Department of Chemistry, Northeast Normal University, Changchun 130024, PR China.
ChemSusChem. 2011 Jun 20;4(6):744-56. doi: 10.1002/cssc.201100022. Epub 2011 May 11.
A series of mesoporous sulfated zirconia materials functionalized by alkyl-bridged organosilica moieties (SO(4)(2-)/ZrO(2)-SiO(2)(R) with various S/Si or Zr/Si molar ratios and R=CH(2)CH(2) or C(6)H(4)) were developed by a one-step co-condensation technique combined with hydrothermal treatment with the aid of a triblock copolymer surfactant (P123). The structures, morphologies, porosities, and acid properties of the materials were well characterized. Subsequently, the catalytic performances (activity and stability) of SO(4)(2-)/ZrO(2)-SiO(2)(R) were evaluated by the transesterification of both pure triglyceride (tripalmitin) and low-cost virgin plant oil (Eruca sativa Gars. oil) with methanol for biodiesel production under mild conditions (atmospheric pressure, 65 °C), and the enhanced catalytic activity with respect to alkyl-free sulfated zirconia was obtained. This excellent catalytic activity was explained in terms of the inherent Brønsted acidity, well-defined mesoporosity, and increased hydrophobicity of the as-prepared, hybrid, solid acid catalyst.
一系列通过烷桥有机硅部分官能化的介孔硫酸锆材料(SO(4)(2-)/ZrO(2)-SiO(2)(R),其中 S/Si 或 Zr/Si 的摩尔比不同,R=CH(2)CH(2)或 C(6)H(4))是通过一步共缩合技术与水热处理相结合,在三嵌段共聚物表面活性剂(P123)的辅助下开发的。对材料的结构、形态、孔隙率和酸性质进行了很好的表征。随后,通过在温和条件(常压,65°C)下用甲醇对纯三硬脂酸甘油酯(三硬脂酸甘油酯)和低成本的天然植物油(芸苔属油)进行酯交换反应,评价了 SO(4)(2-)/ZrO(2)-SiO(2)(R)的催化性能(活性和稳定性),并获得了相对于无烷基硫酸锆的增强催化活性。这种优异的催化活性可以用制备的、混合的、固体酸催化剂固有的 Brønsted 酸度、明确的介孔和增加的疏水性来解释。