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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >The effect of copper on iron reduction and its application to the determination of total iron content in iron and copper ores by potassium dichromate titration
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The effect of copper on iron reduction and its application to the determination of total iron content in iron and copper ores by potassium dichromate titration

机译:铜对铁还原的影响及其在重铬酸钾滴定法测定铁和铜矿石中总铁含量中的应用

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摘要

The International Standard Organization (ISO) specifies two titrimetric methods for the determination of total iron content in iron ores using potassium dichromate as titrant after reduction of the iron(III) by tin (II) chloride and/or titanium(III) chloride. These two ISO methods (ISO2597-1 and ISO2597-2) require nearly boiling-point temperature for iron(III) reduction and suffer from copper interference and/or mercury pollution. In this study, potassium borohydride was used for reduction of iron(III) catalyzed by copper ions at ambient temperatures. In the absence of copper, iron(III) reduction by potassium borohydride was sluggish while a trace amount of copper significantly accelerated the reduction and reduced potassium borohydride consumption. The catalytic mechanism of iron(III) reduction in sulfuric acid and hydrochloric acid was investigated. Potassium borohydride in sodium hydroxide solution was stable without a significant degradation within 24 h at ambient conditions and the use of potassium borohydride prepared in sodium hydroxide solution was safe and convenient in routine applications. The applicability of potassium borohydride reduction for the determination of total iron content by potassium dichromate titration was demonstrated by comparing with the ISO standard method using iron and copper ore reference materials and iron ore samples.
机译:国际标准组织(ISO)指定了两种滴定法,用于在用氯化锡(II)和/或氯化钛(III)还原铁(III)之后,使用重铬酸钾作为滴定剂测定铁矿石中的总铁含量。这两种ISO方法(ISO2597-1和ISO2597-2)需要接近沸点的温度才能还原铁(III),并且会受到铜干扰和/或汞污染。在这项研究中,硼氢化钾用于在环境温度下还原由铜离子催化的铁(III)。在没有铜的情况下,硼氢化钾对铁(III)的还原反应缓慢,而微量的铜显着加快了还原速度并降低了硼氢化钾的消耗量。研究了铁(Ⅲ)在硫酸和盐酸中还原的催化机理。氢氧化钠溶液中的硼氢化钾在环境条件下在24小时内稳定且无明显降解,在常规应用中使用在氢氧化钠溶液中制备的硼氢化钾是安全且方便的。通过与使用铁和铜矿石参考材料以及铁矿石样品的ISO标准方法进行比较,证明了硼氢化钾还原法通过重铬酸钾滴定法测定总铁含量的适用性。

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