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首页> 外文期刊>Biofuel Research Journal >Synthesis of solketalacetin as a green fuel additive via ketalization of monoacetin with acetone using silica benzyl sulfonic acid as catalyst
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Synthesis of solketalacetin as a green fuel additive via ketalization of monoacetin with acetone using silica benzyl sulfonic acid as catalyst

机译:以二氧化硅苄磺酸为催化剂,通过单丙酮与丙酮的缩酮化反应,合成了绿色环保的索他他汀

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Silica benzyl sulfonic acid (SBSA) was prepared as a catalyst for reacting monoacetin with acetone to synthesize solketalacetin as a green fuel additive. To synthesize SBSA, commercially available silica gel was functionalized with benzyl alcohol in the presence of sulfuric acid as catalyst and was then sulfonated with chlorosulfonic acid. The catalyst was characterized by FT-IR, XRD, and TGA. The catalytic activity of SBSA was compared with those of Amberlyst 36 and Purolite PD 206 as two sulfonated acidic catalysts, in a continuous flow system. The effect of different operation conditions such as acetone to monoacetin molar ratio, reaction temperature, and feed flow rate were investigated. Increasing acetone to monoacetin molar ratio increased the solketalacetin yield for the three catalysts but SBSA demonstrated the highest solketalacetin yield. Solketalacetin yield was reduced with temperature increase for all the catalysts and the maximum solketalacetin yields were recorded with Amberlyst 36 and SBSA catalyst at 20 °C and 40 °C, respectively. The catalytic activity was examined by keeping the catalysts on–stream for 25 h while the reusability tests were performed in four consecutive runs and showed that SBSA was stable up to 25 h and had the highest stability in 4 runs.
机译:制备了二氧化硅苄基磺酸(SBSA)作为催化剂,使单乙酸甘油酯与丙酮反应,合成了作为绿色燃料添加剂的Solketalacetin。为了合成SBSA,将可商购的硅胶在硫酸作为催化剂存在下用苯甲醇官能化,然后用氯磺酸磺化。通过FT-IR,XRD和TGA对催化剂进行了表征。在连续流系统中,将SBSA的催化活性与作为两种磺化酸性催化剂的Amberlyst 36和Purolite PD 206的催化活性进行了比较。研究了不同操作条件如丙酮与单乙酸甘油酯的摩尔比,反应温度和进料流速的影响。增加丙酮与单乙酸甘油酯的摩尔比可提高三种催化剂的Solketalacetin产率,但SBSA表现出最高的Solketalacetin产率。对于所有催化剂,随着温度的升高,solketalacetin的产率都会降低,分别使用Amberlyst 36和SBSA催化剂分别在20°C和40°C下记录最大的solketalacetin产率。通过在连续四次运行中进行可重复使用性测试的同时,将催化剂在运行中保持25小时来检查其催化活性,结果表明SBSA可以在25小时内保持稳定,并且在4次运行中具有最高的稳定性。

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