首页> 外文会议>International Conference on Civil, Architectural and Hydraulic Engineering >Nitrogen Removal in Full-Scale 'Anoxic Anaerobic Micro-aerobic Aerobic (A_2O_2)' System Treating Wastewater of Nitrogenous Fertilizer Factory
【24h】

Nitrogen Removal in Full-Scale 'Anoxic Anaerobic Micro-aerobic Aerobic (A_2O_2)' System Treating Wastewater of Nitrogenous Fertilizer Factory

机译:全尺度氮去除“缺氧厌氧微氧体有氧(A_2O_2)”系统处理氮肥厂的废水

获取原文

摘要

A full-scale nitrogen removal system composed of an anoxic tank, an anaerobic tank, a micro-aerobic tank and an aerobic tank (A_2O_2) was established to treat 15,000 t/d high strength ammonia wastewater of a nitrogenous fertilizer factory. After the first stage of commissioning test, the stable operation of short-cut nitrification and denitrification has been realized at the normal temperature. The results showed that under the conditions of COD/TN ratio of only 1~2, the average removal efficiency of COD, NH_3-N and TN achieved 80%, 96% and 54%, respectively without extra addition of alkalinity or carbon source, and the effluent quality was better than the requirement of the (draft for comment). The variation of nitrogen compounds concentration and operational parameters of pH, DO were investigated in each tank of A_2O_2 system. The results showed that the short-cut nitrification was stabilized in the micro-aerobic tank through the control of DO concentration (about 0.6 mg/L). Although the pH of micro-aerobic tank was only 6.6 which inhibited the growth of nitrite bacteria, the nitrite accumulation ratio reached about 48%, closing to the criteria for judgment of short-cut nitrification of 50%. During operation, the process parameters of the A_2O_2 system such as reflux ratio of the mixed liquids, sludge load, sludge concentration, sludge age and SVI were all maintained in normal range, and small fluctuation of process parameters didn't show obvious influence on short-cut nitrification.
机译:建立了一种由缺氧罐,厌氧罐,微食罐和有氧罐(A_2O_2)组成的全尺寸氮去除系统,以治疗氮肥厂的15,000吨/吨高强度氨废水。在调试试验的第一阶段后,在常温下实现了短切硝化和脱氮的稳定运行。结果表明,在COD / TN比的条件下仅为1〜2,COD,NH_3-N和TN的平均除去效率分别在不额外加入碱度或碳源的情况下实现80%,96%和54%,污水质量优于<合成氨工业水污染排放标准>(评论草案)。在A_2O_2系统的每个罐中研究了氮化合物浓度和pH的操作参数的变化。结果表明,通过对浓度(约0.6mg / L)的控制,在微食罐中稳定在微量化罐中。虽然微食罐的pH仅为6.6,但抑制亚硝酸盐细菌的生长,亚硝酸盐累积率达到约48%,关闭判断核硝化硝化率的标准50%。在操作期间,A_2O_2系统的过程参数如混合液体,污泥载荷,污泥浓度,污泥年龄和SVI的回流比在正常范围内都保持在正常范围内,并且对过程参数的小波动并没有显示出明显的影响 - 硝化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号