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Abichou, T., Kormi, T., Yuan, L., Johnson, T., & Francisco, E. (2015). Modeling the effects of vegetation on methane oxidation and emissions through soil landfill final covers across different climates. Waste Management, 36, 230–240.
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Blanc-Betes, E., Welker, J. M., Sturchio, N. C., Chanton, J. P., & Gonzalez-Meler, M. A. (2016). Winter precipitation and snow accumulation drive the methane sink or source strength of Arctic tussock tundra. Glob Change Biol, 22(8), 2818–2833.
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Glaser, P. H., Siegel, D. I., Chanton, J. P., Reeve, A. S., Rosenberry, D. O., Corbett, J. E., et al. (2016). Climatic drivers for multidecadal shifts in solute transport and methane production zones within a large peat basin. Global Biogeochem. Cycles, 30(11), 1578–1598.
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Holmes, C. D. (2018). Methane Feedback on Atmospheric Chemistry: Methods, Models, and Mechanisms. J. Adv. Model. Earth Syst., 10(4), 1087–1099.
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Liu, Y., Yvon-Lewis, S. A., Thornton, D. C. O., Butler, J. H., Bianchi, T. S., Campbell, L., et al. (2013). Spatial and temporal distributions of bromoform and dibromomethane in the Atlantic Ocean and their relationship with photosynthetic biomass. J. Geophys. Res. Oceans, .
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Liu, Y., Yvon-Lewis, S. A., Thornton, D. C. O., Campbell, L., & Bianchi, T. S. (2013). Spatial distribution of brominated very short-lived substances in the eastern Pacific. J. Geophys. Res. Oceans, 118(5), 2318–2328.
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Ma, S., Jiang, J., Huang, Y., Shi, Z., Wilson, R. M., Ricciuto, D., et al. (2017). Data-Constrained Projections of Methane Fluxes in a Northern Minnesota Peatland in Response to Elevated CO2 and Warming. J. Geophys. Res. Biogeosci., 122(11), 2841–2861.
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Mei, C., Yazdani, R., Han, B., Mostafid, M. E., Chanton, J., VanderGheynst, J., et al. (2015). Performance of green waste biocovers for enhancing methane oxidation. Waste Management, 39, 205–215.
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Montenegro, J., Barrantes, E., & DiLorenzo, N. (2016). Methane emissions by beef cattle consuming hay of varying quality in the dry forest ecosystem of Costa Rica. Livestock Science, 193, 45–50.
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Moseman-Valtierra, S., Abdul-Aziz, O. I., Tang, J., Ishtiaq, K. S., Morkeski, K., Mora, J., et al. (2016). Carbon dioxide fluxes reflect plant zonation and belowground biomass in a coastal marsh. Ecosphere, 7(11), e01560.
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Sawakuchi, H. O., Bastviken, D., Sawakuchi, A. O., Ward, N. D., Borges, C. D., Tsai, S. M., et al. (2016). Oxidative mitigation of aquatic methane emissions in large Amazonian rivers. Glob Change Biol, 22(3), 1075–1085.
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Sihi, D., Inglett, P. W., & Inglett, K. S. (2016). Carbon quality and nutrient status drive the temperature sensitivity of organic matter decomposition in subtropical peat soils. Biogeochemistry, 131(1-2), 103–119.
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van Bruggen, A. H. C., He, M., Zelenev, V. V., Semenov, V. M., Semenov, A. M., Semenova, E. V., et al. (2017). Relationships between greenhouse gas emissions and cultivable bacterial populations in conventional, organic and long-term grass plots as affected by environmental variables and disturbances. Soil Biology and Biochemistry, 114, 145–159.
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Zalman,, Keller,, Tfaily,, Kolton,, Pfeifer-Meister,, Wilson,, et al. (2018). Small differences in ombrotrophy control regional-scale variation in methane cycling among Sphagnum-dominated peatlands. Biogeochemistry, 139(2), 155–177.
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