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   3066篇
  免费   127篇
  国内免费   177篇
林业   776篇
农学   166篇
基础科学   80篇
  662篇
综合类   1410篇
农作物   83篇
水产渔业   22篇
畜牧兽医   45篇
园艺   14篇
植物保护   112篇
  2024年   7篇
  2023年   41篇
  2022年   60篇
  2021年   87篇
  2020年   98篇
  2019年   108篇
  2018年   92篇
  2017年   117篇
  2016年   154篇
  2015年   128篇
  2014年   155篇
  2013年   162篇
  2012年   251篇
  2011年   203篇
  2010年   159篇
  2009年   192篇
  2008年   124篇
  2007年   205篇
  2006年   165篇
  2005年   125篇
  2004年   101篇
  2003年   76篇
  2002年   75篇
  2001年   65篇
  2000年   62篇
  1999年   57篇
  1998年   52篇
  1997年   37篇
  1996年   42篇
  1995年   40篇
  1994年   21篇
  1993年   32篇
  1992年   24篇
  1991年   20篇
  1990年   12篇
  1989年   9篇
  1988年   3篇
  1987年   3篇
  1986年   3篇
  1985年   2篇
  1979年   1篇
排序方式: 共有3370条查询结果,搜索用时 15 毫秒
1.
Soil carbon (C) saturation implies an upper limit to a soil's capacity to store C depending on the contents of silt + clay and poorly crystalline Fe and Al oxides. We hypothesized that the poorly crystalline Fe and Al oxides in silt + clay fraction increased the C saturation and thus reduced the capacity of the soil to sorb additional C input. To test the hypothesis, we studied the sorption of dissolved organic carbon (DOC) on silt + clay fractions (<53 µm) of highly weathered oxic soils, collected from three different land uses (i.e., improved pasture, cropping and forest). Soils with high carbon saturation desorbed 38% more C than soils with low C saturation upon addition of DOC, whereas adsorption of DOC was only observed at higher concentration (>15 g kg?1). While high Al oxide concentration significantly increased both the saturation and desorption of DOC, the high Fe oxide concentration significantly increased the desorption of DOC, supporting the proposition that both oxides have influence on the DOC sorption in soil. Our findings provide a new insight into the chemical control of stabilization and destabilization of DOC in soil.  相似文献   
2.
为了研究生物炭对紫外线的防护作用,以豆壳烧制的生物炭作为载体,研究生物炭对Bt Cry1Ac蛋白的吸附行为以及生物炭对Cry1Ac蛋白的紫外保护作用。使用扫描电子显微镜、透射电子显微镜、X-射线粉末衍射以及傅立叶红外光谱等手段对生物炭的形貌和结构进行表征。结果表明,生物炭是典型的多孔结构材料,表面具有丰富的官能团。Cry1Ac蛋白与生物炭吸附平衡时间为50 min,最合适的吸附浓度比(生物炭:蛋白)为1:100,二者吸附符合准二级动力学模型和Langmuir模型。在UVB紫外照射4 h后,生物炭与Cry1Ac蛋白复合物对棉铃虫的生物活性是单纯蛋白的4.93倍,显示生物炭具有较好的紫外抵抗效果。研究结果初步表明,制备得到的生物炭能够显著提高Cry1Ac蛋白的抗紫外能力,为后续研发耐受紫外线的农药剂型提供新材料。  相似文献   
3.
采用氮吸附法对4种生物质焦(稻壳、树叶、玉米秆、棉花秆)的孔隙结构进行测量,结果表明,不同种类焦样的比表面积和孔径分布有明显差别,树叶的比表面积最大,为242.21 m2·g-1,玉米秆的比表面积最小,为0.81 m2·g-1.850℃时,稻壳、树叶、玉米秆焦样的孔径分布曲线在微孔和中孔范围各有一个分布峰,而棉花秆焦样的孔径分布曲线只在中孔范围内出现一个分布峰.热解温度是影响孔隙结构的一个重要因素,在高温条件下,同步热解得到的焦样的比表面积较大,微孔较多.在本研究中,600℃、850℃的稻壳焦样和850℃的树叶焦样具有较大的比表面积,比较适合做吸附剂.  相似文献   
4.
漆树酶在漆酚树脂上的固定化研究   总被引:4,自引:2,他引:2  
介绍了漆酚树脂吸附金属离子后对漆树酶的固定化方法,比较了Fe^3+和Al^3+、漆酚树脂和漆酚-水杨酸接枝树脂对漆树酶的固定化结果显示,漆酚-水杨酸-Al螯合树脂对漆树酶的固定化活力最高,测定了溶液PH,环境温度对固定化漆树酶活性的航固定化漆酶的重作用性。另外,测定了固定化漆树酶的米氏常数,Km=4.9×10^-3,并讨论了Km小于天然漆树酶的米氏常数的原因。  相似文献   
5.
