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MONITORING OF WATER QUALITY USING FLUORESCENCE TECHNIQUE PROSPECT OF ON-LINE PROCESS CONTROL

机译:在线过程控制的荧光技术在水质监测中的应用

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摘要

The wastewater from sewage processing plants shows characteristic fluorescence signatures when excited by UV light in the 240300 nm wavelength band. A typical signature is a spectrum having a broad band centered at about 350 nm and two relatively less intense bands centered at about 390 and 430 nm. Samples of settled sewage, treated in an aerobic digester, show a substantial reduction of the intensity of the 350 nm band and comparatively much smaller reduction of the strength of the other two bands. The biodegradable chromophoric constituent species are, therefore, considered to be the major contributors to the overall fluorescence within this band. The intensity of this band has been found to have a good correlation with the biochemical oxygen demand (BOD) parameter. This par- ameter is universally used for assessing the sewage strength and the suitability of the treated effluent for discharge into rivers or reservoirs. Therefore, the fluorescence technique is considered to have the po- tential for use in noninvasive continuous water quality monitoring thereby, enabling on-line process control in sewage treatment plants. However, fluorescence strength is affected by the PH of the sample, particularly at higher values. This has to be taken into account for the practical utilization of this tech- nique.
机译:来自污水处理厂的废水在240300 nm波段的紫外光激发下显示出特征性的荧光特征。典型的特征是具有在约350nm处居中的宽带和在约390nm和430nm处居中的两个相对较弱的带的光谱。在好氧消化池中处理的沉降污水样品显示出350 nm波段强度的显着降低,而其他两个波段的强度的降低相对较小。因此,可生物降解的发色成分被认为是该谱带内整体荧光的主要贡献者。已经发现该谱带的强度与生化需氧量(BOD)参数具有良好的相关性。该参数通常用于评估污水强度和经处理的废水排放到河流或水库的适用性。因此,荧光技术被认为具有用于无创连续水质监测的潜力,从而可以在污水处理厂中进行在线过程控制。但是,荧光强度受样品PH值的影响,特别是在较高值下。在实际使用此技术时必须考虑到这一点。

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