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首页> 外文期刊>Materials science forum >Preparation of Molecular Sieve AI-SBA-15 with Two Ratios Si/Al Catalyst for Use in the Transesterification Reaction of Soybean Oil
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Preparation of Molecular Sieve AI-SBA-15 with Two Ratios Si/Al Catalyst for Use in the Transesterification Reaction of Soybean Oil

机译:两种比例的硅铝催化剂分子筛AI-SBA-15的制备用于大豆油的酯交换反应

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Molecular sieves have been applied to the triacylglycerides processing in the production of biodiesel through transesterification reaction. The purpose of obtain a material that has characteristics favorable to higher biodiesel conversion, this paper aims to synthesize molecular sieves SBA-15 and Al-SBA-15 on two reasons Si/Al (Si/Al= 10 and 100) evaluated in the transesterification reaction of soybean oil and investigate the potential of Si/Al ratios in the reaction over the acid each material. The catalysts were prepared by conventional hydrothermal method by varying the composition of the aluminum consequently altering the acidity of the material, since this reaction takes place in acid medium. The samples were characterized by X-Ray Diffraction (XRD), scanning electron microscopy (SEM), Spectroscopy in the infrared region by Fourier transform (FTIR). The results of the characterization of the catalysts have shown that the materials were successfully obtained, from the characterization observed. The biodiesel syntheses were conducted with soybean oil using ethyl alcohol 12: 1 relative to the oil and 5% of catalyst in the reactor with autogenous pressure. Were realized viscosity analyzes as conversion parameter of the vegetable oil into biodiesel. From the results of biodiesel viscosity was obtained a yield of 13% on average by using the Al-SBA-15. However, even not have remained within the specifications the standards of the National Petroleum, Natural Gas and Biofuels, catalysts showed efficiency compared with the SBA-15 in biodiesel synthesis.
机译:<分子筛>已用于通过酯交换反应的生物柴油生产中的甘油三酯处理中。为了获得具有有利于更高生物柴油转化率的特性的材料,本文旨在基于酯交换反应中评估的Si / Al(Si / Al = 10和100)的两个原因,合成分子筛SBA-15和Al-SBA-15大豆油的反应,并研究了每种材料在酸中反应中Si / Al比的潜力。由于该反应在酸性介质中进行,因此通过常规的水热法通过改变铝的组成从而改变材料的酸度来制备催化剂。样品通过X射线衍射(XRD),扫描电子显微镜(SEM),红外区光谱进行傅立叶变换(FTIR)表征。催化剂的表征结果表明,从观察到的表征成功地获得了材料。使用自生压力下相对于油为12:1的乙醇和5%的催化剂在大豆油中进行生物柴油合成。实现了粘度分析作为植物油向生物柴油转化的参数。根据生物柴油粘度的结果,通过使用Al-SBA-15,平均产率为13%。但是,即使尚未保持在国家石油,天然气和生物燃料标准的规格范围内,催化剂也比SBA-15在生物柴油合成中表现出了效率。

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