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   8534篇
  免费   630篇
  国内免费   773篇
林业   1288篇
农学   475篇
基础科学   157篇
  3728篇
综合类   2956篇
农作物   258篇
水产渔业   223篇
畜牧兽医   429篇
园艺   105篇
植物保护   318篇
  2024年   64篇
  2023年   342篇
  2022年   399篇
  2021年   359篇
  2020年   361篇
  2019年   423篇
  2018年   339篇
  2017年   517篇
  2016年   605篇
  2015年   506篇
  2014年   587篇
  2013年   745篇
  2012年   787篇
  2011年   716篇
  2010年   463篇
  2009年   447篇
  2008年   354篇
  2007年   350篇
  2006年   314篇
  2005年   258篇
  2004年   174篇
  2003年   142篇
  2002年   106篇
  2001年   83篇
  2000年   78篇
  1999年   58篇
  1998年   78篇
  1997年   40篇
  1996年   31篇
  1995年   37篇
  1994年   31篇
  1993年   31篇
  1992年   21篇
  1991年   14篇
  1990年   21篇
  1989年   14篇
  1988年   9篇
  1987年   6篇
  1986年   7篇
  1985年   7篇
  1984年   8篇
  1982年   1篇
  1981年   1篇
  1979年   2篇
  1978年   1篇
排序方式: 共有9937条查询结果,搜索用时 31 毫秒
71.
【目的】研究基于长期定位试验,探索长期不同施肥下红壤性水稻土不同土层活性有机质(labile organic matter (LOM))和碳库管理指数(carbon pool management index,CPMI)变化特征,为红壤性水稻土碳库的合理管理提供依据。【方法】选取进贤红壤长期定位试验站4个典型施肥处理:(1)不施肥(CK);(2)单施化肥(NPK);(3)在NPK的基础上早稻施绿肥,晚稻施猪粪和稻草冬季还田(NPKSM);(4)在NPK的基础上早稻施绿肥,稻草冬季还田(NPKS),测定并分析0—10、10—20、20—40及40—60 cm土层土壤高活性有机质(HLOM)、中活性有机质(MLOM)、低活性有机质(LLOM)、非活性有机质(NLOM)含量以及CPMI变化特征。【结果】不同处理土壤有机质(SOM)含量均随土层加深而降低,施肥处理相对CK均明显提高了不同土层的SOM;在0—20 cm土层,SOM含量表现为NPKSM>NPKS>NPK>CK,且均以NPKSM处理最高,达到43.47 g·kg -1(10—20 cm)和45.09 g·kg -1(0—10 cm);在20—60 cm土层,NPKSM和NPKS处理相较于CK显著提高了土壤有机质含量,但两者之间差异不显著。除NPK处理外,各处理土壤可溶性有机碳(DOC)含量随土层的加深显著降低。NPKSM和NPKS处理相较于NPK和CK,显著提高了耕层(0—20 cm)土壤DOC的含量,其中NPKSM处理最高,为35.93 mg·kg -1。施肥处理比CK处理提高了土壤HLOM、MLOM、LLOM含量,相同处理相同土层表现为LLOM>MLOM>HLOM,其中NPKSM和NPKS显著提高了各LOM组分含量,且随土层的加深无明显犁底层效应,这可能与活性有机质随水分下渗相关。其中,各施肥处理土壤HLOM、MLOM均随土层加深呈先升高后下降趋势,NPKSM和NPKS处理HLOM含量在20—40 cm土层中达到最高,分别为5.31和5.49 g·kg -1;各处理MLOM均在10—20 cm土层中达到最高,以NPKSM处理含量最高,为10.62 g·kg -1;而土壤LLOM含量随土层的加深而逐渐降低,在0—20 cm土层中以NPKSM处理含量最高,达到18.52 g·kg -1(0—10 cm)和15.93 g·kg -1(10—20 cm)。不同长期施肥处理提高了土壤各LOM组分的比例及碳库管理指数,在0—10 cm表层土中,NPKS和NPKSM处理相较于CK,总活性有机质比例分别提高了27.9%和29.48%,MLOM占比分别提高了7.21%和7.72%,HLOM占比分别提高了5.10%和4.96%。以不施肥处理为参照,各施肥处理碳库管理指数均大于100,且以NPKSM和NPKS处理提高效果最好,有助于提高红壤性水稻土肥力。相较于CK,单施化肥一定程度上提高了表层土壤有机质、活性有机质、可溶性有机碳及碳库管理指数。耕层(0—20 cm)土壤中3种活性有机质两两之间呈极显著正相关关系(P≤0.01),且与总有机质、全氮、可溶性有机碳及水稻产量均呈现显著正相关(P≤0.05)。【结论】不同施肥处理土壤有机质和低活性有机质均随土层加深而降低。NPKSM处理提高土壤有机质及活性有机质含量的效果最佳,并能显著提高0—20 cm土层土壤高活性有机质和碳库管理指数,NPKS次之;而在20—60 cm土层中,NPKS处理对提高中活性有机质和碳库管理指数效果最明显。  相似文献   
72.
