Department of Civil & Environmental Engineering, University of South Florida, 4202 E. Fowler Ave, ENB 118, Tampa, FL 33620, USA.
Department of Integrative Biology, University of South Florida, 4202 E. Fowler Avenue, BSF 132, Tampa, FL 33620-5200, USA.
J Environ Manage. 2018 Jul 1;217:845-857. doi: 10.1016/j.jenvman.2018.04.021. Epub 2018 Apr 24.
The synergistic activity of algae and prokaryotic microorganisms can be used to improve the efficiency of biological wastewater treatment, particularly with regards to nitrogen removal. For example, algae can provide oxygen through photosynthesis needed for aerobic degradation of organic carbon and nitrification and harvested algal-prokaryotic biomass can be used to produce high value chemicals or biogas. Algal-prokaryotic consortia have been used to treat wastewater in different types of reactors, including waste stabilization ponds, high rate algal ponds and closed photobioreactors. This review addresses the current literature and identifies research gaps related to the following topics: 1) the complex interactions between algae and prokaryotes in wastewater treatment; 2) advances in bioreactor technologies that can achieve high nitrogen removal efficiencies in small reactor volumes, such as algal-prokaryotic biofilm reactors and enhanced algal-prokaryotic treatment systems (EAPS); 3) molecular tools that have expanded our understanding of the activities of algal and prokaryotic communities in wastewater treatment processes.
藻类和原核微生物的协同作用可以提高生物废水处理的效率,特别是在脱氮方面。例如,藻类可以通过光合作用提供有氧降解有机碳和硝化所需的氧气,收获的藻类-原核生物生物质可以用于生产高价值的化学品或沼气。藻类-原核生物共生体已被用于在不同类型的反应器中处理废水,包括废水稳定塘、高速藻类塘和封闭式光生物反应器。本综述讨论了当前的文献,并确定了与以下主题相关的研究空白:1)在废水处理中藻类和原核生物之间的复杂相互作用;2)在小反应器体积中实现高氮去除效率的生物反应器技术的进展,例如藻类-原核生物生物膜反应器和增强型藻类-原核生物处理系统(EAPS);3)分子工具,这些工具扩展了我们对废水处理过程中藻类和原核生物群落活动的理解。