Climate Change Impacts on Yields and Soil Carbon in Row Crop Dryland Agriculture.
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Summary
Simulations indicate that reduced frequency of summer fallow can both increase annualized yields and store more soil C, enhancing the resilience of dryland agricultural rotations to climate change while also increasing soil C storage and mitigating carbon dioxide emissions.
- Type
- article
- Published
- 2018-07-01
- Cited by
- 38
- References
- 91
- Access
- Open access
- OpenAlex
- https://openalex.org/W2778395496
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:51706402
Keywords
Environmental science, Soil carbon, Climate change, Evapotranspiration, Agronomy
References
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- Carbon management in dryland agricultural systems. A review
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- Simulating the effects of climate and agricultural management practices on global crop yield
- Soil organic matter and its role in crop production
- Identifying soil organic carbon fractions sensitive to agricultural management practices
- Constraints of No‐Till Dryland Agroecosystems as Bioenergy Production Systems
- The role of soil organic matter in maintaining the productivity and yield stability of cereals in China
- Agricultural Intensification, Irrigation and the Environment in South Asia: Issues and Policy Options
- Farmers’ adoption of conservation agriculture: A review and synthesis of recent research
- Agroecosystem approach to soil and crop management research
- Climate change impacts on dryland cropping systems in the Central Great Plains, USA
- Inorganic Carbon Analysis by Modified Pressure-Calcimeter Method
- The adaptation and mitigation potential of traditional agriculture in a changing climate
- Development of gridded surface meteorological data for ecological applications and modelling
- Wind erosion from cropland in the USA: a review of problems, solutions and prospects
- Cropping intensity enhances soil organic carbon and nitrogen in a no-till agroecosystem.
Cited by
- Measurements and Models to Identify Agroecosystem Practices That Enhance Soil Organic Carbon under Changing Climate.
- A novel soil amendment for enhancing soil moisture retention and soil carbon in drought-prone soils
- Transition Pathways to Sustainable Agricultural Water Management: A Review of Integrated Modeling Approaches
- Large-scale integrated assessment of soil carbon and organic matter-related nitrogen fluxes in Saxony (Germany).
- Assessment of System Responses in Intensively Irrigated Stream–Aquifer Systems Using SWAT-MODFLOW
- Tree influence exacerbates the El Niño effects over soil CO2 emissions and its microclimatic controls
- Effect of nitrogen source, placement and timing on the environmental performance of economically optimum nitrogen rates in maize
- Landscape-scale cropping changes in the High Plains: economic and environmental implications
- From Factory to Field: Effects of a Novel Soil Amendment Derived From Cheese Production on Wheat and Corn Production
- Use of gamma radiation to induce mutations in rice (Oryza sativa L.) and the selection of lines with tolerance to salinity and drought
- The Household Welfare Level of Integrated Plantation Polyculture Farmers
- DayCent Model Predictions of NPP and Grain Yields for Agricultural Lands in the Contiguous U.S.
- Bayesian calibration of the DayCent ecosystem model to simulate soil organic carbon dynamics and reduce model uncertainty
- Charge Characteristics and Cation Exchanges Properties of Hilly Dryland Soils Aceh Besar, Indonesia
- The Potential of Switchgrass and Miscanthus to Enhance Soil Organic Carbon Sequestration—Predicted by DayCent Model
- Assessing the effectiveness of agricultural conservation practices in maintaining soil organic carbon under contrasting agroecosystems and a changing climate
- Soil organic C affected by dry‐season management of no‐till soybean crop rotations in the tropics
- Evaluating nitrate and phosphorus remediation in intensively irrigated stream-aquifer systems using a coupled flow and reactive transport model
- Bioenergy for climate change mitigation: Scale and sustainability
- Removing Barriers and Creating Opportunities for Climate-Resilient Agriculture by Optimizing Federal Crop Insurance
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