Pengaruh Temperatur Kalsinasi Terhadap Kapasitas Ion Katalis Asam Heterogen Berbasis Silika dan Aplikasinya pada Sintesis Metil Oleat

Joko Suryadi, Nanda Nabila, Syafa Neiska Bayhaqi, Eko Andrijanto
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Abstract

Sulfated silica catalyst is a solid acid catalyst which in its application is used to accelerate esterification reactions. The purpose of this study was to determine the effect of calcination temperature and increasing the amount of catalyst on the effectiveness of silica as a catalyst in the formation of methyl oleate through esterification reactions. The synthesis of sulfuric acid catalyst from rice husk ash went through several stages, including preparation of raw material for rice husk ash, production of silica using the sol-gel method, manufacture of silica-based acid catalysts and characterization of the sulfated silica catalyst. The acid catalyst was prepared using impregnation method with sulfuric acid and calcined at various temperatures of 500, 600, 700 and 800oC. The characterization of the acid catalyst formed includes ionic capacity, catalyst performance in the esterification reaction, and the determination of the bond characteristic functional groups using FTIR. The results of ion capacity analysis showed that the highest acidity value was found in the sulfated silica catalyst calcined at 600oC of 0.372 mmol/gram. Testing the performance of the catalyst in the esterification reaction with a ratio of 4:1 (methanol:oleic acid) obtained an ester conversion of 38.89% using a catalyst of 30% of the amount of oleic acid. Identification results using FTIR show that sulfate ions have chemically interacted with silica at around 1103.28 cm-1
温度因果作用对硅基质质催化剂的离子容量和对甲基Oleat合成的应用的影响
硫酸氧化硅催化剂是一种固体酸催化剂,在应用中用于加速酯化反应。本研究的目的是确定煅烧温度和催化剂用量的增加对二氧化硅在酯化反应中作为催化剂生成油酸甲酯效果的影响。稻壳灰合成硫酸催化剂经历了稻壳灰原料的制备、溶胶-凝胶法制备二氧化硅、硅基酸催化剂的制备以及硫化二氧化硅催化剂的表征等几个阶段。采用硫酸浸渍法制备酸催化剂,在500、600、700、800℃不同温度下煅烧。所形成的酸性催化剂的表征包括离子容量、酯化反应中的催化剂性能以及利用FTIR测定键特征官能团。离子容量分析结果表明,600℃煅烧硫酸氧化硅催化剂的酸度值最高,为0.372 mmol/g。在甲醇:油酸比为4:1的酯化反应中测试催化剂的性能,得到油酸用量为30%的催化剂,酯转化率为38.89%。FTIR鉴定结果表明,硫酸盐离子在1103.28 cm-1左右与二氧化硅发生化学反应
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