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   4613篇
  免费   283篇
  国内免费   394篇
林业   282篇
农学   401篇
基础科学   78篇
  1955篇
综合类   1376篇
农作物   382篇
水产渔业   146篇
畜牧兽医   300篇
园艺   246篇
植物保护   124篇
  2024年   9篇
  2023年   68篇
  2022年   95篇
  2021年   127篇
  2020年   146篇
  2019年   154篇
  2018年   135篇
  2017年   245篇
  2016年   238篇
  2015年   171篇
  2014年   226篇
  2013年   525篇
  2012年   372篇
  2011年   285篇
  2010年   261篇
  2009年   261篇
  2008年   217篇
  2007年   260篇
  2006年   227篇
  2005年   197篇
  2004年   159篇
  2003年   113篇
  2002年   89篇
  2001年   87篇
  2000年   65篇
  1999年   56篇
  1998年   70篇
  1997年   52篇
  1996年   70篇
  1995年   45篇
  1994年   50篇
  1993年   50篇
  1992年   41篇
  1991年   31篇
  1990年   21篇
  1989年   26篇
  1988年   14篇
  1987年   18篇
  1986年   5篇
  1985年   3篇
  1984年   1篇
  1981年   2篇
  1977年   1篇
  1955年   2篇
排序方式: 共有5290条查询结果,搜索用时 15 毫秒
1.
养分管理对安溪茶园土壤肥力及茶叶品质的影响   总被引:6,自引:0,他引:6  
刘扬  孙丽莉  廖红 《土壤学报》2020,57(4):917-927
安溪是铁观音的主产区,茶园养分管理滞后已成为该地区茶叶生产的瓶颈,本研究旨在为该地区茶园的养分管理提供科学依据。试验于2015年在安溪县采集了50个茶园的茶青与土壤样品,测定了土壤5项主要肥力指标和茶青中9种主要次生代谢物含量;并根据茶农氮肥用量调研数据,初步将茶园养分管理划分为:少量、中量和过度型等三种方式。限制性主坐标轴分析发现,此分类方式可解释34.4%(P0.001)茶园土壤肥力参数的总体差异,说明此分类方式能反映出不同茶园养分管理的总体水平;并且,养分管理对表层土壤有效磷的影响最为显著。进一步分析表明,养分管理对茶青综合品质的影响可解释品质总差异的7.48%(P0.001);大部分茶青次生代谢物在中量型管理下含量最高。说明养分管理影响安溪茶园土壤的肥力状况,施肥量过高或过低均不利于高品质茶叶的生产,该地区的建议施氮量约为200~400 kg·hm~(–2)·a~(–1)。  相似文献   
2.
Poor land use management and practice inhibit the growth and establishment of tree seedlings in dryland areas.We assessed arbuscular mycorrhizal fungi(AM)status of Faidherbia albida(Del.)A.Chev.trees grown on different land uses.We quantified the growth and nutrient uptake of F.albida seedlings inoculated with AM from different sources.These efforts were based on soil and fine root samples from the rhizosphere soils of F.albida trees.AM root colonization was determined using the gridline intersect method.Spores were extracted by the wet sieving and decanting method and identified to genus level.The seedling experiment had a completely randomized onefactorial design with four treatments and five replications.Faidherbida albida seedlings were grown in a greenhouse.All in situ F.albida trees were colonized by AM fungi.AM root colonization of F.albida trees was significantly higher(P<0.0086)in area exclosures than on lands used for grazing or cultivation.Spore abundance was significantly higher(P<0.0014)in area exclosures followed by cultivated land and grazing land.Glomus was the dominant genus in all land-uses.AM-inoculated F.albida seedlings grew better(P<0.05)than non-inoculated controls.Seedlings inoculated with AM from area exclosure had significantly(P<0.05)higher growth and nutrient uptake than those inoculated with AM from grazing and cultivated land.This emphasizes the importance of the native soil AM potential for better establishment of seedlings to achieve optimum plant growth improvement and assist in rehabilitation of degraded arid lands.  相似文献   
3.
