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首页> 外文期刊>Proceedings of the Institution of Civil Engineers >Dissolved oxygen and idle time effects on sewage bioremediation
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Dissolved oxygen and idle time effects on sewage bioremediation

机译:溶解氧和闲置时间对污水生物修复的影响

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This paper explores the effects of dissolved oxygen (DO) concentrations and idle time on the performance of aerated-sludge portable sewage systems for rapid deployment during natural calamities or warfare. Using synthetic sewage, three different reactors were operated at DO levels of 2-6 mg/l to determine the optimum DO for reactor performance, chemical oxygen demand (COD) and total organic content (TOC) removal, pH, conductivity and biomass concentrations. Low DO values result in very low COD removal efficiency, while DO levels over 6 mg/l are not significantly more efficient. The oxygen utilisation rate and specific oxygen utilisation rate were in the ranges 0.87-108 mg O_2/h and 0.44-0.895 mg O_2/g MLSS (mixed liquor suspended solids) per hour respectively for the three reactors. The highest achieved specific removal rate was 14 mg/g MLSS per hour and 6 mg/g MLSS per hour for COD and TOC respectively. Investigation of idle time (no-aeration) revealed that an idle time of less than 24 h results in low removal efficiency (COD and/or TOC) but the system recovers in the next 24 h; however, an idle period of 48 h or greater results in very poor efficiency and may cause permanent failure of the bioremediation process. The results of the present study can be applied to avoid system failure in a sewage treatment system as a result of, say, intermittent or sudden power shutdown.
机译:本文探讨了溶解氧(DO)浓度和空闲时间对充气污泥便携式污水处理系统在自然灾害或战争期间快速部署的性能的影响。使用合成污水,在2-6 mg / l的DO水平下运行三个不同的反应器,以确定反应器性能,化学需氧量(COD)和总有机物含量(TOC)去除,pH,电导率和生物质浓度的最佳DO。低溶解氧值会导致非常低的COD去除效率,而溶解氧水平超过6 mg / l不会明显更有​​效。对于三个反应器,每小时的氧气利用率和比氧气利用率分别在0.87-108 mg O_2 / h和0.44-0.895 mg O_2 / g MLSS(混合液悬浮固体)的范围内。对于COD和TOC,最高的特定去除率分别为每小时14 mg / g MLSS和每小时6 mg / g MLSS。对空闲时间(无充气)的研究表明,空闲时间少于24小时会导致去除效率(COD和/或TOC)低,但是系统会在接下来的24小时内恢复;但是,闲置48小时或更长的时间会导致效率非常低,并可能导致生物修复过程永久失效。本研究的结果可用于避免污水处理系统由于断断续续或突然断电而导致的系统故障。

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