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Enhanced Performance of Oxidation of Rosalva (9-decen-1-ol) to Costenal (9-decenal) on Porous Silicon-Supported Silver Catalyst in a Microstructured Reactor

机译:在微结构化反应器中多孔硅负载的银催化剂上的Rosalva(9-癸烯-1-醇)氧化为Costenal(9-癸烯)的增强性能

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The use of metal-assisted HF chemical etching as a convenient technique to produce a few microns thick porous layer in silicon microchannels was demonstrated. Gas phase selective oxidation of rosalva to its aldehyde (costenal) was performed in glass/silicon microstructured reactors at temperatures of 375–475 °C on silver catalyst which was deposited on both porous and flat silicon surface by sputter-coating. The effects of temperature (375–475 °C), rosalva concentration (1.17%–3.43%), O2 to rosalva ratio (0.5–20) and residence time on the reaction were investigated. The reactivity of rosalva on the porous silicon supported silver was 5.7–6.4 times higher than on the thin film silver catalyst at 450 °C. Furthermore, activation energy for the porous silicon supported silver was lower. Isothermal conditions in the microreactors allowed high conversion and selectivity to be achieved in a wide range of temperature and oxygen concentration. At typical reaction conditions (1.75% rosalva, O2/rosalva = 3, residence time 18 ms and 450 °C), conversion of 97% and selectivity of 95% to costenal was achieved, corresponding to a turnover frequency of 268 h−1.
机译:已证明使用金属辅助的HF化学蚀刻作为在硅微通道中产生几微米厚的多孔层的便捷技术。在玻璃/硅微结构化反应器中,于375–475°C的温度下,在银催化剂上进行了玫瑰红气相选择性氧化成醛(肋骨醛)的过程,该银催化剂通过溅射涂覆沉积在多孔和平坦的硅表面上。研究了温度(375–475°C),玫瑰果的浓度(1.17%–3.43%),O 2 与玫瑰果的比率(0.5–20)和停留时间对反应的影响。在多孔硅负载的银上,在450°C下,玫瑰红的反应活性比薄膜银催化剂高5.7-6.4倍。此外,多孔硅负载的银的活化能较低。微反应器中的等温条件允许在很宽的温度和氧气浓度范围内实现高转化率和选择性。在典型的反应条件下(1.75%rosalva,O 2 / rosalva = 3,停留时间18 ms和450°C),获得了97%的转化率和95%的对肋骨的选择性,相当于周转频率为268 h -1

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