Brentzel Zachary J, Barnett Kevin J, Huang Kefeng, Maravelias Christos T, Dumesic James A, Huber George W
Department of Chemical and Biological Engineering, University of Wisconsin-Madison, Madison, WI, 53706, USA.
ChemSusChem. 2017 Apr 10;10(7):1351-1355. doi: 10.1002/cssc.201700178. Epub 2017 Mar 9.
A process for the synthesis of 1,5-pentanediol (1,5-PD) with 84 % yield from furfural is developed, utilizing dehydration/hydration, ring-opening tautomerization, and hydrogenation reactions. Although this process has more reaction steps than the traditional direct hydrogenolysis of tetrahydrofurfuryl alcohol (THFA), techno-economic analyses demonstrate that this process is the economically preferred route for the synthesis of biorenewable 1,5-PD. 2-Hydroxytetrahydropyran (2-HY-THP) is the key reaction pathway intermediate that allows for a decrease in the minimum selling price of 1,5-PD. The reactivity of 2-HY-THP is 80 times greater than that of THFA over a bimetallic hydrogenolysis catalyst. This enhanced reactivity is a result of the ring-opening tautomerization to 5-hydoxyvaleraldehyde and subsequent hydrogenation to 1,5-PD.
开发了一种由糠醛合成1,5 - 戊二醇(1,5 - PD)的方法,产率为84%,该方法利用了脱水/水合、开环互变异构和氢化反应。尽管此方法比传统的四氢糠醇(THFA)直接氢解反应步骤更多,但技术经济分析表明,该方法是合成生物可再生1,5 - PD的经济优选路线。2 - 羟基四氢吡喃(2 - HY - THP)是关键的反应途径中间体,它能降低1,5 - PD的最低售价。在双金属氢解催化剂上,2 - HY - THP的反应活性比THFA高80倍。这种增强的反应活性是开环互变异构为5 - 羟基戊醛并随后氢化为1,5 - PD的结果。