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Water glass derived catalyst for the synthesis of glycerol carbonate via the transesterification reaction between glycerol and dimethyl carbonate

机译:水玻璃衍生的通过甘油与碳酸二甲酯之间的酯交换反应合成碳酸甘油酯的催化剂

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Water glasses with different modulus (mole ratio of SiO2 to Na2O) were applied as a raw material to prepare five solid base catalysts for the synthesis of glycerol carbonate (GC) by the transesterification reaction between glycerol and dimethyl carbonate (DMC). The structure and properties of the five water glass-derived catalysts were investigated by XRD, FT-IR, FESEM, BET and acid–base titration methods. The catalysts with relatively low modulus, including 1.0, 1.5 and 2.0, presented good catalytic abilities, among which the catalyst derived from water glass with 2.0 modulus (WG-2.0) was chosen as the optimal catalyst in the synthesis of GC. This was because WG- -2.0 showed the highest BET surface area, relatively high total basicity, and needed a less amount of NaOH during the preparation process. In the optimization experiments, this catalyst exhibited good catalytic ability with the glycerol conversion of 96.3 % and GC yield of 94.1 % under the condition of glycerol to DMC mole ratio of 1:4, WG-2.0 amount of 4 wt. %, reaction temperature of 348 K and reaction time of 90 min. Furthermore, the reusability experiment of WG-2.0 was also conducted and the results indicated that WG- -2.0 could be reused five times without significant reduction in its catalytic ability.
机译:以不同模量的水玻璃(SiO 2与Na 2 O的摩尔比)为原料,通过甘油与碳酸二甲酯(DMC)的酯交换反应,制备了五种固体碱催化剂,用于合成碳酸甘油酯(GC)。通过XRD,FT-IR,FESEM,BET和酸碱滴定法研究了五种水玻璃衍生催化剂的结构和性能。具有较低模量的催化剂,包括1.0、1.5和2.0,表现出良好的催化能力,其中以具有2.0模量(WG-2.0)的水玻璃衍生的催化剂被选为GC合成中的最佳催化剂。这是因为WG--2.0具有最高的BET表面积,相对较高的总碱度,并且在制备过程中需要的NaOH量较少。在优化实验中,在甘油与DMC的摩尔比为1:4,WG-2.0的量为4 wt。%的条件下,该催化剂表现出良好的催化能力,甘油转化率为96.3%,GC收率为94.1%。 %,反应温度为348K,反应时间为90分钟。此外,还进行了WG-2.0的可重复使用性实验,结果表明WG--2.0可以重复使用五次,而其催化能力没有明显降低。

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