Zhang Qiuyun, Wei Fangfang, Zhang Yutao, Wei Fuhua, Ma Peihua, Zheng Wei, Zhao Yongting, Chen Hongliang
School of Chemistry and Chemical Engineering, Anshun University.
Special and Key Laboratory of Functional Materials and Resource Chemistry of Guizhou Provincial Education Department, Anshun University.
J Oleo Sci. 2017;66(5):491-497. doi: 10.5650/jos.ess16211.
A systematic study on copper (II)-alginate beads as catalysts for the synthesis of biodiesel via esterification of oleic acid and methanol is here reported for the first time. The chemical structure and morphologies of these catalysts were fully characterized by XRD, FT-IR, and SEM. The copper (II)-alginate beads showed a tubular structure with entangled reticulation. In the presence of copper (II)-alginate catalyst, the biodiesel conversion of 71.8% was achieved from oleic acid with methanol under the most mild conditions (1/10 oleic acid to methanol molar ratio, 250 mg catalyst, 70°C for 3 h), optimized by single-factor experiments. The catalyst could be easily separated from the reaction mixture and stabilized for a certain time. This material can also catalyze other esterification of fatty acids with different carbon chain lengths, as well as the pretreatment of non-edible oils with high acid value. Our findings showed that the copper (II)-alginate is a suitable catalyst for esterification and would provide more choices for industrial application in the future.
本文首次报道了对铜(II)-海藻酸钠微球作为油酸与甲醇酯化合成生物柴油催化剂的系统研究。通过XRD、FT-IR和SEM对这些催化剂的化学结构和形态进行了全面表征。铜(II)-海藻酸钠微球呈现出具有缠结网状结构的管状结构。在铜(II)-海藻酸钠催化剂存在下,通过单因素实验优化,在最温和的条件下(油酸与甲醇摩尔比为1/10、250 mg催化剂、70°C反应3 h),油酸与甲醇的生物柴油转化率达到了71.8%。该催化剂可轻松从反应混合物中分离出来,并能稳定一定时间。这种材料还可以催化其他不同碳链长度脂肪酸的酯化反应,以及高酸值非食用油的预处理。我们的研究结果表明,铜(II)-海藻酸钠是一种适合酯化反应的催化剂,未来将为工业应用提供更多选择。