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A facile, low-cost route for the preparation of calcined porous calcite and dolomite and their application as heterogeneous catalysts in biodiesel production

机译:一种简便,低成本的煅烧制备方法 多孔方解石和白云石及其应用 生物柴油生产中的非均相催化剂

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摘要

Despite their potential for biodiesel synthesis, directly calcined minerals rich in magnesium/calcium carbonates are used at the expense of large amounts of the catalyst, high alcohol loading, long processing times, and severe conditions. We report a facile and low-cost route for preparing calcined porous calcite (CPC) and dolomite (CPD) via simple thermal decomposition of the reaction mixtures of natural calcite and dolomite with stearic acid. CPC and CPD, both of which have porous structures, were compared with previously reported catalysts and examined as promising heterogeneous base catalysts under mild conditions. A 40% increase in conversion through CPC and CDC was achieved compared with that achieved through directly calcined minerals. A systematic understanding of the enhancement and deactivation relationships of the products was established by catalyst characterization, including XRD, BET, CO2-TPD, SEM, TEM, and XPS. The obtained CPC and CPD showed large pore sizes and high active site densities and provided an advantageous environment for transesterification of triglyceride with methanol. CPC and CPD are re-usable and show no loss of activity after regeneration.
机译:尽管它们具有生物柴油合成的潜力,但仍使用富含镁/碳酸钙的直接煅烧矿物,但要消耗大量催化剂,高醇载量,较长的加工时间和恶劣的条件。我们报告了通过简单的自然方解石和白云石与硬脂酸的反应混合物的热分解来制备煅烧多孔方解石(CPC)和白云石(CPD)的简便且低成本的途径。均具有多孔结构的CPC和CPD与先前报道的催化剂进行了比较,并在温和条件下作为有前途的非均相碱催化剂进行了研究。与直接煅烧的矿物相比,通过CPC和CDC的转化率提高了40%。通过催化剂表征,包括XRD,BET,CO2-TPD,SEM,TEM和XPS,建立了对产物增强和失活关系的系统理解。所得的CPC和CPD显示出大的孔径和高的活性位点密度,并为甘油三酸酯与甲醇的酯交换反应提供了有利的环境。 CPC和CPD是可重复使用的,并且再生后不会显示任何活动损失。

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