Kinetic characteristics and predictive models of methylmercury production in paddy soils

Understanding the mercury (Hg) methylation process is important for the management of paddy soils contaminated by Hg. In this work, samples of eighteen paddy soils with varying soil properties were spiked with inorganic Hg and subjected to a 90 d flooding period. Soil pH and redox potential (Eh) wer...

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Published inEnvironmental pollution (1987) Vol. 253; pp. 424 - 428
Main Authors Du, Shuyang, Wang, Xingxiang, Zhang, Taolin, Ding, Changfeng
Format Journal Article
LanguageEnglish
Published England Elsevier Ltd 01.10.2019
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Summary:Understanding the mercury (Hg) methylation process is important for the management of paddy soils contaminated by Hg. In this work, samples of eighteen paddy soils with varying soil properties were spiked with inorganic Hg and subjected to a 90 d flooding period. Soil pH and redox potential (Eh) were measured in situ at intervals, and soils were sampled for the analysis of methylmercury (MeHg). The Hg methylation efficiency increased with flooding time and reached a relatively steady state at 30 d of incubation, ranging from 0.08% to 2.52%, and was significantly correlated with the in situ soil pH and Eh. The Elovich equation could adequately describe the kinetic production of MeHg. MeHg production was well predicted by the in situ soil pH and Eh of flooded soils, in addition to the organic matter content of air-dried soil samples and flooding time. The two predictive models explained 78% and 68% of the variability of the Hg methylation efficiency. The results suggested that the methylation of inorganic Hg in paddy soils after flooding can be predicted as a function of routinely measured soil properties and flooding time, a correlation that can be utilized to improve understanding of the extent of Hg methylation and the management of Hg-contaminated paddy soils. [Display omitted] •Hg methylation efficiency in soils reached equlibrium after 30 days of flooding.•Elovich equation could adequately describe the kinetic production of MeHg.•Methylation efficiency was significantly correlated with the in situ soil pH and Eh.•Predictive models of MeHg production in paddy soils were developed.
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ISSN:0269-7491
1873-6424
DOI:10.1016/j.envpol.2019.07.050