Modelling greenhouse gas emissions and mitigation potentials in fertilized paddy rice fields in Bangladesh
Author:
Funder
Ministry of Science and Technology, People's Republic of Bangladesh
Scottish Government’s Rural and Environment Research and Analysis Directorate
Publisher
Elsevier BV
Subject
Soil Science
Reference58 articles.
1. Influence of soil amendments on mitigating methane emissions and sustaining rice productivity in paddy soil ecosystems of Bangladesh;Ali;J. Environ. Sci. Nat. Resour.,2012
2. Mitigating global warming potentials of methane and nitrous oxide gases from rice paddies under different irrigation regimes;Ali;Ambio,2013
3. Integrated effects of organic, inorganic and biological amendments on methane emission, soil quality and rice productivity in irrigated paddy ecosystem of Bangladesh: field study of two consecutive rice growing seasons;Ali;Plant Soil,2014
4. Field validation of DNDC model for methane and nitrous oxide emissions from rice-based production systems of India;Babu;Nutr. Cycl. Agroecosyst.,2006
5. Yearbook of Agricultural Statistics. 28th Series;BBS,2016
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