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Visualisation of fouling during microfiltration of natural brown water by using wavelets of ultrasonic spectra

机译:利用超声波小波可视化天然棕水微滤过程中的结垢情况

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The fouling of microfiltration membranes by natural brown-coloured surface water was studied in situ by ultrasonic time-domain reflectometry. An ultrasonic measurement system consisting of a 7.5 MHz ultrasonic transducer, a pulser-receiver, a digital oscilloscope and a computer was connected to a laboratory-scale, flat-bed filtration module. The ultrasonic spectra were presented by line graphs and then transformed into wavelets. The latter presents the frequency spectrum of ultrasonic signals as the same function of time as in the line graphs. The ultrasonic frequency data indicated the first change at the membrane surface at 10 s. This could be seen more clearly by subtracting the zero-time waveform from the subsequent waveforms. The entire fouling process and fouling layer growth could be more clearly and qualitatively monitored by applying wavelets to the ultrasonic reflection data, which normally gives less quantitative factual data. Vertical lines on the time axis or horizontal lines on the frequency axis can be drawn to intersect the fouling peak and this data can then be extracted to plot amplitude of the fouling peak versus operation time or versus frequency. Such new curves portraying the growth of the fouling peak, even at extremely short-fouling times, provide interesting data on the fouling process. These ultrasonic results were supported by flux measurements and scanning electron microscopy (SEM) examinations of the original and fouled membrane surfaces.
机译:通过超声时域反射仪原位研究了天然棕色地表水对微滤膜的污染。由7.5 MHz超声换能器,脉冲接收器,数字示波器和计算机组成的超声测量系统已连接到实验室规模的平板过滤模块。超声谱线图表示,然后转换为小波。后者将超声信号的频谱显示为与线图中相同的时间函数。超声频率数据表明在10 s处膜表面的第一次变化。通过从后续波形中减去零时波形,可以更清楚地看到这一点。通过将小波应用于超声反射数据,可以更清晰,定性地监控整个结垢过程和结垢层的生长,而超声波数据通常不会提供定量的事实数据。可以绘制时间轴上的垂直线或频率轴上的水平线以与结垢峰相交,然后可以提取该数据以绘制结垢峰的幅度与运行时间或频率的关系。这样的新曲线描绘了污垢峰的增长,即使在极短的污垢时间,也提供了有关污垢过程的有趣数据。这些超声结果得到通量测量和原始膜表面污染的扫描电子显微镜(SEM)的支持。

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