工业水处理 ›› 2026, Vol. 46 ›› Issue (3): 65-73. doi: 10.19965/j.cnki.iwt.2025-0617

• 试验研究 • 上一篇    下一篇

耐酸微藻贴附培养处理稀土矿高氨氮尾水的性能

王华生1,2(), 周丰秋1,2(), 周振宁1,2, 陈丹1,2, 李佳棋1,2   

  1. 1. 江西理工大学土木与测绘工程学院,江西 赣州,341000
    2. 江西理工大学河流源头水生态保护江西省重点实验室,江西 赣州,341000
  • 收稿日期:2025-09-23 出版日期:2026-03-20 发布日期:2026-03-30
  • 通讯作者: 王华生
  • 作者简介:

    周丰秋(1996— ),硕士研究生,E-mail:

  • 基金资助:
    国家自然科学基金项目(21467009)

Study on the treatment performance of high ammonia nitrogen tail water from rare earth mines by acid-tolerant microalgae with adherent culture

Huasheng WANG1,2(), Fengqiu ZHOU1,2(), Zhenning ZHOU1,2, Dan CHEN1,2, Jiaqi LI1,2   

  1. 1. School of Civil and Surveying Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China
    2. Jiangxi Provincial Key Laboratory of River Headwater Ecological Protection, Jiangxi University of Science and Technology, Ganzhou 341000, China
  • Received:2025-09-23 Online:2026-03-20 Published:2026-03-30
  • Contact: Huasheng WANG

摘要:

针对赣南离子型稀土矿区尾水氨氮高(100~150 mg/L)、pH低(3.5~5.0)且碳磷匮乏的特点,构建了以回收瓦楞纸为载体的耐酸微藻贴附培养系统,通过调控碳源(NaHCO3)与磷源(KH2PO4)投加,揭示了营养元素对微藻生物膜形成及污染物去除效果的影响。结果表明,当NaHCO3投加量为400 mg/L时,总生物量较悬浮体系提高40%,微藻贴附率提升至58%,6 d内NH4 +-N和TN去除率分别达98%和90%;投加30 mg/L KH2PO4微藻系统可在48 h将NH4 +-N去除率提升至94%。微生物群落分析显示,体系中假单胞菌门和蓝细菌门为优势菌群,通过分泌胞外聚合物促进生物膜稳定生长。该研究为稀土矿区酸性尾水的低成本生物治理提供了创新性解决方案。

关键词: 稀土废水, 微藻, 贴附培养, 瓦楞纸, 废水处理

Abstract:

To solve the problem of high ammonia nitrogen concentration (100-150 mg/L), low pH (3.5-5.0) and lack of carbon and phosphorus in tailwater in the ionic rare earth mining area of southern Gannan, an acid-tolerant microalgae attachmented culture system based on recycled corrugated paper was constructed in this study. By regulating the dosing strategy of carbon source (NaHCO3) and phosphorus source (KH2PO4), the effects of nutrients on microalgae biofilm formation and pollutant removal was revealed. The results showed that when the dosage of NaHCO3 was 400 mg/L, the total biomass increased by 40% compared to the suspension system, the microalgae attachment rate increased to 58%, and the NH4 +-N and TN removal rates reached 98% and 90%, respectively, within 6 days. The addition of 30 mg/L KH2PO4 microalgae system could increase the NH4 +-N removal rate to 94% within 48 hours. Microbial community analysis showed that Pseudomonas and Cyanobera were the dominant species, which synergistically promoted biofilm stability through the secretion of extracellular polymers. This study provided an innovative solution for low-cost biological treatment of acidic tailwater in rare earth mining areas.

Key words: rare earth wastewater, microalgae, adherent culture, corrugated paper, wastewater treatment

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