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A novel solid base catalyst for transesterification of triglycerides toward biodiesel production: Carbon nanohorn dispersed with calcium ferrite

机译:一种新型固体碱催化剂,用于甘油三酯酯化生物柴油生产:碳纳米醇分散用钙铁氧体分散

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Carbon nanohorn (CNH) dispersed with a calcium ferrite Ca2Fe2O5 (Ca2Fe2O5-CNH) was synthesized as a new catalyst, and its superior catalytic activity to convert a triglyceride to a fatty acid methyl ester via transesterification reaction was demonstrated. The process to prepare this catalyst has three steps as follows. For the first step, Fe-dispersed CNH (Fe-CNH) was synthesized by a gas-injected arc-in-water method. For the second step, the oxidation treatment in diluted CO2 or in air was performed on Fe-CNH to transform Fe nanoparticles dispersed in Fe-CNH to Fe3O4 or Fe2O3, respectively. For third step, Fe3O4-dispersed CNH (Fe3O4-CNH) or Fe2O3-dispersed CNH (Fe2O3-CNH) was co-calcined with Ca (NO3)(2), resulting to the formation of Ca2Fe2O5-CNH. The powdery catalysts of Ca2Fe2O5-CNH can be recovered by magnetic field for recycled use. In the transesterification experiment, tricaprylin was converted to methyl caprylate. The reaction rate of this transesterification using Ca2Fe2O5-CNH catalysts was obviously higher than using conventional CaO catalyst. Also CNH supporting CaO without including Fe (CaO-CNH) was prepared, and this catalyst exhibited a high catalytic activity for this transesterification. However, CaO-CNH did not have the property for magnetic recovery. Among the catalysts prepared here, Ca2Fe2O5-CNH prepared using Fe3O4-CNH as precursor exhibited the highest reaction rate for the transesterification. The hybridization of the calcium ferrite possessing basic sites with hydrophobic CNH was considered to be the key factor for its high catalytic performance. (C) 2016 Elsevier B.V. All rights reserved.
机译:将碳纳米(CNH)分散为钙铁素体Ca2Fe 2 O 5(Ca2Fe 2 O 5 -CNH)作为一种新的催化剂,并证明了其通过酯交换反应将甘油三酯转化为脂肪酸甲酯的优异催化活性。制备该催化剂的方法具有以下三个步骤。对于第一步,通过注入气体注入的弧形方法合成Fe-分散的CNH(Fe-CNH)。对于第二步,在Fe-CNH上进行稀释的CO 2或空气中的氧化处理,以分别将Fe纳米粒子分散在Fe-CNH至Fe 3 O 4或Fe 2 O 3中。对于第三步,用Ca(2)共煅烧Fe 3 O 4分散的CNH(Fe 2 O 3-CNH)或Fe 2 O 3分散的CNH(Fe 2 O 3 -CNH),得到Ca2Fe 2 O 5 -CNH的形成。 Ca2Fe 2 O 5 -CNH的粉末状催化剂可以通过用于再循环使用的磁场回收。在酯交换实验中,将三丙烯林转化为甲基甲酸甲酯。使用Ca2F2O5-CNH催化剂的该酯交换的反应速率明显高于使用常规CaO催化剂。还制备不包括Fe(CaO-CNH)的CNH支持CaO,该催化剂表现出该酯交换的高催化活性。然而,Cao-CNH没有磁性恢复的性质。在此处制备的催化剂中,使用Fe 3 O 4-CNH制备的Ca 2 Fe 2 O 5 -CNH作为前体表现出酯交换的最高反应速率。具有疏水CNH的碱性位点的钙铁素体的杂交被认为是其高催化性能的关键因素。 (c)2016年Elsevier B.v.保留所有权利。

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