在NaBH4溶液(60±5°C)的适度加热下,在堇青石表面修饰的纳米分散铂催化剂提供了高且稳定的产氢速率。将带有这种催化剂的氢发生器与燃料电池结合使用,有望创造自主能源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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