2011Zhongguo shengtai nongye xuebaoOpen access

Ammonia volatilization and nitrogen balance after topdressing fertilization in paddy fields of Taihu Lake region

Yü Tian

Open full text 0 citations

Abstract

Ammonia volatilization, N fertilizer fate and soil residual nitrogen at different rice growth stages were investigated via continuous air-flow enclosure method and field 15N micro-plot experiment in gley paddy soils in Taihu Lake region. Results showed that ammonia volatilization occurred within one week and peaked in 1~2 days after fertilization. The rate of ammonia volatilization changed with NH4+-N concentration in surface water. Ammonia volatilization loss from surface water respectively accounted for 16.7% and 6.3% of fertilizers applied at tillering and booting stages. Nitrogen use efficiency of rice plant was 36.7% and 49.6% of applied fertilizers at tillering and booting stages, respectively. This was mainly due to less ammonia volatilization after booting fertilization, which was more readily transferred to grains. In the two topdressing fertilization, apparent rate of nitrogen loss were 52.8% and 40.7% of applied N fertilizer respectively. About 10.6% of applied N fertilizer remained in the soil, which was mostly concentrated in the 0~20 cm soil layer. This showed that fertilization in booting stage could improve N use efficiency and reduce N loss. This was because of low ammonia volatilization loss and high utilization of fertilizers by grain of panicles during this period.

About this research paper

What this paper is about

Ammonia volatilization, N fertilizer fate and soil residual nitrogen at different rice growth stages were investigated via continuous air-flow enclosure method and field 15N micro-plot experiment in gley paddy soils in Taihu Lake region. Results showed that ammonia volatilization occurred within one week and peaked in 1~2 days after fertilization. The rate of ammonia volatilization changed with NH4+-N concentration in surface water. Ammonia volatilization loss from surface water respectively accounted for 16.7% and 6.3% of fertilizers applied at tillering and booting stages. Nitrogen use efficiency of rice plant was 36.7% and 49.6% of applied fertilizers at tillering and booting stages, respectively. This was mainly due to less ammonia volatilization after booting fertilization, which was more readily transferred to grains. In the two topdressing fertilization, apparent rate of nitrogen loss were 52.8% and 40.7% of applied N fertilizer respectively. About 10.6% of applied N fertilizer remained in the soil, which was mostly concentrated in the 0~20 cm soil layer. This showed that fertilization in booting stage could improve N use efficiency and reduce N loss. This was because of low ammonia volatilization loss and high utilization of fertilizers by grain of panicles during this period.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Ammonia volatilization, N fertilizer fate and soil residual nitrogen at different rice growth stages were investigated via continuous air-flow enclosure method and field 15N micro-plot experiment in gley paddy soils in Taihu Lake region. Results showed that ammonia volatilization occurred within one week and peaked in 1~2 days after fertilization. The rate of ammonia volatilization changed with NH4+-N concentration in surface water. Ammonia volatilization loss from surface water respectively accounted for 16.7% and 6.3% of fertilizers applied at tillering and booting stages. Nitrogen use efficiency of rice plant was 36.7% and 49.6% of applied fertilizers at tillering and booting stages, respectively. This was mainly due to less ammonia volatilization after booting fertilization, which was more readily transferred to grains. In the two topdressing fertilization, apparent rate of nitrogen loss were 52.8% and 40.7% of applied N fertilizer respectively. About 10.6% of applied N fertilizer remained in the soil, which was mostly concentrated in the 0~20 cm soil layer. This showed that fertilization in booting stage could improve N use efficiency and reduce N loss. This was because of low ammonia volatilization loss and high utilization of fertilizers by grain of panicles during this period.

Key concepts: Volatilisation, Ammonia volatilization from urea, Fertilizer, Human fertilization, Nitrogen, Agronomy, Panicle, Ammonia

Related papers

Back to paper searchBrowse research topicsOriginal source
Ammonia volatilization and nitrogen balance after topdressing fertilization in paddy fields of Taihu Lake region — Research Paper | ScholarLens