State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin, China.
Department of Chemical Engineering, National Cheng Kung University, Tainan, Taiwan.
Bioresour Technol. 2016 Dec;222:485-497. doi: 10.1016/j.biortech.2016.09.106. Epub 2016 Oct 13.
Although microalgae can serve as an appropriate alternative feedstock for biofuel production, the high microalgal cultivation cost has been a major obstacle for commercializing such attempts. One of the feasible solution for cost reduction is to couple microalgal biofuel production system with wastewater treatment, as microalgae are known to effectively eliminate a variety of nutrients/pollutants in wastewater, such as nitrogen/phosphate, organic carbons, VFAs, pharmaceutical compounds, textile dye compounds, and heavy metals. This review aims to critically discuss the feasibility of microalgae-based wastewater treatment, including the strategies for strain selection, the effect of wastewater types, photobioreactor design, economic feasibility assessment, and other key issues that influence the treatment performance. The potential of microalgae-bacteria consortium for treatment of industrial wastewaters is also discussed. This review provides useful information for developing an integrated wastewater treatment with microalgal biomass and biofuel production facilities and establishing efficient co-cultivation for microalgae and bacteria in such systems.
尽管微藻可以作为生物燃料生产的合适替代原料,但高微藻培养成本一直是此类尝试商业化的主要障碍。降低成本的一种可行方法是将微藻生物燃料生产系统与废水处理相结合,因为众所周知,微藻可以有效去除废水中的各种营养物/污染物,如氮/磷、有机碳、VFAs、药物化合物、纺织染料化合物和重金属。本综述旨在批判性地讨论基于微藻的废水处理的可行性,包括菌株选择策略、废水类型的影响、光生物反应器设计、经济可行性评估以及影响处理性能的其他关键问题。还讨论了微藻-细菌联合体处理工业废水的潜力。本综述为开发带有微藻生物质和生物燃料生产设施的综合废水处理以及在这些系统中建立微藻和细菌的高效共培养提供了有用的信息。