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| 1 | 棉花施肥技术与营养机理研究进展显示文摘综述了近10年来不同棉区、不同基因型品种、不同种植模式、不同产量水平棉花的养分需求规律,对不同棉区棉花氮磷钾施肥阈值及运筹技术进行了总结;并概述了棉花氮磷钾养分高效利用的机理研究进展,提出了未来棉花施肥技术与营养机理的研究方向。 | 李鹏程 郑苍松 孙淼 庞朝友 张思平 刘绍东 陈静 李亚兵 董合林 赵新华 | 2017 | 棉花学报2017,29,B09: | 21 |
| 2 | Effects of plant density and nitrogen rate on cotton yield and nitrogen use in cotton stubble retaining fields显示文摘Increasing nitrogen(N)rate could accelerate the decomposition of crop residues,and then improve crop yield by increasing N availability of soil and N uptake of crops.However,it is not clear whether N rate and plant density should be modified after a long period of cotton stubble return with high N rate.This study seeks to assess the effects of N rate and plant density on cotton yield,N use efficiency,leaf senescence,soil inorganic N,and apparent N balance in cotton stubble return fields in Liaocheng,China,in 2016 and 2017.Three plant densities 5.25(D_(5.25)),6.75(D_(6.75))and 8.25(D_(8.25))plants m^(-2) and five N rates 0(N_(0)),105(N_(105)),210(N_(210)),315(N315),and 420(N420)kg ha^(-1) were investigated.Compared to the combination used by local farmers(D_(5.25)N_(315)),a 33.3%N reduction and a 28.6%increase in plant density(D_(6.75)N_(210))can maintain high cotton yield,while a 66.7%N reduction at 6.75 plants m^(-2)(D_(6.75)N_(105))can only achieve high yield in the first year.Biological yield increased with the increase of N rate and plant density,and the highest yield was obtained under 420 kg N ha^(-1) at 8.25 plants m^(-2)(D_(8.25)N_(420))across the two years under investigation.Compared to D5.25N315,N agronomic efficiency(NAE)and N recovery efficiency(NRE)in D_(6.75)N_(210) increased by 30.2 and 54.1%,respectively,and NAE and NRE in D6.75N105 increased by 104.8 and 88.1%,respectively.Soil inorganic N decreased sharply under 105 kg N ha^(-1),but no change was found under 210 kg N ha^(-1) at 6.75 plants m^(-2).N deficit occurred under 105 kg N ha^(-1),but it did not occurr under 210 kg N ha^(-1) at 6.75 plants m^(-2).Net photosynthetic rate and N concentration of leaves under N rate ranging from 210 to 420 kg ha^(-1) were higher than those under N rate of 0 or 105 kg N ha^(-1) at all three densities.The findings suggest that D6.75N210 is a superior combination in cotton stubble retaining fields in the Yellow River Valley and other areas with similar ecologies. | WANG Shi-hong MAO Li-li SHI Jia-liang NIE Jun-jun SONG Xian-liang SUN Xue-zhen | 2021 | Journal of Integrative Agriculture2021,20,8: | 3 |
