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   63849篇
  免费   8995篇
  国内免费   2974篇
电工技术   3833篇
技术理论   2篇
综合类   3210篇
化学工业   12875篇
金属工艺   2460篇
机械仪表   3092篇
建筑科学   4888篇
矿业工程   2047篇
能源动力   1372篇
轻工业   6712篇
水利工程   1547篇
石油天然气   1778篇
武器工业   340篇
无线电   7012篇
一般工业技术   5905篇
冶金工业   2826篇
原子能技术   636篇
自动化技术   15283篇
  2024年   122篇
  2023年   1111篇
  2022年   2265篇
  2021年   3858篇
  2020年   2125篇
  2019年   2090篇
  2018年   2244篇
  2017年   2938篇
  2016年   4087篇
  2015年   4655篇
  2014年   5211篇
  2013年   5185篇
  2012年   4010篇
  2011年   3488篇
  2010年   2823篇
  2009年   2793篇
  2008年   2826篇
  2007年   4015篇
  2006年   4151篇
  2005年   3562篇
  2004年   2463篇
  2003年   2322篇
  2002年   1688篇
  2001年   945篇
  2000年   720篇
  1999年   661篇
  1998年   403篇
  1997年   377篇
  1996年   344篇
  1995年   287篇
  1994年   291篇
  1993年   206篇
  1992年   164篇
  1991年   148篇
  1990年   140篇
  1989年   126篇
  1988年   87篇
  1987年   71篇
  1986年   91篇
  1985年   78篇
  1984年   89篇
  1983年   59篇
  1982年   42篇
  1981年   42篇
  1980年   51篇
  1966年   25篇
  1964年   35篇
  1962年   65篇
  1959年   22篇
  1955年   22篇
排序方式: 共有10000条查询结果,搜索用时 31 毫秒
91.
目的 为比较大豆油体、单甘脂和蔗糖酯三种成分对蛋糕烘焙学特征的影响。方法 本文通过对蛋糕面胚比容、质构,蛋糕面糊比重、黏度和表面气孔特性以及理化指标检测,并对蛋糕进行感官评定进行测试。结果 结果表明,大豆油体最适添加量为4.5%。大豆油体能增加蛋糕的黏度,有助于形成稳定的乳化体系,并且大豆油体蛋糕的酸价、过氧化值和反式脂肪酸检测结果符合国家标准。结论 大豆油体和乳化剂能显著提高豆乳奶油蛋糕的比容,降低硬度,从而改善蛋糕的品质特性。  相似文献   
92.
93.
Hydrogen is a potential green energy vector. Since the heating of the reforming processes commonly used for its production is obtained by burning hydrocarbons, it has a substantial CO2 footprint. One of the most critical aspects in the methane steam reforming (MSR) reaction is the heat transfer to the catalytic volume, due to the high heat fluxes required to obtain high methane conversions. Consequently, the reactor has complex geometries, along with the heating medium being characterized by temperatures higher than 1000 °C; expensive construction materials and high reaction volumes are therefore needed, resulting in slow thermal transients. These aspects increase the costs (both operative and fixed) as well as cause a decrease in the whole process efficiency. The heat transfer limitations due to the endothermicity of methane steam reforming reaction could be effectively overcome by microwave (MW) heating. This heating technique, that depends only on the dielectric properties of the materials, can result in an efficient and faster method for transferring heat directly to the catalyst, thus generating the heat directly inside the catalytic volume. In this work, Ni-based catalysts, differing from each other by the Ni loading (7 and 15 wt% with respect to the washcoat) were prepared. The catalysts were characterized by means of several techniques and tested in the MW-assisted methane steam reforming reaction. Furthermore, the energy balance of the entire process was performed to calculate the energy efficiency, making a preliminary evaluation of its feasibility in distributed hydrogen production also possible. The results of the preliminary tests showed that the prepared structured catalysts are very susceptible to the MW radiation, and that in the presence of the MSR reaction, it is possible to make the system reach a temperature of 900 °C. In the same tests, the CH4 conversion showed a good approach to the thermodynamic equilibrium values starting at temperatures of about 800 °C at a value of gas hourly space velocity (GHSV) of about 5000 h?1. The energy efficiency of the lab-scale system, calculated as the ratio among the energy absorbed by the system and the energy supplied by the microwaves, was about 50%. Future studies will deal with the microwave reactor optimization, aiming at the increase of the energy efficiency of the system, as well as to obtain a higher CH4 conversion at lower temperatures and increase the H2 yield and selectivity.  相似文献   
94.
A comprehensive study was conducted on the performance of M-promoted (M = 1%Ru, 1%Rh, 5%Ni) upgraded slag oxide metallurgical waste catalysts (M-UGSO) for hydrogen production by glycerol steam reforming (GSR). The results confirmed that the tendency of the incorporated metal to interact with Mg/Fe containing species within UGSO plays a key role in the surface availability of the corresponding metal, structural changes after reduction, and catalyst stability. Aside its best stability, 5% Ni-UGSO showed a performance (glycerol conversion to gaseous products of 100% and H2 yield of 74%) comparable with 1% Rh-UGSO (100% and 78%, respectively) or even surpassing that of 1% Ru-UGSO (94% and 71%, respectively), as noble metal-based catalysts. Synergistic cooperation was achieved by incorporated metals (M) and Fe/Mg containing species within UGSO, resulting in enhanced glycerol and water activation. The weakest results of Ru-UGSO could be justified by lack of propensity for MgO–RuO2 interaction on UGSO surface.  相似文献   
95.
