异戊二烯
甲醇
催化作用
甲醛
化学
选择性
介孔材料
串联
氧化物
复合数
化学工程
有机化学
无机化学
材料科学
复合材料
聚合物
工程类
共聚物
作者
Lulu Xu,Shuo Liu,Xiangju Meng,Feng‐Shou Xiao,Trees De Baerdemaeker,Andrei‐Nicolae Parvulescu,Bernd Marler,Ute Kolb,Dirk De Vos,Toshiyuki Yokoi,Weiping Zhang
标识
DOI:10.1016/j.apcatb.2023.123341
摘要
The preparation of renewable isoprene from biomass-derivable feedstocks is extremely desirable for the sustainable rubber/latex/pharmaceutical industries. We report here a novel tandem route to efficiently produce isoprene via bio-sourced methanol and isobutene over Mo-Fe-O+meso-Cu/MgO composite catalysts. High isoprene selectivity of 85 % was achieved at methanol conversion of 91 % under optimal conditions. Adding Cu into mesoporous MgO finely tunes the basicity and acidity balance, thereby promoting isoprene selectivity. It shows good recycle capability, with isoprene selectivity remaining 85 % after five successive regeneration cycles. In-situ DRIFTS of methanol and isobutene adsorption suggest the possible reaction pathways involve methanol oxidation to formaldehyde on Mo-Fe oxide, followed by Prins condensation between formaldehyde and isobutene to isoprenol, and final conversion to isoprene on meso-Cu/MgO. This work not only represents a great advance in industrial large-scale producing isoprene, but provides an efficient strategy for developing methanol as in-situ precursor of formaldehyde to participate in many reactions.
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