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Facile Synthesis of Ferric-Modified Phosphomolybdic Acid Composite Catalysts for Biodiesel Production with Response Surface Optimization

机译:响应面优化,用于生物柴油生产的铁改性磷钼酸复合催化剂的简便合成

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An attempt has been made to optimize the preparation of biodiesel from the transesterification of oleic acid with methanol over iron(III)-doped phosphomolybdic acid (H3PMo) catalysts. The prepared doped H3PMo salts were characterized using powder X-ray diffraction, Fourier transform infrared spectroscopy, thermogravimetric analysis, and scanning electron microscopy. The detailed characterization results demonstrated that the doped H3PMo salts have a strong interaction between the iron(III) ions and metal oxygen cluster, well preserving a typical Keggin structure of heteropolyacids and possessing good thermal stability. The effect of esterification reaction parameters was investigated and optimized using single-factor experiments method in combination with response surface methodology (RSM). The doped catalyst exhibited good catalytic activity, affording the oleic acid conversion of 89.2% with single factor optimization and 95.1% with RSM. More importantly, the catalyst was simply separated by decantation and exhibited good stability, with the oleic acid conversion of 70.2% after three consecutive cycles. Besides, this catalyst can also catalyze the esterification of other free fatty acids. Therefore, the doped H3PMo catalyst is a promising candidate for eco-friendly production of biodiesel in industry.
机译:已经尝试通过在铁(III)掺杂的磷钼酸(H3PMo)催化剂上油酸与甲醇的酯交换反应来优化生物柴油的制备。使用粉末X射线衍射,傅立叶变换红外光谱,热重分析和扫描电子显微镜对所制备的掺杂的H 3 PMo盐进行表征。详细的表征结果表明,掺杂的H3PMo盐在铁(III)离子与金属氧簇之间具有强相互作用,很好地保留了杂多酸的典型Keggin结构,并具有良好的热稳定性。酯化反应参数的影响进行了调查和优化使用单因素实验方法结合响应面方法(RSM)。掺杂的催化剂表现出良好的催化活性,单因素优化的油酸转化率为89.2%,RSM的油酸转化率为95.1%。更重要的是,通过倾析将催化剂简单地分离并且表现出良好的稳定性,在连续三个循环后油酸转化率为70.2%。此外,该催化剂还可以催化其他游离脂肪酸的酯化。因此,掺杂的H3PMo催化剂是工业上生物柴油的生态友好生产的有前途的候选者。

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