以大豆为原料,通过感官评定对胶体磨技术自制的全豆豆浆和一般机械磨加工的传统豆浆中的永和豆浆和普通豆浆的感官品质进行了比较,通过营养成分检测对全豆豆浆和永和豆浆的营养成分进行了比较,同时将检测的全豆豆浆营养成分与中国食物成分表中的普通豆浆的营养成分进行比较。结果表明:全豆豆浆口感浓厚,细腻爽滑,豆香味浓郁,无豆腥味,感官评价总得分高于传统豆浆中的永和豆浆和普通豆浆,差异有统计学意义(P0.01);全豆豆浆中蛋白质、脂肪、总膳食纤维、维生素B1、维生素B2、钙、磷脂及大豆异黄酮等营养成分含量均高于永和豆浆,更高于普通豆浆。全豆豆浆的普及不仅可以提高豆浆的营养价值,还可以减少资源的浪费,具有一定的社会和经济效益。  相似文献   
4.
本研究旨在分析小麦/西瓜/玉米间作体系限制作物产量的关键因子,为该体系的优化提供科学依据。采用农户调研的方式,对河北省曲周县的小麦/西瓜/玉米间作模式展开调查,主要调研内容是小麦和玉米的播种量、养分投入量和产量以及西瓜的养分投入量和产量,应用边界线分析方法评价小麦/西瓜/玉米间作高产体系的限制因子。结果表明,限制小麦产量的关键因子为小麦播种量,贡献率达17.8%,而养分投入量的贡献率分别为:P2O5 12.5%、K2O 11.7%、N 8.0%。限制西瓜产量的关键因子为钾肥投入量,贡献率达15.8%,N、P2O5的贡献率分别为14.2%和11.8%。限制玉米产量的关键因子为氮肥投入量,贡献率达20.6%,其他因子的贡献率分别为:K2O 14.2%,P2O5 11.5%,播种密度9.2%。因此,在小麦/西瓜/玉米间作体系中,应适当调控小麦播量,优化西瓜的钾肥和玉米的氮肥投入量,促进该间作模式的产量优势。  相似文献   
5.
为探究不同栽培深度基质和基质袋摆放对春季袋培番茄产量、品质、养分吸收和基质养分利用率的影响,以‘巴宝丽’番茄为试材,设置不同基质深度(7.5、10.5和13.5cm)及基质袋不同摆放方式(地面摆放和地面下沉20cm),共6个处理,测定了番茄的生长发育、产量、品质和养分吸收等指标。结果表明:栽培基质深度对产量、果实品质均有显著影响;基质袋摆放方式对产量影响不显著,但显著影响果实可溶性蛋白、番茄红素、硝酸盐和有机酸含量;基质深度和基质袋摆放方式对果实硝酸盐含量的影响有显著的交互作用。随着栽培基质深度的增加,产量显著提高,品质明显改善;基质深度13.5cm时,番茄单株产量最高,达3.83kg/株。基质袋摆放方式和基质深度对番茄开花期、初果期及盛果期P和K的累积吸收影响显著,基质深度对番茄开花期、初果期和盛果期N的吸收也有显著影响,基质深度和基质袋摆放方式对开花期和初果期番茄植株N、P和K的累积吸收存在显著的交互作用。基质内N、P和K养分利用率均是基质深度为13.5cm的处理最高,且不同基质袋摆放方式对基质养分利用率无显著影响。综上,为实现省工省力且高产优质载培,在实际生产中推荐将春季栽培番茄的基质深度设置为13.5cm(即基质供应量为9L/株)且地面摆放。  相似文献   
6.
The objective of this study was to determinate grain unique protein inherent molecular structure that are related physiochemical and nutrient profiles in CDC developed oat varieties [CDC Nasser (Feed Type) and CDC Seabiscuit (Milling Type)] grown in cool climate condition in western Canada in comparison with conventional barley variety of CDC Meredith as a control using advanced molecular spectroscopy. Multivariate analyses, including an agglomerative hierarchical cluster analysis (CLA) and principal component analysis (PCA), were performed to identify protein molecular structural differences among the grains. The results revealed that CDC Seabiscuit contained greater (P < 0.05) protein structural Amide I and II than CDC Nasser and CDC Meredith, while the greater (P < 0.005) structural Amide I to II area and height ratios was detected in CDC Meredith. New oat grains had greater (P < 0.05) β-sheet height than barley grains, however, there was no difference in α-helix to β-sheet ratio values among the varieties. In conclusion, CDC Nasser and CDC Meredith had no difference in protein molecular structural features, while CDC Seabiscuit contains different protein structural characteristics as compared to CDC Meredith grain. The molecular structure features are highly associated with physiochemical and nutrient profiles in grains, which indicate that it also affect nutrient utilization and availability.  相似文献   
7.
