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含海水污水的短程硝化反硝化

Nitrogen Removal from the Sewage Containing Seawater via Nitrite Pathway

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【作者】 于德爽彭永臻宋学起李梅

【Author】 Yu Deshuang, Peng Yongzhen, Song Xueqi,Li Mei(School of Municipal and Environmental Engineering, Harbin Institute of Technology, Harbin 150090, China)

【机构】 哈尔滨工业大学市政环境工程学院哈尔滨工业大学市政环境工程学院 哈尔滨150090哈尔滨150090哈尔滨150090

【摘要】 采用SBR工艺通过控制游离氨 (FA)浓度实现了含海水生活污水的短程硝化反硝化脱氮 ,并研究了不同海水盐度情况下 ,温度、pH值、NH+4 N负荷等诸因素对短程硝化反硝化的影响 .试验结果表明 :大生活用水范围内的海水盐度情况下仍可实现短程硝化反硝化 ,但不同海水盐度情况下的NH+4 N去除率与NH+4 N负荷有关 ,随着海水占生活污水比例的增加NH+4 N负荷应逐渐减少 .当NH+4 N负荷小于 0 1 5kg/(kg·d)时 ,短程硝化的NH+4 N去除率仍可达到 90 %以上 .升高温度有利于提高短程硝化脱氮效率 ,当温度从 2 0℃升高到 3 0℃时 ,亚硝化比增长速率增加 1倍 .反应温度应保持在 2 5℃~ 3 0℃ ,pH值的最佳范围为 7 5~ 8 5 .较高的进水 pH值有利于通过游离氨浓度控制亚硝酸型硝化的形成

【Abstract】 With control of the concentration of free ammonia (FA), shortened nitrification denitrification was accomplished in SBR to achieve enhanced nitrogen removal from the sewage containing seawater. Several parameters which included salinity, temperature, pH and NH + 4 N load were studied to evaluate their effects. The results of experiences indicated that shortened nitrification denitrification can be accomplished in sewage containing seawater with relatively high salinity. With various salinity, the nitrogen removal efficiency had relationship with the NH + 4 N load, there should be a lower NH + 4 N load when the salinity was high. The nitrogen removal efficiency reached above 90% when the NH + 4 N load was not exceed 0 15kg /(kg·d). Elevation of the temperature availed to higher nitrogen removal efficiency, this efficiency doubled when the reaction temperature was changed from 20℃ to 30℃. Relatively high value of pH, in the range of 7 5 and 8 5 had advantage to achieve effective shortened nitrification denitrification which caused by the selective inhibition of free ammonia(FA).

【基金】 国家科技部“十五”攻关课题 (2 0 0 1BA610A 0 9)
  • 【文献出处】 环境科学 ,Chinese Journal of Environmental Science , 编辑部邮箱 ,2003年03期
  • 【分类号】X703
  • 【被引频次】96
  • 【下载频次】538
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