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4. Synergistic effect of elevated CO2 and straw amendment on N2O emissions from a rice–wheat cropping system.

8. Integrated Effects of Straw Incorporation and N Application on Rice Yield and Greenhouse Gas Emissions in Three Rice-Based Cropping Systems

15. Optimized agronomic management as a double-win option for higher maize productivity and less global warming intensity: A case study of Northeastern China

16. Plough Tillage Maintains High Rice Yield and Lowers Greenhouse Gas Emissions under Straw Incorporation in Three Rice-Based Cropping Systems

25. Nitrogen Fertilization and Straw Management Economically Improve Wheat Yield and Energy Use Efficiency, Reduce Carbon Footprint

28. Acclimation of CH4 emissions from paddy soil to atmospheric CO2 enrichment in a growth chamber experiment

29. Organic amendments increase crop yield while mitigating greenhouse gas emissions from the perspective of carbon fees in a soybean-wheat system

30. Plough Tillage Maintains High Rice Yield and Lower Greenhouse Gas Emissions Under Crop Straw Incorporation

33. List of contributors

44. Acclimation of methane emissions from rice paddy fields to straw addition

45. Acclimation of CH4emissions from paddy soil to atmospheric CO2enrichment in a growth chamber experiment

46. Limited potential of harvest index improvement to reduce methane emissions from rice paddies

48. Maize‐based intercropping systems achieve higher productivity and profitability with lesser environmental footprint in a water‐scarce region of northwest China.

49. Lower‐than‐expected CH4 emissions from rice paddies with rising CO2 concentrations.

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