灌丛化(shrub encroachment)是全球陆地生态系统重要的生态现象之一,是影响草地碳库的重要过程。灌丛化由全球气候变化、降雨、火烧和生物活动等多因素共同作用形成,对区域环境、气候、土壤性质和碳循环影响显著。目前灌丛化对生态系统的影响仍存在分歧,表现在不同气候和降雨梯度下灌丛化后土壤有机碳/氮储量、养分循环和土壤温室气体排放等差异。本文总结和归纳了灌丛化形成与控制因素、灌丛化对团聚体稳定性、酶活性和土壤碳、氮循环的影响。灌丛化改变了土壤团聚体稳定性和酶活性,进而影响土壤呼吸以及土壤生源物质的存储、分解和循环,这将显著影响区域乃至全球气候变化。因此分析提出,今后应进一步加强对灌丛化形成过程长期的定位观察研究,以便了解灌丛化的可控因素,并加强对灌丛化后土壤有机碳库、土壤团聚体稳定性变化对碳氮循环进程和全球气候变化的影响研究。  相似文献   
73.
Grassland management aimed at enhancing carbon (C) in soil is an important tool in mitigation of rising atmospheric CO2, yet little is known of how grassland soil C changes with livestock stocking rate (SR). We relate soil organic and inorganic C mass (t ha−1 to 60 cm depth) with cattle stocking over periods of 7–27 year for 32 paddocks distributed across nine community pastures in the mixed-grass prairie of Saskatchewan, Canada. Initial analysis comparing Akaike information criterion models showed that cattle SR explained a greater proportion of variance in soil C, particularly soil organic C, than rainfall. Soil organic C mass increased with cattle SR (R2 = .293; = .001), even when the latter was normalized to account for differences in vegetation composition and growing conditions among pastures. Normalized SR varied from 0.49 to 2.30 times recommended levels, over which SOC increased from 24.7 to 57.4 t ha−1. Increases in soil organic C under greater stocking coincided with increased abundance of introduced vegetation, particularly the rhizomatous grass Poa pratensis. Inorganic soil C accounted for 34.6% of total soil C, being particularly large below 30 cm soil depth, but did not vary with stocking rate. These findings indicate that both organic and inorganic C are important pools of C in northern temperate grassland soils, with soil organic C positively associated with long-term cattle SR. Further studies are recommended to understand more fully the mechanisms regulating grazing impacts on soil C mass in northern temperate grasslands.  相似文献   
74.
