Department M2S, K.U. Leuven, Kasteelpark Arenberg 23, 3001 Heverlee (Belgium).
ChemSusChem. 2015 Apr 13;8(7):1197-205. doi: 10.1002/cssc.201403457. Epub 2015 Mar 3.
In the valorization of α-pinene, which is an important biomass intermediate derived from turpentine oil, hierarchical (mesoporous) zeolites represent a superior class of catalysts. Hierarchical USY, ZSM-5, and beta zeolites have been prepared, characterized, and catalytically evaluated, with the aim of combining the highest catalytic performance with the most sustainable synthetic protocol. These zeolites are prepared by alkaline treatment in aqueous solutions of NH4 OH, NaOH, diethylamine, and NaOH complemented with tetrapropylammonium bromide. The hierarchical USY zeolite is the most attractive catalyst of the tested series, and is able to combine an overall organic-free synthesis with an up to sixfold activity enhancement and comparable selectivity over the conventional USY zeolite. This superior performance relates to a threefold greater activity than that of the commercial standard, namely, H2 SO4 /TiO2 . Correlation of the obtained benefits to the amount of solid lost during the postsynthetic modifications highlights that the highest activity gains are obtained with minor leaching. Furthermore, a highly zeolitic character, as determined by bulk XRD, is beneficial, but not crucial, in the conversion of α-pinene. The alkaline treatments not only result in a higher overall activity, but also a more functional external surface area, attaining up to four times the pinene conversions per square nanometer. The efficiency of the hierarchical USY zeolite is concomitantly demonstrated in the conversion of limonene and turpentine oil, which emphasizes its industrial potential.
在松节油衍生的重要生物质中间体α-蒎烯的增值过程中,分级(中孔)沸石代表了一类优越的催化剂。已制备、表征和催化评估了分级 USY、ZSM-5 和β沸石,旨在将最高的催化性能与最可持续的合成方案相结合。这些沸石是通过在 NH4OH、NaOH、二乙胺和 NaOH 的水溶液中进行碱性处理,并辅以四丙基溴化铵制备的。分级 USY 沸石是所测试系列中最具吸引力的催化剂,能够将无有机合成与整体结合起来,与常规 USY 沸石相比,活性提高了六倍,选择性相当。这种优越的性能与商业标准 H2SO4/TiO2 相比,活性提高了三倍。将获得的收益与合成后修饰过程中丢失的固体量相关联,表明在轻微浸出的情况下,活性增益最大。此外,由体相 XRD 确定的高沸石特性对于α-蒎烯的转化是有益的,但不是关键的。碱性处理不仅导致整体活性提高,而且还导致功能化的外部表面积增加,达到每平方纳米蒎烯转化率的四倍。分级 USY 沸石在柠檬烯和松节油的转化中表现出的效率突出了其工业潜力。