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Preparation of Oil Palm EFB derived Solid Acid Catalyst for Esterification Reaction: Effect of Calcination Temperature

机译:酯化反应的油棕EFB衍生固体酸催化剂的制备:煅烧温度的影响

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Oil palm empty fruit bunch (EFB) is one of the palm biomass produced in abundance after oil extraction in Malaysia. This study was focused to utilize this waste biomass as a beneficial raw materials. EFB was used to prepare new solid acid catalyst for biodiesel production. EFB was converted into solid catalyst via direct impregnation method and it was used to catalyse esterification of oleic acid. Transition metal sulfide salt, Fe_2(SO_4)_3 was impregnated on EFB fibres. Effect of different calcination temperature was studied on the properties of catalyst. The result shows that Fe_2(SO_4)_3 based solid acid catalyst which calcined at 500°C exhibited the highest catalytic activity with 93.90% esterification rate was achieved. The morphology and surface chemistry and function group determination for the solid acid catalyst were characterized by SEM-EDX and FTIR.
机译:油棕空果实束(EFB)是马来西亚石油萃取后大量生产的棕榈生物量之一。 本研究重点是利用这种废物生物量作为有益的原料。 EFB用于制备用于生物柴油生产的新型固体酸催化剂。 通过直接浸渍法将EFB转化为固体催化剂,并用于催化油酸的酯化。 过渡金属硫化物盐,Fe_2(SO_4)_3浸渍在EFB纤维上。 研究了不同煅烧温度的影响对催化剂的性质。 结果表明,在500℃下煅烧的Fe_2(SO_4)_3固体酸催化剂表现出最高催化活性,达到93.90%的酯化率。 通过SEM-EDX和FTIR表征了固体酸催化剂的形态和表面化学和功能群测定。

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