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浅谈冬季小麦田间管理技术
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作者 梁红光 《黑龙江科技信息》 2012年第2期261-261,共1页
当前小麦已进入冬前分蘖高峰期,是冬季管理的关键时期,要因地制宜、因苗制宜,切实加强麦田管理,促控结合,在实现苗齐、苗全、苗匀的基础上,促根增蘖,培育壮苗,实现壮苗安全越冬,确保春季早发快长,为夺取小麦丰收打好基础。
关键词 冬季小麦 管理技术 分析
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豫东平原冬季小麦的施肥管理
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作者 朱春霞 《农业开发与装备》 2017年第4期150-150,共1页
小麦是豫东平原重要的粮食作物。为充分发挥小麦品种的高产潜力,制定了豫东平原小麦全程健身(应变)栽培技术,包括高标准种好小麦、冬前和越冬期管理、返青拔节期施肥技术等田间管理措施。冬小麦需肥较多,其需肥规律是:每生产50kg小麦,... 小麦是豫东平原重要的粮食作物。为充分发挥小麦品种的高产潜力,制定了豫东平原小麦全程健身(应变)栽培技术,包括高标准种好小麦、冬前和越冬期管理、返青拔节期施肥技术等田间管理措施。冬小麦需肥较多,其需肥规律是:每生产50kg小麦,需吸收氮素1.4~1.6kg,磷素0.5~0.75kg,钾素1.5~2kg,氮、磷、钾的比例大约是1:0.33:1。根据栽培的品种、土壤,气候、上茬作物等条件不同而有所变化。 展开更多
关键词 豫东平原 冬季小麦 施肥 管理
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冬小麦种植技术及病虫害防治 被引量:3
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作者 杨海峰 《种子科技》 2022年第19期65-67,共3页
小麦是世界三大谷物之一,在我国种植广泛。依据播种季节不同,主要分为春季小麦和冬季小麦两种,以长城为界,以北大多为春季小麦,以南则以冬季小麦为主,我国小麦种植以冬小麦为主。冬小麦的种植环境相对寒冷,一旦出现病虫害,对于冬小麦的... 小麦是世界三大谷物之一,在我国种植广泛。依据播种季节不同,主要分为春季小麦和冬季小麦两种,以长城为界,以北大多为春季小麦,以南则以冬季小麦为主,我国小麦种植以冬小麦为主。冬小麦的种植环境相对寒冷,一旦出现病虫害,对于冬小麦的产量、质量将会产生严重影响,还会使农民群众的收入无法得到有效保障。因此,在现代农业发展过程中,需要重视冬小麦种植技术的应用,并且进行高效的病虫害防治工作,使得冬小麦的质量和产量得到双重保障,对现代农业经济的发展具有非常重要的意义和价值。文章阐述了冬小麦种植技术及病虫害防治技术,希望对具体的种植和病虫害防治起到一定的借鉴和引导作用。 展开更多
关键词 冬季小麦 种植技术 病虫害防治
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南阳市冬小麦病虫害防治技术研究 被引量:1
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作者 李庆惠 《种子科技》 2017年第7期112-112,115,共2页
小麦生长中后期,是多种病虫害集中发生阶段。病虫害防治应根据小麦品种抗病性特点和病虫发生情况,对症下药、有效控制危害,同时要减少用药量和用药次数。结合南阳市冬小麦主要病虫害发生特点提出具体防治措施,供生产参考。
关键词 冬季小麦 病虫害 防治技术
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2000/2001年度我国冬小麦产量调查报告
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作者 卜轶彪 《粮食与油脂》 2000年第4期6-7,共2页
关键词 中国 冬季小麦 产量 调查报告 2000年
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Effect of Atmospheric CO_2 Enrichment on Soil Respiration in Winter Wheat Growing Seasons of a Rice-Wheat Rotation System 被引量:4
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作者 SUN Hui-Feng ZHU Jian-Guo +2 位作者 XIE Zu-Bin LIU Gang TANG Hao-Ye 《Pedosphere》 SCIE CAS CSCD 2013年第6期752-766,共15页
Studies on the effect of elevated CO2 on C dynamics in cultivated croplands are critical to a better understanding of the C cycling in response to climate change in agroecosystems. To evaluate the effects of elevated ... Studies on the effect of elevated CO2 on C dynamics in cultivated croplands are critical to a better understanding of the C cycling in response to climate change in agroecosystems. To evaluate the effects of elevated CO2 and different N fertilizer application levels on soil respiration, winter wheat (Triticum aestivum L. cv. Yangmai 14) plants were exposed to either ambient CO2 or elevated CO2 (ambient [CO2] + 200 μmol mol-1), under N fertilizer application levels of 112.5 and 225 kg N ha-1 (as low N and normal N subtreatments, respectively), for two growing seasons (2006-2007 and 2007-2008) in a rice-winter wheat rotation system typical in China. A split-plot design was adopted. A root exclusion method was used to partition soil respiration (RS) into heterotrophic respiration (RH) and autotrophic respiration (RA). Atmospheric CO2 enrichment increased seasonal cumulative RS by 11.8% at low N and 5.6% at normal N when averaged over two growing seasons. Elevated CO2 significantly enhanced (P 〈 0.05) RS (12.7%), mainly due to the increase in RH (caused by decomposition of larger amounts of rice residue under elevated CO2) during a relative dry season in 2007-2008. Higher N supply also enhanced RS under ambient and elevated CO2. In the 2007-2008 season, normal N treatment had a significant positive effect (P 〈 0.01) on seasonal cumulative RS relative to low N treatment when averaged across CO2 levels (16.3%). A significant increase in RA was mainly responsible for the enhanced RS under higher N supply. The correlation (r2) between RH and soil temperature was stronger (P 〈 0.001) than that between RS and soil temperature when averaged across all treatments in both seasons. Seasonal patterns of RA may be more closely related to the plant phenology than soil temperature. The Q10 (the multiplier to the respiration rate for a 10 ℃ increase in soil temperature) values of RS and RH were not affected by elevated CO2 or higher N supply. These results mainly suggested that the increase in RS at elevated CO2 depended on the input of rice residue, and the increase in RS at higher N supply was due to stimulated root growth and concomitant increase in RA during the wheat growing portion of a rice-winter wheat rotation system. 展开更多
关键词 autotrophic respiration carbon dynamics heterotrophic respiration N fertilization soil temperature
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