中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Maize yield and water balance is affected by nitrogen application in a film-mulching ridge-furrow system in a semiarid region of China

文献类型:期刊论文

作者Liu, Chang-An ; Zhou, Li-Min ; Jia, Ju-Jie ; et al
刊名EUROPEAN JOURNAL OF AGRONOMY
出版日期2014
卷号52期号:B页码:103-111
关键词Plastic-film mulch Maize Nitrogen fertilizer Water use efficiency Semiarid Loess Plateau
中文摘要Poor soil and drought stress are common in semiarid areas of China, but maize has a high demand for nitrogen (N) and water. Maize production using the technique of double ridges and furrows mulched with plastic film are being rapidly adopted due to significant increases in yield and water use efficiency (WUE) in these areas. This paper studied N use and water balance of maize crops under double ridges and furrows mulched with plastic-film systems in a semiarid environment over four growing seasons from 2007 to 2010. To improve precipitation storage in the non-growing season, the whole-year plastic-film mulching technique was used. There were six treatments which had 0, 70, 140, 280, 420 or 560 kg N ha(-1) applied in every year for maize. In April 2011, spring wheat was planted in flat plots without fertilizer or mulch following four years of maize cultivation. After four years, all treatments not only maintained soil water balance in the 0-200 cm soil layer but soil water content also increased in the 0-160 cm soil layer compared to values before maize sowing in April 2007. However, under similar precipitation and only one season of spring wheat, soil water content in the 0-160 cm soil layer sharply decreased in all treatments compared to values before sowing in April 2011. Over the four years of maize cultivation, average yield in all treatments ranged from 4071 to 6676 kg ha(-1) and WUE ranged from 18.2 to 28.2 kg ha(-1) mm(-1). In 2011, the yield of spring wheat in all treatments ranged from 763 to 1260 kg ha(-1) and WUE from 3.5 to 6.5 kg ha(-1) mm(-1). The potential maximum grain yield for maize was 6784 kg ha(-1) with 360 kg N ha(-1) applied for four years, but considerable NO3-N accumulated in the soil profile. A lesser application (110 kg N ha(-1)) to this tillage system yielded in 82% of the maximum, increased nitrogen use efficiency and mitigated the risk of nitrogen loss from the system. This study suggests that double ridge-furrow and whole-year plastic-film mulching could sustain high grain yields in maize with approximately 110 kg N ha(-1) and maintain soil water balance when annual precipitation is >273 mm in this semiarid environment
公开日期2014-04-09
源URL[http://ir.xtbg.org.cn/handle/353005/4879]  
专题西双版纳热带植物园_2012年后新成立研究组
推荐引用方式
GB/T 7714
Liu, Chang-An,Zhou, Li-Min,Jia, Ju-Jie,et al. Maize yield and water balance is affected by nitrogen application in a film-mulching ridge-furrow system in a semiarid region of China[J]. EUROPEAN JOURNAL OF AGRONOMY,2014,52(B):103-111.
APA Liu, Chang-An,Zhou, Li-Min,Jia, Ju-Jie,&et al.(2014).Maize yield and water balance is affected by nitrogen application in a film-mulching ridge-furrow system in a semiarid region of China.EUROPEAN JOURNAL OF AGRONOMY,52(B),103-111.
MLA Liu, Chang-An,et al."Maize yield and water balance is affected by nitrogen application in a film-mulching ridge-furrow system in a semiarid region of China".EUROPEAN JOURNAL OF AGRONOMY 52.B(2014):103-111.

入库方式: OAI收割

来源:西双版纳热带植物园

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