全文获取类型
收费全文 | 8573篇 |
免费 | 518篇 |
国内免费 | 792篇 |
专业分类
林业 | 1300篇 |
农学 | 433篇 |
基础科学 | 159篇 |
3774篇 | |
综合类 | 2930篇 |
农作物 | 202篇 |
水产渔业 | 213篇 |
畜牧兽医 | 423篇 |
园艺 | 113篇 |
植物保护 | 336篇 |
出版年
2024年 | 156篇 |
2023年 | 355篇 |
2022年 | 409篇 |
2021年 | 366篇 |
2020年 | 376篇 |
2019年 | 441篇 |
2018年 | 336篇 |
2017年 | 520篇 |
2016年 | 610篇 |
2015年 | 504篇 |
2014年 | 591篇 |
2013年 | 720篇 |
2012年 | 777篇 |
2011年 | 698篇 |
2010年 | 446篇 |
2009年 | 430篇 |
2008年 | 340篇 |
2007年 | 350篇 |
2006年 | 301篇 |
2005年 | 249篇 |
2004年 | 162篇 |
2003年 | 131篇 |
2002年 | 96篇 |
2001年 | 84篇 |
2000年 | 69篇 |
1999年 | 53篇 |
1998年 | 72篇 |
1997年 | 34篇 |
1996年 | 28篇 |
1995年 | 34篇 |
1994年 | 24篇 |
1993年 | 26篇 |
1992年 | 18篇 |
1991年 | 10篇 |
1990年 | 18篇 |
1989年 | 13篇 |
1988年 | 8篇 |
1987年 | 5篇 |
1986年 | 6篇 |
1985年 | 6篇 |
1984年 | 7篇 |
1982年 | 1篇 |
1980年 | 1篇 |
1979年 | 2篇 |
排序方式: 共有9883条查询结果,搜索用时 15 毫秒
121.
施肥对喀斯特地区植草土壤活性有机碳组分和牧草固碳的影响 总被引:1,自引:0,他引:1
通过盆栽试验,研究施肥对喀斯特地区植草土壤不同活性有机碳组分和牧草固碳的影响。试验处理包括CK(不施肥)、 N1 (N 150 mg/kg)、 N2 (N 250 mg/kg)、 N1P1 (P2O5100 mg/kg)、 N2P2 (P2O5150 mg/kg)、 N1P1K1 (K2O 70 mg/kg)、 N1P1K2 (K2O 105 mg/kg)和N2P2K1和N2P2K2。结果表明,与对照(不施肥)相比,施肥处理增加植草土壤有机碳、 微生物量碳和易氧化碳,有机碳日矿化量和累积矿化量以及牧草固碳量。其中N1P1K1处理土壤有机碳和易氧化碳最高,N1P1处理土壤微生物量碳最高,N2P2K1处理土壤可溶性碳最高,N2P2K2处理牧草地上部及根系固碳量、 有机碳日矿化量和累积矿化量均最高。综上,低量氮磷钾肥配施有利于土壤活性有机碳的积累,高量氮磷钾平衡配施牧草固碳效果最佳。 相似文献
122.
采集喀斯特地区灰质白云岩发育的乔木林下土壤,全部湿筛分为>5mm,5~2mm,2~1mm,1~0.5mm,0.5~0.25mm共5个粒级团聚体,再将5个粒级团聚体进行碳水化合物提取后后再次分别湿筛,收集>5mm,5~2mm,2~1mm,1~0.5mm,0.5~0.25mm共5个粒级的团聚体样品.对两次湿筛中5个粒级的土壤分别进行团聚体含量、土壤有机碳、土壤可氧化态有机碳测定,分析土壤团聚体稳定性与土壤有机碳、土壤可氧化态有机碳的关系.结果表明:灰质白云岩乔木林下土壤在经过提取碳水化合物的第二次湿筛后,大粒级团聚体(>5mm,5~2mm)向小粒级(2~1mm,1~0.5mm,0.5~0.25mm)转移;有机碳主要存在于较大粒级团聚体中,但各粒级团聚体有机碳并不随之转移;各粒径团聚体可氧化态碳含量均减少,但较大粒级(>5mm,5~2mm)可氧化态有机碳含量多,较小粒级(2~1mm,1~0.5mm,0.5~0.25mm)可氧化态有机碳含量少,故推测较大粒级团聚体(>2mm)保护土壤活性有机碳能力比较小粒级团聚体(<2mm)强. 相似文献
123.
