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Catalytic hydrothermal liquefaction of castor residue to bio-oil: Effect of alkali catalysts and optimization study

机译:生物油蓖麻渣的催化水热液化:碱催化剂和优化研究的影响

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Castor (Ricinus communis) is an evergreen, self-pollinating, perennial shrub that grows easily upto 10m height. India ranks first in the world for the production of castor seed. Per ton of castor plant generates more than 50 % of residue in the form of its leaves and stems. Catalytic hydrothermal liquefaction of castor residue was performed at 260-300 degrees C for 60 min in the presence of alkali catalysts (KOH and K2CO3). The factorial design of experiments was used to understand the effect of process parameters (temperature and catalysts) on total bio-oil yield and conversion. ANOVA was used to analyze the main and interaction effects, while p-values were used to rank the process variables on product yield. It was observed that the use of catalyst enhances the total bio-oil yield and the maximum total bio-oil yield of ca. 21.20 wt. % was found at 300 degrees C in the presence of 0.5M K2CO3. The experimental values are in good agreement with predicted values, indicating the accuracy of model for optimization of catalytic HTL of castor residue. Phenols and its derivatives, aromatics, N-contained compounds, acids were observed in bio-oil using GC-MS. An increase in the carbon and decrease in oxygen content leads to enhance the heating value of the product.
机译:蓖麻(Ricinus Communis)是一种常绿,自我授粉,多年生灌木,容易高达10米。印度在世界上排名第一,用于生产蓖麻籽。每吨蓖麻植物以叶子和茎的形式产生超过50%的残留物。在碱催化剂(KOH和K2CO3)存在下,在260-300℃下在260-300℃下进行蓖麻液的催化水热液化60分钟。实验的因子设计用于了解工艺参数(温度和催化剂)对总生物油产量和转化的影响。 ANOVA用于分析主要和相互作用效应,而P值用于将过程变量对产品产量进行排名。观察到催化剂的使用增强了总生物油产率和Ca的最大总生物油产率。 21.20 wt。在0.5M K 2 CO 3存在下在300℃下发现%。实验值与预测值良好,表明蓖麻催化HTL的催化HTL模型的准确性。使用GC-MS在生物油中观察到酚及其衍生物,芳烃,N含有的化合物,酸。碳的增加和氧含量的降低导致增强产物的加热值。

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