氧合物
催化作用
选择性
生物量(生态学)
水溶液
丁醇
化学
双水相体系
商品化学品
碳纤维
发酵
化学工程
有机化学
材料科学
乙醇
工程类
海洋学
复合数
复合材料
地质学
作者
Yehong Wang,Mi Peng,Jian Zhang,Zhixin Zhang,Jinghua An,Shuyan Du,Hongyu An,Fengtao Fan,Xi Liu,Peng Zhai,Ding Ma,Feng Wang
标识
DOI:10.1038/s41467-018-07593-0
摘要
Abstract Selective conversion of an aqueous solution of mixed oxygenates produced by biomass fermentation to a value-added single product is pivotal for commercially viable biomass utilization. However, the efficiency and selectivity of the transformation remains a great challenge. Herein, we present a strategy capable of transforming ~70% of carbon in an aqueous fermentation mixture (ABE: acetone–butanol–ethanol–water) to 4-heptanone (4-HPO), catalyzed by tin-doped ceria (Sn-ceria), with a selectivity as high as 86%. Water (up to 27 wt%), detrimental to the reported catalysts for ABE conversion, was beneficial for producing 4-HPO, highlighting the feasibility of the current reaction system. In a 300 h continuous reaction over 2 wt% Sn-ceria catalyst, the average 4-HPO selectivity is maintained at 85% with 50% conversion and > 90% carbon balance. This strategy offers a route for highly efficient organic-carbon utilization, which can potentially integrate biological and chemical catalysis platforms for the robust and highly selective production of value-added chemicals.
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