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施氮量和种植密度对川西平原区直播粳稻产量和氮肥利用的影响 被引量:1
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作者 易茜 朱从桦 +6 位作者 潘世江 欧阳裕元 姜心禄 余俊奇 罗粞 郑家国 李旭毅 《耕作与栽培》 2018年第6期1-4,12,共5页
为研究施氮量和种植密度对川西平原区粳稻产量及氮肥利用的影响,以德粳3号为材料,采用裂区试验设计,主区因素为4种施氮量,即N180—纯氮用量为180 kg·hm^(-2),N210—纯氮用量为210 kg·hm^(-2),N240—纯氮用量为240 kg·hm^... 为研究施氮量和种植密度对川西平原区粳稻产量及氮肥利用的影响,以德粳3号为材料,采用裂区试验设计,主区因素为4种施氮量,即N180—纯氮用量为180 kg·hm^(-2),N210—纯氮用量为210 kg·hm^(-2),N240—纯氮用量为240 kg·hm^(-2)和N0—纯氮用量为0 kg·hm^(-2);副区因素为种植密度,即行距×株距为25 cm×20 cm、25 cm×16 cm和25 cm×12 cm,分别记为D20、D16和D12;测定水稻齐穗期叶面积指数、SPAD值和净光合速率,齐穗期和成熟期干物质积累量,成熟期产量及产量构成因素指标。结果表明,与N180处理相比,N210和N240处理有效穗数分别增加4. 14%和12. 84%,产量分别提高8. 42%和10. 05%。施氮量从180 kg·hm^(-2)增加至240 kg·hm^(-2),齐穗期和成熟期干物质积累量逐渐增加,而水稻氮肥偏生产力均逐渐降低。N180和N210处理中,增加种植密度可以明显提高成熟期有效穗数和干物质积累量、籽粒产量和氮肥偏生产力。可见,川西平原粳稻种植推荐施氮量为180~210 kg·hm^(-2),种植密度为25 cm×(12~16) cm。 展开更多
关键词 施氮量 种植密度 粳稻 稻谷产量 氮肥利用率
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Effects of mechanized deep placement of nitrogen fertilizer rate and type on rice yield and nitrogen use efficiency in Chuanxi Plain, China 被引量:3
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作者 ZHU Cong-hua ouyang yu-yuan +4 位作者 DIAO You YU Jun-qi LUO Xi ZHENG Jia-guo LI Xu-yi 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第2期581-592,共12页
This paper investigates the yield and nitrogen use efficiency (NUE) of machine-transplanted rice cultivated using mechanized deep placement of N fertilizer in the rice–wheat rotation region of Chuanxi Plain,China.It ... This paper investigates the yield and nitrogen use efficiency (NUE) of machine-transplanted rice cultivated using mechanized deep placement of N fertilizer in the rice–wheat rotation region of Chuanxi Plain,China.It provides theoretical support for N-saving and improves quality and production efficiency of machine-transplanted rice.Using a single-factor complete randomized block design in field experiments in 2018 and 2019,seven N-fertilization treatments were applied,with the fertilizer being surface broadcast and/or mechanically placed beside the seedlings at (5.5±0.5) cm soil depth when transplanting.The treatments were:N0,no N fertilizer;U1,180 kg N ha^(–1) as urea,surface broadcast manually before transplanting;U2,108 kg N ha^(–1) as urea,surface broadcast manually before transplanting,and 72 kg N ha^(–1) as urea surface broadcast manually on the 10th d after transplanting,which is not only the local common fertilization method,but also the reference treatment;UD,180 kg N ha^(–1) as urea,mechanically deep-placed when transplanting;M1,81.6 kg N ha^(–1) as urea and 38.4 kg N ha^(–1) as controlled-release urea (CRU),mechanically deep-placed when transplanting;M2,102 kg N ha^(–1) as urea and48 kg N ha^(–1) as CRU,mechanically deep-placed when transplanting;M3,122.4 kg N ha^(–1) as urea and 57.6 kg N ha^(–1) as CRU,mechanically deep-placed when transplanting.The effects of the N fertilizer treatments on rice yield and NUE were consistent in the 2 yr.With a N application rate of 180 kg ha^(–1),compared with U2,the N recovery efficiency (NRE),N agronomic use efficiency (NAE) and yield under the UD treatment were 20.6,3.5 and 1.1% higher in 2018,and 4.6,1.7 and 1.2% higher in 2019,respectively.Compared with urea alone (U1,U2 or UD),the NRE,NAE and yield achieved by M3 (combined application of urea and controlled-release urea) were higher by 9.2–73.3%,18.6–61.5% and 6.5–16.5%(2018),and 22.2–65.2%,25.6–75.0% and 5.9–13.9%(2019),respectively.Compared with M3,the lower-N treatments M1 and M2 significantly increased NRE by 4.0–7.8% in 2018 and 3.1–4.3% in 2019,respectively.Compared with urea surface application (U1 or U2),the yield under the M2 treatment was higher by 4.3–12.9% in 2018 and 3.6–10.1% in 2019,respectively.Compared with U2,the NRE and NAE under the M2 treatment was higher by 36.9 and 36.3% in 2018,and 33.2 and 37.4% in 2019,mainly because of higher N uptake.There was no significant difference in the concentration of nitrate in the top 0–20 cm soil under U1,U2 and M2 treatments during the full heading and maturity stages.During the full heading stage,U2 produced the highest concentration of nitrite in 0–20 cm and 20–40 cm soil among the N fertilizer treatments.In conclusion,mechanized deep placement of mixed urea and controlled-release urea (M2) at transplanting is a highly-efficient cultivation technology that enables increased yield of machine-transplanted rice and improved NUE,while reducing the amount of N-fertilization applied. 展开更多
关键词 RICE N-fertilization rate controlled release urea side deep fertilization YIELD nitrogen use efficiency
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成都平原隆两优534高产栽培技术
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作者 易茜 欧阳裕元 +5 位作者 周荣 朱从桦 舒建超 郑家国 李旭毅 姜心禄 《耕作与栽培》 2018年第4期64-65,18,共3页
成都平原机插秧和机直播面积正在迅速扩大,为了筛选满足机械化生产的优质水稻品种,根据近3年的示范表现认为隆两优534比较适宜。为此,结合本区高产栽培技术的研究结果,集成隆两优534机插秧、机直播的高产栽培技术,进一步指导大面积生产。
关键词 水稻 机插秧 机直播 高产 栽培技术
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