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首页> 外文期刊>Green chemistry >Liquid phase oxidation of p-xylene to terephthalic acid at medium-high temperatures: multiple benefits of CO2-expanded liquids
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Liquid phase oxidation of p-xylene to terephthalic acid at medium-high temperatures: multiple benefits of CO2-expanded liquids

机译:在中高温下将对二甲苯液相氧化为对苯二甲酸:CO2膨胀液体的多重好处

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摘要

The Co/Mn/Br catalyzed oxidation of p-xylene to terephthalic acid (TPA) is demonstrated in CO2-expanded solvents at temperatures lower than those of the traditional Mid-Century (MC) process. As compared with the traditional air (N2/O2) oxidation system, the reaction with CO2/O2 mixture at 160°C and using an additional inert gas (N2 or CO2) pressure of 100 bar increases both the yield of TPA and the purity of solid TPA via a more efficient conversion of the intermediates, 4-carboxybenzaldehyde and p-toluic acid. At the same time, the amount of yellow colored by-products in the solid TPA product is also lessened, as determined by spectroscopic analysis. Equally important, the decomposition or burning of the solvent, acetic acid, monitored in terms of the yield of the gaseous products, CO and CO2, is reduced by ca. 20% based on labeled CO2 experiments. These findings broaden the versatility of this new class of reaction media in homogeneous catalytic oxidations by maximizing the utilization of feedstock carbon for desired products while simultaneously reducing carbon emissions.
机译:在CO2膨胀的溶剂中,在低于传统中世纪(MC)工艺的温度下,证明了Co / Mn / Br催化的对二甲苯氧化为对苯二甲酸(TPA)。与传统的空气(N2 / O2)氧化系统相比,在160°C的温度下与CO2 / O2混合物进行反应并使用100 bar的附加惰性气体(N2或CO2)压力可提高TPA的收率和纯度。通过更高效地转化中间体4-羧基苯甲醛和对甲苯甲酸来形成固体TPA。同时,通过光谱分析确定,固体TPA产物中黄色副产物的量也减少了。同样重要的是,根据气态产物CO和CO2的收率监测,溶剂乙酸的分解或燃烧减少了约5%。根据标记的二氧化碳实验得出20%。这些发现通过最大程度地利用所需产品的原料碳,同时减少了碳的排放,拓宽了新型反应介质在均相催化氧化中的多功能性。

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