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In-situ Synthesis of CeO2@rGO Nanocatalyst for Transesterification of Ethanol and Propylene Carbonate into Diethyl Carbonate

机译:原位合成CeO2 @ rgo纳米催化剂,用于乙醇和碳酸丙烷酯酯化成碳酸二乙酯

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Organic carbonates have the potential to be used as fuels and because of this their production through non-phosgene routes is a thrust area of research. Di-ethyl carbonate (DEC) synthesis from propylene carbonate (PC) in the presence of alcohol is a green route. In this study, use of reduced graphene oxide (rGO) based metal oxide catalysts [rGO-MO, where M = Ce] with different amount of graphene oxide (0.2%, 0.5%, 1% and 2%) has been investigated for the synthesis of DEC by using PC and ethanol as reactants. The GO sheets were synthesized by an electrochemical process and the catalysts were synthesized using an in situ method. Theoretical study of thermodynamics of the reaction was done, which revealed that the reaction is mildly endothermic. Theoretical value of optimum temperature was found to be 420 K. The synthesized catalysts were characterized for their morphological, structural and textural properties using field emission scanning electron microscopy (FE-SEM), X-ray diffraction (XRD), N2 adsorption/desorption, thermogravimetric analysis (TGA) and Raman spectroscopy. Optimization studies were carried out to study the effect of different reaction conditions like temperature (140 °C to 180 °C), catalyst dosage (0.102 g to 0.255 g) and time (0.5 h to 5 h) on the yield of DEC. Amongst the various synthesized catalysts, 1% rGO-CeO2 gave the maximum yield of DEC.
机译:有机碳酸盐具有燃料的潜力,并且由于这种通过非光源途径的生产是研究的推力领域。在醇的存在下,碳酸丙酯(PC)的二乙酯(DEC)合成是一种绿色途径。在该研究中,研究了使用的石墨烯(RGO)的金属氧化物催化剂[RGO-MO,其中M = Ce]已经研究了不同量的石墨烯氧化物(0.2%,0.5%,1%和2%)用PC和乙醇作为反应物合成DEC。通过电化学方法合成去板,使用原位方法合成催化剂。反应热力学的理论研究已完成,显示反应温和地吸热。发现最佳温度的理论值为420K。合成催化剂的特征在于使用场发射扫描电子显微镜(Fe-SEM),X射线衍射(XRD),N 2吸附/解吸,热重分析(TGA)和拉曼光谱。进行优化研究以研究不同温度(140℃至180℃),催化剂剂量(0.102g至0.255g)和时间(0.5小时至5小时)的不同反应条件的效果对DEC的产率的影响。在各种合成催化剂中,1%RGO-CeO2给出了DEC的最大收率。

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