Study on role of controlled release fertilizer in increasing the efficiency of nitrogen utilization and rice yield
Zheng Sheng
Abstract
Zheng Sheng
Abstract
Field experiment was conducted in paddy soil to determine the relationship between N release from controlled release fertilizer and N uptake by rice plants N release rate of controlled release fertilizer was higher during the early growing period of rice, but gradually decreased with time The cumulative N release reached about 80% of the total N content of fertilizer at around 70 day after application or when cumulative air temperature had reached about 2000℃ Nitrogen uptake from the fertilizer followed a cubic curve Therefore, the fertilizer can meet the N requirements of two line system late hybrid rice throughout the whole growing period There were lower N concentrations of the water and hardly any algae observed in the plots where controlled release fertilizer applied Higher urea N and ammonium N concentration of the water in the paddy field after urea applied indicates the greater N losses from NH 3 volatilization and denitrification As high as 72 3% in late rice of fertilizer N were recovered by the rice plant at harvest (grain+straw) with the 70 day type controlled release fertilizer Controlled release fertilizer increased efficiency of nitrogen use and minimized environmental pollution
OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Field experiment was conducted in paddy soil to determine the relationship between N release from controlled release fertilizer and N uptake by rice plants N release rate of controlled release fertilizer was higher during the early growing period of rice, but gradually decreased with time The cumulative N release reached about 80% of the total N content of fertilizer at around 70 day after application or when cumulative air temperature had reached about 2000℃ Nitrogen uptake from the fertilizer followed a cubic curve Therefore, the fertilizer can meet the N requirements of two line system late hybrid rice throughout the whole growing period There were lower N concentrations of the water and hardly any algae observed in the plots where controlled release fertilizer applied Higher urea N and ammonium N concentration of the water in the paddy field after urea applied indicates the greater N losses from NH 3 volatilization and denitrification As high as 72 3% in late rice of fertilizer N were recovered by the rice plant at harvest (grain+straw) with the 70 day type controlled release fertilizer Controlled release fertilizer increased efficiency of nitrogen use and minimized environmental pollution
Key concepts: Fertilizer, Agronomy, Urea, Nitrogen, Paddy field, Straw, Controlled release, Denitrification