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Glycerol to Glyceraldehyde Oxidation Reaction Over Pt-Based Catalysts Under Base-Free Conditions

机译:无碱条件下Pt基催化剂上甘油对甘油醛的氧化反应

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摘要

Glycerol valorization through partial oxidation is a good way of obtaining many different molecules with high added value such as glyceric acid, tartronic acid, dihydroxyacetone, etc. Among the potential products, glyceraldehyde is an interesting chemical compound for its various applications in different domains such as organic chemistry, medical, and cosmetic industries. In the present paper, we studied the effect of different supports on the glycerol oxidation reaction in a batch reactor applying base-free conditions. The tested catalysts were Pt-based materials deposited on various supports (i.e., SiO2, TiO2, ZSM-5, γ-Al2O3), which were synthesized using a deposition method followed by a chemical reduction. The catalysts were extensively characterized (BET, ICP, XRD, TEM, XPS), highlighting differences in terms of specific surface areas, textural properties, and Pt nanoparticles sizes. We evidenced a direct relation between glycerol conversion and glyceraldehyde selectivity (i.e., an increase in glycerol conversion leads to a decrease in glyceraldehyde selectivity). The Pt/γ-Al2O3 catalysts exhibited the highest activity, but their selectivity to glyceraldehyde significantly decreased with time on stream. Pt/SiO2 presented the highest selectivity to glyceraldehyde owing to a slower reaction rate, which allows envisioning technical opportunities to continuously extract the formed glyceraldehyde from the mixture.
机译:通过部分氧化对甘油进行增价是获得许多具有高附加值的不同分子的好方法,例如甘油酸,tartronic酸,二羟基丙酮等。在潜在的产品中,甘油醛是一种有趣的化合物,因其在不同领域的各种应用而备受关注。有机化学,医疗和化妆品行业。在本文中,我们研究了在无碱条件下,分批反应器中不同载体对甘油氧化反应的影响。所测试的催化剂是沉积在各种载体(即SiO2,TiO2,ZSM-5,γ-Al2O3)上的Pt基材料,这些材料是通过沉积方法合成的,然后进行化学还原。对该催化剂进行了广泛的表征(BET,ICP,XRD,TEM,XPS),突出了比表面积,质构性质和Pt纳米粒子尺寸方面的差异。我们证明了甘油转化率和甘油醛选择性之间的直接关系(即,甘油转化率的增加导致甘油醛选择性的降低)。 Pt /γ-Al2O3催化剂表现出最高的活性,但它们对甘油醛的选择性随生产时间的延长而显着降低。由于反应速度较慢,Pt / SiO2对甘油醛的选择性最高,这可以预见到从混合物中连续提取形成的甘油醛的技术机会。

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