全文获取类型
收费全文 | 3518篇 |
免费 | 245篇 |
国内免费 | 322篇 |
专业分类
林业 | 257篇 |
农学 | 284篇 |
基础科学 | 43篇 |
1100篇 | |
综合类 | 1210篇 |
农作物 | 279篇 |
水产渔业 | 120篇 |
畜牧兽医 | 495篇 |
园艺 | 262篇 |
植物保护 | 35篇 |
出版年
2024年 | 14篇 |
2023年 | 54篇 |
2022年 | 65篇 |
2021年 | 99篇 |
2020年 | 85篇 |
2019年 | 119篇 |
2018年 | 87篇 |
2017年 | 141篇 |
2016年 | 156篇 |
2015年 | 130篇 |
2014年 | 160篇 |
2013年 | 364篇 |
2012年 | 259篇 |
2011年 | 209篇 |
2010年 | 174篇 |
2009年 | 225篇 |
2008年 | 195篇 |
2007年 | 218篇 |
2006年 | 194篇 |
2005年 | 166篇 |
2004年 | 126篇 |
2003年 | 107篇 |
2002年 | 77篇 |
2001年 | 86篇 |
2000年 | 58篇 |
1999年 | 66篇 |
1998年 | 53篇 |
1997年 | 62篇 |
1996年 | 56篇 |
1995年 | 39篇 |
1994年 | 46篇 |
1993年 | 42篇 |
1992年 | 35篇 |
1991年 | 28篇 |
1990年 | 19篇 |
1989年 | 22篇 |
1988年 | 17篇 |
1987年 | 11篇 |
1986年 | 6篇 |
1985年 | 2篇 |
1984年 | 1篇 |
1981年 | 1篇 |
1980年 | 1篇 |
1978年 | 3篇 |
1977年 | 2篇 |
1976年 | 1篇 |
1975年 | 3篇 |
1973年 | 1篇 |
排序方式: 共有4085条查询结果,搜索用时 484 毫秒
91.
不同品种水稻产量形成过程的养分积累与分配特征研究 总被引:7,自引:0,他引:7
通过测定三系杂交稻"汕优63"、两系杂交稻"两优2186"和常规稻"IR64"不同器官N、P和K含量动态,探讨了3种水稻各生育期的养分积累与分配特征。结果表明:3种水稻稻株N含量均随生长过程逐渐下降,同一生育期水稻N含量以"汕优63"最高;除"汕优63"K含量在齐穗时明显上升外,3种水稻的K含量随生长过程逐渐下降;而P含量总体上在分蘖盛期最高。完熟期3种水稻的N积累量依次为24.79g/m2、15.14g/m2和14.42g/m2,P积累量为4.766g/m2、3.306g/m2和3.678g/m2,K积累量为2.439g/m22、.029g/m2和1.725g/m2。"汕优63"分配到籽粒中的N素比例为61.23%,分别比"两优2186"、"IR64"高17.97%和11.23%;分配到籽粒中的P素比例为62.97%,分别比"两优2186"、"IR64"高6.41%和9.63%;分配到籽粒中的K素比例为27.51%,分别比"两优2186"、"IR64"低3.00%和2.39%。在全生育期中,"汕优63"、"两优2186"和"IR64"的N需求量依次为31.33g/m2、22.88 g/m2、24.82g/m2,N、P、K吸收比依次为1∶0.192∶0.098、1∶0.219∶0.134和1∶0.255∶0.120。3种水稻中"汕优63"的养分生产效率最低。N、P、K生产效率"汕优63"依次为37.25kg/kg、193.80kg/kg和378.80kg/kg,"两优2186"依次为52.54 kg/kg、240.38kg/kg和392.16kg/kg,"IR64"依次为58.38kg/kg、228.83kg/kg和487.80kg/kg。三系杂交稻"汕优63"的N、P、K需求量大,积累量高,分配到籽粒中的比例亦高,与其高产特性相吻合。在保证N、P、K供给的前提下,进一步提高养分生产效率是实现"汕优63"高产、高效的关键。 相似文献
92.