Martin Wiesmeier Olivia Kreyling Markus Steffens Philipp Schoenbach Hongwei Wan Martin Gierus Friedhelm Taube Angelika Kölbl Ingrid Kögel‐Knabner 《植物养料与土壤学杂志》2012,175(3):434-442
The assessment of grassland degradation due to overgrazing is a global challenge in semiarid environments. In particular, investigations of beginning steppe degradation after a change or intensification of the land use are needed in order to detect and adjust detrimental land‐use management rapidly and thus prevent severe damages in these sensitive ecosystems. A controlled‐grazing experiment was established in Inner Mongolia (China) in 2005 that included ungrazed (UG) and heavily grazed plots with grazing intensities of 4.5 (HG4.5) and 7.5 (HG7.5) sheep per hectare. Several soil and vegetation parameters were investigated at all sites before the start of the experiment. Topsoil samples were analyzed for soil organic C (SOC), total N (Ntot), total S (Stot), and bulk density (BD). As vegetation parameters, aboveground net primary productivity (ANPP), tiller density (TD), and leaf‐area index (LAI) were determined. After 3 y of the grazing experiment, BD increased and SOC, Ntot, Stot, ANPP, and LAI significantly decreased with increasing grazing intensity. These sensitive parameters can be regarded as early‐warning indicators for degradation of semiarid grasslands. Vegetation parameters were, however, more sensitive not only to grazing but also to temporal variation of precipitation between 2006 and 2008. Contrary, soil parameters were primarily affected by grazing and resistant against climatic variations. The assessment of starting conditions in the study area and the application of defined grazing intensities is essential for the investigation of short‐term degradation in semiarid environments. 相似文献
124.
Effects of biochar compared to organic and inorganic fertilizers on soil quality and plant growth in a greenhouse experiment 总被引:5,自引:0,他引:5
Our contemporary society is struggling with soil degradation due to overuse and climate change. Pre‐Columbian people left behind sustainably fertile soils rich in organic matter and nutrients well known as terra preta (de Indio) by adding charred residues (biochar) together with organic and inorganic wastes such as excrements and household garbage being a model for sustainable agriculture today. This is the reason why new studies on biochar effects on ecosystem services rapidly emerge. Beneficial effects of biochar amendment on plant growth, soil nutrient content, and C storage were repeatedly observed although a number of negative effects were reported, too. In addition, there is no consensus on benefits of biochar when combined with fertilizers. Therefore, the objective of this study was to test whether biochar effects on soil quality and plant growth could be improved by addition of mineral and organic fertilizers. For this purpose, two growth periods of oat (Avena sativa L.) were studied under tropical conditions (26°C and 2600 mm annual rainfall) on an infertile sandy soil in the greenhouse in fivefold replication. Treatments comprised control (only water), mineral fertilizer (111.5 kg N ha–1, 111.5 kg P ha–1, and 82.9 kg K ha–1), compost (5% by weight), biochar (5% by weight), and combinations of biochar (5% by weight) plus mineral fertilizer (111.5 kg N ha–1, 111.5 kg P ha–1, and 82.9 kg K ha–1), and biochar (2.5% by weight) plus compost (2.5% by weight). Pure compost application showed highest yield during the two growth periods, followed by the biochar + compost mixture. biochar addition to mineral fertilizer significantly increased plant growth compared to mineral fertilizer alone. During the second growth period, plant yields were significantly smaller compared to the first growth period. biochar and compost additions significantly increased total organic C content during the two growth periods. Cation‐exchange capacity (CEC) could not be increased upon biochar addition while base saturation (BS) was significantly increased due to ash addition with biochar. On the other hand, compost addition significantly increased CEC. Biochar addition significantly increased soil pH but pH value was generally lower during the second growth period probably due to leaching of base cations. Biochar addition did not reduce ammonium, nitrate, and phosphate leaching during the experiment but it reduced nitrification. The overall plant growth and soil fertility decreased in the order compost > biochar + compost > mineral fertilizer + biochar > mineral fertilizer > control. Further experiments should optimize biochar–organic fertilizer systems. 相似文献
125.
不同有机厩肥输入量对土壤团聚体有机碳组分的影响 总被引:11,自引:1,他引:11
土壤是重要的有机碳库,其微小变化可能引起大气CO2浓度水平的较大变异。土壤团聚体对土壤有机碳具有物理保护作用。有机厩肥的输入既可以提高土壤有机碳含量,又可以促进土壤团聚体的形成,对土壤有机碳的截获和保持有重要意义。本实验采用湿筛的方法分离土壤团聚体,并对团聚体进行有机碳组分分离。通过对连续8年施加不同量有机厩肥试验的研究发现:适量的有机厩肥施用可以显著地提高土壤的平均质量直径(MWD),改善土壤结构;过量施用有机厩肥则明显降低了>2 000μm团聚体含量。潮棕壤有机碳主要分布在250~53μm和2 000~250μm团聚体中,两者相加约占有机碳全量的73.7%~78.5%。并且随着有机碳输入量的增加,土壤有机碳主要贮存在2 000~250μm团聚体中。有机厩肥的施加明显地加快了>2 000μm团聚体的更新速率。土壤轻组分有机碳含量也随有机厩肥输入量的增加而不断增加,高量有机厩肥下占全量的22.1%。土壤固定有机碳的能力有限,存在明显的等级饱和现象。因此,在有机质匮乏的土壤施用有机肥意义重大,应尽量减少向高有机质土壤输入有机碳。 相似文献
126.
