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Shortcut nitrifictaon denitrification proecss treating old landfill leachate ammonia nitrogen

机译:短程硝化反硝化工艺处理旧垃圾渗滤液氨氮

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The effects of dissolved oxygen concentration, temperature and other operation facters on shortcut nitrification and denitrification process for the treatment of landfill leachate was studied in a sequencing batch reactor. The results showed that the termination of aeration could effectively control the reaction at the phase of nitrite and could get stable removal rate of ammonia nitrogen and relatively high accumulation rate of nitrite when dissolved oxygen concentration rapidly increased. The increase of dissolved oxygen concentration and temperature were propitious to the rise of volume loading in the process of shortcut nitrification and denitrification. It is relatively appropriate that the dissolved oxygen concentration and temperature was respectively about 1.0mg/L and more than 25 °C in the process of shortcut nitrification and denitrification process treating landfill leachate. When pH value was not controlled in the reaction process and temperature ranged from 25 °C to 28 °C and the dissolved oxygen concentration of nitrification was about 1.0mg/L and the ammonia nitrogen loading was less than 0.25gNH4+-N/(L.d), the effluent concentration of ammonia nitrogen and nitrite was respectively less than 15mg/L and 1mg/L and the removal rate of total nitrogen more than 98%.
机译:在分批间歇式反应器中研究了溶解氧浓度,温度和其他操作因素对硝化和反硝化捷径处理垃圾渗滤液的影响。结果表明,当溶解氧浓度快速增加时,终止曝气可以有效地控制亚硝酸盐的反应,并能获得稳定的氨氮去除率和较高的亚硝酸盐积累率。速溶硝化反硝化过程中溶解氧浓度和温度的升高有利于体积负荷的增加。在快速硝化和反硝化过程中处理垃圾渗滤液的过程中,溶解氧的浓度和温度分别约为1.0mg / L和高于25°C是相对合适的。当反应过程中pH值不受控制,温度在25〜28℃之间时,硝化的溶解氧浓度约为1.0mg / L,氨氮负荷小于0.25gNH 4

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