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MCM-41 -supported tungstophosphoric acid as an acid function for dimethyl ether synthesis from CO_2 hydrogenation

机译:MCM-41 -Supported钨磷酸作为酸官能团来自CO_2氢化的二甲醚合成

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摘要

We mixed an MCM-41-supported tungstophosphoric acid (TPA) catalyst with a commercial CuO-ZnO Al2O3 methanol synthesis catalyst (MSC) and optimized the mixing ratios/reaction conditions towards high performance in dimethyl ether (DME) synthesis by CO2 hydrogenation. First, a series of TPA/MCM41 catalysts were synthesized at a TPA loading of 30, 40, 60, and 80 wt% and characterized by combining various techniques. The results of X-ray fluorescence spectroscopy confirmed the loading of stoichiometric TPA amounts in each TPA/MCM-41 catalyst, while the N-2 adsorption-desorption measurements and the scanning transmission electron microscopy images were showing the decoration of MCM-41 pores with TPA clusters. X-ray diffraction and infrared spectroscopy results identified some structural distortions in TPA clusters especially at relatively low loadings and the results of temperature programmed desorption of ammonia measurements quantified the consequences of these changes in TPA structure on the acid properties. The optimized TPA loading in TPA/MCM-41 was 60 wt% with CuO-ZnO Al2O3:TPA/MCM-41 = 4:1 at 40 000 mL CO2 g(cat)(-1) h(-1) and H-2:CO2 = 3:1 at 250 degrees C and 45 bar. At these conditions, the rate was 1551.5 gDME kg(cat)(-1) h(-1), to the best of our knowledge, the highest rate for the direct DME synthesis from CO2 hydrogenation in a single-pass reactor. This performance was originated from the high density of acid sites in TPA/MCM-41 owing to exceptionally high surface area of MCM-41 offering a monolayer dispersion of TPA even at a TPA loading of 60 wt%. These results present a broad potential of TPA/MCM-41 as an acid function in the catalyst mixture for the single-pass DME synthesis from CO2 hydrogenation, especially if used together with an MSC specifically designed for CO2 hydrogenation. (C) 2021 Elsevier Ltd. All rights reserved.
机译:我们将MCM-41支持的钨磷酸(TPA)催化剂与商业CuO-ZnO Al2O3甲醇合成催化剂(MSC)混合,并优化了通过CO 2氢化的二甲醚(DME)合成中的高性能的混合比/反应条件。首先,在30,40,60和80wt%的TPA负载下合成一系列TPA / MCM41催化剂,其特征在于组合各种技术。 X射线荧光光谱的结果证实了在每个TPA / MCM-41催化剂中的化学计量TPA量的负载,而N-2吸附 - 解吸测量和扫描透射电子显微镜图像显示MCM-41孔的装饰TPA集群。 X射线衍射和红外光谱结果鉴定了TPA簇中的一些结构扭曲,特别是在相对较低的载荷和温度编程的氨测量的解吸结果中量化了这些变化在TPA结构对酸性的后果。 TPA / MCM-41中的优化TPA负载为CuO-ZnO Al 2 O 3:TPA / MCM-41 = 4:1,在40 000mL CO 2 G(猫)( - 1)H(-1)和H- 2:CO2 = 3:1,在250℃和45巴。在这些条件下,率为1551.5 GDME kg(猫)( - 1)h(-1),据我们所知,直接DME在单通反应器中从CO2氢化合成的最高速率。由于MCM-41的特殊高表面积,即使在60wt%的TPA负载下,MCM-41的MCM-41的异常分散,则该性能源于TPA / MCM-41中的高密度。这些结果具有TPA / MCM-41的广泛电位,作为催化剂混合物中的酸性功能,用于从CO 2氢化的单通过DME合成,特别是如果与CO 2氢化专门设计的MSC一起使用。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Renewable energy 》 |2021年第6期| 47-57| 共11页
  • 作者单位

    Koc Univ Dept Chem & Biol Engn Rumelifeneri Yolu TR-34450 Istanbul Turkey|Koc Univ Koc Univ TUPRAS Energy Ctr KUTEM Rumelifeneri Yolu TR-34450 Istanbul Turkey|Turkish Petr Refineries Co TUPRAS R&D Ctr TR-41790 Kocaeli Turkey;

    Koc Univ Dept Chem & Biol Engn Rumelifeneri Yolu TR-34450 Istanbul Turkey|Koc Univ Koc Univ TUPRAS Energy Ctr KUTEM Rumelifeneri Yolu TR-34450 Istanbul Turkey;

    Koc Univ Dept Chem & Biol Engn Rumelifeneri Yolu TR-34450 Istanbul Turkey|Koc Univ Koc Univ TUPRAS Energy Ctr KUTEM Rumelifeneri Yolu TR-34450 Istanbul Turkey|Turkish Petr Refineries Co TUPRAS R&D Ctr TR-41790 Kocaeli Turkey;

    Koc Univ Dept Chem & Biol Engn Rumelifeneri Yolu TR-34450 Istanbul Turkey|Koc Univ Koc Univ TUPRAS Energy Ctr KUTEM Rumelifeneri Yolu TR-34450 Istanbul Turkey|Koc Univ Koc Univ Surface Sci & Technol Ctr KUYTAM Rumelifeneri Yolu TR-34450 Istanbul Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CO2 hydrogenation; Dimethyl ether; CuO-ZnO-Al2O3; Heteropoly acid; MCM-41; Tungstophosphoric acid;

    机译:CO2氢化;二甲醚;CuO-ZnO-Al2O3;杂多酸;MCM-41;钨磷酸;

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