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Low-temperature carbon monoxide and propane total oxidation by nanocrystalline cobalt oxides

机译:纳米氧化钴对低温一氧化碳和丙烷的总氧化

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摘要

Pure CoO(OH), with intra particulate porosity up to 76%, was synthesized by an innovative aqueous precipitation method, starting either from nitrate or sulfate salts. Microstructural and chemical properties were characterized by powder X-ray diffraction (XRD), thermogravimetry (TG) and differential scanning calorimetry (DSC), scanning electron microscopy (SEM) and high-resolution transmission electron microscopy (HRTEM). The primary particles (10–15 nm) are self-organized in monolayer building hexagonal nano-platelets (50–200 nm) which are arranged randomly creating large pores. CoO(OH) was converted in Co3O4 by heating in air at 250 °C. This treatment did not modify the porosity but increased the specific surface area, which became close to 100 m2/g. The catalytic activity for CO and C3H8 total oxidation was better for Co3O4 than for CoO(OH). Besides, at high conversion rate, catalysts prepared from sulfate precursor showed a superior activity for C3H8 oxidation than those prepared from nitrate. This effect can be explained by the improved accessibility of reactants to the surface of the catalysts which exhibit a larger porosity. To our knowledge, the activity values presented here are the highest reported in literature for C3H8 total oxidation.
机译:通过创新的水沉淀法,从硝酸盐或硫酸盐开始,合成了内部颗粒孔隙率高达76%的纯CoO(OH)。通过粉末X射线衍射(XRD),热重分析(TG)和差示扫描量热法(DSC),扫描电子显微镜(SEM)和高分辨率透射电子显微镜(HRTEM)表征了微观结构和化学性质。初级粒子(10–15 nm)在单层建筑六角形纳米片(50–200 nm)中自组织,它们随机排列,形成大孔。通过在250°C的空气中加热,将CoO(OH)转化为Co3O4。该处理没有改变孔隙率,但是增加了比表面积,其接近于100m2 / g。 Co3O4的CO和C3H8总氧化的催化活性比CoO(OH)更好。此外,在高转化率下,由硫酸盐前体制备的催化剂对C3H8的氧化活性比由硝酸盐制备的催化剂高。这种效果可以通过提高反应物到具有更大孔隙率的催化剂表面的可及性来解释。据我们所知,此处提供的活性值是文献中C3H8总氧化的最高值。

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