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Production of propionic acid via hydrodeoxygenation of lactic acid over FexOy catalysts

机译:通过乳酸加氢酸的丙酸丙酸在Fexoy催化剂中产生丙酸

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The gas-phase hydrodeoxygenation of LA to propionic acid over Fe and its oxides was firstly investigated under various conditions. The catalysts were characterized by nitrogen adsorption–desorption, XRD, FT-IR, H _(2) -TPR and SEM. Fe _(3) O _(4) as active species was confirmed. Due to that reason, Fe _(2) O _(3) can be efficiently transformed in situ to Fe _(3) O _(4) under an atmosphere containing hydrogen derived from decarboxylation/or decarbonylation reaction of lactic acid, which offers the most excellent catalytic performance. The catalyst is sensitive to reaction temperature. LA conversion and its consumption rate increased with an increase of reaction temperature. Similarly, propionic acid selectivity also increased with reaction temperature in the range of 360–390 °C. But with further enhancement of reaction temperature from 390 to 400 °C, it drastically decreased since the formation rate of propionic acid reduced at 400 °C. The catalyst displayed an excellent adaptability in a wide range of LA LHSV except for 1.3 h ~(?1) . More importantly, at high LA LHSV of 26.3 h ~(?1) , the catalyst offered a satisfactory stability within 100 h on stream. Under the optimal reaction conditions, 96.7% of LA conversion and 46.7% of propionic acid selectivity were achieved.
机译:首先在各种条件下研究了La对丙酸的气相加氢脱氧酸及其氧化物。催化剂的特征在于氮吸附 - 解吸,XRD,FT-IR,H _(2)-TPR和SEM。确认了Fe _(3)o _(4)作为活动物种。由于这个原因,在含有乳酸脱羧/或脱羰反应的氢气衍生的氢气的气氛下,可以在含有乳酸的氢气的气氛下以原位转化为Fe _(3)O _(4)的Fe _(2)O _(3)。最优异的催化性能。催化剂对反应温度敏感。随着反应温度的增加,LA转换及其消耗率增加。类似地,丙酸选择性也随着360-390℃的反应温度而增加。但随着反应温度的进一步增强390至400℃,它急剧下降,因为丙酸的形成速率在400℃下降低。除了1.3小时〜(?1)之外,催化剂在宽范围的LA LHSV中显示出优异的适应性。更重要的是,在26.3 H〜(α1)的高LA LHSV下,催化剂在溪流100小时内提供令人满意的稳定性。在最佳反应条件下,实现了96.7%的LA转化率和46.7%的丙酸选择性。

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