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In-situ catalytic upgrading of biomass pyrolysis vapor: Co-feeding with methanol in a multi-zone fixed bed reactor

机译:生物质热解蒸气的原位催化提质:在多区固定床反应器中与甲醇共同进料

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The in-situ catalytic upgrading of the biomass pyrolysis vapor and its mixture with methanol were conducted in a fixed bed multi-zone reactor. The steps were comprised; thermally converting the biomass in the pyrolysis reactor, passing its vapor in contact with the HZSM-5 zeolite catalyst in the presence of methanol vapor, and transformation of the resulting upgraded pyrolysis vapor into the liquid product. The biomass pyrolysis and catalytic pyrolysis vapor upgrading were performed at 500 °C. The highly valuable chemicals production was a function of the hydrogen to carbon effective ratio (H/C_(eff)) of the feed. This ratio was regulated by changing the relative amount of biomass and methanol. More aromatic hydrocarbons (50.02 wt.%) and less coke deposition on the catalyst (1.3 wt.%) were yielded from the biomass, when methanol was co-fed to the catalytic pyrolysis process (H/C_(eff) =1.35). In this contribution, the deposited coke on the catalyst was profoundly investigated. The coke, with high contents of oxo-aromatics and aromatic compounds, was generated by polymerization of biomass lignin derived components activated by catalyst acid sites.
机译:生物质热解蒸气及其与甲醇的混合物的原位催化提纯在固定床多区反应器中进行。步骤包括在内;在热解反应器中对生物质进行热转化,使其蒸气在甲醇蒸气的存在下与HZSM-5沸石催化剂接触,并将生成的提质热解蒸气转化为液体产品。在500°C下进行了生物质热解和催化热解蒸气的提质。有价值的化学品生产是进料的氢碳有效比(H / C_(eff))的函数。通过改变生物质和甲醇的相对量来调节该比例。当将甲醇共同进料到催化热解过程中时(H / C_(eff)= 1.35),从生物质中获得更多的芳族烃(50.02 wt。%)和更少的焦炭沉积在催化剂上(1.3 wt。%)。为此,对催化剂上沉积的焦炭进行了深入研究。高含量的羰基-芳族化合物和芳族化合物的焦炭是由生物质木质素衍生的组分经催化剂酸位活化而聚合生成的。

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