首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   467篇
  免费   35篇
  国内免费   79篇
林业   14篇
农学   24篇
基础科学   122篇
  144篇
综合类   161篇
农作物   19篇
畜牧兽医   22篇
园艺   3篇
植物保护   72篇
  2024年   1篇
  2023年   9篇
  2022年   17篇
  2021年   17篇
  2020年   18篇
  2019年   14篇
  2018年   14篇
  2017年   26篇
  2016年   47篇
  2015年   26篇
  2014年   29篇
  2013年   47篇
  2012年   42篇
  2011年   46篇
  2010年   34篇
  2009年   17篇
  2008年   26篇
  2007年   24篇
  2006年   32篇
  2005年   16篇
  2004年   9篇
  2003年   12篇
  2002年   4篇
  2001年   10篇
  2000年   9篇
  1999年   7篇
  1998年   5篇
  1997年   3篇
  1996年   2篇
  1995年   4篇
  1994年   5篇
  1993年   4篇
  1990年   1篇
  1988年   3篇
  1978年   1篇
排序方式: 共有581条查询结果,搜索用时 15 毫秒
1.
针对宁南山区春季降雨少、低温不利于马铃薯出苗,而作物生育中后期高温胁迫限制马铃薯块茎形成导致减产等问题,于2016年设置垄覆地膜沟内覆盖塑料地膜(DM)、玉米秸秆(JG)、生物降解膜(SM)、麻纤维地膜(MM)、液态地膜(YM)及沟不覆盖(BM),以传统平作为对照(CK),研究沟垄覆盖模式对土壤温度、土壤水分、旱作马铃薯生长及块茎产量的影响.结果表明:处理DM,SM,MM和YM马铃薯生育期耕层土壤温度表现出增温效应,而处理JG和BM表现为降温效应,其中处理DM增温效果和处理JG降温效果最佳.处理YM,JG对马铃薯生长前期保水效果较好,分别较CK显著提高13.3%,27.0%,而处理JG,DM对生育中后期的保墒效果较佳,分别较CK显著提高22.4%,13.2%.处理JG可显著促进马铃薯生长,其增产效果最为显著,DM次之,分别较CK增产47.8%,44.8%,其他处理较CK差异不具有统计学意义.可见,在宁南山区实施垄覆地膜沟覆秸秆模式可调控土壤水热环境,对旱作马铃薯生长及增产效果最佳.  相似文献   
2.
Aeolian-fluvial interplay erosion regions are subject to intense soil erosion and are of particular concern in loess areas of northwestern China.Understanding the composition,distribution,and transport processes of eroded sediments in these regions is of considerable scientific significance for controlling soil erosion.In this study,based on laboratory rainfall simulation experiments,we analyzed rainfall-induced erosion processes on sand-covered loess slopes(SS)with different sand cover patterns(including length and thickness)and uncovered loess slopes(LS)to investigate the influences of sand cover on erosion processes of loess slopes in case regions of aeolian-fluvial erosion.The grain-size curves of eroded sediments were fitted using the Weibull function.Compositions of eroded sediments under different sand cover patterns and rainfall intensities were analyzed to explore sediment transport modes of SS.The influences of sand cover amount and pattern on erosion processes of loess slopes were also discussed.The results show that sand cover on loess slopes influences the proportion of loess erosion and that the compositions of eroded sediments vary between SS and LS.Sand cover on loess slopes transforms silt erosion into sand erosion by reducing splash erosion and changing the rainfall-induced erosion processes.The percentage of eroded sand from SS in the early stage of runoff and sediment generation is always higher than that in the late stage.Sand cover on loess slopes aggravates loess erosion,not only by adding sand as additional eroded sediments but also by increasing the amount of eroded loess,compared with the loess slopes without sand cover.The influence of sand cover pattern on runoff yield and the amount of eroded sediments is larger than that of sand cover amount.Furthermore,given the same sand cover pattern,a thicker sand cover could increase sand erosion while a thinner sand cover could aggravate loess erosion.This difference explains the existence of intense erosion on slopes that are thinly covered with sand in regions where aeolian erosion and fluvial erosion interact.  相似文献   
3.
保护地蔬菜栽培不同灌水方法对表层土壤盐分含量的影响   总被引:12,自引:0,他引:12  
通过 3年连续保护地栽培蔬菜小区试验 ,对滴灌、渗灌、沟灌 3种灌水方法的土壤盐分积累状况进行了比较研究。试验后 0~ 2 0 cm土层土壤全盐含量以沟灌最高 ,渗灌次之 ,滴灌最低 ;滴灌土壤 p H下降幅度明显低于渗灌和沟灌土壤。在 0~ 2 0 cm土层内全盐含量呈幂指数形式分布 ,即地表处含量最高 ,随深度增加逐渐下降 ;而土壤 p H则随深度增加而直线上升。另外 ,土壤中可溶性盐的阴离以 NO-3 为主 ,阳离子以 Ca2 + 为主。这说明选择合理灌水方法 ,是防止土壤退化、提高保护地作物产量和质量的有效途径。  相似文献   
4.
