Methane emission patterns from rice fields planted to several rice cultivars for nine seasons
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- Type
- article
- Published
- 2002-10-01
- Cited by
- 43
- References
- 44
- OpenAlex
- https://openalex.org/W24766181
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11224695
Keywords
Cultivar, Agronomy, Methane, Environmental science, Growing season
References
- Physiological functions and methane and oxygen exchange in Korean rice cultivars grown under controlled soil redox potential
- Cultivar variation in methane efflux from tropical rice
- Impact of root exudates of different cultivars and plant development stages of rice (Oryza sativa L.) on methane production in a paddy soil
- Effect of rice cultivars and fertilizer management on methane emission in a rice paddy in Beijing
- Morphology-based diversity analysis of improved irrigated lowland rice (Oryza sativa L.) varieties in the Philippines.
- Methane Emissions and Mitigation Options in Irrigated Rice Fields in Southeast China
- Methane Transport Capacity of Rice Plants. I. Influence of Methane Concentration and Growth Stage Analyzed with an Automated Measuring System
- Mineral Nutrition of Higher Plants
- Simulation of Methane Production in Anaerobic Rice Soils by a Simple Two-Pool Model
- Crop Management Affecting Methane Emissions from Irrigated and Rainfed Rice in Central Java (Indonesia)
- A Four-Year Record of Methane Emissions from Irrigated Rice Fields in the Beijing Region of China
- Varietal Differences in Methane Emission from Korean Rice Cultivars
- Temporal patterns of methane emissions from wetland rice fields treated by different modes of N application
- Pattern and Amount of Aerenchyma Relate to Variable Methane Transport Capacity of Different Rice Cultivars
- The role of rice plants in regulating mechanisms of methane missions
- Influence of Soil Moisture, Soil Acidity and Nitrogen Source on Take‐all of Wheat
- Effect of rice cultivars on methane emission
- Effect of cultivar difference (‘IR72’, ‘IR65598’ and ‘Dular’) on methane emission
- Formation of Aerenchyma and the Processes of Plant Ventilation in Relation to Soil Flooding and Submergence
- Aerenchyma Formation and Methane and Oxygen Exchange in Rice
Cited by
- Estimation of methane emission rates from a rice paddy field using a naturally ventilated tunnel
- Mitigating Greenhouse Gas Emissions from Rice-Wheat Cropping Systems in Asia
- Rice management interventions to mitigate greenhouse gas emissions: a review
- Seasonal methane and nitrous oxide emissions of several rice cultivars in direct-seeded systems.
- Methane emissions from a rice agroecosystem in South China: Effects of water regime, straw incorporation and nitrogen fertilizer
- Effects of nitrogen fertilizer on CH4 emission from rice fields: multi-site field observations
- Effects of Urea and Controlled Release Urea Fertilizers on Methane Emission from Paddy Fields: A Multi-Year Field Study
- Life cycle greenhouse gas emissions in California rice production
- Importance of rice root oxidation potential as a regulator of CH4 production under waterlogged conditions
- Methane Budget of a Black Forest Spruce Ecosystem Considering Soil Pattern
- Effect of rice cultivar on CH4 emissions and productivity in Korean paddy soil
- Effect of Water and Straw Management Practices on Methane Emissions from Rice Fields: A Review Through a Meta-Analysis
- Magnitude and biophysical regulators of methane emission and consumption in the Australian agricultural, forest, and submerged landscapes: a review
- Reducing greenhouse gas emissions, water use, and grain arsenic levels in rice systems
- Methane and Climate Change
- Introducing greenhouse gas mitigation as a development objective in rice-based agriculture: I. Generation of technical coefficients
- Effect of rice cultivar on CH4 production potential of rice soil and CH4 emission in a pot experiment
- Yield-scaled global warming potential of two irrigation management systems in a highly productive rice system
- Methane emission peak observed at predawn in tropical paddy field: a case study of Hainan Island, China (Proceedings of Shinshu University International Symposium 2007: Sustainable agriculture and environment: Asian network)
- Dense planting with less basal nitrogen fertilization might benefit rice cropping for high yield with less environmental impacts
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