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Molybdenum incorporated mesoporous silica catalyst for production of biofuels and value-added chemicals via catalytic fast pyrolysis

机译:含钼的介孔二氧化硅催化剂,用于通过催化快速热解生产生物燃料和增值化学品

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摘要

Production of value-added furans and phenols from biomass through catalytic fast pyrolysis of pine using molybdenum supported on KIT-5 mesoporous silica was explored. Catalysts containing different loadings of molybdenum were synthesized and characterized by X-ray diffraction, physisorption and chemisorption analysis, various electron microscopic techniques and X-ray photoelectron spectroscopy. Characterization studies indicate that molybdenum is homogeneously distributed over the KIT-5 silica support in a +6 oxidation state. Fast pyrolysis of pine using molecular beam mass spectrometry with fresh Mo catalyst preferentially produced furans and phenols over conventionally observed aromatic hydrocarbons. Detailed investigation of model biopolymers indicates that the furans originated from the carbohydrate portion of the biomass and the phenols emerged predominantly from the lignin portion of biomass. Results obtained from MBMS were complemented using pyrolytic-GCMS.
机译:探索了使用KIT-5介孔二氧化硅负载的钼通过松木的催化快速热解从生物质中生产增值呋喃和酚的方法。合成了含有不同钼含量的催化剂,并通过X射线衍射,物理吸附和化学吸附分析,各种电子显微镜技术和X射线光电子能谱进行了表征。表征研究表明,钼以+6氧化态均匀分布在KIT-5二氧化硅载体上。使用分子束质谱法和新鲜的Mo催化剂对松树进行快速热解,比常规观察到的芳族烃优先产生呋喃和苯酚。对模型生物聚合物的详细研究表明,呋喃来源于生物质的碳水化合物部分,酚类主要来自生物质的木质素部分。从MBMS获得的结果使用热解GCMS进行了补充。

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