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A high pressure single-pass high-conversion electrochemical cell for intensification of organic electrosynthesis processes

机译:高压单程高转化率电化学电池,用于增强有机电合成过程

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摘要

The anode oxidation of 4-methoxytoluene (4-MT) to 4-methoxybenzyl dimethylacetal (4-MBDMA) in methanol is used as a test reaction for the study of a microchannel electrochemical reactor operated continuously in a single-pass high-conversion mode. The cell consists of two stainless steel cathodes, grooved with 100 γm deep channels surrounding a flat glassy carbon anode. Pressures up to 20 bars are applied in the cell in order to reduce the volumetric flow rate of the cathodically produced hydrogen. Both the narrow gap and the operation under pressure lead to an enhancement of the electrolytic conductivity of the cell and make it possible to operate with concentrated solutions, with high current densities and with a very low supporting electrolyte concentration (i.e. 0.01. M KF). The cell performance is discussed in terms of cell voltage, reactant conversion, material and current efficiency and finally selectivity in 4-MBDMA. The effect of inlet reagent concentration, pressure, flow-rate and temperature are investigated. Best performance is obtained with 0.5. M 4-MT at 5 bars and 45 °C: for a 90% conversion, selectivity and current efficiency attain, respectively, 92% and 85%. The high pressure, single-pass high-conversion cell exhibits in this case a space time yield 5-10 times higher than the current industrial process, with a significantly lower concentration of the supporting electrolyte.
机译:4-甲氧基甲苯(4-MT)在甲醇中阳极氧化为4-甲氧基苄基二甲基缩醛(4-MBDMA)被用作测试反应,用于研究以单程高转化率连续运行的微通道电化学反应器。该电解槽由两个不锈钢阴极组成,在其上开有100 ym深的沟槽,围绕着平坦的玻璃碳阳极。为了降低阴极产生的氢气的体积流量,在电解池中施加了高达20 bar的压力。狭窄的间隙和在压力下的操作都导致电池的电解电导率的提高,并且使得可以在高电流密度和非常低的辅助电解质浓度(即0.01M KF)的浓缩溶液下进行操作。讨论了电池性能,电池电压,反应物转化率,材料和电流效率以及最终在4-MBDMA中的选择性。研究了进样口试剂浓度,压力,流速和温度的影响。 0.5可获得最佳性能。 M 4-MT在5巴和45°C下:90%的转化率,选择性和电流效率分别达到92%和85%。在这种情况下,高压单程高转换电池的时空产率比当前的工业过程高5-10倍,并且支持电解质的浓度明显降低。

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