InOx@NPC/(Zn,Al) β串联催化剂上CO2高效转化为碳氢化合物的研究

IF 0.6 4区 化学 Q4 CHEMISTRY, APPLIED
Tianyu Yang, Juan Wang, Linfei Xiao, A. L. Maximov, Wei Wu
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引用次数: 0

摘要

二氧化碳加氢制烃是实现二氧化碳资源利用和环境可持续发展的一种很有前途的途径。然而,由于与CO2相关的大量活化能屏障,其有效转化为有价值的化学品仍然是一个挑战。本文采用氨基磷酸螯合树脂D418吸附In3+,并进行碳热还原法制备了不同In含量的yInOx@NPC掺杂N, p碳(NPC)材料。采用水热法合成了β沸石,并通过合成后的方法制备了一系列具有不同酸度的(Zn,Al) β - sx样品,这些样品随后经过Zn同构取代改性。采用yInOx@NPC和(Zn,Al) β - sx混合制备了yInOx@NPC/(Zn,Al) β - sx级联催化剂,研究了碳封yInOx@NPC分子筛的In含量、电子性质以及Zn修饰β - sx分子筛的酸性对其催化CO2加氢性能的影响。结果表明,1InOx@NPC/(Zn,Al) β - s2具有最大的氧空位密度、较温和的Brønsted酸强度和较高的Lewis酸强度,增强了对CO2和甲醇中间体的转化能力,提高了对芳烃和C4烃的选择性。在优化后的反应条件下,在CO2转化率为18.8%的条件下,C4烃的选择性为41.8%,芳烃的选择性为42.3%,对多余CO的选择性最低为8.6%。本研究为开发对C4烃和芳烃具有高选择性的串联催化剂提供了有价值的见解,因为金属和酸位点具有协同催化作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Efficient Conversion of CO2 to Hydrocarbons over the InOx@NPC/(Zn,Al)Beta Tandem Catalysts

Efficient Conversion of CO2 to Hydrocarbons over the InOx@NPC/(Zn,Al)Beta Tandem Catalysts

Efficient Conversion of CO2 to Hydrocarbons over the InOx@NPC/(Zn,Al)Beta Tandem Catalysts

The hydrogenation of CO2 to hydrocarbon compounds is a promising approach for CO2 resource utilization and environmental sustainability. Nevertheless, its efficient conversion to valuable chemicals remains a challenge because of the substantial activation energy barrier associated with CO2. In this work, yInOx@NPC materials with varying In contents loaded on N,P-doped carbon (NPC) were prepared through the adsorption of In3+ on the amino-phosphoric acid chelating resin D418, followed by carbothermal reduction. Beta zeolite was hydrothermally synthesized, and a series of (Zn,Al)Beta–Sx samples with diverse acidity modified subsequently by Zn isomorphous substitution were prepared via the post-synthesis method. The influence of the In content and electronic properties of carbon-confined yInOx@NPC, as well as the acidity of the Zn-modified Beta zeolite on the catalytic performance of CO2 hydrogenation over yInOx@NPC/(Zn,Al)Beta–Sx tandem catalysts obtained by mixing the powders of yInOx@NPC and (Zn,Al)Beta–Sx was comprehensively investigated. The results revealed that 1InOx@NPC/(Zn,Al)Beta–S2 with the maximum oxygen vacancy density, milder Brønsted acid strength and higher Lewis acid strength enhanced the conversion capability of CO2 and methanol intermediates, as well as increased the selectivity toward aromatics and C4 hydrocarbons. Under the optimized reaction conditions, C4 hydrocarbons selectivity of 41.8% and aromatics selectivity of 42.3% were obtained under CO2 conversion of 18.8%, and a minimum selectivity of 8.6% for unwanted CO was achieved. The present work provides valuable insights into the development of tandem catalysts with high selectivity for C4 hydrocarbons and aromatics due to the synergistic catalysis of metal and acid sites.

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来源期刊
CiteScore
1.60
自引率
11.10%
发文量
63
审稿时长
2-4 weeks
期刊介绍: Russian Journal of Applied Chemistry (Zhurnal prikladnoi khimii) was founded in 1928. It covers all application problems of modern chemistry, including the structure of inorganic and organic compounds, kinetics and mechanisms of chemical reactions, problems of chemical processes and apparatus, borderline problems of chemistry, and applied research.
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