液相色谱技术在工业废液中钛检测中的应用

IF 0.1 Q4 PHYSICS, MULTIDISCIPLINARY
M.P. Bayala, C. D'Angelo
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引用次数: 0

摘要

在图形和纺织工业中,不同工艺中使用的染料会产生液体废水。在这些废水中,发现了一种非常有趣的重金属,如钛(Ti)。阿根廷的环境法律框架目前没有考虑到这一因素,也没有已知的诊断技术负责对其进行测量。研究了激光诱导击穿光谱(LIBS)技术在工业废水中检测钛的可行性。在样品的组装过程中,考虑到其在施工水泥中的封装,建立了一种可能的稳定方法。在此基础上,四个样品用波特兰水泥和添加灰烬进行组装,这些灰烬是通过对图形工业的废水进行一系列物理化学处理而获得的。对于可能的LIBS定量过程,提出了薄等离子体模型,该模型建立了记录ti i的521.04 nm线的最佳击穿后和积分时间,作为研究的最终结果,击穿后停机时间为35μs,积分时间为300 ns。因此,本文旨在优化浓度分析和计算的测量参数,从而促进LIBS技术在这类测量中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
APPLICATION OF THE LIBS TECHNIQUE IN THE DETECTION OF Ti ININDUSTRIAL LIQUID EFFLUENTS
In the graphic and textile industries, liquid effluents are generated from the dyes used in the different processes. In these effluents, a heavy metal of great interest, such as Titanium (Ti), is found. This element is not currently contemplated in the environmental legal framework in Argentina, and there are no known diagnostic techniques that are responsible for its measurement. This work studied the feasibility of applying the Laser-Induced Breakdown Spectroscopy (LIBS)technique for detecting Ti in industrial effluents. In the assembly of samples, a possible stabilization method was established for their final disposal, considering the encapsulation in cement for construction. Based on this, four samples were assembled with Portland cement with the addition of ashes, obtained from subjecting the effluents of a graphic industry to a series of physicochemical processes. For a possible quantification process by LIBS, the thin plasma model was proposed, which established the best post-breakdown and integration times for registering the 521.04 nm line ofTi I. As the study’s final results, apost-breakdowntime was 35μs and an integration time of 300 ns. With this, it is intended to optimize the measurement parameters for the analysis and calculation of concentrations, thus promoting the use of the LIBS technique as feasible for this type of measurement.
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来源期刊
Anales AFA
Anales AFA PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.40
自引率
0.00%
发文量
43
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