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Effect of sodium carbonate catalyst weight on production of bio-oil via thermochemical liquefaction of corncobs in ethanol-water solution

机译:碳酸钠催化剂重量对乙醇水溶​​液中玉米饼热化学液化产生生物油的影响

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Lignocellulosic biomass has recently received serious attention as an energy source that can replace fossil fuels. Corncob is one of lignocellulosic biomass wastes, which can be further processed into bio-oil through thermochemical liquefaction process. Bio-oil is expected to be further processed into fuel oil. In this research the effect of Na_2CO_3 catalyst weight on the yield of bio-oil was investigated. The composition of bio-oil produced in this process was analyzed by GC-MS. Bio-oil formation rate were analyzed through mathematical model development. First model aasumed as an isothermal process, while second model was not. It is found that both models were able to provide a good approach to experimental data. The average reaction rate constants was obtained from isothermal model, while the activation energy level and collision factors were obtained from non-isothermal model. The reaction rate will increase by addition of Na_2CO_3 (0 - 0.5 g) as catalyst to 250 mL system solution, then the activation energy will decrease from 1964.265 joules/mole to 1029.994 joules/mole. The GC-MS analysis results showed that the bio-oil were contained of ester compounds, phenolic compounds, cyclic compunds, heterocyclic compounds, and poly-alcohols compounds.
机译:木质纤维素生物量最近受到了可以替代化石燃料的能源的严重关注。玉米浦是木质纤维素生物质废物之一,可以通过热化学液化过程进一步加工成生物油。预计生物油将进一步加工成燃油油。在该研究中,研究了Na_2CO_3催化剂重量对生物油产量的影响。通过GC-MS分析在该方法中产生的生物油的组成。通过数学模型开发分析生物油形成速率。第一个模型作为等温工艺,而第二种模型则不是。发现两个模型都能够提供良好的实验数据方法。从等温模型中获得平均反应速率常数,而活化能水平和碰撞因子是从非等温模型获得的。通过加入Na_2CO_3(0-0-0-5g)作为催化剂至250mL系统溶液的反应速率将增加,然后激活能量将从1964.265焦耳/摩尔降低至1029.994焦耳/摩尔。 GC-MS分析结果表明,生物油含有酯化合物,酚类化合物,环状复合物,杂环化合物和聚醇化合物。

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