植物-生物膜氧化沟中不同形态铁及根表铁膜与除磷的关系
针对传统氧化沟投资建造成本高,脱氮除磷效率较差的问题,在污染现场建设植物-生物膜氧化沟,通过室内曝气模拟试验和室外小试试验,研究了总磷(total phosphorus,TP)的去除与铁和曝气时间的关系以及美人蕉、茭白根表铁氧化物胶膜对污水中磷的吸附去除情况,了解不同形态铁和植物根表铁膜与除磷的关系。研究结果表明:不同形态铁及植物根表铁膜与污水中磷的去除密切相关。随着曝气时间的延长,污水中铁减少量呈现出逐级递增的趋势,当曝气时间为12 h时,铁减少量达到0.45 mg/L以上,铁减少量与曝气时间之间的相关性达到极显著水平(P〈0.01),而TP的减少量与铁减少量之间也呈现极显著的相关性(P〈0...
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Published in | 农业工程学报 Vol. 32; no. 5; pp. 228 - 232 |
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Main Author | |
Format | Journal Article |
Language | Chinese |
Published |
仲恺农业工程学院环境科学与工程学院,广州 510225
2016
华南农业大学,农业部华南热带农业环境重点实验室,广州 510642%华南农业大学,农业部华南热带农业环境重点实验室,广州 510642%仲恺农业工程学院环境科学与工程学院,广州,510225 |
Subjects | |
Online Access | Get full text |
ISSN | 1002-6819 |
DOI | 10.11975/j.issn.1002-6819.2016.05.032 |
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Summary: | 针对传统氧化沟投资建造成本高,脱氮除磷效率较差的问题,在污染现场建设植物-生物膜氧化沟,通过室内曝气模拟试验和室外小试试验,研究了总磷(total phosphorus,TP)的去除与铁和曝气时间的关系以及美人蕉、茭白根表铁氧化物胶膜对污水中磷的吸附去除情况,了解不同形态铁和植物根表铁膜与除磷的关系。研究结果表明:不同形态铁及植物根表铁膜与污水中磷的去除密切相关。随着曝气时间的延长,污水中铁减少量呈现出逐级递增的趋势,当曝气时间为12 h时,铁减少量达到0.45 mg/L以上,铁减少量与曝气时间之间的相关性达到极显著水平(P〈0.01),而TP的减少量与铁减少量之间也呈现极显著的相关性(P〈0.01)。小试试验中,3个系统出水磷含量及全Fe、Fe2+含量均有所降低,降低量表现出茭白系统〉美人蕉系统〉对照系统的规律;同时,美人蕉、茭白根表铁氧化物的沉积量随运行时间的延长而增加,且茭白根表铁膜数量及其吸附磷的数量均要高于美人蕉。该研究为植物-生物膜氧化沟工艺的改进及应用和推广提供了理论和实践依据。 |
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Bibliography: | phosphorus; Fe; pollution control; iron plaque; plant-biofilm oxidation ditch Liu Wen,Zhang Jiantao,Zhou Yipin,Chen Ping,Lei Zexiang,Liu Hui,Wu Qitang(1. Department of Environmental Science and Engineering, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, China; 2. South China Agricultural University, Key Laboratory of Agro-environments in Tropics, Ministry of Agriculture, Cruangzhou 510642, China) 11-2047/S Oxide ditch technology for wastewater treatment has been developed recently with such advantages as simple treatment flow, high stability, low capital construction investment and low operation cost. But the conventional oxide ditch still has many shortcomings as a type of deformation technology of activated sludge processes. For example sludge is easily suspending and expanding in the system, and single technology can bring lower removal efficiency on nitrogen and phosphorus(P). In order to solve these problems, a new type of oxidation ditch treatment system, plant-biofilm oxide ditch wa |
ISSN: | 1002-6819 |
DOI: | 10.11975/j.issn.1002-6819.2016.05.032 |