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采用 H2O2/Fe(3-x)Co(x)O4 纳米粒子作为氧化剂的非均相类芬顿法快速、环保测定化学需氧量的方法。

A fast and environment-friendly method for determination of chemical oxygen demand by using the heterogeneous Fenton-like process (H2O2/Fe(3-x)Co(x)O4 nanoparticles) as an oxidant.

机构信息

Instituto de Ciência, Engenharia e Tecnologia, Universidade Federal dos Vales Jequitinhonha e Mucuri, Teófilo Otoni 39803-371, Minas Gerais, Brazil.

Departamento de Química, ICEx, Universidade Federal de Minas Gerais, 31270-901 Belo Horizonte, Minas Gerais, Brazil.

出版信息

Talanta. 2015 Apr;135:75-80. doi: 10.1016/j.talanta.2014.11.055. Epub 2014 Dec 11.

DOI:10.1016/j.talanta.2014.11.055
PMID:25640128
Abstract

An easy, fast and environment-friendly method for COD determination in water is proposed. The procedure is based on the oxidation of organic matter by the H2O2/Fe(3-x)Co(x)O4 system. The Fe(3-x)Co(x)O4 nanoparticles activate the H2O2 molecule to produce hydroxyl radicals, which are highly reactive for oxidizing organic matter in an aqueous medium. After the oxidation step, the organic matter amounts can be quantified by comparing the quantity of H2O2 consumed. Moreover, the proposed COD method has several distinct advantages, since it does not use toxic reagents and the oxidation reaction of organic matter is conducted at room temperature and atmospheric pressure. Method detection limit is 2.0 mg L(-1) with intra- and inter-day precision lower than 1% (n=5). The calibration graph is linear in the range of 2.0-50 mg L(-1) with a sample throughput of 25 samples h(-1). Data are validated based on the analysis of six contaminated river water samples by the proposed method and by using a comparative method validated and marketed by Merck, with good agreement between the results (t test, 95%).

摘要

提出了一种测定水中化学需氧量(COD)的简便、快速、环保的方法。该方法基于 H2O2/Fe(3-x)Co(x)O4 体系氧化有机物。Fe(3-x)Co(x)O4 纳米粒子可激活 H2O2 分子产生羟基自由基,后者可在水介质中高效氧化有机物。氧化后,可通过比较消耗的 H2O2 量来定量有机物质的含量。此外,由于该 COD 方法不使用有毒试剂,并且在室温常压下进行有机物的氧化反应,因此具有几个明显的优点。方法检测限为 2.0mg/L,日内和日间精密度均低于 1%(n=5)。校准曲线在 2.0-50mg/L 范围内呈线性,样品通量为 25 个样品/h。通过使用 Merck 公司验证并上市的比较方法对 6 个受污染河水样品进行分析,对数据进行了验证,结果吻合良好(t 检验,95%)。

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