Zhejiang Fashion Institute of Technology, Zhejiang, People's Republic of China.
Environ Technol. 2023 Sep;44(21):3263-3280. doi: 10.1080/09593330.2022.2056087. Epub 2022 Apr 7.
A new porous solid base catalyst was prepared using dewatered paper sludge and successfully employed to produce biodiesel from soybean oil. The as-prepared catalyst was characterized using X-ray diffraction, scanning electron microscopy, transmission electron microscopy, Fourier transforms infrared spectroscopy, X-ray photoelectron spectroscopy, thermal gravity/differential thermal gravity analysis, Brunauer-Emmet-Teller analysis, and CO-temperature programmed analysis. The results showed that the formation of CaO and uniformly distributed porous structure should account for the high catalytic activity of the as-prepared catalyst. The optimum reaction conditions were observed at 180 ℃, 8 wt.% catalyst/oil weight ratio, 16:1 methanol/oil molar ratio, and 300 min reaction time with 91.6% biodiesel yield. After being used several times and recycled, the regenerated catalyst still exhibited effective catalytic activity without apparent deactivation. The kinetic study confirmed that the experimental data satisfied with Pseudo-first-order kinetic model controlled by reaction temperature and catalyst/oil weight ratio. The reaction activation energy was 24.98 kJ/mol. The change of enthalpy (14.98 kJ/mol), entropy (-208.57 J/mol/K), and Gibbs free energy (109.46 kJ/mol) indicated that the transesterification reaction catalyzed by the dewatered paper sludge-derived catalyst is endothermic, endergonic, and non-spontaneous. Our research finding indicated that the CaO-based catalyst derived from dewatered paper sludge was an economically promising and eco-friendly solid base catalyst for biodiesel production.
一种新型多孔固载碱催化剂由脱水纸泥制备而成,并成功应用于从大豆油中制备生物柴油。采用 X 射线衍射、扫描电子显微镜、透射电子显微镜、傅里叶变换红外光谱、X 射线光电子能谱、热重/差热重分析、Brunauer-Emmett-Teller 分析和 CO-程序升温分析对所制备的催化剂进行了表征。结果表明,CaO 的形成和均匀分布的多孔结构应该是所制备的催化剂具有高催化活性的原因。在 180℃、8wt.%催化剂/油质量比、16:1 甲醇/油摩尔比和 300min 反应时间下,可获得 91.6%的生物柴油产率,为最佳反应条件。该催化剂经多次使用和回收后,仍具有有效的催化活性,无明显失活现象。动力学研究表明,实验数据符合反应温度和催化剂/油质量比控制的拟一级动力学模型。反应活化能为 24.98kJ/mol。焓变(14.98kJ/mol)、熵变(-208.57J/mol/K)和吉布斯自由能变(109.46kJ/mol)表明,脱水纸泥衍生的催化剂催化的酯交换反应是吸热、熵增和非自发的。我们的研究结果表明,由脱水纸泥制备的 CaO 基催化剂是一种经济上有前景且环保的生物柴油制备用固载碱催化剂。