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In Situ Ultrasonic Monitoring of Aluminum Ion Hydrolysis in Aqueous Solutions: Instrumentation, Techniques, and Comparisons to pH-Metry

机译:水溶液中铝离子水解的原位超声监测:仪器,技术和与pH计的比较

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摘要

A cross-disciplinary experimental study related to both ultrasonic instrumentation and analytical chemistry is reported. The hydrolysis process was conducted by time-resolved titration in a fully automated manner. Acquired ultrasonic records were processed in order to estimate the propagation delay of the ultrasonic pulse in the evolving medium. The limited hardware resolution of two different ultrasonic instruments employed was improved by calculating the center of gravity of the recorded pulses. Application of signal averaging to the acquisition of raw records in the custom-built instrument eliminated spurious records almost completely. The estimated ultrasonic delays were corrected for temperature changes that were measured independently. This procedure transformed the ultrasonic titration curves into two almost straight lines that intersected at the equivalence point. The results obtained showed that it was possible to detect changes as small as 200 ppm by using the ultrasonic instrument in situ at significantly lower setting times compared to a conventional pH-meter.
机译:报告了与超声仪器和分析化学有关的跨学科实验研究。通过时间分辨滴定以全自动方式进行水解过程。处理获得的超声记录,以便估计超声脉冲在不断发展的介质中的传播延迟。通过计算记录脉冲的重心,可以改善所使用的两种不同超声仪器的有限硬件分辨率。将信号平均应用于定制仪器中原始记录的获取,几乎完全消除了虚假记录。对于独立测量的温度变化,校正了估计的超声延迟。此过程将超声滴定曲线转换为两条等价线,在等值点处相交。所获得的结果表明,与传统的pH计相比,通过使用超声波仪器就可以在低得多的设置时间就地检测到200 ppm的变化。

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