This paper examines the potential influence of soil management and land use on soil carbon on cropping farms in New South Wales (NSW), Australia. Soil organic carbon (SOC) data from ten farms spatially distributed across NSW were examined on two occasions. Soil cores to a depth 0–30 cm were measured for SOC and, as expected, SOC in the A horizon (1.16%) was significantly (p < .001) greater than in the B horizon (0.74%) of all profiles. Analysis of the 2013 and 2015 SOC data indicated that in many ways, the results runs counter to other SOC studies in Australia. Importantly, the mean SOC concentration in these agricultural soils was significantly (p < .001) less under cropping (2013-1.05%, 2015-0.97%) than in native sites (2013-1.20%, 2015-1.16%). Out of the total of 35 sites sampled from 10 farms, SOC in 49% of sites did not change significantly over 2 years, in 17% it increased significantly, whereas in 34% it decreased. Further, a clear implication of drought on SOC was seen on sites that were uncropped based on a critical value for a 95% confidence interval (p < .05) and complemented by the significant correlation (p < .05) between average annual precipitation deficit (ANPD) and SOC across the state with R2 = 0.39. The mean SOC was found to be directly proportional to standard deviation and standard error. In terms of spatial variability, the C0 (nugget) value was greatest for farms with a large mean SOC and the average variogram in this study has a range of approximately 200 m which is potentially useful in determining sampling spacing for soil carbon auditing purpose. Similar empirical data over more years are required to better estimate SOC levels and to determine whether at a farm scale, factors such as land management, land use and climate can be related to soil carbon change and variability.  相似文献   
75.
为了解森林景观的空间组成、分布等特征对林分碳密度的影响,并以此为海口市优化林分结构,保护林地资源等方面提供参考。以海口市2015年森林资源二类调查数据为基础,运用arcgis、fragstats、spss等软件量化林分碳密度与景观格局指数并以此构建耦合协调度模型,来反映林分碳密度与森林景观格局的关系。研究发现,海口市热带林面积比重较大,且人为经营活动较强,导致其景观破碎化程度较高;林分碳密度与森林景观格局指数之间具有一定的相关性,且是相互促进的关系,当某一林分类型的空间配置较好,分布较聚集,不被其他地类分割时,其碳密度往往也较高。通过对海口市林分碳密度和森林景观格局指数的耦合研究,发现其林分碳密度与森林景观格局指数耦合协调度状况总体上并不良好,需要进行调整和改善。  相似文献   
76.
Biochar addition can expand soil organic carbon (SOC) stock and has potential ability in mitigating climate change. Also, some incubation experiments have shown that biochar can increase soil inorganic carbon (SIC) contents. However, there is no direct evidence for this from the field experiment. In order to make up the sparseness of available data resulting from the long‐term effect of biochar amendment on soil carbon fractions, here we detected the contents and stocks of the bulk SIC and SOC fractions based on a 10‐year field experiment of consecutive biochar application in Shandong Province, China. There are three biochar treatments as no‐biochar (control), and biochar application at 4.5 Mg ha?1 year?1 (B4.5) and 9.0 Mg ha?1 year?1 (B9.0), respectively. The results showed that biochar application significantly enhanced SIC content (3.2%–24.3%), >53 μm particulate organic carbon content (POC, 38.2%–166.2%) and total soil organic carbon content (15.8%–82.2%), compared with the no‐biochar control. However, <53 μm silt–clay‐associated organic carbon (SCOC) content was significantly decreased (14%–27%) under the B9.0 treatment. Our study provides the direct field evidence that SIC contributed to carbon sequestration after the biochar application, and indicates that the applied biochar was allocated mainly in POC fraction. Further, the decreased SCOC and increased microbial biomass carbon contents observed in field suggest that the biochar application might exert a positive priming effect on native soil organic carbon.  相似文献   
77.
78.
