首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Nitrification-Denitrification of Opto-electronic Industrial Wastewater by Anoxic/Aerobic Process
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Nitrification-Denitrification of Opto-electronic Industrial Wastewater by Anoxic/Aerobic Process

机译:厌氧/好氧工艺对光电工业废水的硝化-反硝化

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This research focused on the biological treatment of high-strength organic nitrogen wastewater, and presented the results from the nitrification and denitrification of an actual industrial wastewater using anoxic/aerobic process. The optoelectronic industrial wastewater often contains a significant quantity of organic nitrogen compounds and has a ratio over 95% in organic nitrogen (Org-N) to total nitrogen (T-N). In this study, a 2-stage anoxic/aerobic process was established and evaluated the efficiency of wastewater treatment. Raw wastewater from an actual TFT-LCD manufacturing plant was obtained as the sample for looking into the feasibility of opto-electronic industrial wastewater treatment. After toxicity identification evaluation (TIE) test of raw wastewater, the inhibition was related to organic nitrogen (TMAH, MEA) and unionized ammonia (free ammonia, NH_3) with high pH. Therefore, pH control is important for biological treatment of high-strength organic nitrogen industrial wastewater. Besides, hydraulic retention time (HRT) and mixed liquor recycled rate (MLR) were controlled independently to distinguish between the effects of these two factors. Under suitable HRT (>1.7 d) and mixed liquor recycled rate (<4Q), effluent of NH_4-N, NO_3-N + NO_2-N, and COD can fall below 20 mg/L, 30 mg/L, and 80 mg/L. The anoxic/aerobic process removed 92-98% of the carbon source; approximately 80% of TKN; 70% of T-N
机译:这项研究的重点是高强度有机氮废水的生物处理,并提出了使用厌氧/好氧工艺对实际工业废水进行硝化和反硝化的结果。光电工业废水通常包含大量有机氮化合物,有机氮(Org-N)与总氮(T-N)的比例超过95%。在这项研究中,建立了一个二级缺氧/好氧工艺,并评估了废水处理的效率。从实际的TFT-LCD生产工厂中获得的原废水作为样本,用于研究光电子工业废水处理的可行性。对原废水进行毒性鉴定评估(TIE)试验后,抑制作用与高pH值下的有机氮(TMAH,MEA)和联合氨(游离氨,NH_3)有关。因此,pH控制对于高强度有机氮工业废水的生物处理至关重要。此外,独立控制水力停留时间(HRT)和混合液回收率(MLR),以区分这两个因素的影响。在合适的HRT(> 1.7 d)和混合液再循环率(<4Q)下,NH_4-N,NO_3-N + NO_2-N和COD的出水量可以分别低于20 mg / L,30 mg / L和80 mg /升缺氧/好氧过程去除了92-98%的碳源。 TKN的大约80%; T-N的70%

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