Ding Qian, Zhou Zizhen, Cui Lu, Liu Jiaqiang, You Guoxiang, Chen Qing, Hou Jun, Fan Xiulei, Yang Yangyang
School of Smart Energy & Environment, Zhongyuan University of Technology, Zhengzhou, People's Republic of China.
School of Environmental Engineering, Jiangsu Key Laboratory of Industrial Pollution Control and Resource Reuse, Xuzhou University of Technology, Xuzhou, People's Republic of China.
Environ Technol. 2025 Jun;46(14):2597-2614. doi: 10.1080/09593330.2024.2440162. Epub 2024 Dec 30.
In order to solve the problems of poor tolerance of traditional algal-bacterial symbiosis system to high ammonia wastewater and biomass recovery, a new symbiosis system combining biological agents of nitrifying bacteria and ordinary was proposed. The results showed that adjusting the volume ratio of algae and bacteria had an effect on the wastewater treatment performance, microalgae growth and flocculation effect. At the optimal algal-bacterial volume ratio of 1:3, the TN, -N and COD removal rates were 50%, 70%and 83%, respectively. The high concentration of ammonia nitrogen would have some inhibitory effect on microalgal photosynthesis, but the appropriate inoculation ratio could alleviate this pressure and improve the growth rate of microalgae. Under the optimal inoculation ratio, the PN and PS contents of extracellular polymers were 125.16 and 73 mg/L, respectively, which induced a stronger protective mechanism and enhanced the synergistic effect between algae-bacteria. In addition, the flocculation efficiency of the algal-bacterial system increased from 15% to 30% with the decrease of the initial inoculum of microalgae. The results provided a theoretical basis for the construction of an efficient algal-bacterial symbiosis system for the treatment of livestock and poultry wastewater as well as the efficient flocculation of the algal-bacterial system.
为了解决传统藻菌共生系统对高氨废水耐受性差以及生物质回收的问题,提出了一种将硝化细菌生物制剂与普通菌相结合的新型共生系统。结果表明,调整藻菌体积比对废水处理性能、微藻生长及絮凝效果有影响。在藻菌最佳体积比为1:3时,总氮(TN)、氨氮(NH₃-N)和化学需氧量(COD)的去除率分别为50%、70%和83%。高浓度氨氮会对微藻光合作用产生一定抑制作用,但合适的接种比例可缓解这种压力并提高微藻生长速率。在最佳接种比例下,胞外聚合物中蛋白质(PN)和多糖(PS)含量分别为125.16和73 mg/L,诱导了更强的保护机制并增强了藻菌间的协同效应。此外,随着微藻初始接种量的减少,藻菌系统的絮凝效率从15%提高到30%。该结果为构建处理畜禽废水的高效藻菌共生系统以及藻菌系统的高效絮凝提供了理论依据。