| 3 | 氮、钾肥运筹对棉花熟性、产量和肥料利用率的影响显示文摘为明确黄淮流域棉区高密种植下适宜的氮、钾肥运筹策略,试验于2017年在北京上庄与河北河间开展,采用裂区设计,主区包括‘鲁棉研28’和‘欣抗4’2个品种;裂区为肥料运筹,设基肥与蕾肥、初花肥、盛花肥配合(上庄点基追比为4∶6、河间点为6∶4)和蕾期、初花期、盛花期一次性追肥共6个处理,N和K2O总用量均为150 kg/hm^2,以不施肥为对照(CK),种植密度为9.0万株/hm^2。结果表明:基施氮肥(60~90 kg N/hm^2)和钾肥(60~90 kg K2O/hm^2)可促进棉花花芽分化、使果枝始节下降0.3个节位。施用氮肥降低了棉花后期吐絮率、延迟了成熟,可能主要与中、下部果枝的外围铃(第3果节及以外)比例较高有关;施用钾肥对吐絮率无显著影响。无论氮肥还是钾肥,盛花期一次追肥的产量最高,分别较CK增产15.8%和17.0%,其农学利用率和偏生产力也最高。黄河流域高密度种植条件下,当N和K2O的施用量为150 kg/hm^2时,以盛花期一次性追施的效果最好;成铃分布较果枝始节对棉花熟期的影响更大。需采取有效措施优化成铃结构,避免因施肥(尤其是氮肥)导致晚熟。为建立机采棉丰产优质早熟栽培措施提供依据。 | 齐海坤 李芳军 孟璐 杜萌 杜明伟 徐东永 田晓莉 李召虎 | 2020 | 河北农业大学学报2020,43,4: | 2 |
| 4 | 山西省县域棉花种植格局与施肥技术分析显示文摘通过剖析山西省县域棉花种植格局,探讨棉花生产施肥技术,旨在为山西棉花高产栽培研究提供一些借鉴和参考。以《中国统计年鉴》和《山西统计年鉴》数据库为依据,结合中国知网历年发表论文,分析山西县域棉花种植现状。研究表明:山西省耕地面积在2010年以后基本稳定,但棉花种植面积整体呈大幅下降趋势,到2017年仅有2.87×103 hm2的种植面积,果园种植面积逐年增加取代棉花种植。山西省县域主产区在运城和临汾地区,且在运城各县市的单产较高,绝大部分县域高于1 t/hm2。基于知网2010—2019年山西棉花种植的408篇论文分析发现,棉花增产基础技术的施肥研究鲜有报道。因此,建议加强山西棉花科学施肥技术体系研究,建立棉花养分专家系统,指导棉花生产,促进棉花可持续健康发展。 | 陈梦妮 李永山 王慧 范巧兰 | 2021 | 农学学报2021,11,4: | 1 |
| 5 | 适宜施氮量提高棉花氮磷钾养分积累和皮棉产量显示文摘【目的】棉花是喜磷喜钾作物,适宜的施氮量不仅可以保证棉花的营养生长,还会促进磷、钾的吸收。为此我们研究了中熟和中早熟棉花品种的适宜施氮量。【方法】田间试验于2019—2020年在河南安阳开展。试验采用裂区设计,主区设7个施氮量:0、60、120、180、240、300、360 kg/hm^(2),依次记为N0、N60、N120、N180、N240、N300、N360;副区为黄河流域两个主栽棉花品种冀棉228(中熟)和鲁棉研28号(中早熟)。在棉花采收期,测定了棉花地上部生物量、产量及氮、磷、钾含量,计算氮、磷、钾累积量和皮棉生产效率。【结果】与N0相比,中熟品种冀棉228地上部生物量在施氮0~240 kg/hm^(2)范围内,随施氮量的增加显著增加,施氮量超过240 kg/hm^(2)后生物量不再显著增加;而中早熟品种鲁棉研28号地上部生物量在施氮量超过180 kg/hm^(2)后,就不再显著增加。施氮显著增加了冀棉228和鲁棉研28号地上部的氮、磷、钾累积量,冀棉228分别增加了37.5%、23.5%、29.2%,鲁棉研28号分别增加了47.2%、34.0%、35.5%。鲁棉研28号提高的幅度大于冀棉228。棉花氮、磷、钾积累量的增加65.9%~82.4%是由于地上部生物量的增加,17.6%~34.1%是由于地上部氮、磷、钾含量的增加。冀棉228的单株成铃数和鲁棉研28号的单铃重均随着施氮量的增加呈先增加后降低的趋势,通过线性加平台模拟得到的两个品种的最高产量施氮量分别为180和188 kg/hm^(2),对应的皮棉产量分别为1661和1538 kg/hm^(2)。氮、磷、钾皮棉生产效率均随施氮量增加而显著降低。磷素、钾素皮棉生产效率与氮素皮棉生产效率呈正相关。产量收获指数与氮、磷、钾的累积量显著负相关,而与氮、磷、钾收获指数间呈显著正相关,可作为肥料利用效率的间接选择指标。【结论】适宜的施氮量可有效提高棉花地上部生物量和氮、磷、钾含量,二者的增加共同提高了棉铃和地上部的氮磷钾累积量,生物量增加对提高氮磷钾积累量的贡献率为65.9%~82.4%,氮、磷、钾含量增加的贡献率为17.6%~34.1%。氮素皮棉生产效率与磷素、钾素的皮棉生产效率呈正相关。综上,氮素吸收可促进棉花对磷、钾素的吸收,本试验条件下,冀棉228和鲁棉研28号皮棉产量和氮磷钾吸收利用率均较高的施氮量分别为180和188 kg/hm^(2)。 | 冯卫娜 郑苍松 李小飞 孙淼 邵晶晶 李鹏程 董合林 | 2022 | 植物营养与肥料学报2022,28,12: | 1 |
