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Biodegradability of oily wastewater using rotating biological contactor combined with an external membrane

机译:旋转生物接触器结合外膜对含油废水的生物降解能力

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Background A novel implementation of a hybrid membrane bioreactor (HMBR) has been studied in this paper. It is utilized as combination of rotating biological contractor (RBC) and an external membrane, as a new biological system for oily wastewater treatment. Methods Chemical oxygen demand (COD) and total petroleum hydrocarbon (TPH) as factors of Biodegradability has been evaluated. They are both compared together for different hydraulic retention times (HRTs) and petroleum pollution concentrations in RBC and HMBR. The ratio of TPH to COD of Molasses has been varied between 0.2 to 0.8 at two HRTs of 18 and 24 hours while the temperature, pH and dissolved oxygen were kept in the range of 20-25°C, 6.5-7.5, and 2-3.5 mg/l, respectively. Results The best TPH removal efficiency (99%) was observed in TPH/COD = 0.6 and HRT = 24 hr in HMBR and Removal efficiency was decreased in the ratios above 0.6 in both bioreactors. Conclusions The experimental results showed that HMBR had higher treatment efficiency than RBC at all ratios and HRTs.
机译:背景技术本文研究了一种新型的混合膜生物反应器(HMBR)。它被用作旋转生物承包商(RBC)和外膜的组合,是一种用于处理含油废水的新型生物系统。方法评估了化学需氧量(COD)和总石油烃(TPH)作为生物降解性的因素。将它们分别比较了不同的水力停留时间(HRT)和RBC和HMBR中的石油污染浓度。在两个HRT分别为18和24小时的情况下,糖蜜的TPH与COD的比率在0.2至0.8之间变化,而温度,pH和溶解氧保持在20-25°C,6.5-7.5和2-的范围内。分别为3.5 mg / l。结果在TPBR / COD = 0.6和HRT = 24 hr中,在HMBR中观察到最佳的TPH去除效率(99%),并且两个生物反应器中的去除效率均以高于0.6的比率降低。结论实验结果表明,HMBR在所有比例和HRT下均具有比RBC更高的治疗效率。

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