期刊文献+

干旱灌区固定道耕作对土壤水热效应及春小麦产量的影响 被引量:4

Effect of Permanent Raised Bed on Moisture and Thermal of Soil and Yield of Spring Wheat in Arid Irrigation Area
下载PDF
导出
摘要 为提高干旱灌区小麦节水生产技术,依托2005年开始的定位试验,以传统耕作(CT)为对照,对固定道平作(ZT)和固定道垄作(PRB)下土壤温度、土壤水分和春小麦产量的变化进行了分析。结果表明,PRB可增加0~80cm土层土壤水分含量,小麦出苗期至收获期不同土层土壤含水量为PRB〉ZT〉CT。在小麦播种期至出苗期,PRB土壤升温较慢,拔节期至收获期0~15cm土层土壤温度变化趋势为PRB〉ZT〉CT。随着种植年限的增加,PRB保护性耕作对小麦具有明显的增产效应,穗粒数的增加是其增产的主要因素。PRB和ZT处理4年平均水分利用效率分别比对照提高了46.88%和12.96%。PRB处理节水增产效果明显,可作为干旱灌区小麦节水栽培新技术进行推广。 In order to increase the wheat-planting technique at arid area,based on long-term trials started in 2005,the soil temperature,soil moisture and yield were studied on spring wheat with the treatments of controlled traffic(ZT),permanent raised bed(PRB)and conventional tillage(CT).The results revealed that the soil moisture in 0to 80 cm soil layer of PRB was increased and it changed as PRB〉ZT〉CT from emergence stage to harvest.Before the emergence stage,the soil temperature rose slowly,but it changed as PRB〉ZT〉CT in 0to 15 cm layer from elongation to harvest.The yield of spring wheat for PRB was increased obviously with the planting year increased.The increase of grain number per spike was the main reason of yield increasing.Average water use efficiency of four years for PRB and ZT increased by 46.88 % and 12.96% compared to CT,respectively.The results showed that water-saving effects of PRB was remarkable and it will become a novel water-saving technology in irrigation area.
出处 《麦类作物学报》 CAS CSCD 北大核心 2015年第7期988-994,共7页 Journal of Triticeae Crops
基金 国家自然科学基金项目(31160128) ACIAR资助项目(SMCN/2002/094)
关键词 春小麦 固定道 水热效应 产量 干旱灌区 Spring wheat Permanent raised bed Moisture and thermal effect Yield Arid irrigationarea
  • 相关文献

参考文献29

  • 1许迪,康绍忠.现代节水农业技术研究进展与发展趋势[J].高技术通讯,2002,12(12):103-108. 被引量:85
  • 2XieJZ(谢继忠).Waterresourcesproblemsandwater-savingstrategiesinHexicorridor[J].中国沙漠研究,2004,24(6):802-808.
  • 3周维博.河西走廊灌溉农业发展的水资源承载能力分析[J].自然资源学报,2002,17(5):564-570. 被引量:36
  • 4张立勤,马忠明,杨君林,连彩云,王智琦.储水灌溉及覆膜对土壤水分及小麦出苗的影响[J].灌溉排水学报,2012,31(3):103-106. 被引量:7
  • 5Sayre K D, Moreno R O. Application of raised-bed planting system to wheat [R]. Wheat Special Report no. 31. CIMMYT , Mexico, 1997,362.
  • 6Singh Y. Crop residue management in rice-wheat system[C]// Rice-Wheat Consortium for the Indo-Gangetic Plains. CIM- MYT, New Delhi, India, 2003,153.
  • 7Talukder A ,Sufian M A , Meisner C A , et al. Rice , wheat and mungbean yields in response to N levels and management under a bed planting system[C]//Proceedings of t he 17t h World Congress of Soil Science . Bangkok, Thailand, 2002, 351.
  • 8陈浩,李洪文,高焕文,王晓燕,何进,李问盈,王庆杰.多年固定道保护性耕作对土壤结构的影响[J].农业工程学报,2008,24(11):122-125. 被引量:31
  • 9Cooper A W,Trouse J A C,Dumas W T. Controlled traffic in row crop production [C]//Proeeedings of 7th International Congress on Agricultural Engineering . Gatton Queensland University Gatton College, 1995: 1- 6.
  • 10Chamen W C T, Vermeulen G D, Campbell D J,et a l. Reduc- tion of traffic systems:Tillage and traffic in crop production [C]//Proceedings of the llth International Conference of the International Soil and Tillage Research Organization. Ed- inburgh, 1988 : 227-232.

二级参考文献150

共引文献539

同被引文献84

引证文献4

二级引证文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部