A plastic-covered ridge and furrow rainfall harvesting (PRFRH) system combined with mulches was designed to increase water availability to crops for improving and stabilizing agricultural production in the semiarid Loess region of northwest China. The system was built by shaping the soil surface with alternate ridges and furrows along the contour. The plastic-covered ridges served as a rainfall harvesting zone and furrows as a planting zone. Some materials were also used to mulch the furrows to increase the effectiveness of the harvested water. This system can make better utilization of light rain by harvesting rainwater through the plastic-covered ridge. The field experiment (using corn as an indicator crop) showed that grain yields in the PRFRH system with mulches in 1998 and 1999 were significantly higher than the controls, with an increase of 4010–5297 kg per ha (108–143%). In most treatments, the water use efficiencies (WUE) were in excess of 2.0 kg m−3. The WUE values of corn in this system were 1.9 times greater than the controls in 1998 and 1.4 times greater than the controls in 1999. The plastic-covered ridge led to a yield increase of 3430 kg per ha (92%) in 1998 and of 1126 kg per ha (21%) in 1999 compared with the uncovered ridge. On average, the additional mulches in the furrow brought about a yield increase of 8–25%. Based on the results of this study and other researches, this technique can increase corn grain yield by 60–95% in drought and average years, 70–90% in wet years, and 20–30% in very wet years. The PRFRH system had the potential to increase crop yield and produced greater economic benefit, therefore it could be used in regions dominated by light rainfall of low intensity where crops generally fail due to water stress.  相似文献   
5.
Surface irrigation rehabilitation in the South-East of France has shown success ever since the beginning of its development in the early 1980s. The gradual introduction of surface distributors, mechanized or automated has resulted in water savings and above all in decreased labor input. The distributors used are: gated pipes, layflat tubing, buried low pressure pipe and cablegation. They are used over an ever increasing area which attained about 1000 ha in 1987.Improvement is made in furrow head distribution as well as in field levelling, furrow flow evaluation, flow control at the head of the furrow and in the collective system.The effect of a modernized system and improved knowledge has been to make automated surface irrigation (particularly furrow irrigation) a modern application method in competition with techniques such as sprinklers and localized irrigation.Abbreviations ASAE American Society of Agricultural Engineers - CEMAGREF Centre d'Etude du Machinisme Agricole du Génie Rural des Eaux et des Forêts, Division Irrigation, BP 5095, 34033 Montpellier et BP 31 Le Tholonet 13612 AIX - ENGREF Ecole Nationale du Génie Rural des Eaux et des Forêts, Département Maîtrise de l'Eau et Développement, BP 5093, 34033 Montpellier - IRAT Institute de Recherche en Agronomie Tropicale, Zolad Mini Parc Bt7, 34100 Montpellier - P.V.C. Polyvinyl chloride - RNEDHA Réseau National Expérimentation Démonstration secteur Hydraulique Agricole, BP 5095, 34033 Montpellier - SCP Société du Canal de Provence et d'Aménagement de la Région Provençale, BP 100, 13603 AIX en Provence  相似文献   
6.
针对膜上穴苗移栽机存在的效率低以及膜上覆土不实的问题,提出了一种膜上开沟栽植的新方法。同时,利用三维设计软件设计了移栽机的整机结构,介绍了移栽机的工作原理,并对关键部件结构与参数进行了设计,实现了膜上移栽机的高效移栽和膜上覆土,旨在为高效膜上移栽机的下一步研究提供参考。  相似文献   
7.
在垄膜沟种农田进行了涌泉灌灌水试验,通过对水流推进过程观测,分析了田面水流运动特性,研究了沟宽对田间灌水均匀度的影响,并对垄膜沟种涌泉灌溉技术要素进行了探讨。结果表明,涌泉灌田面水流推进曲线可用幂函数表示。随着沟宽的增大,灌水均匀度呈下降趋势。从灌水质量和管网成本两方面综合考虑,试验条件下灌水技术要素的入沟流量、沟宽和灌水器间距分别以80~100L/h、20-30cm和4~5m为宜。  相似文献   
8.
宽垄沟灌作为一种大田作物栽培灌水方式已逐步受到关注.为研究灌水前后水分在垄沟间的运移及再分布,本试验在大棚内模拟宽垄沟灌垄上覆膜栽培条件以及灌水方案,采用中子仪进行水分观测.试验数据显示,在本试验条件下,垄背剖面的两个观测点表层,灌水前其含水量仅为田间持水量的65%和66%,灌水后垄沟水分的侧向入渗,144 h(6 d)分别达到田间持水量的73%和80%,408 h(17 d)达到田间持水量的78%和79%.试验结果表明,在宽垄沟灌覆膜条件下,水平向及垄背垂直向含水量梯度的存在导致水分侧向及向垄背的补给明显,且在覆膜条件下,垄背蒸散发损失少,起到减少土壤水分无效损耗、高效利用之效果.  相似文献   
9.
黄土高原北部垄膜沟植田间集雨高效栽培技术研究   总被引:1,自引:0,他引:1  
在黄土高原北部,采用起垄覆膜(垄上覆膜种植马铃薯,垄沟种植谷子)的垄沟间作田间集雨补灌栽培并结合增施氮、磷、钾化肥,具有显著的增产、增收效果。该技术可大大提高化肥的增产效果和肥料利用率,有明显的集雨增墒效果,同时采用起垄覆膜种植马铃薯与垄沟种植谷子能够合理利用有限的工程集雨,有利于充分利用有限的降水资源,进行节约化农业经营。  相似文献   
10.
不同灌溉方式下冬小麦穗部性状与产量关系的试验研究   总被引:2,自引:0,他引:2  
采用田间试验,以豫麦69为试验材料,研究了不同水分处理下常规灌溉和一体化垄作沟灌的冬小麦产量与穗部性状的相互关系。结果表明,同常规灌溉方式相比,一体化垄作沟灌方式下,冬小麦的穗粒数、籽粒质量及产量分别增加了5.5356%、7.5489%、7.7454%,但穗数减少了0.4302%。常规灌溉和一体化垄作沟灌方式下,产量与穗数、穗粒数以及籽粒质量均正相关,但一体化垄作沟灌方式下的相关系数较常规灌溉方式大。一体化垄作灌溉有利于改善农田小气候、发挥作物的边行优势和提高小麦产量。  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号