Mitigating Global Warming Potentials of Methane and Nitrous Oxide Gases from Rice Paddies under different irrigation regimes

Author:

Ali Muhammad Aslam,Hoque M. Anamul,Kim Pil Joo

Publisher

Springer Science and Business Media LLC

Subject

Ecology,Environmental Chemistry,Geography, Planning and Development,General Medicine

Reference56 articles.

1. Akiyama, H., X. Yan, and K. Yagi. 2006. Estimations of emission factors for fertilizer-induced direct N2O emissions from agricultural soils in Japan: Summary of available data. Soil Science and Plant Nutrition 52: 774–787.

2. Ali, M.A., C.H. Lee, and P.J. Kim. 2008. Effect of silicate fertilizer on reducing methane emission during rice cultivation. Biology and Fertility of Soils 44: 597–604.

3. Ali, M.A., G. Farouque, M. Haque, and A. Kabir. 2012. Influence of soil amendments on mitigating methane emissions and sustaining rice productivity in paddy soil ecosystems of Bangladesh. Journal of Environmental Science and Natural Resources 5: 179–185.

4. Allison, L.E. 1965. Organic carbon. In Methods of soil analysis, part 2, ed. C.A. Black, D.D. Evans, J.L. White, L.E. Ensminger, and F.E. Clark, 1367–1376. Madison, WI: American Society of Agronomy.

5. Amon, B., T.T. Amon, G. Moitzi, and J. Boxberger. 2002. Nitrous oxide emissions from agriculture and mitigation options N2O emission aus der Landwirtschaft und Minderungsmoglichkeiten. Paper presented at Nussdorfel Laende A-1190, Vienna, Austria, 29–31.

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