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Efficient nitrogen removal via simultaneous nitrification and denitrification in a penicillin wastewater biological treatment plant

机译:在青霉素废水生物处理厂中通过同时硝化和反硝化有效去除氮

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摘要

Nitrogen-removal performance was investigated in a penicillin wastewater biological treatment plant (P-WWTP) reconstructed from a cyclic activated sludge system (CASS) tank designed for simultaneous nitrification and denitrification (SND). Good performance was obtained during a 900-day operation period, as indicated by effluent chemical oxygen demand (COD), total nitrogen (TN) and ammonia nitrogen (NH_3-N) values of 318 ± 34, 28.7 ± 2.4 and <0.2mgL~(-1) when the influent COD, total Kjeldahl nitrogen (TKN) and NH_3-N were 3089 ± 453, 251.4 ± 26.5 and 124.8 ± 26.8mgL~(-1), respectively. Nitrification and denitrification occurred at different spaces, that is, 71.4% of TN removal occurred in the first 40% of the aeration tank, while 68.8% of the TKN removal occurred in 40-100% of the aeration tank. Sufficient easily biodegradable organics (EBO) in wastewater were key to the occurrence of SND. The denitrification rate under aeration conditions was 10.7mgNg VSS~(-1) h~(-1) when EBO were sufficient, but 0.98mgNg VSS~(-1) h~(-1) when EBO were completely degraded. Nitrification primarily occurred in the rear of the aeration tank owing to the competition for oxygen between carbonaceous oxidation and nitrification. The nitrification rate was only 7.13 mg NOD g VSS~(-1) h~(-1) at the beginning of the reaction, but 14.7 mg NOD g VSS~(-1) h~(-1) when EBO were completely degraded. These results will facilitate the improvement of nitrogen removal by existing WWTPs.
机译:在青霉素废水生物处理厂(P-WWTP)中对脱氮性能进行了研究,该厂是从设计用于同时硝化和反硝化(SND)的循环活性污泥系统(CASS)池中重建的。废水化学需氧量(COD),总氮(TN)和氨氮(NH_3-N)值分别为318±34、28.7±2.4和<0.2mgL〜 (-1)当进水COD时,凯氏总氮(TKN)和NH_3-N分别为3089±453、251.4±26.5和124.8±26.8mgL〜(-1)。硝化作用和反硝化作用发生在不同的空间,即71.4%的TN去除发生在曝气池的前40%,而TKN去除的68.8%发生在曝气池的40-100%。废水中足够的易生物降解的有机物(EBO)是SND发生的关键。当EBO足够时,曝气条件下的反硝化率为10.7mgNg VSS〜(-1)h〜(-1),而当EBO完全降解时,脱硝率为0.98mgNg VSS〜(-1)h〜(-1)。硝化主要发生在曝气池的后部,这是由于碳质氧化和硝化之间存在氧气竞争。反应开始时硝化速率仅为7.13 mg NOD g VSS〜(-1)h〜(-1),但当EBO完全降解时,硝化速率为14.7 mg NOD g VSS〜(-1)h〜(-1)。 。这些结果将促进现有污水处理厂脱氮的改善。

著录项

  • 来源
    《Environmental Technology》 |2014年第24期|2885-2893|共9页
  • 作者单位

    State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control of Chemical Processes, East China University of Science and Technology, Shanghai 200237, People's Republic of China;

    State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control of Chemical Processes, East China University of Science and Technology, Shanghai 200237, People's Republic of China;

    State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control of Chemical Processes, East China University of Science and Technology, Shanghai 200237, People's Republic of China;

    State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control of Chemical Processes, East China University of Science and Technology, Shanghai 200237, People's Republic of China;

    State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control of Chemical Processes, East China University of Science and Technology, Shanghai 200237, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    penicillin wastewater; simultaneous nitrification and denitrification; ammonia; total nitrogen; mechanism;

    机译:青霉素废水;同时硝化和反硝化;氨;总氮机制;

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