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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >The use of Pd catalysts on carbon-based structured materials for the catalytic hydrogenation of bromates in different types of water
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The use of Pd catalysts on carbon-based structured materials for the catalytic hydrogenation of bromates in different types of water

机译:Pd催化剂在碳基结构材料上用于不同类型水中溴酸盐的催化加氢的用途

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摘要

The aim of this work is to study the activity of new Pd catalysts, supported on two different nano structured carbon materials, for bromate catalytic hydrogenation. The influence of the support has been studied, obtaining the best results with a palladium catalyst supported on carbon nanofibers (CNF) grown in sintered metal fibers (SMF). The results have shown the importance of the catalyst support in order to minimize the mass-transfer limitations ensuring an efficient catalyst use. In this way the most active catalysts are those with a mesoporous structure containing high dispersed Pd nanoparticles. The activity of this catalyst for bromate reduction has been tested in different types of water, namely, distilled water, natural water and industrial wastewater. It has been shown that the catalyst activity depends on the water matrix and bromate reduction rate depends on the hydrogen partial pressure. The potential use of the catalyst has been studied in a continuous reactor. It has been observed that the catalyst is active without any important deactivation at least during 100 h of reaction, but is necessary to avoid salt precipitation and plugging problems.
机译:这项工作的目的是研究在两种不同的纳米结构碳材料上负载的新型Pd催化剂对溴酸盐催化加氢的活性。已经研究了载体的影响,用负载在烧结金属纤维(SMF)中生长的碳纳米纤维(CNF)上的钯催化剂获得了最佳结果。结果表明了催化剂载体的重要性,以使传质限制最小化,从而确保有效使用催化剂。以此方式,最具活性的催化剂是具有包含高分散的Pd纳米颗粒的中孔结构的那些。已经在不同类型的水,即蒸馏水,天然水和工业废水中测试了该催化剂还原溴酸盐的活性。已经表明,催化剂活性取决于水基质,而溴酸盐的还原速率取决于氢分压。已经在连续反应器中研究了催化剂的潜在用途。已经观察到,该催化剂至少在反应的100小时内是有活性的,而没有任何重要的失活,但是对于避免盐沉淀和堵塞问题是必需的。

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