首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effect of support materials on supported platinum catalyst prepared using a supercritical fluid deposition technique and their catalytic performance for hydrogen-rich gas production from lignocellulosic biomass
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Effect of support materials on supported platinum catalyst prepared using a supercritical fluid deposition technique and their catalytic performance for hydrogen-rich gas production from lignocellulosic biomass

机译:载体材料对采用超临界流体沉积技术制备的负载型铂催化剂的影响及其对木质纤维素生物质生产富氢气体的催化性能

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A number of supported Pt catalysts have been prepared by supercritical carbon dioxide deposition technique using various supports. The reduction of Pt precursor to metal performed by heat treatment under nitrogen flow. The prepared catalysts were evaluated for gasification of wheat straw biomass hydrolysates and glucose solution for hydrogen-rich gas production. The activities of the catalysts were highly affected by distribution, amount and particle sizes of platinum on the support. In general carbon-based supported Pt catalysts exhibited better catalytic activity compared to other supports to be used. Compared to biomass hydrolysate feed, gasification of glucose always resulted in higher volume of gas mixture, however, hydrogen selectivity was decreased in all catalyst except multi-walled carbon nanotube. The deposition of Pt particles inner side of that support makes the large organic substrates inaccessible to reach and react with those metal particles.
机译:已经通过使用各种载体的超临界二氧化碳沉积技术制备了许多负载的Pt催化剂。通过在氮气流下进行热处理将Pt前体还原为金属。评估了制备的催化剂用于麦秸生物质水解产物和葡萄糖溶液的气化以生产富氢气体。催化剂的活性受到载体上铂的分布,数量和粒径的高度影响。通常,与要使用的其他载体相比,碳基负载的Pt催化剂表现出更好的催化活性。与生物质水解物进料相比,葡萄糖的气化总是导致混合气体的体积增加,但是,除多壁碳纳米管外,所有催化剂的氢选择性均下降。 Pt颗粒在该载体内侧的沉积使大的有机基材难以接近并与那些金属颗粒发生反应。

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