Ultrasonic standing wave accelerates on-line measurement and prevents coating of a FTIR ATR flow cell

S. Radel, J. Schnoller, E. Benes, B. Lendl
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引用次数: 3

Abstract

It has been shown elsewhere that infrared (IR) spectroscopy can be successfully employed for the on-line monitoring of bio-processes. A horizontal attenuated total reflection (ATR) unit connected to a portable IR-cube was used here to measure the IR absorption spectra of supernatant and microorganisms separately. The common problem of bio-film formation on the ATR was addressed before, e.g. by chemical means. We present a novel method employing the principles of ultrasonic particle manipulation to avoid and potentially remove this coating brought about by the use of fermentation broth. A novel flow cell for a horizontal ATR was developed that decreases measurement time and the undesired formation of bio-films on the ATR surface. An ultrasonic standing wave (/spl sim/2 MHz) is built up between a horizontal transducer and the ATR crystal. Yeast cells in suspension were agglomerated within certain regions by the ultrasound field and therefore settled about 3-4 times faster on the ATR when the field was switched off compared to the slow sedimentation of freely dispersed cells. After the IR spectrum had been measured, the same sound field was used to actively lift the settled material from the optical sensitive surface which therefore could be rinsed away more effectively.
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超声波驻波加速了在线测量,防止了FTIR ATR流池的涂层
其他研究表明,红外光谱可以成功地用于生物过程的在线监测。采用水平衰减全反射(ATR)装置连接便携式红外立方体,分别测量上清液和微生物的红外吸收光谱。生物膜在ATR上形成的常见问题以前已经解决了,例如通过化学方法。我们提出了一种利用超声波颗粒操纵原理来避免和潜在地去除发酵液所带来的这种涂层的新方法。研制了一种新型的水平ATR流动池,减少了测量时间,减少了ATR表面生物膜的形成。在水平换能器和ATR晶体之间建立超声驻波(/spl sim/2 MHz)。悬浮中的酵母细胞在超声场作用下在一定区域内聚集,因此当超声场关闭时,酵母细胞在ATR上的沉降速度比自由分散的细胞沉降速度快3-4倍。在测量了红外光谱后,使用相同的声场主动地将沉淀的物质从光学敏感表面提起,从而可以更有效地冲洗掉。
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