96.
用戊糖片球菌、罗伊氏乳杆菌、鼠李糖乳杆菌、植物乳杆菌、嗜酸乳杆菌共5?种乳酸菌发酵库车小白杏,通过比较发酵液在发酵过程中的菌浓度、pH值、总可溶性固形物(total soluble solids,TSS)含量、超氧化物歧化酶(superoxide dismutase,SOD)活性等理化特性及发酵结束后的感官评价,筛选出一种或几种适合发酵库车小白杏发酵液的菌株。结果表明,发酵结束后,戊糖片球菌发酵库车小白杏发酵液的SOD活性达到252.63?U/g,活菌数达到8.07(lg(CFU/mL)),TSS含量降至17.1?°Brix,感官总体评价值最佳达到97%。植物乳杆菌发酵的库车小白杏发酵液的SOD活性达到275.87?U/g,感官总体评价几何平均(geometrical mean,GM)值达到88%。嗜酸乳杆菌发酵的库车小白杏发酵液速度最快,活菌数最终达到9.95(lg(CFU/mL)),TSS含量降至16.6?°Brix,但感官总体评价GM值仅为79%。综上所述,戊糖片球菌是最适合发酵库车小白杏的菌种,而植物乳杆菌和嗜酸乳杆菌的适合度仅次于戊糖片球菌。通过比较5?种乳酸菌发酵的库车小白杏发酵液的理化性质和感官评价,可以得出结论,戊糖片球菌最适合发酵库车小白杏。  相似文献   
97.
刘胜男  刘云锋  曹荣  刘淇 《食品科学》2021,42(20):167-172
为研究加工方式对玉筋鱼干风味的影响,实验按加工方式分为加盐煮制冷风干燥(boiling in salt solution followed by cold air drying,SCC)组和冷风干燥(cold air drying,CD)组。采用电子鼻技术、气相离子迁移谱(gas chromatography-ion mobility spectroscopy,GC-IMS)技术、氨基酸自动分析技术、高效液相色谱技术测定玉筋鱼干中的风味成分。结果表明,不同加工方式制作的玉筋鱼干在气味、滋味方面存在显著差异。电子鼻、GC-IMS技术均能区分不同工艺制作的玉筋鱼干气味,采用GC-IMS技术共分析出68 种挥发性成分,庚醛、戊醛、3-甲基丁醛对玉筋鱼干独特风味的形成有重要影响,其中3-甲基丁醛源自CD工艺,其区别于SCC工艺气味的关键物质。玉筋鱼干中的主要鲜味氨基酸是Glu,主要呈味核苷酸是肌苷酸;CD组玉筋鱼干中的鲜味氨基酸和甜味氨基酸含量占总游离氨基酸的比重高于SCC组,同时CD组滋味活性值、味精当量值均高于SCC组,所以仅采用CD工艺制作的玉筋鱼干滋味优于加盐煮制后CD工艺制作的玉筋鱼干。  相似文献   
98.
《Advanced Powder Technology》2021,32(8):3023-3033
Coccoliths are micro-structured biomineral particles found in cell protective covering layers of coccolithophore species. They are mainly composed of CaCO3 and their individual crystal entities are arranged in such a way that they construct complex and unique structures. This complexity is found down to the individual particle level and appears to have promising properties to offer. This study focuses on the essential step prior to any kind of implementation, which is the recovery of the material. It summarizes cleaning protocols found in literature, compares them for the first time for the same freshly cultivated material and addresses challenges that still need to be overcome. Further, it highlight the advantages and disadvantages of the best cleaning protocols, suggests optimizations with promising results and uses size distribution measurements to analyse the recovery efficiency. To that end, further characterization techniques, new for coccoliths, are introduced and used to improve our current knowledge of the particles behaviour.  相似文献   
99.
100.
Solar thermochemical hydrogen production with energy level upgraded from solar thermal to chemical energy shows great potential. By integrating mid-and-low temperature solar thermochemistry and solid oxide fuel cells, in this paper, a new distributed energy system combining power, cooling, and heating is proposed and analyzed from thermodynamic, energy and exergy viewpoints. Different from the high temperature solar thermochemistry (above 1073.15 K), the mid-and-low temperature solar thermochemistry utilizes concentrated solar thermal (473.15–573.15 K) to drive methanol decomposition reaction, reducing irreversible heat collection loss. The produced hydrogen-rich fuel is converted into power through solid oxide fuel cells and micro gas turbines successively, realizing the cascaded utilization of fuel and solar energy. Numerical simulation is conducted to investigate the system thermodynamic performances under design and off-design conditions. Promising results reveal that solar-to-hydrogen and net solar-to-electricity efficiencies reach 66.26% and 40.93%, respectively. With the solar thermochemical conversion and hydrogen-rich fuel cascade utilization, the system exergy and overall energy efficiencies reach 59.76% and 80.74%, respectively. This research may provide a pathway for efficient hydrogen-rich fuel production and power generation.  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