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Nitrogen Removal via Nitrite from Seawater Contained Sewage

机译:通过亚硝酸盐去除海水中的污水中的氮

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摘要

Under the control of both pH and the concentration of free ammonia (FA), the nitrification–denitrification via nitrite pathway was accomplished in SBR to achieve enhanced biological nitrogen removal from seawater contained wastewater, which is used to flush toilet, under relatively high salinity. Several parameters including salinity, temperature, pH, and NH_4~+-N loading rate were studied to evaluate their effects. The results indicate that at different salinity the nitrogen removal efficiency is relative to ammonia-nitrogen loading rate. The nitrogen removal efficiency reaches above 90% when the NH_4~+-N loading does not exceed 0.15 kg NH_4~+-N/kgMLSS d. With the salinity increasing, the ammonia-nitrogen loading rate should be lowered to obtain high removal efficiency. The evaluation of temperature effect shows that nitrogen removal efficiency is promoted twice when reaction temperature is elevated from 20 to 30°C. Moderately high pH in the range of 7.5–8.5 has advantage to achieve effective nitrification–denitrification via nitrite, the process of which is caused by the selective inhibition of free ammonia (FA).
机译:在pH值和游离氨(FA)浓度的控制下,在SBR中通过亚硝酸盐途径进行了硝化-脱氮反应,以提高含盐量较高的海水中的生物氮的去除率,该废水用于冲水马桶。研究了盐度,温度,pH和NH_4〜+ -N加载速率等几个参数,以评估其效果。结果表明,在不同盐度下,脱氮效率是相对于氨氮负载率的。当NH_4〜+ -N负荷不超过0.15 kg NH_4〜+ -N / kgMLSS d时,脱氮效率达到90%以上。随着盐度的增加,应降低氨氮的负载量以获得较高的去除效率。温度效应的评估表明,当反应温度从20升高到30℃时,脱氮效率提高了两倍。 pH值在7.5-8.5的范围内适度较高,具有通过亚硝酸盐实现有效硝化-反硝化的优势,该过程是由选择性抑制游离氨(FA)引起的。

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