Process of Magnetite Dissolution in Orthophosphoric and Sulfuric Acid Solutions According to Kinetic and Electrochemical Methods

IF 1.4 4区 化学 Q4 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL Russian Journal of Physical Chemistry B Pub Date : 2024-07-22 DOI:10.1134/s1990793124700106
A. V. Kuzin, A. V. Lobanov, V. A. Shelonzev, E. A. Eliseeva, A. S. Samadov
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Abstract

The kinetics of dissolution and the electrochemical features of the behavior of magnetite (in cathodic polarization) in solutions of sulfuric and orthophosphoric acids are studied. Two independent experimental methods establish that the rate and current of dissolution in H3PO4 are higher than in H2SO4. This pattern is explained based on the stronger complexing properties of various kinds of phosphate anions in comparison with sulfate anions in solution with iron(III) ions. In the range of studied concentrations of orthophosphoric and sulfuric acids, as well as Fe(II) and Fe(III) ions, the reaction orders for orthophosphoric and sulfuric acids are 1.3 ± 0.1; for iron(II) ions, 0.25 ± 0.1; and for iron(III) ions, –0.25 ± 0.1.

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根据动力学和电化学方法研究正磷酸和硫酸溶液中磁铁矿的溶解过程
摘要 研究了磁铁矿(阴极极化)在硫酸和正磷酸溶液中的溶解动力学和电化学特性。两种独立的实验方法确定了在 H3PO4 中的溶解速率和电流高于在 H2SO4 中的溶解速率和电流。这一规律的解释是,与硫酸根阴离子相比,各种磷酸盐阴离子在铁(III)离子的溶液中具有更强的络合特性。在所研究的正磷酸和硫酸以及铁(II)和铁(III)离子的浓度范围内,正磷酸和硫酸的反应顺序为 1.3 ± 0.1;铁(II)离子的反应顺序为 0.25 ± 0.1;铁(III)离子的反应顺序为 -0.25 ± 0.1。
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来源期刊
Russian Journal of Physical Chemistry B
Russian Journal of Physical Chemistry B 化学-物理:原子、分子和化学物理
CiteScore
2.20
自引率
71.40%
发文量
106
审稿时长
4-8 weeks
期刊介绍: Russian Journal of Physical Chemistry B: Focus on Physics is a journal that publishes studies in the following areas: elementary physical and chemical processes; structure of chemical compounds, reactivity, effect of external field and environment on chemical transformations; molecular dynamics and molecular organization; dynamics and kinetics of photoand radiation-induced processes; mechanism of chemical reactions in gas and condensed phases and at interfaces; chain and thermal processes of ignition, combustion and detonation in gases, two-phase and condensed systems; shock waves; new physical methods of examining chemical reactions; and biological processes in chemical physics.
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