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首页> 外文期刊>Organic process research & development >Kinetic Modeling of Maleic Acid Isomerization to Fumaric Acid Catalyzed by Thiourea Determined by Attenuated Total Reflectance Fourier-Transform Infrared Spectroscopy
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Kinetic Modeling of Maleic Acid Isomerization to Fumaric Acid Catalyzed by Thiourea Determined by Attenuated Total Reflectance Fourier-Transform Infrared Spectroscopy

机译:测定总反射抗体红外光谱法测定硫脲催化对马来酸异构化对富马酸的动力学建模

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Fumaric acid (FA) is an important commodity in the food and polymer industries; its main route of production is the chemical synthesis from maleic acid (MA). In this work, the isomerization of MA to FA catalyzed by thiourea was investigated. The experiments were performed in an automated reactor with temperature and stirring control, using methanol as the solvent to ensure a homogeneous system and to avoid a possible parallel hydration reaction to malic acid. The reaction kinetics was monitored in real time by attenuated total reflectance Fourier-transform infrared spectroscopy (ATR/FT-IR). Studies on the influence of the catalyst concentration (1-20% of the initial molar concentration of MA) and the temperature (20-60 degrees C) were carried out in reaction times between 2 and 5 h. The kinetics of the reaction was modeled using an integral method over the infrared data, assuming a reaction mechanism that yielded a partial order of 1.41 for the MA concentration and a 0.99 order for the thiourea. These orders were similar to the ones found by the proposed mechanism for the acid-catalyzed isomerization, in which monomaleate is a nucleophilic reagent to react with the protonated MA. This may present a path for further studies regarding the correct reaction mechanism. The kinetic model provided an excellent correlation with the experimental data, and the observed activation energy of the reaction was calculated to be 43.1 kJ mol(-1). At higher temperatures, such as 60 degrees C, and with a thiourea concentration of 10% mol/mol (0.0502 mol L-1), the isomerization conversion was around 90% in 60 min. Accordingly, thiourea proved to be an appropriate catalyst for FA synthesis, and ATF/FT-IR proved to be a reliable technique for the kinetic study.
机译:富马酸(FA)是食品和聚合物行业的重要商品;其主要生产途径是马来酸(MA)的化学合成。在这项工作中,研究了硫脲催化的MA对Fa的异构化。在具有温度和搅拌控制的自动反应器中进行实验,使用甲醇作为溶剂,以确保均匀的系统并避免对苹果酸的可能的平行水化反应。通过减弱总反射率傅立叶变换红外光谱(ATR / FT-IR)实时监测反应动力学。对催化剂浓度的影响(1-20%的MA的MA)和温度(20-60℃)的影响在2至5小时之间进行。使用整体方法在红外数据上使用整体方法进行模拟的动力学,假设产生1.41的反应机制,用于MA浓度和硫脲的0.99级。这些订单类似于酸催化异构化的提出机制发现的订单,其中单组酸是与质子化MA反应的亲核试剂。这可以提出关于正确反应机制的进一步研究的路径。动力学模型提供了与实验数据的优异相关性,并且将观察到的反应的活化能量计算为43.1kJ摩尔(-1)。在较高温度下,例如60℃,硫脲浓度为10%摩尔/摩尔(0.0502mol L-1),60分钟内异构化转化率约为90%。因此,硫脲证明是对FA合成的适当催化剂,ATF / FT-IR被证明是动力学研究的可靠技术。

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