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Evaluation for the distribution of fouling deposition on the microfiltration membrane using high frequency ultrasound

机译:使用高频超声评估微滤膜上的污垢沉积分布

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Distribution of fouling may largely affect flux of the microfiltration membrane, in which its formation is related to several factors such as operating pressure, flow rate, concentration/composition of feed solution, and membrane material. It therefore is essential to evaluate fouling distribution on microfiltration membranes before they will be further applied. In this study, an attempt was explored to develop methods and techniques for measuring the fouling distribution using a 35 MHz high frequency ultrasound system. The experiments were carried out from a waste water treatment system that is composed of polyvinylidene fluoride (PVDF) membrane with nominal pore size of 0.22 μm and feed solutions with the humic acid solution of 4 ppm. The operating pressure and flow rate were respectively maintained at 1 bar and 0.22 L/min. Areas of those filtration membranes after 5, 15, 30, 60, and 100 minutes filtration durations were raster scanned by the high frequency ultrasound system. The peak-to-peak voltage (Vpp) of ultrasonic signals reflected from the surface of membrane was calculated for the reconstruction of C-scan images. The average Vpp and flux of filtrate were found to decrease exponentially with the increase of filtration duration. In accordance with the flux of filtrate approached to saturate, the variation of average Vpp tended to be nearly minimum. It can be readily observed for the changes of average Vpp that decreased from 3.02±0.05 V at the beginning of filtration to 1.73±0.25 V at 100 min duration after filtration with the humic acid solution of 4 ppm. Moreover, the fouling of the humic acid on the membrane was not homogeneously distributed. The acoustic impedance mismatch between the fouling of humic acid and PVDF membrane led the amplitude of ultrasonic signals reflected from the membrane surface to decrease with the increase of fouling deposition. C-scan results indicated that fouling-- deposition is a both temporal- and spatial-dependent process and that may be feasible to be sensitively and rapidly evaluated by high frequency ultrasound image incorporated with the analysis method.
机译:结垢的分布可能在很大程度上影响微滤膜的通量,其中微滤膜的形成与几个因素有关,例如操作压力,流速,进料溶液的浓度/组成和膜材料。因此,在进一步应用微滤膜之前,必须先评估其结垢分布。在这项研究中,尝试开发一种使用35 MHz高频超声系统测量结垢分布的方法和技术。实验是在废水处理系统中进行的,该系统由标称孔径为0.22μm的聚偏二氟乙烯(PVDF)膜和含4 ppm腐殖酸的进料溶液组成。工作压力和流速分别保持在1 bar和0.22 L / min。在5、15、30、60和100分钟的过滤时间后,通过高频超声系统对那些过滤膜的区域进行光栅扫描。计算从膜表面反射的超声信号的峰峰值电压(V pp ),以重建C扫描图像。发现平均V pp 和滤液通量随着过滤持续时间的增加呈指数下降。根据接近饱和的滤液通量,平均V pp 的变化趋于几乎最小。可以很容易地观察到平均V pp 的变化,从4 ppm的腐殖酸溶液过滤后100min的过滤开始时的3.02±0.05 V降低到过滤初期的1.73±0.25V。 。而且,腐殖酸在膜上的结垢不是均匀分布的。腐殖酸和PVDF膜结垢之间的声阻抗失配导致膜表面反射的超声信号幅度随着结垢沉积的增加而减小。 C扫描结果表明结垢- -- 沉积是一个与时间和空间有关的过程,通过结合分析方法的高频超声图像进行灵敏和快速的评估可能是可行的。

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