Kinetics of Thiocyanate Formation by Reaction of Cyanide with Tetrathionate

IF 1.7 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Irina Kurashova, Alexey Kamyshny Jr.
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引用次数: 1

Abstract

In aquatic systems a reaction between tetrathionate and cyanide results in the formation of thiocyanate. We have studied kinetics of the reactions of tetrathionate with free cyanide and two cyanide complexes, hexacyanoferrate(II) and hexacyanoferrate(III), at the environmentally relevant conditions. For the reaction between tetrathionate and free cyanide, the rate constant and the activation energy, but not the reaction order, strongly depend on pH. Our observations allow to propose the following pathways of thiocyanate formation by the reactions of free cyanide with tetrathionate: (1) tetrathionate reacts relatively slow with hydrogen cyanide at acidic and neutral conditions; and (2) tetrathionate reacts relatively fast with cyanide anion under highly alkaline conditions. Depending on environmental conditions, the half-lives of the reaction between free cyanide and tetrathionate will be in the ranges of hours to several years. Reactions of tetrathionate with hexacyanoferrate(II) and hexacyanoferrate(III) have no environmental significance as they are slower than the decomposition of tetrathionate. Strategy for improvement of analytical protocols for analysis of tetrathionate and cyanide is proposed based on the detected kinetics parameters.

Abstract Image

氰化物与四硫酸盐反应生成硫氰酸盐的动力学
在水生系统中,四硫酸盐和氰化物之间的反应产生硫氰酸盐。研究了四硫酸盐与游离氰化物以及六氰高铁酸盐(II)和六氰高铁酸盐(III)两种氰化物配合物在环境相关条件下的反应动力学。对于四硫酸盐与游离氰化物的反应,其反应速率常数和活化能与ph值有很大关系,而反应顺序与ph值无关。我们的观察结果表明,游离氰化物与四硫酸盐反应生成硫氰酸盐的途径如下:(1)在酸性和中性条件下,四硫酸盐与氰化氢反应相对缓慢;(2)四硫酸盐在高碱性条件下与氰化物阴离子反应较快。根据环境条件的不同,游离氰化物与四硫酸盐反应的半衰期从几小时到几年不等。四硫酸盐与六氰高铁酸盐(II)和六氰高铁酸盐(III)的反应没有环境意义,因为它们比四硫酸盐的分解慢。根据检测到的动力学参数,提出了改进四硫酸盐和氰化物分析方案的策略。
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来源期刊
Aquatic Geochemistry
Aquatic Geochemistry 地学-地球化学与地球物理
CiteScore
4.30
自引率
0.00%
发文量
6
审稿时长
1 months
期刊介绍: We publish original studies relating to the geochemistry of natural waters and their interactions with rocks and minerals under near Earth-surface conditions. Coverage includes theoretical, experimental, and modeling papers dealing with this subject area, as well as papers presenting observations of natural systems that stress major processes. The journal also presents `letter''-type papers for rapid publication and a limited number of review-type papers on topics of particularly broad interest or current major controversy.
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