施石灰和秸秆还田对双季稻产量和氮素吸收的互作效应   总被引:6,自引:0,他引:6  
红壤稻田面临土壤酸化和肥力偏低的双重挑战。施石灰和秸秆还田分别是稻田土壤酸化改良和培肥的有效措施,但二者的互作效应尚不清楚。本研究连续4年(2015—2018年)在江西省开展施石灰和秸秆还田双因素田间定位试验,旨在探明施石灰和秸秆还田对红壤双季稻田水稻产量和氮素吸收的互作效应。结果表明,施石灰和秸秆还田均显著提高了早、晚稻的产量和氮素吸收,且二者具显著的协同促进效应。秸秆还田下,施石灰使早稻产量和氮素吸收分别增加10.7%和15.5%;而在秸秆不还田下,增幅仅分别为4.4%和9.7%。秸秆还田下,石灰使晚稻产量和氮素吸收分别提高18.7%和24.6%;但在秸秆不还田下,增幅则分别为10.5%和5.7%。施石灰对早、晚稻产量和氮素吸收的促进效应随试验年限的增加而减弱。石灰对土壤pH值的提升效应随试验年限的延长显著降低。试验4年后,石灰对土壤有机质和全氮含量均无显著影响;秸秆还田显著提高了土壤有机质含量,而对全氮含量无显著影响。因此,秸秆还田配施石灰能够协同实现双季稻增产、土壤酸化改良与培肥。本研究表明在此酸性的红壤双季稻田上每4年左右施用一次石灰为宜。  相似文献   
8.
9.
The hilly area of Southwest China is a typical rice production area which is limited by seasonal droughts and low temperature in the early rice growth period. A field experiment was conducted on three typical paddy fields (low-lying paddy field, medium-elevation paddy field, and upland paddy field) in this region. Nitrogen (N) treatment (180 kg N ha-1 year-1) was compared to a control treatment (0 kg N ha-1 year-1) to evaluate the effects of integrated rice management (IRM) on rice growth, grain yield, and N utilization. Integrated rice management integrated raised beds containing plastic mulch, furrow irrigation, and triangular transplanting. In comparison to traditional rice management (TRM), IRM promoted rice tiller development, with 7-13 more tillers per cluster at the maximum tillering stage and 1-6 more tillers per cluster at the end of tillering stage. Integrated rice management significantly increased the rice aboveground biomass by 34.4%-109.0% in different growth periods and the aboveground N uptake by 25.3%-159.0%. Number of productive tillers significantly increased by 33.0%, resulting in a 33.0% increase in grain yield and 8.0% improvement of N use efficiency (NUE). Grain yields were significantly increased in all three paddy fields assessed, with IRM being the most important factor for grain yield and productive tiller development. Effects of paddy field type and N level on N uptake by aboveground plants were reflected in the rice reproductive growth period, with the effects of IRM more striking due to the dry climate conditions. In conclusion, IRM simultaneously improved rice yield and NUE, presenting a valuable rice management technique in the paddy fields assessed.  相似文献   
10.
Cadmium(Cd)is a toxic heavy metal occurring in the environment naturally and is also generated through various anthropogenic sources and acts as a pollutant.Human health is affected by Cd pollution in farmland soils because food is the main source of Cd intake in the non-smoking population.For crops,Cd toxicity may result from a disturbance in uptake and translocation of mineral nutrients and disturbance in plant metabolism,inhibiting plant growth and development.However,plants have Cd tolerance mechanisms,including restricted Cd uptake,decreased Cd root-to-shoot translocation,enhanced antioxidant enzyme activities,and increased production of phytochelatins.Furthermore,optimal supply of mineral nutrients is one of the strategies to alleviate the damaging effects of Cd on plants and to avoid its entry into the food chain.The emerging molecular knowledge contributes to understanding Cd uptake,translocation,and remobilization in plants.In this review,Cd toxicity and tolerance mechanisms,agricultural practices to minimize Cd accumulation,Cd competition with essential elements(calcium,copper,iron,zinc,and manganese),and genes associated with Cd uptake are discussed in detail,especially regarding how these mineral nutrients and genes play a role in decreasing Cd uptake and accumulation in crop plants.  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