首页> 外文期刊>Journal of Engineering & Applied Sciences >The Application of Moving Bed-Biofilm Sequencing Batch Reactor System in Decreasing Chemical Oxygen Demand (COD) Concentration on Palm Sugar Industry Wastewater
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The Application of Moving Bed-Biofilm Sequencing Batch Reactor System in Decreasing Chemical Oxygen Demand (COD) Concentration on Palm Sugar Industry Wastewater

机译:移动床 - 生物膜测序批量反应器系统在棕榈糖工业废水中降低化学需氧量(COD)浓度的应用

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5 /COD before and after the treatment was increased from 0.46-0.69. It happens presumably due to the hydrolysis process which convert the complex organic compound to simple organic compound. During the experiment, the optimum dissolved oxygen was 2.41-2.62 mg/L. The results showed the COD removal efficiency at 12, 18 and 24 h detention time, respectively are 84-89, 86-91 and 88-92%. The decreasing of organic loading rate will result in increased removal efficiency of COD. Therefore, the optimum organic loading rate to reach COD removal efficiency above 88% is in the range of 3.27-4.27 kg COD/m 3 day. The highest removal efficiency reached was 92% in 24 h detention time with organic loading, dissolved oxygen and pH effluent, respectively at 3.27 kg COD/m 3 day, 2.51 mg/L and 8.6. This study, showed that MBSBR system has an acceptable performance to treat wastewater with a high load of organic carbon at a certain detention time.]]>
机译:<![CDATA [棕榈糖废水是否具有高浓度的COD(3270-3773 MG / L),超过印度尼西亚的质量标准的环境和林业法第5号2014年第5号。移动床Biofilm测序批量反应器是一种能够在废水中耐受高浓度的有机物质的附着增长系统。通过不同的滞留时间12,18和24小时,在实验室凝固反应器中进行该实验。治疗前后BOD 5 cod的比例从0.46-0.69增加。可能是由于将复合有机化合物转化为简单的有机化合物的水解过程。在实验期间,最佳溶解氧为2.41-2.62mg / L.结果表明,12,18和24小时滞后时间的COD去除效率分别为84-89,86-91和88-92%。有机加载速率的降低将导致COD的去除效率增加。因此,达到鳕鱼去除效率高于88%的最佳有机加载率为3.27-4.27kg COD / m 3日。达到的最高去除效率为24小时滞留时间92%,有机负载,溶解的氧和pH流出物分别为3.27kg COD / m 3 日,2.51mg / L和8.6。本研究表明,MBSBR系统具有可接受的性能,可在一定的矛盾时间下用高负荷有机碳处理废水。]]>

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