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应用顺序注射分析(SIA)和响应面方法优化基于芬顿的工艺。

Applying sequential injection analysis (SIA) and response surface methodology for optimization of Fenton-based processes.

作者信息

dos Santos Allan C V, Masini Jorge C

机构信息

Instituto de Química, Universidade de São Paulo, São Paulo, Brazil.

出版信息

Talanta. 2009 Jan 15;77(3):1081-6. doi: 10.1016/j.talanta.2008.08.006. Epub 2008 Aug 23.

Abstract

This work presents the use of sequential injection analysis (SIA) and the response surface methodology as a tool for optimization of Fenton-based processes. Alizarin red S dye (C.I. 58005) was used as a model compound for the anthraquinones family, whose pigments have a large use in coatings industry. The following factors were considered: [H(2)O(2)]:[Alizarin] and [H(2)O(2)]:[FeSO(4)] ratios and pH. The SIA system was designed to add reagents to the reactor and to perform on-line sampling of the reaction medium, sending the samples to a flow-through spectrophotometer for monitoring the color reduction of the dye. The proposed system fed the statistical program with degradation data for fast construction of response surface plots. After optimization, 99.7% of the dye was degraded and the TOC content was reduced to 35% of the original value. Low reagents consumption and high sampling throughput were the remarkable features of the SIA system.

摘要

本研究介绍了采用顺序注射分析(SIA)和响应面法作为优化基于芬顿反应过程的工具。茜素红S染料(C.I. 58005)用作蒽醌类化合物的模型化合物,其颜料在涂料工业中有广泛应用。考虑了以下因素:[H₂O₂]与[茜素]的比例、[H₂O₂]与[FeSO₄]的比例以及pH值。SIA系统旨在将试剂添加到反应器中,并对反应介质进行在线采样,将样品送入流通式分光光度计以监测染料的颜色还原情况。所提出的系统为统计程序提供降解数据,以便快速构建响应面图。优化后,99.7%的染料被降解,总有机碳(TOC)含量降至原始值的35%。低试剂消耗和高采样通量是SIA系统的显著特点。

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