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首页> 外文期刊>Chemical engineering journal >Lignin templated synthesis of porous carbon-CeO2 composites and their application for the photocatalytic desulphuration
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Lignin templated synthesis of porous carbon-CeO2 composites and their application for the photocatalytic desulphuration

机译:木质素模板法合成多孔碳CeO2复合材料及其在光催化脱硫中的应用

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摘要

In this work, lignin was used as template for the synthesis of porous carbon-CeO2 composites via the cocalcination method. The structure and morphology of composites were investigated by X-ray powder diffractometer, scanning electron microscope and high-resolution transmission electron microscopy. The characterized results indicated that porous carbon was formed due to the decomposition of lignin, and CeO2 nanorods are grown uniformly in the porous carbon to form porous carbon-CeO2 composites. The prepared porous carbon-CeO2 composites were used for the photocatalytic removal of SO2 at room temperature under light irradiation. The photocatalytic activity of carbon-CeO2 was greatly enhanced compared with CeO2. The maximum of photocatalytic conversion of SO2 can be about 51.89% much higher than that of CeO2, The possible mechanism for the photocatalytic oxidation of SO2 was proposed based on the experimental results, and the prepared composites may have potential application for the SO2 removal in actual life.
机译:在这项工作中,木质素被用作通过共煅烧法合成多孔碳-CeO2复合材料的模板。用X射线粉末衍射仪,扫描电子显微镜和高分辨率透射电子显微镜研究了复合材料的结构和形貌。表征结果表明,由于木质素的分解而形成了多孔碳,并且在多孔碳中均匀地生长了CeO2纳米棒,从而形成了多孔碳-CeO2复合材料。制备的多孔碳-CeO2复合材料用于室温光照射下光催化去除SO2。与CeO2相比,CeO2的光催化活性大大提高。 SO 2的最大光催化转化率比CeO 2高约51.89%,根据实验结果提出了SO 2光催化氧化的可能机理,并且所制备的复合材料可能在实际中具有潜在的去除SO 2的作用。生活。

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