首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Performance of real-scale anaerobic baffled reactor-swim bed tank system in treating fishmeal wastewater
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Performance of real-scale anaerobic baffled reactor-swim bed tank system in treating fishmeal wastewater

机译:鱼粉废水处理实际厌氧挡板反应器 - 游泳床罐系统的性能

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This study evaluates the process performance of a real-scale anaerobic baffled reactor (ABR) coupled with swim bed tank (SBT) as an aerobic post-treatment process in treating fishmeal wastewater discharged from an actual fishmeal processing factory in Bali, Indonesia. The industrial wastewater released from the aforementioned factory contains high concentrations of organic COD (more than 10 g COD center dot L-1) and ammonia (100 to 200 mg-N center dot L-1). During the study period, ABR demonstrated a high organic removal of 95.7 +/- 2.9%, with an organic loading rate of 2.1 +/- 1.3 kg COD center dot m(-3)center dot day(-1). Furthermore, the average total COD influent and effluent of the proposed system were 37,800 +/- 15,000 mg COD center dot L(-1)and 435 +/- 113 mg COD center dot L-1, respectively, during the entire experimental period. Based on the determination of volatile fatty acids (VFAs) and microbial community analysis of the ABR-retained sludge, the first and second columns of the ABR were utilized as hydrolysis zones and the third column functioned as an acidification zone. The remaining columns were used for methane production and as final removal zones. The results concluded that this system has the potential to treat fishmeal wastewater under onsite industrial conditions.
机译:本研究评估了与游泳床罐(SBT)相结合的真正鳞片膨胀的反应堆(ABR)的过程性能,作为一种在印度尼西亚巴厘岛实际的鱼粉加工厂排放的鱼粉废水中的有氧性后处理过程。从上述工厂释放的工业废水含有高浓度的有机鳕鱼(超过10g COD中心点L-1)和氨(100至200 mg-N中心点L-1)。在研究期间,ABR显示出高有机去除95.7 +/- 2.9%,有机加载速率为2.1 +/- 1.3千克COD中心点M(-3)中心点(-1)。此外,在整个实验期间,所提出的系统的平均总鳕鱼流量和流出物的平均总鳕鱼流入和流出物分别为37,800 +/- 15,000mg Cod中心点L(-1)和435 +/- 113mg Cod中心点L-1。基于挥发性脂肪酸(VFAs)和ABR保留污泥的微生物群落分析,ABR的第一和第二塔作为水解区和用作酸化区的第三​​柱。剩余的柱用于甲烷生产和最终的去除区。结果得出结论,该系统有可能根据现场工业条件治疗鱼粉废水。

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