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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Operation of a Small-Scale Demonstration Plant for Biodiesel Synthesis under Supercritical Conditions
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Operation of a Small-Scale Demonstration Plant for Biodiesel Synthesis under Supercritical Conditions

机译:超临界条件下生物柴油合成小规模示范工厂的运行

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A small-scale demonstration plant was designed, set up, and operated for the heterogeneously catalyzed synthesis of biodiesel under supercritical conditions. An Aspen Plus (R) model was applied to minimize the energy demand for the product purification stages. Vacuum distillation followed by a small rectification column was identified as the optimum solution. The determination of the energy demand of the plant revealed the economic viability of the process as far as the energy consumption is concerned. The catalyst incorporated into the plant was selected through a screening procedure applying tricaprin as model substance. g-Al2O3 modified by acid treatment and La2O3 supported by g-Al2O3 proved to be the most promising candidates. The stability of these formulations was proven by long-term stability tests.
机译:设计,建立并运行了一个小型示范工厂,用于在超临界条件下进行异质催化生物柴油的合成。应用Aspen Plus(R)模型来最大程度地减少产品纯化阶段的能源需求。真空蒸馏,然后用小型精馏塔被确定为最佳解决方案。就能源消耗而言,确定工厂的能源需求揭示了该过程的经济可行性。通过使用三癸酸酯作为模型物质的筛选程序选择掺入植物中的催化剂。经酸处理改性的g-Al2O3和由g-Al2O3负载的La2O3被证明是最有前途的候选材料。这些制剂的稳定性已通过长期稳定性测试证明。

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