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Optimize nitrogen fertilization location in root-growing zone to increase grain yield and nitrogen use efficiency of transplanted rice in subtropical China 被引量:8
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作者 WU Meng LIU Ming +3 位作者 LIU Jia LI Wei-tao JIANG Chun-yu LI Zhong-pei 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第9期2073-2081,共9页
The optimized nitrogen fertilization location differs in different rice-growing regions. We optimized nitrogen deep-point application in root-growing zone(NARZ) for transplanted rice in subtropical China. Field plot... The optimized nitrogen fertilization location differs in different rice-growing regions. We optimized nitrogen deep-point application in root-growing zone(NARZ) for transplanted rice in subtropical China. Field plot experiments were conducted over two years(2014–2015) in a double-rice cropping system to evaluate the effects of nitrogen(N) fertilizer location on grain yield and N use efficiency(NUE). Four different nitrogen deep-point application methods(DN) were compared with traditional broadcast application(BN) using granular urea. The results showed that grain yield, recovery efficiency of N(REN), agronomic efficiency of N(AEN), and partial factor productivity of N(PFP_N) significantly increased 10.3–63.4, 13.7–56.7, 24.7–201.9 and 10.2–63.4%, respectively, in DN treatment compared to BN, respectively. We also find that DN treatments increased grain yield as well as grain N content, and thus grain quality, in comparison with conventional BN treatment. Correlation analysis indicated that significant improvement in grain yield and NUE mainly resulted from increases in productive panicle number and grain N content. In our proposed NARZ method, granular urea should be placed 0 to 5 cm around the rice seeding at a 12-cm depth druing rice transplanting. In NARZ, balanced application of N, P and K further improved grain yield and NUE over treatments with a single N deep-point application. High N uptake by the rice plant did not cause significant soil fertility depletion, demonstrating that this method could guarantee sustainable rice production. 展开更多
关键词 n recovery efficiency grain yield deep-point application n application in root-growing zone
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秸秆还田下施氮模式对冬小麦生长发育及肥料利用率的影响 被引量:8
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作者 党建友 裴雪霞 +2 位作者 张定一 王姣爱 张晶 《麦类作物学报》 CAS CSCD 北大核心 2014年第11期1552-1558,共7页
为给秸秆还田下山西南部一年两熟区冬小麦种植筛选适宜施氮方式,通过大田试验,以不施氮为对照,在施氮225.0kg·hm-2条件下设置10∶0、7∶3、5∶5和3∶7(底施∶拔节期追施比例)四种施氮模式,研究了玉米秸秆还田下施氮方式对冬小麦生... 为给秸秆还田下山西南部一年两熟区冬小麦种植筛选适宜施氮方式,通过大田试验,以不施氮为对照,在施氮225.0kg·hm-2条件下设置10∶0、7∶3、5∶5和3∶7(底施∶拔节期追施比例)四种施氮模式,研究了玉米秸秆还田下施氮方式对冬小麦生长发育、干物质运转、肥料当季利用率及土壤酶活性的影响。结果表明,在玉米秸秆直接还田和施氮225.0kg·hm-2下,提高底施氮肥比例可增加冬小麦越冬前和拔节期单株茎蘖数和总茎数,并使旗叶SPAD值在灌浆前中期保持较高水平,且延缓其灌浆后期下降,促进灌浆期干物质向穗部转运和积累,增加成穗数和穗粒数,进而实现增产。施氮模式中底追比例7∶3的增产效果最好,籽粒产量达5 773.8kg·hm-2,较其他施氮模式增产1.58%~10.17%。增加底施氮肥比例可提高土壤蔗糖酶、磷酸酶和过氧化酶活性,促进冬小麦对养分的吸收及其向籽粒的转运,提高肥料当季表观利用率。底追比例7∶3的氮磷肥利用效果最好,其中氮肥当季利用率较其他模式提高1.46%~3.06%,磷肥当季利用率提高0.76%~3.34%;钾肥利用效果以氮肥全部底施最好,较其他施氮模式提高4.54%~14.53%。因此,山西省南部一年两熟种植区在玉米秸秆还田下冬小麦的合理施氮模式为70%底施+30%拔节期追施。 展开更多
关键词 玉米秸秆还田 冬小麦 施氮模式 生长发育 产量 肥料利用率
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