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Measurement of Dielectric Properties and Microwave-Assisted Homogeneous Acid-Catalyzed Transesterification in a Monomode Reactor

机译:单模反应器中介电性能和微波辅助均相酸催化酯交换反应的测量

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Microwave heating technology is dependent on the dielectric properties of the materials being processed. The dielectric properties of H2SO4, H3PO4, ClSO3H, and H3CSO3H were investigated in this study using a vector network analyzer in an open-ended coaxial probe method at various temperatures. Phosphoric and sulfuric acids presented higher loss tangents in the frequency range 0.3-13 GHz, reflecting greater mobility of the ions and counterions. The acids were employed as catalysts in microwave-assisted homogeneous transesterification reactions for the production of methylic and ethylic biodiesel. The effects of catalyst concentration, alcohol to oil molar ratio, and irradiation time on biodiesel conversions were investigated. The results showed a significant reduction in the reaction time for microwave-assisted transesterification reactions as compared to times for conventional heating. Also, despite its higher loss tangent, it was observed that H3PO4 leads to lower conversion to biodiesel, which can be explained by its lower carbonyl protonation capacity.
机译:微波加热技术取决于所加工材料的介电性能。在这项研究中,使用矢量网络分析仪在开放式同轴探针方法中于各种温度下研究了H2SO4,H3PO4,ClSO3H和H3CSO3H的介电性能。磷酸和硫酸在0.3-13 GHz的频率范围内呈现较高的损耗角正切,反映出离子和抗衡离子的迁移率更高。所述酸在微波辅助的均相酯交换反应中用作催化剂,用于生产甲基和乙基生物柴油。研究了催化剂浓度,醇/油摩尔比和辐照时间对生物柴油转化率的影响。结果表明,与传统加热相比,微波辅助酯交换反应的反应时间显着减少。同样,尽管其损耗角正切值较高,但观察到H3PO4导致向生物柴油的转化率较低,这可以用其较低的羰基质子化能力来解释。

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