首页> 美国政府科技报告 >Some Aspects of Analytical Chemistry as Applied to Water Quality Assurance Techniques for Reclaimed Water: The Potential Use of X-Ray Fluorescence Spectrometry for Automated on-Line Fast Real-Time Simultaneous Multi-Component Anal
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Some Aspects of Analytical Chemistry as Applied to Water Quality Assurance Techniques for Reclaimed Water: The Potential Use of X-Ray Fluorescence Spectrometry for Automated on-Line Fast Real-Time Simultaneous Multi-Component Anal

机译:分析化学应用于再生水水质保证技术的一些方面:X射线荧光光谱法在自动在线快速实时同时多组分肛门中的潜在用途

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The potential use of isotopically excited energy dispersive X-ray fluorescence (XRF) spectrometry for automated on line fast real time (5 to 15 minutes) simultaneous multicomponent (up to 20) trace (1 to 10 parts per billion) analysis of inorganic pollutants in reclaimed water was examined. Three anionic elements (chromium 6, arsenic and selenium) were studied. The inherent lack of sensitivity of XRF spectrometry for these elements mandates use of a preconcentration technique and various methods were examined, including: several direct and indirect evaporation methods; ion exchange membranes; selective and nonselective precipitation; and complexation processes. It is shown tha XRF spectrometry itself is well suited for automated on line quality assurance, and can provide a nondestructive (and thus sample storage and repeat analysis capabilities) and particularly convenient analytical method. Further, the use of an isotopically excited energy dispersive unit (50 mCi Cd-109 source) coupled with a suitable preconcentration process can provide sufficient sensitivity to achieve the current mandated minimum levels of detection without the need for high power X-ray generating tubes.

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