基于深度学习的大豆生长期叶片缺素症状检测方法 总被引:5,自引:0,他引:5
为了检测作物叶片缺素,提出了一种基于神经网络的大豆叶片缺素视觉检测方法。在对大豆缺素叶片进行特征分析后,采用深度学习技术,利用Mask R-CNN模型对固定摄像头采集的叶片图像进行分割,以去除背景特征,并利用VGG16模型进行缺素分类。首先通过摄像头采集水培大豆叶片图像,对大豆叶片图像进行人工标记,建立大豆叶片图像分割任务的训练集和测试集,通过预训练确定模型的初始参数,并使用较低的学习率训练Mask RCNN模型,训练后的模型在测试集上对背景遮挡的大豆单叶片和多叶片分割的马修斯相关系数分别达到了0.847和0.788。通过预训练确定模型的初始参数,使用训练全连接层的方法训练VGG16模型,训练的模型在测试集上的分类准确率为89.42%。通过将特征明显的叶片归类为两类缺氮特征和4类缺磷特征,分析讨论了模型的不足之处。本文算法检测一幅100万像素的图像平均运行时间为0.8 s,且对复杂背景下大豆叶片缺素分类有较好的检测效果,可为农业自动化生产中植株缺素情况估计提供技术支持。 相似文献
93.
94.
95.
96.
规模化畜禽养殖场粪便养分数据空间化表征方法 总被引:1,自引:0,他引:1
针对目前进行规模化养殖场粪便养分分配,主要以行政单元为单位将规模化养殖统计数据总量按农田面积简单分配,认为所有的农用地之间都是均匀的,而忽视了农用地块之间存在差异性的问题,利用GIS空间分析技术,结合农用地地块间的空间差异性以及规模养殖畜禽粪便作为肥料施用的特殊性,构建了规模化畜禽养殖统计数据空间化算法,并结合农用地最大养分负荷,实现从规模畜禽养殖统计数据到区域畜禽粪便养分供给的空间化转换,最后以福州市闽侯县上街镇为例进行了算法的实际应用。结果表明研究区农用地氮、磷最大养分负荷分别为169.994 kg/hm2和34.973 kg/hm2。无论是畜禽养殖粪便氮养分还是磷养分,都未超过算法设定的阈值。 相似文献
97.
粉煤灰和猪粪好氧混合堆肥过程中养分转化研究 总被引:10,自引:0,他引:10
以猪粪为堆肥原材料,以玉米秸秆粉为调理剂,并添加干质量分数为0、2.5%、5.0%、7.5%和10%的粉煤灰进行90 d好氧堆肥,研究不同用量粉煤灰对猪粪堆肥过程中养分转化的影响。结果表明:添加粉煤灰能提高堆体的pH值,但在后期对电导率(EC)的增加有一定的抑制;碳氮比随着堆肥时间的延长而降低,而总氮(TN)则相反;当粉煤灰质量分数达10%时,在60d后堆体TN明显降低;添加粉煤灰对NH+4-N无明显影响,而所有添加粉煤灰均会抑制堆肥中NO3-N 的生成,且与粉煤灰用量呈正相关;添加粉煤灰对总磷(TP)和总钾(TK)的影响不大,但会抑制雪里蕻根部的生长。结合发芽率试验结果可以认为,90 d的试验中所添加的粉煤灰对猪粪堆肥的腐熟没有影响。 相似文献
98.
