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Biodiesel Processing Using Sodium and Potassium Geopolymer Powders as Heterogeneous Catalysts

机译:使用钠和钾地质聚合物粉末作为多相催化剂的生物柴油加工

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摘要

This work investigates the catalytic activity of geopolymers produced using two different alkali components (sodium or potassium) and four treatment temperatures (110 to 700 °C) for the methyl transesterification of soybean oil. The geopolymers were prepared with metakaolin as an aluminosilicate source and alkaline activating solutions containing either sodium or potassium in the same molar oxide proportions. The potassium-based formulation displayed a higher specific surface area and lower average pore size (28.64–62.54 m²/g; 9 nm) than the sodium formulation (6.34–32.62 m²/g; 17 nm). The reduction in specific surface area (SSA) after the heat treatment was more severe for the sodium formulation due to the higher thermal shrinkage. The catalytic activity of the geopolymer powders was compared under the same reactional conditions (70–75 °C, 150% methanol excess, 4 h reaction) and same weight amounts (3% to oil). The differences in performance were attributed to the influences of sodium and potassium on the geopolymerization process and to the accessibility of the reactants to the catalytic sites. The Na-based geopolymers performed better, with FAME contents in the biodiesel phase of 85.1% and 89.9% for samples treated at 500 and 300 °C, respectively. These results are competitive in comparison with most heterogeneous base catalysts reported in the literature, considering the very mild conditions of temperature, excess methanol and catalyst amount and the short time spent in reactions.
机译:这项工作研究了使用两种不同的碱成分(钠或钾)和四种处理温度(110至700℃)生产的地聚合物对大豆油进行甲基酯交换的催化活性。用偏高岭土作为铝硅酸盐源和含有相同摩尔氧化物比例的钠或钾的碱活化溶液制备地聚合物。钾基配方比钠配方(6.34–32.62m²/ g; 17 nm)具有更高的比表面积和更低的平均孔径(28.64–62.54m²/ g; 9 nm)。对于钠制剂,由于较高的热收缩率,热处理后比表面积(SSA)的降低更为严重。在相同的反应条件(70–75°C,甲醇过量150%,反应4小时)和相同的重量量(相对于油的3%)下,比较了地质聚合物粉末的催化活性。性能差异归因于钠和钾对地聚过程的影响以及反应物对催化部位的可及性。 Na基地质聚合物表现更好,在500和300°C下处理的样品中,生物柴油相中的FAME含量分别为85.1%和89.9%。考虑到非常温和的温度条件,过量的甲醇和催化剂量以及反应时间短,这些结果与文献中报道的大多数非均相碱催化剂相比具有竞争力。

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