Zhang Zehui, Wang Yimei, Fang Zhongfeng, Liu Bing
Department of Chemistry, Key Laboratory of Catalysis and Material Sciences of the State Ethnic Affairs Commission, Ministry of Education, South-Central University for Nationalities, MinYuan Road 708, Wuhan (P. R. China), Fax: (+86) 27-67842572.
Chempluschem. 2014 Feb;79(2):233-240. doi: 10.1002/cplu.201300301. Epub 2013 Nov 28.
A magnetically recoverable catalyst was conveniently synthesized by the immobilization of sulfonic acid on the surface of silica-encapsulated Fe O nanoparticles, and it was used to catalyze the conversion of fructose-based carbohydrates into 5-ethoxymethylfurfural (EMF). A high EMF yield of 89.3 % was obtained from the etherification of 5-hydroxymethylfurfural at 100 °C for 10 h. The one-pot conversion of fructose could produce EMF with a yield of 72.5 %. More importantly, EMF was also obtained in a satisfactory yield of 63.3 % when the polysaccharide inulin was used as the starting material. The excellent EMF yield showed that the catalyst had strong and sufficient acidic sites, which were responsible for the good catalytic performance. After the reaction, the catalyst could be readily removed from the reaction mixture by means of an external magnetic field, and the catalyst could be reused several times without significant loss in its catalytic activity. Incidentally, the product EMF was easily obtained through the evaporation of the solvent, ethanol, under reduced pressure at low temperature (ca. 40 °C), and the ethanol could also be reused. The integrated utilization of a biorenewable feedstock, magnetically recoverable catalyst, and bio-based green solvent is a typical example of an ideal green chemical process to produce potential liquid fuels.
通过将磺酸固定在二氧化硅包覆的Fe₃O₄纳米颗粒表面,方便地合成了一种可磁回收的催化剂,并将其用于催化果糖基碳水化合物转化为5-乙氧基甲基糠醛(EMF)。在100℃下将5-羟甲基糠醛醚化10小时,可获得89.3%的高EMF产率。果糖的一锅法转化可产生产率为72.5%的EMF。更重要的是,当使用多糖菊粉作为起始原料时,也能以63.3%的令人满意的产率获得EMF。优异的EMF产率表明该催化剂具有强大且充足的酸性位点,这是其良好催化性能的原因。反应后,通过外部磁场可轻松从反应混合物中除去催化剂,并且该催化剂可重复使用多次,其催化活性无明显损失。顺便提一下,通过在低温(约40℃)下减压蒸发溶剂乙醇,可轻松获得产物EMF,并且乙醇也可重复使用。生物可再生原料、可磁回收催化剂和生物基绿色溶剂的综合利用是生产潜在液体燃料的理想绿色化学过程的典型示例。