三开门自动温室气体测定箱的应用效果 总被引:1,自引:0,他引:1
为了降低农田自动温室气体测定箱在观测过程中对作物生长环境及作物生长的干扰,本研究在玉米大田环境条件下比较了一种新型的三开门自动温室气体测定箱与传统单开门自动温室气体测定箱对环境空气温湿度、土壤温度与水分、玉米生长以及温室气体排放的影响。结果表明:三开门温室气体测定箱能显著减小与大田环境条件下的空气温度、湿度及土壤温度的差异;相对于单开门箱,三开门箱在箱体打开及关闭条件下气温平均低0.90和0.74℃,空气湿度平均增加1.36%和降低5.69%;在玉米小喇叭口期前土壤温度约降低2℃,小喇叭口期后差异不显著;对土壤水分的影响在玉米苗期有一定的作用,但差异不显著;三开门箱相对于单开门箱能显著降低箱体对作物生长的影响,还能降低CO2平均通量值6.85%及N2O的平均通量值3.68%,而对CH4平均通量值基本无影响。因此,三开门箱相对于传统单开门自动温室气体测定箱能显著减小测定箱对观测环境及作物生长的干扰,应用这种箱体观测能更好地反映田间温室气体排放状况。 相似文献
127.
128.
Continuous cultivation has been known to decrease soil organic matter content. Application of organic matter to cultivated soil is an important practice from the point of view of maintaining an adequate amount of soil organic matter. Soil organic matter content significantly affects soil microbial activity, which is an important index of soil quality. In this study, a field experiment was conducted to examine the long-term effects of different kinds of organic matter in combination with inorganic nitrogen (N) fertilizer on chemical and biological properties of soils. There were seven treatments, namely (1) CK (without fertilization), (2) Chem-N (applying chemical N fertilizer only), (3) Comp (applying compost with the same rate of N as the Chem-N treatment), (4) Comp + l/3 N (applying compost complemented with 33% of the chemical N fertilizer of the Chem-N treatment), (5) Comp + 2/3 N (applying compost complemented with 66% of the chemical N fertilizer of the Chem-N treatment), (6) GM + 1/3 N (applying green manure complemented with 33% of the chemical N fertilizer of the Chem-N treatment) and (7) Peat + 1/3 N (applying peat complemented with 33% of the chemical N fertilizer of the Chem-N treatment). After continuous treatment for 12 years and with cultivation of 24 crops on the same area, soils were sampled for analyses of chemical and biological properties, enzymatic activities and phospholipid fatty acid (PLFA) profiles. The results showed that compared with CK and Chem-N treatments, applications of compost and peat increased soil organic carbon (SOC) content and altered microbial activities and microbial community structure. However, application of green manure for 12 years had no effect on SOC content. Both microbial activities and PLFA profiles were clearly dependent on the characteristics of the applied organic amendments. In summary, a peat application led to the highest increase in SOC content compared to compost and green manure; however, compost-treated soil had a higher microbial population and higher microbial and enzyme activities, while the effects of both green manure and chemical N fertilizer on soil properties were similar. 相似文献
129.
Abstract Emission rates of dimethyl sulficle (DMS), carbonyl sulfide (COS), and carbon disulfide (CS2) to the atmosphere from paddy fields at Ryugasaki, Ibaraki Prefecture, Japan were measured by using the closed chamber method. DMS was emitted mainly through the rice plant and its emission rate was much higher than those of COS and CS2. During a cropping period COS was slightly absorbed by the rice plant. Significant diurnal and seasonal variations of DMS iuxes were observed. The highest DMS iux was observed immediately after the heading day of rice plant. The annual DMS emission rate was in the order of mineral plot > straw plot > no-N plot, ranging from 4.5 to 6.9 mg S m-2 yr-1. The annual COS emission rate was in the order of straw plot > no-N plot > mineral plot, ranging from -0.2 to 1.8 mg S m-2 yr-1. The annual CS2 emission rate was slightly higher in the straw plot, ranging from 0.9 to 2.0 mg S m-2 yr-1. 相似文献
130.
Hanyeh Sepahvand Reza Mirzaeitalarposhti Torsten Müller 《Archives of Agronomy and Soil Science》2013,59(13):1820-1830
ABSTRACTThe aim of this study was to examine the usefulness of physical and chemical fractionation in quantifying soil organic matter (SOM) in different stabilized fraction pools. Soil samples from three land use types in Lorestan province, Southwest Iran were examined to account for the amount of organic carbon and nitrogen in different SOM fractions. Size/density separation and chemical oxidation methods were applied to separate the SOM fractions including particulate organic matter (POM), Si + C (silt and clay), DOC (dissolved organic C), rSOM (oxidation-resistant organic carbon and nitrogen) and S + SA (sand and stable aggregates). The values obtained for TOC, TN, and HWC were highest in forest lands followed by the range and agricultural lands. Among the SOM fractions, S + SA showed the highest values (5.75, 5.77 and 20.6 g kg?1 for agriculture, range and forest lands respectively) followed by POM, Si + C, rSOM, and DOC. The concentrations of C and N in the labile fractions obtained the higher values than in the stabilized fractions. Forest lands had the highest amounts of organic C and N among all fractions whereas agricultural lands showed highest values for inorganic C content of soils in different fractions. 相似文献