Department of Civil & Environmental Engineering, University of Massachusetts, Amherst CT, USA.
Trends Biotechnol. 2010 Jul;28(7):371-80. doi: 10.1016/j.tibtech.2010.04.004. Epub 2010 Jun 10.
Unbalanced production of atmospheric CO(2) constitutes a major challenge to global sustainability. Technologies have thus been developed for enhanced biological carbon fixation (also referred to as CO(2) mitigation), and one of the most promising capitalizes on microalgae. However, the "best bioreactor", which would be able to achieve maximum productivity and maximum energy efficiency under a given set of operational costs, does not exist. This review briefly examines the current technologies available for enhanced microalgal CO(2) fixation, and specifically explores the possibility of coupling wastewater treatment with microalgal growth for eventual production of biofuels and/or added-value products, with an emphasis on productivity. In addition, an overview of reactor configurations for CO(2) fixation and bottlenecks associated with the underlying technology are provided. Finally, a review of life cycle analysis studies is presented, and routes for improvement of existing processes are suggested.
大气 CO(2) 的不平衡产生对全球可持续性构成了重大挑战。因此,已经开发出了用于增强生物碳固定(也称为 CO(2)缓解)的技术,其中最有前途的技术之一是利用微藻。然而,不存在能够在给定的运营成本下实现最大生产力和最大能源效率的“最佳生物反应器”。本文简要回顾了目前用于增强微藻 CO(2)固定的技术,并特别探讨了将废水处理与微藻生长相结合以最终生产生物燃料和/或附加值产品的可能性,重点是生产力。此外,还概述了用于 CO(2)固定的反应器配置和与基础技术相关的瓶颈。最后,介绍了生命周期分析研究的回顾,并提出了改进现有工艺的途径。