Spatial and temporal variability in methane emissions from rice paddies: Implications for assessing regional methane budgets
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- Type
- article
- Published
- 2002-01-05
- Cited by
- 43
- References
- 26
- OpenAlex
- https://openalex.org/W242804824
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38854710
Keywords
Environmental science, Methane, Spatial variability, Greenhouse gas, Paddy field
References
- Gas flux measurement techniques with special reference to techniques suitable for measurements over large ecologically uniform areas.
- Soil Survey of Jefferson County, Texas
- Influence of soil temperature on methane emission from rice paddy fields
- Spatial Variability of Field‐Measured Denitrification Gas Fluxes
- Environmental Role of Nitrogen-Fixing Blue-Green Algae and Asymbiotic Bacteria
- Quantification of methane oxidation in the rhizosphere of emergent aquatic macrophytes: defining upper limits
- Climate change 1995 - impacts, adaptations and mitigation of climate change : scientific-technical analyses
- Effect of urea fertilizer and environmental factors on CH4 emissions from a Louisiana, USA rice field
- Methane emission from Texas rice paddy soils. 1. Quantitative multi‐year dependence of CH4 emission on soil, cultivar and grain yield
- Methane emission from rice fields: The effect of floodwater management
- Methane emissions from rice fields: Effect of soil properties
- A 3-year continuous record on the influence of daytime, season, and fertilizer treatment on methane emission rates from an Italian rice paddy
- Modeling methane emissions from rice paddies
- Methane emissions from rice fields: Effect of plant height among several rice cultivars
- Methane emission from rice fields as influenced by solar radiation, temperature, and straw incorporation
- Methane production and emission in a Texas rice field
- A Comparison of the Contribution of Various Gases to the Greenhouse Effect
- Sources of atmospheric methane: Measurements in rice paddies and a discussion
- Effect of Organic Matter Application on Methane Emission from Some Japanese Paddy Fields
- A semi‐empirical model of methane emission from flooded rice paddy soils
Cited by
- Long-Term Effects of Rice Rotation, Tillage, and Fertility on Near-Surface Soil Carbon and Nitrogen Cycling
- Estimation of methane and carbon dioxide surface fluxes using a 3-D global atmospheric chemical transport model
- Gross ecosystem photosynthesis causes a diurnal pattern in methane emission from rice
- Modeling greenhouse gas emissions from rice‐based production systems: Sensitivity and upscaling
- Spatial and Temporal Variations in Methane Fluxes from Irrigated Lowland Rice Fields
- Effects of nitrogen fertilization on CH4 emissions from rice fields
- Couplings between changes in the climate system and biogeochemistry
- Common practices for manual greenhouse gas sampling in rice production: a literature study on sampling modalities of the closed chamber method
- Current and potential uses of optical remote sensing in rice-based irrigation systems: a review
- Seasonal methane and nitrous oxide emissions of several rice cultivars in direct-seeded systems.
- Spatial variability of methane emissions from rice fields and implications for experimental design
- The effective water management practice for mitigating greenhouse gas emissions and maintaining rice yield in central Japan
- Estimation of atmospheric methane emissions between 1996 and 2001 using a three-dimensional global chemical transport model
- Nitrogen management to reduce yield-scaled global warming potential in rice
- Response of methane emission to invasion of Spartina alterniflora and exogenous N deposition in the coastal salt marsh
- Fertilizer management practices and greenhouse gas emissions from rice systems: A quantitative review and analysis
- Modeling methane emissions from rice agriculture in China during 1961–2007
- Measuring methane flux from irrigated rice fields by eddy covariance method using open-path gas analyzer
- Effect of ammonium-based, non-sulfate fertilizers on CH4 emissions from a paddy field with a typical Chinese water management regime
- Yield-scaled global warming potential of annual nitrous oxide and methane emissions from continuously flooded rice in response to nitrogen input
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