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   44241篇
  免费   464篇
  国内免费   375篇
安全科学   1283篇
废物处理   2010篇
环保管理   5494篇
综合类   8623篇
基础理论   10984篇
环境理论   20篇
污染及防治   10705篇
评价与监测   2981篇
社会与环境   2751篇
灾害及防治   229篇
  2022年   377篇
  2021年   423篇
  2020年   256篇
  2019年   344篇
  2018年   634篇
  2017年   637篇
  2016年   1004篇
  2015年   749篇
  2014年   1148篇
  2013年   3374篇
  2012年   1381篇
  2011年   1844篇
  2010年   1521篇
  2009年   1620篇
  2008年   1904篇
  2007年   1921篇
  2006年   1705篇
  2005年   1466篇
  2004年   1465篇
  2003年   1424篇
  2002年   1330篇
  2001年   1573篇
  2000年   1090篇
  1999年   735篇
  1998年   538篇
  1997年   575篇
  1996年   597篇
  1995年   647篇
  1994年   599篇
  1993年   525篇
  1992年   526篇
  1991年   542篇
  1990年   501篇
  1989年   478篇
  1988年   434篇
  1987年   375篇
  1986年   377篇
  1985年   387篇
  1984年   407篇
  1983年   394篇
  1982年   419篇
  1981年   357篇
  1980年   293篇
  1979年   312篇
  1978年   288篇
  1977年   253篇
  1975年   240篇
  1974年   232篇
  1973年   268篇
  1967年   243篇
排序方式: 共有10000条查询结果,搜索用时 500 毫秒
601.
 The ubiquity of circadian rhythms suggests that they have an intrinsic adaptive value (Ouyang et al. 1998; Ronneberg and Foster 1997). Some experiments have shown that organisms have enhanced longevity, development time or growth rates when maintained in environments whose periodicity closely matches their endogenous period (Aschoff et al. 1971; Highkin and Hanson 1954; Hillman 1956; Pittendrigh and Minis 1972; Went 1960). So far there has been no experimental evidence to show that circadian rhythms per se (i.e. periodicity itself, as opposed to phasing properties of a rhythm) confer a fitness advantage. We show that the circadian eclosion rhythm persists in a population of the fruitfly Drosophila melanogaster maintained in constant conditions of light, temperature, and humidity for over 600 generations. The results suggest that even in the absence of any environmental cycle there exists some intrinsic fitness value of circadian rhythms. Received: 2 November 1998 / Accepted in revised form: 22 April 1999  相似文献   
602.
603.
The restoration of surface mining landscapes requires the (re)creation of ecosystems. In Lusatia (eastern Germany), large-scale open-cast lignite mining operations generated spoil dumps widely consisting of acidified, phytotoxic substrates. Amelioration and rehabilitation measures have been developed and applied to these substrates since the 1950s. However, it is still not clear whether these approaches are sustainable. This paper reports on collaborative research work into the ecological potential of forest ecosystem development on typical minesites in the Lusatian lignite district. At first sight, pine stands on minesites along a chronosequence comprising about 35 years did not show differences when compared with stands on non-mined sites of the general region. Furthermore, with some modification, conceptual models for flora and fauna succession in forest stands on non-mined sites seem to be applicable, at least for the early stages of forest ecosystem development. For example, soil organism abundance and activity at minesites had already reached levels typical of non-mined sites after about 20-30 years. In contrast, mine soils are very different from non-mined soils of the test region. Chemically, mine soil development is dominated by processes originating from pyrite oxidation. Geogenic, i.e. lignitic, soil organic carbon was shown to substitute for some functions of pedogenic soil organic matter. Rooting was hampered but not completely impeded in strongly acidified soil compartments. Roots and mycorrhizae are apparently able to make use of the characteristic heterogeneity of young mine soils. Considering these recent results and the knowledge accumulated during more than 30 years of research on minesite rehabilitation internationally, it can be stated that minesite restoration might be used as an ideal case study for forest ecosystem development starting at "point zero" on "terra nova".  相似文献   
604.
605.
606.
607.
608.
609.
610.
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