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高寒山区春烤烟—秋高粱高效栽培技术探讨 被引量:1
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作者 吴金鸾 《农业科技通讯》 2023年第11期164-167,共4页
在南丹县高寒山区实行春烤烟套种秋高粱一年两季栽培,是南方喀斯特山区农田增效、农民增收的新亮点。该模式充分利用当地山区光、温、水等气候资源,发展特色订单农业生产,不仅满足当地烤烟和酿酒企业原料需求,而且带动山区农民快速致富... 在南丹县高寒山区实行春烤烟套种秋高粱一年两季栽培,是南方喀斯特山区农田增效、农民增收的新亮点。该模式充分利用当地山区光、温、水等气候资源,发展特色订单农业生产,不仅满足当地烤烟和酿酒企业原料需求,而且带动山区农民快速致富。本文作者从作物(烤烟、高粱)茬口安排、良种选择、适期播种、培育壮苗、移栽定植、水肥管理、病虫害防治与适时采收等方面总结分析春烤烟套种秋高粱高效栽培技术,以期为指导山区旱地一年多收提供技术参考。 展开更多
关键词 春烤烟 秋高粱 栽培技术 南丹县
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春玉米套种秋高粱效益分析及其高产栽培技术 被引量:4
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作者 魏学伦 刘永贤 《现代农业科技》 2009年第15期27-27,共1页
经过多年实践,南丹县摸索出了一套比较科学的春玉米套种秋高粱的高产栽培技术体系。分析了该技术的经济效益、社会效益和生态效益,总结了其高产栽培技术,包括品种选择、选地整地、播期安排、玉米田间管理、秋高粱播种、高粱管护、收获... 经过多年实践,南丹县摸索出了一套比较科学的春玉米套种秋高粱的高产栽培技术体系。分析了该技术的经济效益、社会效益和生态效益,总结了其高产栽培技术,包括品种选择、选地整地、播期安排、玉米田间管理、秋高粱播种、高粱管护、收获等内容。 展开更多
关键词 春玉米 秋高粱 套种 高产栽培
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秋高粱在旱地多熟制中的利用研究
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作者 吴大鸿 《贵州农业科学》 CAS 1997年第3期31-33,共3页
秋高粱在热量条件较好的地区,利用作物间的空闲期和土地,可增加一熟粮食产出。秋高粱产量达3900~5767.5kg/hm2的关键措施是:选用秋高粱种,在7月上。
关键词 秋高粱2号 旱地 多熟制 产量 栽培 高粱
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Effects of Different Sowing Times on Plant Height, Leaf Stem Ratio and DW/FW Ratio of Forage Sorghum in Autumn Idle Land 被引量:5
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作者 ZHOU Han-zhang LIU Huan +4 位作者 JIA Hai-yan ZHOU Xin-jian WEI Zhi-min LI Shun-guo LIU Hai-zhong 《Agricultural Science & Technology》 CAS 2018年第2期57-66,共10页
The aim was to explore the linear regression prediction models between sowing time and plant height, leaf stem ratio and DW/FW ratio of forage sorghum in autumn idle land. [Method] The relationships between sowing tim... The aim was to explore the linear regression prediction models between sowing time and plant height, leaf stem ratio and DW/FW ratio of forage sorghum in autumn idle land. [Method] The relationships between sowing time and plant height, leaf stem ratio and DW/FW ratio of forage sorghum were simulated and compared by employing field plot experiment and linear regression analysis. [Result] The sowing time had a great impact on plant height, leaf stem ratio and DW/FW ratio of forage sorghum in autumn idle land. With the delay of sowing time, the plant height and DW/FW ratio of forage sorghum decreased, while the leaf stem ratio increased. The regression models between sowing time and plant height, leaf stem ratio and DW/FW ratio of forage sorghum were established: plant height and sowing time, yheight = 234.725- 5.005X; leaf stem ratio and sowing time,ylcaf= 0.096 + 0,019x; DW/FW ratio and sowing time, ydry= 0.305-0.002X. From July 23rd to August 30th, the plant height of forage sorghum was reduced by 5.005 cm, the leaf stem ratio was increased by 0.019 and the DW/FW ratio was reduced by 0.002 in average when hhe sowing time was delayed by one day. [Conclusion] This study provides a theoretical support for the production of forage sorghum in autumn idle land. 展开更多
关键词 Autumn idle land Forage sorghum Sowing time Plant height Leaf stem ratio DW/FW ratio
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Establishment and Analysis of Regression Models between Sowing Time and Plant Productivity, Biological Yield of Forage Sorghum in Autumn Idle Land 被引量:1
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作者 ZHOU Han-zhang LIU Hong-xia +4 位作者 LIU Huan ZHOU Xin-jian WEI Zhi-min HOU Sheng-lin LI Shun-guo 《Agricultural Science & Technology》 CAS 2018年第1期51-58,共8页
[Objective]The aim was to establish the linear regression prediction models between sowing time and plant productivity, biological yield of forage sorghum in autumn idle land.[Method]The relationships between sowing t... [Objective]The aim was to establish the linear regression prediction models between sowing time and plant productivity, biological yield of forage sorghum in autumn idle land.[Method]The relationships between sowing time and plant productivity, biological yield of forage sorghum were simulated and compared by using field experiment and linear regression analysis.[Result] The sowing time had an important influence on the plant productivity and biological yield of forage sorghum in autumn idle land. The plant productivity and biological yield of forage sorghum both decreased with the delay of sowing time.The regression model between plant fresh weight and sowing time was ?fresh=0.618-0.015x; the regression model between plant dry weight and sowing time was ?dry=0.184-0.005x; and the regression model between biological yield and sowing time was yield=29 126.461-711.448x. During July 23rd to August 30th, when the sowing time was delayed by 1 day, the plant fresh weight of forage sorghum was reduced by 0.015 g, the plant dry weight was reduced by 0.005 g, and the yield was reduced by 711.448 kg/hm2. [Conclusion] The three regression models established in this study will provide theoretical support for the production of forage sorghum. 展开更多
关键词 Autumn idle land Forage sorghum Sowing time Plant productivity Biological yield Regression model Regression analysis
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