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镁离子浓度对SBR生物除磷系统的影响
引用本文:李幸,高大文,刘琳.镁离子浓度对SBR生物除磷系统的影响[J].环境科学,2011,32(7):2036-2040.
作者姓名:李幸  高大文  刘琳
作者单位:1. 东北林业大学环境科学系,哈尔滨,150040
2. 东北林业大学环境科学系,哈尔滨150040 哈尔滨工业大学城市水资源与水环境国家重点实验室,哈尔滨150090
基金项目:全国优秀博士学位论文作者专项研究基金项目(2005044)
摘    要:通过不投加镁离子(R1)、投加8 mg/L镁离子(R2)以及投加24 mg/L镁离子(R3),分析镁离子对SBR生物除磷体系的影响.结果表明,适量镁离子的添加会加速聚磷菌的富集,有助于维持生物除磷系统的稳定运行.在稳定运行阶段,镁离子不充足的系统(R1)磷酸盐去除率逐渐下降至50%以下,系统呈恶化趋势,而在镁离子充足的...

关 键 词:生物除磷  镁离子  序批式反应器(SBR)  水处理  聚磷菌
收稿时间:2010/7/21 0:00:00
修稿时间:2010/9/23 0:00:00

Effect of Magnesium Iron Content on the Biological Phosphorus Removal System in SBR
LI Xing,GAO Da-wen and LIU Lin.Effect of Magnesium Iron Content on the Biological Phosphorus Removal System in SBR[J].Chinese Journal of Environmental Science,2011,32(7):2036-2040.
Authors:LI Xing  GAO Da-wen and LIU Lin
Institution:Department of Environmental Science, Northeast Forestry University, Harbin 150040, China.
Abstract:This study investigated the effect of magnesium iron content on the enhanced biological phosphorus removal system, which performed differently at magnesium content of 0mg/L, 8mg/L and 24mg/L (R1-R3). The results indicated appropriate Mg addition could enrich phosphorus accumulating organisms and keep stable running. During the steady state period, phosphorus removal rate declined to below 50% gradually, moreover, the system tended to deteriorate with the shortage of magnesium in R1.However, the system with appropriate magnesium kept the higher phosphorus removal rate (more than 90%). The statistical analysis of the experimental data also showed a strong correlation between Mg and phosphorus concentrations in R2 and R3, the ratios of Mg and P were 0.29-0.59 and 0.25-0.54 in two reactors respectively. In the anaerobic phase of EBPR, the magnesium content, the absolute value of ORP and the phosphates release had a correlation. Meanwhile, magnesium was released together with phosphates in the anaerobic phase, and that would uptake under aerobic conditions. Thus it was obvious that magnesium played a key role on the biological phosphorus removal system.
Keywords:biological phosphorus removal  mg2+  sequencing batch reactor (SBR)  water treatment  phosphorus accumulating organisms
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