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   97309篇
  免费   9155篇
  国内免费   4648篇
电工技术   5807篇
技术理论   10篇
综合类   6696篇
化学工业   16126篇
金属工艺   5478篇
机械仪表   6085篇
建筑科学   8197篇
矿业工程   2833篇
能源动力   2927篇
轻工业   7245篇
水利工程   1813篇
石油天然气   5394篇
武器工业   991篇
无线电   11476篇
一般工业技术   11803篇
冶金工业   4276篇
原子能技术   1278篇
自动化技术   12677篇
  2024年   200篇
  2023年   1680篇
  2022年   2860篇
  2021年   4305篇
  2020年   3294篇
  2019年   2789篇
  2018年   2981篇
  2017年   3343篇
  2016年   2948篇
  2015年   4185篇
  2014年   5033篇
  2013年   5896篇
  2012年   6610篇
  2011年   6962篇
  2010年   6131篇
  2009年   5782篇
  2008年   5559篇
  2007年   5294篇
  2006年   5253篇
  2005年   4534篇
  2004年   3140篇
  2003年   2691篇
  2002年   2664篇
  2001年   2381篇
  2000年   2095篇
  1999年   2217篇
  1998年   1918篇
  1997年   1555篇
  1996年   1473篇
  1995年   1142篇
  1994年   1074篇
  1993年   747篇
  1992年   558篇
  1991年   456篇
  1990年   334篇
  1989年   272篇
  1988年   239篇
  1987年   143篇
  1986年   110篇
  1985年   73篇
  1984年   36篇
  1983年   32篇
  1982年   42篇
  1981年   24篇
  1980年   23篇
  1979年   11篇
  1974年   1篇
  1972年   1篇
  1959年   9篇
  1951年   10篇
排序方式: 共有10000条查询结果,搜索用时 14 毫秒
1.
2.
Wen  Pushan  He  Rui  Li  Xiang-Dan  Lee  Myong-Hoon 《Journal of Materials Science》2022,57(1):755-765
Journal of Materials Science - Three polyimides (PIs) were prepared from a diamine containing biphenyl ester group as a side chain and a corresponding dianhydride chosen from...  相似文献   
3.
The structural diversity of polyphenols and the inherent limitations of current extraction techniques pose a challenge to extract polyphenols using a simple and green method. Hence, in this study, a method was developed to simultaneously fractionate multiple classes of polyphenols by only varying ethanol-water solutions. Honeybush tea, which is rich in polyphenols, was selected as a model for this study. Solvent extraction followed by solid-phase extraction (SPE) was developed to obtain a polyphenol-rich fraction from six honeybush samples. Based on a gradient elution programme (10%, 30%, 50%, 70% and 90% (v/v) ethanol-water solution) of SPE, the Strata X cartridge showed a better recovery of most targeted polyphenols under 0.9 mL of the drying volume and 1 mL min−1 of the dispensing speed. The elution programme for fractionating most polyphenols was as follows: single elution with 50% ethanol, followed by twice elution with 70% ethanol. The antioxidant capacity was used to analyse the differences among the polyphenol-rich fractions from six honeybush samples. Principal component analysis (PCA) revealed that unfermented C. genistoides (GG) has the greatest antioxidant capacity among the honeybush species studied. Additionally, mangiferin, isomangiferin and vicenin-2 were the main contributors to the antioxidant capacity in six honeybush fractions according to the correlation study.  相似文献   
4.
王蕊 《电工技术》2022,(8):11-13
针对乙烯精馏塔提馏段温度原控制方案的不足,采用提馏段温度GC3气流量组成串级控制方式,提高温度稳定性,同时采用提馏段温度G丙烯凝液储槽液位的选择性控制系统,克服丙烯凝液储槽出口排出气态丙烯的问题,从而保证生产安全平稳进行.与原控制效果比较,现提馏段温度稳定性和控制精度大大改善,控制质量获得提高。  相似文献   
5.
Conversion of LCO (light cycle oil) to BTX (benzene, toluene, and xylene) is an economically valuable method for refineries. However, this approach still faces difficulties as the main reactions are not clearly understood. Here we study the detailed hydrocracking pathway of typical reactants, 1-methylnaphthalene and tetralin, through molecular simulations and experiments to improve our understanding of the conversion process of LCO to BTX. Molecular simulations demonstrate that the rate-determining step is the isomerization pathway of six-membered ring to five-membered ring in tetralin as its activation energy (ΔEa) is the highest among all the reactions and the order of ΔEa of reactions is isomerization > ring-opening ≈ side-chain cleavage. The results of experiments show that with the increase in reaction depth, i.e., through a high temperature (350 – 370 °C) and low LHSV (4.5 – 6.0 h−1), isomerization, ring-opening, and side-chain  cleavage reactions occurred, thus improving the selectivity and yield of alkyl aromatics.  相似文献   
6.
International Journal of Thermophysics - The addition of nanoparticles to base fuel may bring about remarkable changes in a thermodynamic process such as evaporation, due to the intensified...  相似文献   
7.
马瑞  贾长青  雷茹淋  王丹丹 《广东化工》2022,49(2):96-98,85
分别使用95%乙醇和四氯化碳作为提取溶剂,在78℃左右,对已提取过挥发油的缬草残渣中化学成分进行提取,借用气相色谱-质谱联用方法(GC-MS)对提取浸膏中化学组分进行分析.结果显示:以乙醇作为提取溶剂条件下,共鉴定出38中化学组分,数据出峰相对总质量分数为81.7%;以四氯化碳为提取溶剂条件下,共鉴定出44种化学组分,数据出峰相对总质量分数为84.4%.  相似文献   
8.
The muon radiography imaging technique for high-atomic-number objects(Z) and large-volume objects via muon transmission imaging and muon multiple scattering imaging remains a popular topic in the field of radiation detection imaging. However, few imaging studies have been reported on low and medium Z objects at the centimeter scale. This paper presents an imaging system that consists of three layers of a position-sensitive detector and four plastic scintillation detectors. It acquires data by co...  相似文献   
9.
10.
Piceatannol has shown to be a strong antioxidant in vivo, however, its ability to suppress lipid oxidation in foods has not been examined. The present study is to examine the antioxidant effect of piceatannol on heated canola oil compared with that of butylated hydroxytoluene (BHT). The oxidation of canola oil is conducted at 60, 90, 120, and 150 °C by monitoring the depletion of oxygen, the decrease in unsaturated fatty acids, and the changes of primary and secondary oxidation products. Results demonstrated that piceatannol can suppress lipid oxidation of canola oil in a dose-dependent manner with its effect being more effective than BHT. Practical Applications: Lipid oxidation is a major factor in the deterioration of food quality. Synthetic antioxidants, such as BHT and butylated hydroxyanisole, are used to inhibit oxidation in foods, but their safety has been always concerned. Piceatannol has exhibited a strong antioxidant activity to attenuate lipid oxidation and it should be further explored for use as a natural antioxidant in foods.  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