Similar Items: Nitrogen losses and greenhouse gas emissions under different N and water management in a subtropical double-season rice cropping system
- Grain yield, water productivity and nitrogen use efficiency of rice under different water management and fertilizer-N inputs in South China
- Environmental, Social, and Economic Challenges in Lowland Rice Production
- Temperature explains the yield difference of double-season rice between tropical and subtropical environments
- New technologies reduce greenhouse gas emissions from nitrogenous fertilizer in China
- Greenhouse gas emissions measurement
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Author: Liang, Kaiming
- Grain yield, water productivity and nitrogen use efficiency of rice under different water management and fertilizer-N inputs in South China
- Environmental, Social, and Economic Challenges in Lowland Rice Production
- Nitrogen losses and greenhouse gas emissions under different N and water management in a subtropical double-season rice cropping system
Author: Zhong, Xuhua
- Grain yield, water productivity and nitrogen use efficiency of rice under different water management and fertilizer-N inputs in South China
- Environmental, Social, and Economic Challenges in Lowland Rice Production
- Nitrogen losses and greenhouse gas emissions under different N and water management in a subtropical double-season rice cropping system
- Fantastic yields in the system of rice intensification: fact or fallacy?
- Farmer participatory testing of standard and modified site-specific nitrogen management for irrigated rice in China
- Rice varietal difference in sheath blight development and its association with yield loss at different levels of N fertilization