Literature DB >> 28585372

Widespread production of nonmicrobial greenhouse gases in soils.

Bin Wang1, Manuel Lerdau1, Yongli He1,2.   

Abstract

Carbon dioxide (CO2 ), methane (CH4 ), and nitrous oxide (N2 O) are the three most important greenhouse gases (GHGs), and all show large uncertainties in their atmospheric budgets. Soils of natural and managed ecosystems play an extremely important role in modulating their atmospheric abundance. Mechanisms underlying the exchange of these GHGs at the soil-atmosphere interface are often assumed to be exclusively microbe-mediated (M-GHGs). We argue that it is a widespread phenomenon for soil systems to produce GHGs through nonmicrobial pathways (NM-GHGs) based on a review of the available evidence accumulated over the past half century. We find that five categories of mechanistic process, including photodegradation, thermal degradation, reactive oxidative species (ROS) oxidation, extracellular oxidative metabolism (EXOMET), and inorganic chemical reactions, can be identified as accounting for their production. These pathways are intricately coupled among themselves and with M-GHGs production and are subject to strong influences from regional and global change agents including, among others, climate warming, solar radiation, and alterations of atmospheric components. Preliminary estimates have suggested that NM-GHGs could play key roles in contributing to budgets of GHGs in the arid regions, whereas their global importance would be enhanced with accelerated global environmental changes. Therefore, more research should be undertaken, with a differentiation between NM-GHGs and M-GHGs, to further elucidate the underlying mechanisms, to investigate the impacts of various global change agents, and to quantify their contributions to regional and global GHGs budgets. These efforts will contribute to a more complete understanding of global carbon and nitrogen cycling and a reduction in the uncertainty of carbon-climate feedbacks in the Earth system.
© 2017 John Wiley & Sons Ltd.

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Keywords:  carbon cycling; extracellular oxidative metabolism; greenhouse gas; nitrous oxide; nonmicrobial; photodegradation; soil organic matter; thermal degradation

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Year:  2017        PMID: 28585372     DOI: 10.1111/gcb.13753

Source DB:  PubMed          Journal:  Glob Chang Biol        ISSN: 1354-1013            Impact factor:   10.863


  3 in total

1.  Cellular and non-cellular mineralization of organic carbon in soils with contrasted physicochemical properties.

Authors:  Kéraval Benoit; Fontaine Sébastien; Lallement Audrey; Revaillot Sandrine; Billard Hermine; Alvarez Gaël; Maestre Fernando; Amblard Christian; Lehours Anne-Catherine
Journal:  Soil Biol Biochem       Date:  2018-08-04       Impact factor: 7.609

2.  Influences of temperature and moisture on abiotic and biotic soil CO2 emission from a subtropical forest.

Authors:  Xiaomei Chen; Muying Liu; Zhanying Xu; Hui Wei
Journal:  Carbon Balance Manag       Date:  2021-05-25

3.  Non-microbial methane emissions from tropical rainforest soils under different conditions.

Authors:  Gaohui Jia; Qiu Yang; Huai Yang; Yamin Jiang; Wenjie Liu; Tingting Wu; Han Mao; Tianyan Su; Zhenghong Tan; Xu Wang; Juelei Li
Journal:  PLoS One       Date:  2021-08-05       Impact factor: 3.240

  3 in total

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