Use of saline aquaculture wastewater to irrigate salt-tolerant Jerusalem artichoke and sunflower in semiarid coastal zones of China 总被引:2,自引:0,他引:2
In 2004 and 2005, the feasibility of agricultural use of saline aquaculture wastewater for irrigation of Jerusalem artichoke and sunflower was conducted in the Laizhou region using saline aquaculture wastewater mixed with brackish groundwater at different ratios. Six treatments with different electrical conductivities (EC) were included in the experiment: CK1 (rainfed), CK2 (irrigation with freshwater, EC of 0.02 dS m−1), and saline aquaculture wastewater (EC of 39.2 dS m−1) mixed with brackish groundwater (EC of 4.4 dS m−1) at volumetric ratios of 1:1, 1:2, 1:3, and 1:4 with corresponding EC of 22.0, 16.1, 13.2, and 11.4 dS m−1. Soil electrical conductivity (ECe) in the saline aquaculture wastewater irrigation treatments was significantly higher (P ≤ 0.05) than that in the rainfed or freshwater irrigation treatments, and the maximum value occurred in the 22.0 dS m−1 treatment. The sodium adsorption ratio (SAR) ranged from 4.1 to 11.7 mmol1/2 L−1/2 and increased with decreasing salinity of irrigation water. The biomass of Jerusalem artichoke significantly decreased (P ≤ 0.05) when irrigated with saline aquaculture wastewater compared to the rainfed or freshwater irrigation treatments; however, the effect of salinity on root biomass was much smaller than the aerial parts. Concomitantly, the highest tuber yield of Jerusalem artichoke occurred in the 11.4 dS m−1 treatment, while the highest seed yield of sunflower occurred in the rainfed treatment. Additionally, nitrogen and phosphorus concentrations of Jerusalem artichoke were significantly higher in the 11.4 dS m−1 treatment than the other treatments. This study demonstrated that properly diluted saline aquaculture wastewater can be used successfully to irrigate Jerusalem artichoke with higher economic yield and nutrient removal, but not sunflower due to the difference in salt tolerance. 相似文献
99.
Summary The use of N and P by mixed and by sole cropping (crop rotation) of maize and cowpeas were compared in a field experiment on an Alfisol at the Nyankpala Agricultural Experiment Station in the northern Guinea Savanna of Ghana, using two levels of N (0 and 80 kg N ha-1 year-1 as urea) and P application (0 and 60 kg P ha-1 year-1 as Volta phosphate rock). Maize grain yields were significantly reduced in the mixed cropping system. This yield difference became smaller with the application of N and P fertilizer. The N and P concentrations in maize ear leaves at silking indicated that a deficiency in N and P contributed to the maize yield depression in mixed cropping. Competition for soil and fertilizer N between maize and cowpeas was suggested by: (1) A similarity in total N uptake between the two cropping systems; (2) efficient use of soil nitrate by the cowpeas; and (3) low N2 fixation by the cowpeas, calculated with the aid of an extended-difference method. In general, N2 fixation was low, with the highest values in the sole cropping (53 kg ha-1) and a substantial reduction in the mixed cropping system. The application of N fertilizer further reduced N2 fixation. This was substantiated by nodule counts. The lower N2 fixation in the mixed cropping system was only partly explained by the lower density of cowpeas in this system. In addition, dry spells during the cropping season and shading by the maize component could have reduced the nodulation efficiency. No N transfer from the legume/rhizobium to the non-legume crop was observed. Impaired P nutrition in the mixed compared with the sole-cropped maize might have been due to less P mobility in the soil. This was indicated by lower soil moisture contents in the topsoil under mixed cropping, especially during the dry year of 1986. The results show that mixed cropping of maize and cowpeas did not lead to improved use of soil and fertilizer N and P or to an enhanced N2 fixation. On the contrary, an annual rotation of maize and cowpeas was clearly superior. 相似文献
100.
Summary Microbial biomass in the upper 7 cm of soil and needle decomposition on the forest floor were measured seasonally for 10 months in a mountain hemlock (Tsuga mertensiana) old-growth forest and in a regrowth forest after Phellinus weirii, a root-rot pathogen infection, had caused disturbance. The microbial biomass was higher in the old-growth forest soil than in the regrowth forest soil. However, T. mertensiana needle decomposition rates were higher in the regrowth than in the old-growth forest. Total N, Ca, Fe, Cu, and Zn concentrations in needles increased during the 1st year of decomposition in both the old and the regrowth forests, but P, K, Mg, Mn, and B concentrations decreased. N, P, K, Mg, Cu, and Zn concentrations were lower in regrowth than in old-growth decomposing needles. During mineralization, needles in the regrowth forests released more N, P, and K as a result of higher needle decomposition rates. Our results suggest that higher needle decomposition rates increased the mineralization of N, P, and K, which may lead to increased soil fertility and faster tree growth rates in the regrowth forest. 相似文献