Pothakos Vasileios, Debeer Nadine, Debonne Ignace, Rodriguez Asier, Starr John N, Anderson Todd
Cargill R&D Centre Europe BVBA Havenstraat 84 1800 Vilvoorde Belgium.
Engineering R&D, Cargill, Inc P.O. Box 9300 MN 55440 Minneapolis USA.
Chem Eng Technol. 2018 Dec;41(12):2358-2365. doi: 10.1002/ceat.201800279. Epub 2018 Oct 30.
A common focus of fermentation process optimization is the product titer. Different strategies to boost fermentation titer target whole-cell biocatalyst selection, process control, and medium composition. Working at higher product concentrations reduces the water that needs to be removed in the case of aqueous systems and, therefore, lowers the cost of downstream separation and purification. Different approaches to achieve higher titer in fermentation are examined. Energy and water consumption data collected from different Cargill fermentation plants, i.e., ethanol, lactic acid, and 2-keto--gulonic acid, confirm that improvements in fermentation titer play a decisive role in downstream economics and environmental footprint.
发酵过程优化的一个常见重点是产物滴度。提高发酵滴度的不同策略针对全细胞生物催化剂的选择、过程控制和培养基组成。在较高产物浓度下进行操作,对于水相体系而言,减少了需要去除的水量,因此降低了下游分离和纯化的成本。本文研究了在发酵过程中实现更高滴度的不同方法。从嘉吉公司不同的发酵工厂收集的能源和水消耗数据,即乙醇、乳酸和2-酮基-L-古龙酸的数据,证实了发酵滴度的提高在下游经济性和环境足迹方面起着决定性作用。