首页> 外文会议>Biomedical Engineering and Biotechnology (iCBEB), 2012 International Conference on >Quick Cultivation of Micro-aerobic Granular Sludge with Simultaneous Nitrogen Removal and the Influence of Oxygenation
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Quick Cultivation of Micro-aerobic Granular Sludge with Simultaneous Nitrogen Removal and the Influence of Oxygenation

机译:同时脱氮快速培养微需氧颗粒污泥及氧合作用的影响

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This work aims to accelerate the cultivation of micro-aerobic granular sludge with the ability of simultaneous COD and nitrogen removal from domestic wastewater. Expanded granular sludge bed (EGSB) reactor was used to investigate the granulation of excess sludge from wastewater treatment plant, as well as the influence of oxygenation on treatment effect and sludge property. It was found that it took about one month for sludge granulation at hydraulic retention time (HRT) of 6h. The reactor had a stable COD removal effect, whereas nitrogen removal was much influenced by oxygenation, and the optimal oxygenation rate was 2.2-2.8gO2/d, at which the removal efficiency of COD, ammonium and total nitrogen reached 91%, 85% and 81% respectively, and nitrogen removal rate was 1.7gN/d. The mature granules had diameter of 0.4-2mm with compact structure. And the settling velocity ranged in 20-92m/h as oxygenation rate was below 2.3gO2/d. Nevertheless, deteriorated sludge settlement and disintegration of granule occurred as oxygenation rate was increased to 2.8gO2/d.
机译:这项工作旨在加速微需氧颗粒污泥的培养,同时具有从生活污水中去除COD和氮的能力。利用膨胀式颗粒污泥床(EGSB)反应器研究了废水处理厂剩余污泥的颗粒化,以及氧合对处理效果和污泥性质的影响。发现在水力停留时间(HRT)为6h的情况下,污泥颗粒化需要大约一个月的时间。该反应器具有稳定的COD去除效果,而氮的去除受氧合的影响很大,最佳的氧合速率为2.2-2.8gO2 / d,此时COD,铵和总氮的去除效率分别达到91%,85%和90%。脱氮率分别为81%和1.7gN / d。成熟颗粒的直径为0.4-2mm,具有致密的结构。当氧合速率低于2.3gO2 / d时,沉降速度在20-92m / h范围内。然而,随着氧合速率增加到2.8gO2 / d,污泥沉降和颗粒分解变差了。

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