Effect of cultivation pattern and nitrogen application rate on soil fertility and nitrate accumulation under maize-wheat rotation system
Jian Xin Zhou
Abstract
Jian Xin Zhou
Abstract
A field experiment was conducted in Guanzhong of Shaanxi Province to study the effects of long-term cultivation patters and fertilization on organic matter, total soil nitrogen, and the quantity and distribution of nitrate N in soil profile under maize-wheat rotation system. The results indicate that the order of effect of the different cultivation patterns on soil organic matter and total nitro-gen contents is: straw mulching furrow planting conventional cultivation water-saving cultivation. Straw mulching has the most significant effect on soil organic matter and total nitrogen contents. Nitrogen application significantly influences soil organic matter and total nitrogen. After 6 years of maize-wheat rotation cropping, the order of residual nitrate N in the 0~200 cm soil profile under different cultivation patterns is: furrow planting water-saving cultivation straw mulching conventional cultivation. There are significant differences in nitrate N accumulation among furrow planting, water-saving cultivation and the conventional cultivation. Nitrate N accumulation in the 0~200 cm soil profile increases with longer cultivation periods and increasing nitrogen application rates. Accumulated nitrate N under 240 kg(N)·hm-2 (N240) treatment is significantly higher than that under 120 kg(N)·hm-2 (N120) treatment. The pattern of nitrate N distribution across the soil profiles differs with differing nitrogen application rate. Under N240 treatment, nitrate N content below the 120 cm soil depth increases with soil depth.
A significance statement is not available in the OpenAlex record.
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.
A field experiment was conducted in Guanzhong of Shaanxi Province to study the effects of long-term cultivation patters and fertilization on organic matter, total soil nitrogen, and the quantity and distribution of nitrate N in soil profile under maize-wheat rotation system. The results indicate that the order of effect of the different cultivation patterns on soil organic matter and total nitro-gen contents is: straw mulching furrow planting conventional cultivation water-saving cultivation. Straw mulching has the most significant effect on soil organic matter and total nitrogen contents. Nitrogen application significantly influences soil organic matter and total nitrogen. After 6 years of maize-wheat rotation cropping, the order of residual nitrate N in the 0~200 cm soil profile under different cultivation patterns is: furrow planting water-saving cultivation straw mulching conventional cultivation. There are significant differences in nitrate N accumulation among furrow planting, water-saving cultivation and the conventional cultivation. Nitrate N accumulation in the 0~200 cm soil profile increases with longer cultivation periods and increasing nitrogen application rates. Accumulated nitrate N under 240 kg(N)·hm-2 (N240) treatment is significantly higher than that under 120 kg(N)·hm-2 (N120) treatment. The pattern of nitrate N distribution across the soil profiles differs with differing nitrogen application rate. Under N240 treatment, nitrate N content below the 120 cm soil depth increases with soil depth.
Key concepts: Agronomy, Sowing, Straw, Mulch, Organic matter, Nitrate, Nitrogen, Soil fertility