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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Non-invasive measurement of membrane scaling and cleaning in spiral-wound reverse osmosis modules by ultrasonic time-domain reflectometry with sound intensity calculation
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Non-invasive measurement of membrane scaling and cleaning in spiral-wound reverse osmosis modules by ultrasonic time-domain reflectometry with sound intensity calculation

机译:超声时域反射仪结合声强计算,无创测量螺旋缠绕反渗透模块中的膜结垢和清洁

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摘要

This study describes the ultrasonic time-domain reflectometry (UTDR) with a sound intensity calculation for monitoring membrane scaling and cleaning in a 4-inch spiral-wound reverse osmosis module. Three focused transducers with the frequency of 2.25 MHz were located equidistantly along the feed flow direction. The scaling experiments were carried out with 2.0 g/L calcium sulfate for 90 h fouling and the cleaning processes consisted of three phases: pure water flushing, immersion cleaning and acid-washing. According to this study, the ultrasonic response signals and the corresponding sound intensity gradually decreased to minimum with the fouling and deposition of the foulants on the membrane and then increased with the formation of fouling layer. The initial induction time in the change of sound intensity became shorter and the sound intensity became lower along the fluid direction during the fouling process. It was found that the CaSO4 scaling first precipitated near the downstream owing to the increased concentration polarization. Furthermore, the permeate flux and the sound intensity all recovered step by step with the cleaning processes. The results obtained by independent methods such as SEM and weight measurements were in good agreement with the observations by ultrasonic technology. Overall, this study confirms that the UTDR technique with a sound intensity calculation and modeling is capable to evaluate the membrane scaling and cleaning in spiral-wound modules.
机译:这项研究描述了一种超声时域反射仪(UTDR),它具有声强计算功能,用于监视4英寸螺旋缠绕反渗透模块中的膜结垢和清洁情况。频率为2.25 MHz的三个聚焦换能器沿进料流方向等距放置。用2.0 g / L硫酸钙进行结垢实验90小时,结垢,清洗过程包括三个阶段:纯水冲洗,浸入式清洗和酸洗。根据这项研究,随着污垢在膜上的沉积和沉积,超声响应信号和相应的声强逐渐减小到最小,然后随着结垢层的形成而增加。在结垢过程中,沿声强变化的初始感应时间变短,而声强沿流体方向变低。发现由于增加的浓度极化,CaSO 4的结垢首先在下游附近沉淀。此外,渗透通量和声强都随着清洁过程逐步恢复。通过独立的方法(如SEM和重量测量)获得的结果与超声技术的观察结果非常吻合。总的来说,这项研究证实了具有声音强度计算和建模功能的UTDR技术能够评估螺旋缠绕组件中的膜结垢和清洁情况。

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