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Copper Oxide Nanoparticle-Coated Quartz Sand as a Catalyst for Degradation of an Organic Dye in Water

机译:氧化铜纳米粒子包覆石英砂催化降解水中有机染料

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Copper oxide nanoparticles were immobi-lized on quartz sand and their catalytic activity for the degradation of an organic dye was investigated. The use of nanoparticles as catalysts for non photo-induced oxidation of water contaminants is relatively new. The CuO catalyst has shown promising results when sus-pended in free form in batch systems. Because hetero-geneous catalysis is often the preferred mode of operation for application of catalytic technology, we studied the effect of immobilization of the nanopar-ticles on quartz sand in a flow-through system and its implication for the catalytic process. The coated sand was packed in a column and its catalytic activity for the degradation of an organic dye was investigated in a series of flow-through experiments with hydrogen peroxide as the oxidant. Control experiments with uncoated sand were also performed for comparison. The coated sand demonstrated high catalytic ability, achieving complete oxidation of the dye. During the reaction, CO_2 was produced, leading to a decrease in the water saturation in the column and reduced contact surface between the nano-CuO catalysts and the dye solution. The degradation was improved by enabling a longer residence time of the dye in the column, yield-ing up to 85% degradation of the dye. These results suggest that CuO nanoparticle-coated sand is an efficient catalyst for complete degradation of the or-ganic dye.
机译:将氧化铜纳米颗粒固定在石英砂上,研究了其对有机染料降解的催化活性。使用纳米颗粒作为非光诱导的水污染物氧化的催化剂是相对较新的。当将CuO催化剂以游离形式悬浮在间歇体系中时,已显示出令人鼓舞的结果。由于非均相催化通常是应用催化技术的首选操作方式,因此我们研究了在流通系统中将纳米粒子固定在石英砂上的效果及其对催化过程的影响。将包覆的沙子装填到柱子中,并在一系列以过氧化氢为氧化剂的流通实验中研究了其对有机染料降解的催化活性。还进行了无涂层砂的对照实验以进行比较。涂层砂表现出高催化能力,实现了染料的完全氧化。在反应过程中,产生了CO_2,导致塔中水饱和度降低,纳米CuO催化剂与染料溶液之间的接触面减少。通过延长染料在色谱柱中的停留时间,可以改善降解效果,从而使染料降解率最高达到85%。这些结果表明,包覆有CuO纳米颗粒的砂是一种有效降解有机染料的有效催化剂。

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