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Efficient biodiesel production via solid superacid catalysis: a critical review on recent breakthrough

机译:高效通过固体超级酸催化产生的生物柴油生产:近期突破的批判性综述

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摘要

Biodiesel produced from triglycerides and/or free fatty acids (FFAs) by transesterification and esterification has attracted immense attention during the past decades as a biodegradable, renewable and sustainable fuel. Currently, the use of solid superacid catalysts has proved a more efficient and "green" approach due to avoidance of environmental and corrosion problems and reduced product purification procedures. However, it is less viable economically because the reusability is low due to the lack of a hydrophilic/hydrophobic balance in the reactions that involve the use of inedible feedstock with a high water content. Therefore, this study gives a critical review on recent strategies towards efficient and "green" production of biodiesel via solid superacid catalysis. The strategies discussed include alkyl-bridged organosilica moieties functionalized hybrid catalysis to improve the hydrothermal stability of superacid catalysts, pre- and in situ water removal, and process intensification via temperature profile reduction. The strategies enabled well-defined porosity and an excellent hydrophobicity/hydrophilicity balance, which suppressed deactivation by water and glycerol.
机译:通过酯交换和酯化和/或游离脂肪酸(FFA)产生的生物柴油和酯化在过去几十年内引起了可生物降解,可再生和可持续燃料的巨大关注。目前,由于避免了环境和腐蚀问题并降低了产品净化程序,因此使用固体超级酸催化剂的使用已经提高了更有效和“绿色”的方法。然而,由于在反应中缺乏亲水/疏水平衡,可重复使用性低于可释放性,这涉及使用具有高水含量的可中的原料的反应中的亲水/疏水平衡,因此可重用性低。因此,本研究通过固体超级酸催化对最近的有效和“绿色”生产的近期策略进行了批评综述。所讨论的策略包括烷基 - 桥接有机硅藻部分官能化杂化催化,以改善超级酸催化剂的水热稳定性,预防和原位除水处,并通过温度曲线减少加强。该策略使能明确定义的孔隙率和优异的疏水性/亲水性平衡,这抑制了水和甘油的失活。

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