Huang Yanglei, Ye Ziling, Wan Xiukun, Yao Ge, Duan Jingyu, Liu Jiajia, Yao Mingdong, Sun Xiang, Deng Zixin, Shen Kun, Jiang Hui, Liu Tiangang
Key Laboratory of Combinatorial Biosynthesis and Drug Discovery, Ministry of Education and School of Pharmaceutical Sciences, Wuhan University, Wuhan, 430071, China.
State Key Laboratory of NBC Protection for Civilian, Beijing, 102205, China.
Adv Sci (Weinh). 2023 Aug;10(23):e2300889. doi: 10.1002/advs.202300889. Epub 2023 Jun 4.
Sesquiterpenes have been identified as promising ingredients for aviation fuels due to their high energy density and combustion heat properties. Despite the characterization of numerous sesquiterpene structures, studies testing their performance properties and feasibility as fuels are scarce. In this study, 122 sesquiterpenoid skeleton compounds, obtained from existing literature reports, are tested using group contribution and gaussian quantum chemistry methods to assess their potential as high-energy aviation fuels. Seventeen sesquiterpene compounds exhibit good predictive performance and nine compounds are further selected for overproduction in yeast. Through fed-batch fermentation, all compounds achieve the highest reported titers to date. Subsequently, three representative products, pentalenene, presilphiperfol-1-ene, and α-farnesene, are selected, produced, purified in large quantities, and tested for use as potential fuels. The performance of pentalenene, presilphiperfol-1-ene, and their derivatives reveals favorable prospects as high-energy aviation fuels.
倍半萜烯因其高能量密度和燃烧热特性,已被确认为航空燃料的理想成分。尽管已对众多倍半萜烯结构进行了表征,但测试其作为燃料的性能特性和可行性的研究却很少。在本研究中,使用基团贡献法和高斯量子化学方法对从现有文献报道中获得的122种倍半萜类骨架化合物进行测试,以评估它们作为高能航空燃料的潜力。17种倍半萜烯化合物表现出良好的预测性能,进一步选择了9种化合物在酵母中进行过量生产。通过分批补料发酵,所有化合物均达到了迄今为止报道的最高滴度。随后,选择了三种代表性产品,戊塔烯、前半日花-1-烯和α-法尼烯,进行大量生产、纯化,并测试其作为潜在燃料的用途。戊塔烯、前半日花-1-烯及其衍生物的性能显示出作为高能航空燃料的良好前景。