1. Potential N2O emissions from leguminous tree plantation soils in the humid tropics;Arai;Global Biogeochem. Cycl.,2008
2. Liebig’s law of the minimum applied to a greenhouse gas: alleviation of P-limitation reduces soil N2O emission;Baral;Plant Soil,2014
3. Ciais, P., Sabine, C., Bala, G., Bopp, L., Brovkin, V., Canadell, J., Chhabra, A., DeFries, R., Galloway, J., Heimann, M., Jones, C., Le Quéré, C., Myneni, R.B., Piao, S., Thornton, P., 2013. Carbon and Other Biogeochemical Cycles, in: Stocker, T.F., Qin, D., Plattner, G.-K., Tignor, M., Allen, S.K., Boschung, J., Nauels, A., Xia, Y., Bex, V., Midgley, P.M. (Eds.) Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA.
4. Nitrogen-oxide emissions from tropical forest soils exposed to elevated nitrogen input strongly interact with rainfall quantity and seasonality;Corre;Biogeochemistry,2014
5. Testing a conceptual model of soil emissions of nitrous and nitric oxides;Davidson;Bioscience,2000