海水养殖
富营养化
废水
光强度
生物量(生态学)
营养物
藻类
环境科学
制浆造纸工业
光合反应器
污水处理
光合作用
污染物
水生植物
水生生态系统
水产养殖
澄清器
环境化学
环境工程
生态学
光周期性
生物
工业废水处理
农学
光合效率
超连续谱
产量(工程)
化学
作者
Shangzong Li,Dongxu Xing,Cheng Sun,Jin Chun-ji,Yangguo Zhao,Mengchun Gao,Liang Guo
标识
DOI:10.1016/j.jenvman.2024.120595
摘要
Direct discharge of mariculture wastewater can lead to eutrophication, posing a threat to aquatic ecosystems. A novel Bacteria-Algae Coupled Reactor (BACR) offers advantages in treating mariculture wastewater, which can effectively remove pollutants while simultaneously obtaining microalgal products. However, there is limited information available on how illumination affects the cultivation of mixotrophic microalgae in this bacteria-algae coupling system. Therefore, a combined strategy of photoperiod and light intensity regulation was employed to improve the biological mariculture wastewater remediation, promote microalgae biomass accumulation, and increase the high-value product yield in this study. Optimal light conditions could effectively enhance microalgal carbohydrate, protein, lipid accumulation and photosynthetic activity, with the carbohydrate, protein and lipid contents reached 44.11, 428.57 and 399.68 mg/L, respectively. Moreover, excellent removal rates were achieved for SCOD, NH
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