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有机质在莓球状黄铁矿氧化中的作用。

Role of organic matter in framboidal pyrite oxidation.

作者信息

Rigby P A, Dobos S K, Cook F J, Goonetilleke A

机构信息

School of Civil Engineering, Queensland University of Technology, GPO Box 2434, Brisbane QLD 4001, Australia.

出版信息

Sci Total Environ. 2006 Aug 31;367(2-3):847-54. doi: 10.1016/j.scitotenv.2004.10.011. Epub 2006 Jul 12.

Abstract

An experimental system has been set up to investigate the reaction kinetics of framboidal pyrite oxidation in real, reactive acid sulfate soil assemblages. This study was undertaken to determine the degree to which pyrite oxidation rates are reduced by bacteriological reactions and organic matter, which both modify the net reaction mechanisms and compete for available oxygen. The results from these experimental runs not only confirm the role of organic matter in mitigating pyrite oxidation but indicate that at least initially, the acidity produced is consumed or otherwise ameliorated by parallel reactions. Tracking pH or [H+] in both a reactor and in soil does not accurately reflect reaction progress and may not correctly indicate the true level of risk. In comparison, the tracking of pyrite oxidation with the concentration of sulfate in solution is not affected by side reactions or precipitation and is therefore a better indicator for the rate of pyrite destruction.

摘要

已建立一个实验系统,以研究在真实的活性酸性硫酸盐土壤组合中莓球状黄铁矿氧化的反应动力学。进行这项研究是为了确定细菌反应和有机物使黄铁矿氧化速率降低的程度,这两者都会改变净反应机制并竞争可用的氧气。这些实验运行的结果不仅证实了有机物在减轻黄铁矿氧化方面的作用,而且表明至少在初始阶段,产生的酸度会被平行反应消耗或以其他方式改善。在反应器和土壤中跟踪pH值或[H⁺]并不能准确反映反应进程,也可能无法正确指示真正的风险水平。相比之下,用溶液中硫酸盐的浓度跟踪黄铁矿氧化不受副反应或沉淀的影响,因此是黄铁矿破坏速率的更好指标。

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