Area of research
Computer Networks and Communications · Plant Science
Research interest
Research interests include Agronomy, Nitrogen, Environmental science, Fertilizer, Panicle, and Urea.
Subsurface placement of controlled-release blended fertilizers mitigates ammonia volatilization by promoting nitrogen transformation in rice fields
One-time application of controlled-release blended fertilizer increases rice yield and nitrogen utilization by optimizing root morphological trait distribution and nitrogen uptake
Efficient fertilization pattern for rice production within the rice-wheat systems
Single-time fertilization of controlled release blended fertilizer optimizes soil nitrogen distribution and root characteristics to increase conventional japonica rice (Oryza sativa L.) grain yield and nitrogen use efficiency
Higher rice productivity and lower paddy nitrogen loss with optimized irrigation and fertilization practices in a rice-upland system
Application of slow-controlled release fertilizer coordinates the carbon flow in carbon-nitrogen metabolism to effect rice quality
Optimizing rice yield: Evaluating the nitrogen supply characteristics of slow- and controlled-release fertilizers using the leaf nitrogen balance index
Mitigating Ammonia Volatilization without Compromising Yield and Quality of Rice through the Application of Controlled-Release, Phosphorus-Blended Fertilizers
Controlled-release potassium blended fertilizer mitigates greenhouse gas emissions in paddy fields
Subsurface banding of blended controlled-release urea can optimize rice yields while minimizing yield-scaled greenhouse gas emissions
Effects of different types of slow- and controlled-release fertilizers on rice yield