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Treatment of antibiotics wastewater utilizing successive hydrolysis, denitrification and nitrification

机译:连续水解,反硝化和硝化处理抗生素废水

摘要

A process consisting of anaerobic hydrolysis, denitrification, and oxidation/nitrification was proposed for simultaneous removal of carbon and nitrogen from terramycin crystallizing mother solution (TCMS), and its performance was investigated by treating diluted TCMS in a lab-scale continuous flow column system. Direct denitrification-nitrification of diluted TCMS produced a significant residual of nitrate and nitrite, which disappeared 44 days after startup of anaerobic hydrolysis column The electron donors available to denitrification were increased by 6 times after diluted TCMS was treated in the hydrolysis column under an BET of 2.5 h or longer. The reaction rates of organics decomposition, nitrification, and denitrification were also significantly increased due to reduction of terramycin and decomposition of complicated molecules to small molecules during anaerobic hydrolysis. The specific denitrification rate and nitrification rate increased from 0.03 d(-1) and 0.01 d(-1) to 0.045 d(-1) and 0.021 d(-1) respectively after diluted TCMS (dilution ratio: 1.4) was hydrolyzed in anaerobic hydrolysis column at a hdraulic retention time (FMT) of 4 h.
机译:提出了一种由厌氧水解,反硝化和氧化/硝化组成的方法,用于同时从土霉素结晶母液(TCMS)中去除碳和氮,并通过在实验室规模的连续流色谱柱系统中处理稀释的TCMS来研究其性能。稀释的TCMS的直接反硝化-硝化会产生大量的硝酸盐和亚硝酸盐残留物,在厌氧水解柱启动后44天消失。在BET下,在水解柱中对稀释的TCMS进行处理后,可用于反硝化的电子供体增加了6倍。 2.5小时或更长时间。由于土霉素的还原和厌氧水解过程中复杂分子分解为小分子,有机物分解,硝化和反硝化的反应速率也显着提高。稀释的TCMS(稀释比:1.4)在厌氧条件下水解后,比反硝化率和硝化率分别从0.03 d(-1)和0.01 d(-1)增加到0.045 d(-1)和0.021 d(-1)水解柱,保留时间(FMT)为4小时。

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