为探讨黄土丘陵区不同土地类型下土壤有机碳(SOC)、全氮(TN)、全磷(TP)含量特征,本研究以黄土丘陵区典型小麦地、云杉林地、苜蓿地为对象,基于实测数据,采用方差、相关统计分析,研究不同土地类型、不同土层深度(0~10 cm、10~20 cm、20~40 cm、40~60 cm、60~80 cm、80~100 cm)土壤SOC、TN、TP含量及其化学计量比。结果表明:3种不同土地类型土壤SOC、TN和TP含量均随土层深度增加而降低,其平均含量分别为12.19、0.33和0.48 g·kg-1,小麦地和苜蓿地土壤SOC、TN和TP空间变异性较云杉林地偏大。SOC、TN含量为云杉林地>小麦地>苜蓿地,TP含量为云杉林地>苜蓿地>小麦地。土壤SOC、TN和TP间均存在显著正相关关系。小麦地C/P显著(P<0.05)高出苜蓿地41.96%,N/P显著高出云杉林地、苜蓿地28.57%、36.19%。3种不同土地类型土壤化学计量比(C/N、C/P、N/P)均值分别为:39.61、31.53、0.83,且其C/N大于中国平均值(12.3),C/P、N/P较全国平均值(61.0、5.2)明显偏小,黄土丘陵区C/N较稳定。土地类型对土壤C、N、P含量及其化学计量比存在不同程度的影响,合理调整土地利用结构有助于土壤养分的存留,有利于土壤生态的恢复。  相似文献   
79.
横坡垄作对坡耕地土壤有机碳(soil organic carbon,SOC)流失有一定的阻控作用,但黑土区特有长而缓的地形与横垄对坡耕地SOC空间分异会产生交互作用,而这种交互作用引发的SOC流失风险没引起足够的重视。该研究以典型黑土区黑龙江省黑河市北安分局红星农场为研究区域,2022年在横坡垄作与顺坡水线方向上共布设25个采样点,采用地理探测器模型、单因素方差分析(one-way ANOVA)和Pearson相关性分析,探讨土壤有机碳的空间分异及其交互作用。结果表明,横坡垄作方向上垄沟土壤有机碳含量从坡顶到水线呈现逐渐增大的变化趋势;在垄台从坡顶到水线呈现先增大后减小的变化趋势。顺坡水线方向,土壤有机碳含量在垄沟呈现从上坡到下坡增大的变化趋势;在垄台呈现先增大后减小的变化趋势。由于断垄产生水线,顺坡土壤有机碳含量上坡与下坡仍有显著差异(P<0.05)。Pearson相关性分析表明, 有机碳与可蚀性K因子呈显著负相关(垄沟和垄台相关系数分别为–0.228和–0.238,P<0.05),与碳循环相关的β-葡萄糖苷酶和微生物生物量碳在垄沟呈极显著正相关(相关系数为0.398和0.676,P<0.01)。地理探测器分析表明,顺坡水线对土壤有机碳空间分异的影响最大,其对垄沟和垄台SOC的解释力分别达到61%和52%以上;顺坡水线与其他因子的交互作用共同增强了对土壤有机碳的解释力,尤其是顺坡水线与高程的交互作用最为明显。黑土区坡耕地土壤有机碳空间分异主要受顺坡水线与高程的交互作用,横坡垄作虽然能够拦截径流,但由于长缓坡地形影响产生的断垄会加剧土壤侵蚀诱发的有机碳流失。因此,黑土坡耕地治理需要同时考虑横垄与地形的共同影响,从而实现防蚀的优化效果。  相似文献   
80.
Mitigation of nitrous oxide (N2O) emission from swine wastewater treatment was demonstrated in an aerobic bioreactor packed with carbon fibers (CF reactor). The CF reactor had a demonstrated advantage in mitigating N2O emission and avoiding NOx (NO3 + NO2) accumulation. The N2O emission factor was 0.0003 g N2O‐N/gTN‐load in the CF bioreactor compared to 0.03 gN2O‐N/gTN‐load in an activated sludge reactor (AS reactor). N2O and CH4 emissions from the CF reactor were 42 g‐CO2 eq/m3/day, while those from the AS reactor were 725 g‐CO2 eq/m3/day. The dissolved inorganic nitrogen (DIN) in the CF reactor removed an average of 156 mg/L of the NH4‐N, and accumulated an average of 14 mg/L of the NO3‐N. In contrast, the DIN in the AS reactor removed an average 144 mg/L of the NH4‐N and accumulated an average 183 mg/L of the NO3‐N. NO2‐N was almost undetectable in both reactors.  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