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Creation of Pd/Al2O3 Catalyst by a Spray Process for Fixed Bed Reactors and Its Effective Removal of Aqueous Bromate

机译:固定床反应器喷雾工艺制备Pd / Al2O3催化剂及其对溴酸水溶液的有效去除

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摘要

Palladium nanoparticles were grown on sub-millimeter activated Al2O3 particle support by spraying H2PdCl4 solution evenly onto the support, followed with a thermal reduction under H2 atmosphere. Compared with its counterpart created by the conventional impregnation method, the Pd/Al2O3 catalyst created by the spray process could enrich the existence of active Pd nanoparticles on the surface of the catalyst support and increase their degree of dispersion, resulting in a much higher activity in the catalytic reduction of bromate in water. The effect of Al2O3 support particle size on the bromate removal rate was also investigated, which demonstrated that smaller support particle size could have higher activity in the catalytic reduction of bromate in water because of its larger exposed surface. This Pd/Al2O3 catalyst could be easily used in the fixed bed reactor due to its large support size and demonstrated excellent stability in the catalytic reduction of bromate in mineral water. This Pd/Al2O3 catalyst also exhibited a good catalytic reduction performance on azo dyes as demonstrated by its effective catalytic hydrogenation of methyl orange. Thus, catalysts prepared by the spray method developed in this work could have the potential to be used in fixed bed reactors for various water treatment practices.
机译:通过将H2PdCl4溶液均匀喷涂到亚毫米活化的Al2O3颗粒载体上,使钯纳米粒子生长在载体上,然后在H2气氛下进行热还原。与通过常规浸渍方法制得的Pd / Al2O3催化剂相比,通过喷涂工艺制得的Pd / Al2O3催化剂可以丰富催化剂载体表面上活性Pd纳米颗粒的存在,并提高其分散度,从而使Pd / Al2O3的活性大大提高。水中溴酸盐的催化还原。还研究了Al2O3载体粒径对溴酸盐去除率的影响,这表明较小的载体粒径因其较大的暴露表面而在水中溴酸盐的催化还原中具有较高的活性。这种Pd / Al2O3催化剂由于其较大的载体尺寸而易于在固定床反应器中使用,并且在矿泉水中的溴酸盐催化还原中表现出出色的稳定性。这种Pd / Al2O3催化剂在偶氮染料上也表现出良好的催化还原性能,这是由其对甲基橙的有效催化加氢所证明的。因此,通过这项工作开发的喷雾方法制备的催化剂可能具有用于各种水处理实践的固定床反应器的潜力。

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