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Treatment of dyeing wastewater using submerged membrane bioreactor

机译:浸没式膜生物反应器处理印染废水

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This study was carried out to evaluate the efficiency of aerobic submerged hollow fiber membrane bioreactor (HFMBR) in the removal of direct fast red dye-CI 81 from textile waste-water. The effect of hydraulic retention time (HRT), initial dye concentration, and transmem-brane pressure (TMP) on the performance of submerged HFMBR was studied. The removal rate of chemical oxygen demand was found to increase with the increasing of HRT and decrease with increasing initial dye concentration and TMP. The rate of dye removal was found to increase with increasing HRT and decrease with the increasing TMP. The optimum color removal was obtained at initial dye concentration of 150-200 ppm. A mass transfer model for the dye removal using submerged membrane bioreactor system was developed and verified. The results revealed that there is a remarkable agreement between the theoretical results and experimental results with a deviation of 14.83%. The membrane fouling was investigated using electron dispersive X-ray (EDX) and scanning electron microscope (SEM) and compared with the EDX and SEM of the original one. SEM images revealed that there are some geometrical changes that occur in the membrane pores with fouling, while EDX mapping showed that most of the foulants deposited on the inner surface of the fiber.
机译:进行这项研究以评估好氧浸没式中空纤维膜生物反应器(HFMBR)从纺织废水中去除直接固色红色染料CI 81的效率。研究了水力停留时间(HRT),初始染料浓度和跨膜压(TMP)对浸没式HFMBR性能的影响。发现化学需氧量的去除率随HRT的增加而增加,随初始染料浓度和TMP的增加而减少。发现染料去除率随HRT的增加而增加,而随TMP的增加而减少。在初始染料浓度为150-200 ppm时可获得最佳的脱色效果。建立并验证了使用浸没膜生物反应器系统去除染料的传质模型。结果表明,理论结果与实验结果之间存在显着的一致性,偏差为14.83%。使用电子弥散X射线(EDX)和扫描电子显微镜(SEM)研究膜的结垢情况,并将其与原始膜的EDX和SEM进行比较。 SEM图像显示,随着结垢,膜孔中发生了一些几何变化,而EDX测绘表明,大多数结垢沉积在纤维的内表面。

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