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   20993篇
  免费   269篇
  国内免费   277篇
安全科学   599篇
废物处理   908篇
环保管理   2801篇
综合类   3648篇
基础理论   5871篇
环境理论   10篇
污染及防治   5383篇
评价与监测   1305篇
社会与环境   874篇
灾害及防治   140篇
  2022年   151篇
  2021年   165篇
  2019年   148篇
  2018年   250篇
  2017年   278篇
  2016年   425篇
  2015年   342篇
  2014年   501篇
  2013年   1635篇
  2012年   616篇
  2011年   850篇
  2010年   702篇
  2009年   683篇
  2008年   854篇
  2007年   893篇
  2006年   790篇
  2005年   673篇
  2004年   660篇
  2003年   637篇
  2002年   616篇
  2001年   770篇
  2000年   586篇
  1999年   331篇
  1998年   264篇
  1997年   282篇
  1996年   280篇
  1995年   334篇
  1994年   307篇
  1993年   287篇
  1992年   277篇
  1991年   279篇
  1990年   294篇
  1989年   278篇
  1988年   250篇
  1987年   241篇
  1986年   223篇
  1985年   200篇
  1984年   255篇
  1983年   210篇
  1982年   271篇
  1981年   219篇
  1980年   184篇
  1979年   201篇
  1978年   184篇
  1977年   153篇
  1975年   143篇
  1974年   159篇
  1973年   162篇
  1972年   148篇
  1971年   146篇
排序方式: 共有10000条查询结果,搜索用时 218 毫秒
331.
332.
 In several branches of science and technology a gaseous phase is dispersed into a liquid in the form of bubbles, a gaseous component then dissolves into the liquid and subsequently undergoes chemical reaction. The overall process performance can be improved substantially when the area of gas–liquid contact is increased. By subjecting the liquid phase to low frequency vibrations, the bubbles are shown to suffer significant breakage, induced by resonance. When the vibration is properly tuned, the interfacial area is found to increase by a factor of 1.8–2.4, depending on the properties of the liquid. Resonance-induced bubble breakage phenomena have a great potential for improving the rates of chemical processes involving fast reactions, with minimal energy input. Received: 7 July 2000 / Accepted in revised form: 28 August 2000  相似文献   
333.
This paper investigates the current treatment of environmental issues by two companies within the large made-to-order sector. Fifty questionnaires were issued to the design team of each company to assess current practice in the integration of environmental issues with design activities, awareness of environmental issues, awareness of existing environmental design tools and the preferred format for a potential clean design tool.  相似文献   
334.
Single zircons from two orthogneiss complexes, the Grey Gneiss and Red Gneiss, the lowermost tectonic units in the Erzgebirge, were dated. The grey Freiberg Gneiss is of igneous origin and has a 207Pb/206Pb emplacement age of 550±7 Ma. A quartz monzonite from Lauenstein contains idiomorphic zircons with a mean 207Pb/206Pb age of 555±7 Ma as well as xenocrysts ranging in age between 850 and 1910 Ma. Red gneisses from the central Erzgebirge contain complex zircon populations, including numerous xenocrysts up to 2464 Ma in age. The youngest, idiomorphic, zircons in all samples yielded uniform 207Pb/206Pb ages between 550±9 and 554±10 Ma. Nd isotopic data support the interpretation of crustal anatexis for the origin of both units. Nd(t) values for the grey gneisses are –7.5 and –6.0 respectively, (mean crustal residence ages of 1.7–1.8 Ga). The red gneisses have a wider range in Nd(t) values from –7.7 to –2.8 (T DM ages of 1.4–1.8 Ga). The zircon ages document a distinct late Proterozoic phase of granitoid magmatism, similar in age to granitoids in the Lusatian block farther north-east. However, Palaeozoic deformation as well as medium pressure metamorphism ( 8 kbar/600–650° C) are identical in both gneiss units and distinguish these rocks from the Lusatian granitoids. The grey and red gneisses were overthrust by units with abundant high-pressure relicts and a contrasting P-T evolution. Zircon xenocryst and Nd model ages in the range 1000–1700 Ma are similar to those in granitoid rocks of Lusatia and the West-Sudetes, and document a pre-Cadomian basement in parts of east-central Europe that, chronologically, has similarities with the Sveconorwegian domain in the Baltic Shield.  相似文献   
335.
336.
337.
338.
339.
340.
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