State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, PR China.
State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, PR China.
Biotechnol Adv. 2019 Sep-Oct;37(5):599-615. doi: 10.1016/j.biotechadv.2019.03.003. Epub 2019 Mar 5.
Alternative chemicals to diverse fossil-fuel-based products is urgently needed to mitigate the adverse impacts of fossil fuel depletion on human development. To this end, researchers have focused on the production of biochemical from readily available and affordable waste biomass. This is consistent with current guidelines for sustainable development and provides great advantages related to economy and environment. The search for suitable biochemical products is in progress worldwide. Therefore, this review recommends a biochemical (i.e., medium chain carboxylic acids (MCCAs)) utilizing an emerging biotechnological production platform called the chain elongation (CE) process. This work covers comprehensive introduction of the CE mechanism, functional microbes, available feedstock types and corresponding utilization strategies, major methods to enhance the performance of MCCAs production, and the challenges that need to be addressed for practical application. This work is expected to provide a thorough understanding of the CE technology, to guide and inspire researchers to solve existing problems in depth, and motivate large-scale MCCAs production.
需要替代各种基于化石燃料的产品的化学物质,以减轻化石燃料枯竭对人类发展的不利影响。为此,研究人员专注于从易得且经济实惠的废生物质中生产生物化学物质。这符合当前可持续发展的指导方针,并在经济和环境方面具有巨大优势。目前,全球范围内都在寻找合适的生物化学物质产品。因此,本综述推荐了一种生化物质(即中链羧酸(MCCA)),利用一种新兴的生物技术生产平台,即链伸长(CE)工艺。这项工作全面介绍了 CE 机制、功能微生物、可用的原料类型和相应的利用策略、提高 MCCAs 生产性能的主要方法,以及实际应用中需要解决的挑战。这项工作有望深入了解 CE 技术,指导和启发研究人员深入解决现有问题,并激励大规模生产 MCCAs。