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Catalytic Ethanol Dehydration to Ethylene over Nanocrystalline χ- and γ-AI_2O_3 Catalysts

机译:纳米晶χ-和γ-AI_2O_3催化剂上乙醇催化脱水制乙烯

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摘要

The study is aimed to investigate the combination of nanocrystalline γ- and χ- alumina that displays the attractive chemical and physical properties for the catalytic dehydration of ethanol. The correlation between the acid density and ethanol conversion was observed. The high acid density apparently results in high catalytic activity, especially for the equally mixed γ- and χ- phase alumina (G50C50). In order to obtain a better understanding on how different catalysts would affect the ethylene yield, one of the most powerful techniques such as X-ray photoelectron spectroscopy (XPS) was performed. Hence, the different O Is surface atoms can be identified and divided into three types including lattice oxygen (O, 530.7 eV), surface hydroxyl (OH, 532.1 eV) and lattice water (H_2O, 532.9 eV). It was remarkably found that the large amount of O Is surface atoms in lattice water can result in increased ethylene yield. In summary, the appearance of metastable χ-alumina structure exhibited better catalytic activity and ethylene yield than y-alumina. Thus, the introduction of metastable χ- alumina structure into y- alumina enhanced catalytic activity and ethylene yield. As the result, it was found that the G50C50 catalyst exhibits the ethylene yield (80%) at the lowest reaction temperature ca. 250℃ among other catalysts.
机译:该研究旨在研究纳米晶γ-氧化铝和χ-氧化铝的组合,这些组合物对乙醇的催化脱水表现出有吸引力的化学和物理性质。观察到酸密度和乙醇转化率之间的相关性。高酸密度显然导致高催化活性,尤其是对于均匀混合的γ相和χ相氧化铝(G50C50)。为了更好地了解不同的催化剂将如何影响乙烯收率,进行了最强大的技术之一,例如X射线光电子能谱(XPS)。因此,可以识别出不同的O Is表面原子并将其分为三种类型,包括晶格氧(O,530.7 eV),表面羟基(OH,532.1 eV)和晶格水(H_2O,532.9 eV)。显着地发现,晶格水中大量的O Is表面原子可导致乙烯收率的增加。总之,亚稳态的χ-氧化铝结构的出现比γ-氧化铝具有更好的催化活性和乙烯收率。因此,将亚稳态的χ-氧化铝结构引入到γ-氧化铝中可增强催化活性和乙烯收率。结果发现,G50C50催化剂在最低反应温度ca下显示出乙烯收率(80%)。 250℃等催化剂。

著录项

  • 来源
    《Journal of Oleo Science》 |2017年第9期|1029-1039|共11页
  • 作者单位

    Center of Excellence on Catalysis and Catalytic Reaction Engineering, Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok 10330, THAILAND;

    Center of Excellence on Catalysis and Catalytic Reaction Engineering, Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok 10330, THAILAND;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ethanol dehydration; XPS analysis; solvothermal method; mixed phase alumina;

    机译:乙醇脱水XPS分析;溶剂热法混合相氧化铝;

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