甲醛捕捉剂在胶合板生产中的应用   总被引:7,自引:0,他引:7  
普通UF树脂胶中添加甲醛捕捉剂H300或H800后,其固化时间明显延长.采用H300或H800改性的UF醛树脂胶黏剂生产胶合板,在保证胶合强度的前提下,板材的甲醛释放量达到国标E2或E1级要求.  相似文献   
6.
改善E1级胶合板用UF胶粘剂预压性能的研究   总被引:1,自引:0,他引:1  
利用氧化淀粉在树脂合成后期、API在调胶时加入分别对脲醛树脂进行改性,探讨改性UF对胶合板预压强度的影响。采用正交实验法对比改性后胶合板的预压性能和改性后胶合板的甲醛释放量的变化。结果表明:随着API量的加大,胶合板的预压性能得以提高;而氧化淀粉改性后则随着量的加大,一定范围内胶合板的预压性能得以提高,加入量继续加大后反而下降。  相似文献   
7.
用D72树脂固定床催化莰烯制乙酸异龙脑酯   总被引:7,自引:1,他引:6  
  相似文献   
8.
以氨基环氧树脂为基体树脂,Co^2 ,Pb^2 盐为催干剂合成了阴极电泳漆,并对膜性能进行考察,结果表明,所合成的阴极电泳涂料在PH值为6-7、电泳时间2min的条件下。加入不同的催干剂,在不同的烘干温度下,得到性能不同的漆膜。经过膝膜综合性能试验,结果表明,加入钴和铅复合催化剂,在160℃左右烘干20min,可得到完全固化,硬度较高、耐潮、耐盐、耐酸碱性较好的漆膜。  相似文献   
9.
Isoxaflutole is a new pre‐emergence herbicide for use in maize and sugarcane. Its two main derivatives are a diketonitrile derivative, the 2‐cyano‐3‐cyclopropyl‐1‐(2‐methanesulfonyl‐4‐trifluoromethylphenyl)propan‐1,3‐dione, named DKN, and a benzoic acid derivative, the 2‐methanesulfonyl‐4‐trifluoromethylbenzoic acid, named BA. The adsorption/desorption processes have never been studied for isoxaflutole (IFT) at high concentrations nor for BA, and the present work aimed at completing the knowledge of the behaviour of these three molecules in conditions close to those encountered in the context of agricultural use. The adsorption/desorption study was conducted on seven soils of different physical and chemical properties, using the batch equilibrium technique. During the experiments, IFT was chemically converted into DKN in a continuous manner. This reaction appeared to be dependent on the pH of the soil and was taken into account in the calculations of the adsorbed and desorbed amounts. The adsorption isotherms obtained were predominantly C‐shaped for IFT and DKN and S‐shaped for BA, but some differences appeared on a few soils. They fitted well the Freundlich equation, and the values of the Freundlich coefficient Kfa showed that, whatever the soil, IFT was more adsorbed than its two derivatives. The main parameter influencing the adsorption of IFT appeared to be the organic matter content, whereas this effect was not evident for DKN and BA. No correlation was found between the extent of adsorption and either clay content or pH of the soil, for the three molecules.  相似文献   
10.
A pot experiment was conducted in a climate‐controlled greenhouse to investigate the growth, physiology and yield of potato in response to salinity stress under biochar amendment. It was hypothesized that addition of biochar may improve plant growth and yield by mitigating the negative effect of salinity through its high sorption ability. From tuber bulking to harvesting, the plants were exposed to three saline irrigations, that is 0, 25 and 50 mm NaCl solutions, respectively, and two levels of biochar (0 % and 5 % W/W) treatments. An adsorption study was also conducted to study the Na+ adsorption capability of biochar. Results indicated that biochar was capable to ameliorate salinity stress by adsorbing Na+. Increasing salinity level resulted in significant reductions of shoot biomass, root length and volume, tuber yield, photosynthetic rate (An), stomatal conductance (gs), midday leaf water potential, but increased abscisic acid (ABA) concentration in both leaf and xylem sap. At each salinity level, incorporation of biochar increased shoot biomass, root length and volume, tuber yield, An, gs, midday leaf water potential, and decreased ABA concentration in the leaf and xylem sap as compared with the respective non‐biochar control. Decreased Na+, Na+/K+ ratio and increased K+ content in xylem with biochar amendment also indicated its ameliorative effects on potato plants in response to salinity stress. The results suggested that incorporation of biochar might be a promising approach for enhancing crop productivity in salt‐affected soils.  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