| 6 | 适量氮肥和缩节胺配施提高黄河流域棉区棉花产量的机理显示文摘【目的】探讨适量氮肥和缩节胺(DPC)配施提高棉花产量的机理,为合理施用氮肥和DPC提供科学依据。【方法】2015—2017年,在郑州市黄河滩区进行了双因素裂区设计田间试验。主区为3个氮肥用量,即:不施氮肥(N0)、施用常量氮肥(N1,225 kg/hm^(2))和过量氮肥(N2,450 kg/hm^(2));副区为3个DPC用量,即:不喷施DPC(D0)、喷施常量DPC(D1,75 g/hm^(2))和过量DPC(D2,150 g/hm^(2))。调查测定了叶片SPAD值、器官干物质质量和含氮量、“四桃”数量及产量等。【结果】不同施氮量下,棉花皮棉产量表现为N1>N2>N0。不同DPC用量下,籽棉和皮棉产量均表现为D1>D2>D0。氮肥与DPC用量组合对衣分及籽棉产量有显著互作效应(P<0.05),对皮棉产量有极显著互作效应(P<0.01)。与N1D1相比,N0D0组合叶片SPAD值低,干物质和氮素更多在茎枝部位积累,造成总产量下降。但在N0条件下,D1较D0处理显著增加了叶片SPAD值、总铃数和铃重,进而提高了产量。N1D1组合表现最佳,干物质和N素更多的分配到蕾铃器官,棉花的伏前桃和伏桃以及棉株1~10果枝成铃较多,成铃数、铃重和衣分协调,其皮棉产量达1949.52 kg/hm^(2),比N0D0和N2D2组合分别增加106.75%和20.36%。N2D2组合过高的叶片SPAD值导致干物质和氮素较多分配至叶片中,影响了棉花的生殖生长。【结论】氮肥与缩节胺用量对棉花衣分以及籽棉和皮棉产量的互作效应显著。常量氮肥配合常量缩节胺情况下,干物质和氮素更多地分配在蕾铃部位,且成铃时空分布合理,最终获得高产。过量施用氮肥需要配合过量缩节胺来克服过度营养生长,以维持皮棉产量。 | 刘伟 袁方方 李志坤 马宗斌 | 2023 | 植物营养与肥料学报2023,29,9: | 0 |
| 7 | Cotton N rate could be reduced further under the planting model of late sowing and high-density in the Yangtze River valley显示文摘Background:An optimal N rate is one of the basic determinants for high cotton yield.The purpose of this study was to determine the optimal N rate on a new cotton cropping pattern with late-sowing,high density and onetime fertilization at the first flower period in Yangtze River Valley,China.A 2-year experiment was conducted in 2015 and 2016 with a randomized complete block design.The cotton growth process,yield,and biomass accumulation were examined.Results:The results showed that N rates had no effect on cotton growing progress or periods.Cotton yield was increased with N rates increasing from 120 to 180 kg·hm^−2,while the yield was not increased when the N rate was beyond 180 kg·hm−2,or even decreased(9∼29%).Cotton had the highest biomass at the N rate of 180 kg·hm^−2 is due to its highest accumulation speed during the fast accumulation period.Conclusions:The result suggests that the N rate for cotton could be reduced further to be 180 kg·hm^−2 under the new cropping pattern in the Yangtze River Valley,China. | SONG Xinghu HUANG Ying YUAN Yuan SHAHBAZ Atta Tung BIANGKHAM Souliyanonh YANG Guozheng | 2020 | Journal of Cotton Research2020,3,4: | 0 |