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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Gas-liquid countercurrent integration process for continuous biodiesel production using a microporous solid base KF/CaO as catalyst
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Gas-liquid countercurrent integration process for continuous biodiesel production using a microporous solid base KF/CaO as catalyst

机译:使用微孔固体碱KF / CaO作为催化剂的连续生物柴油生产的气液逆流集成工艺

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摘要

A continuous-flow integration process was developed for biodiesel production using rapeseed oil as feedstock, based on the countercurrent contact reaction between gas and liquid, separation of glycerol on-line and cyclic utilization of methanol. Orthogonal experimental design and response surface methodology were adopted to optimize technological parameters. A second-order polynomial model for the biodiesel yield was established and validated experimentally. The high determination coefficient (R ~2=98.98%) and the low probability value (Pr<0.0001) proved that the model matched the experimental data, and had a high predictive ability. The optimal technological parameters were: 81.5°C reaction temperature, 51.7cm fill height of catalyst KF/CaO and 105.98kPa system pressure. Under these conditions, the average yield of triplicate experiments was 93.7%, indicating the continuous-flow process has good potential in the manufacture of biodiesel.
机译:基于菜籽油作为气体和液体之间的逆流接触反应,甘油的在线分离和甲醇的循环利用,开发了一种以菜籽油为原料的生物柴油生产连续流集成工艺。采用正交实验设计和响应面方法优化工艺参数。建立了生物柴油产率的二阶多项式模型,并进行了实验验证。较高的测定系数(R〜2 = 98.98%)和较低的概率值(Pr <0.0001)证明该模型与实验数据吻合,具有较高的预测能力。最佳工艺参数为:反应温度为81.5°C,催化剂KF / CaO的填充高度为51.7cm,系统压力为105.98kPa。在这些条件下,三次重复实验的平均产率为93.7%,表明连续流工艺在生物柴油的生产中具有良好的潜力。

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