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   89675篇
  免费   1227篇
  国内免费   1110篇
安全科学   3731篇
废物处理   3204篇
环保管理   13938篇
综合类   21076篇
基础理论   26156篇
环境理论   73篇
污染及防治   14355篇
评价与监测   5359篇
社会与环境   3583篇
灾害及防治   537篇
  2022年   791篇
  2021年   807篇
  2020年   648篇
  2019年   872篇
  2018年   1121篇
  2017年   1151篇
  2016年   2158篇
  2015年   1822篇
  2014年   2577篇
  2013年   9248篇
  2012年   2132篇
  2011年   2353篇
  2010年   3241篇
  2009年   3359篇
  2008年   1922篇
  2007年   1772篇
  2006年   2221篇
  2005年   2177篇
  2004年   2554篇
  2003年   2341篇
  2002年   1891篇
  2001年   2242篇
  2000年   1975篇
  1999年   1476篇
  1998年   1364篇
  1997年   1352篇
  1996年   1471篇
  1995年   1578篇
  1994年   1479篇
  1993年   1327篇
  1992年   1329篇
  1991年   1291篇
  1990年   1243篇
  1989年   1191篇
  1988年   1046篇
  1987年   980篇
  1986年   991篇
  1985年   1064篇
  1984年   1156篇
  1983年   1169篇
  1982年   1176篇
  1981年   1096篇
  1980年   941篇
  1979年   922篇
  1978年   825篇
  1977年   717篇
  1976年   639篇
  1975年   611篇
  1973年   641篇
  1972年   646篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
251.
252.
The decrease of the intertidal seagrass Zostera noltii in the Dutch Wadden Sea may have been the result of enhanced periphyton load due to eutrophication. Decrease of this seagrass species coincided with an increase in the mudsnail Hydrobia ulvae. Feeding of this mudsnail on periphyton may have partly counteracted an increase of periphyton biomass. Exclosure experiments on seagrass stands in the Dutch Wadden Sea in 1987 showed that density of periphyton on leaves of Z. noltii decreased significantly with increasing density of grazers. An increased density of mudsnails significantly enhanced the density and biomass of seagrass, in particular of the below ground parts. Since this seagrass species survives winter in temperate climate zones mainly by means of rhizomes, grazing may also influence the seagrass dynamics in the long term. Results of the experiment were in agreement with field observations on coinciding low densities of mudsnails and high densities of fouling of seagrass stands on the tidal flats of western Wadden Sea in the late 1970s.  相似文献   
253.
254.
255.
256.
257.
258.
Nylund  G. M.  Pavia  H. 《Marine Biology》2003,143(5):875-882
We examined the chemical antifouling properties of four sublittoral red algae, Chondrus crispus, Delesseria sanguinea, Osmundea ramosissima, and Polyides rotundus, which are all rarely fouled in the field. Two different approaches were used. Firstly, we tested the effects of lipophilic crude extracts on the settlement behaviour of cyprid larvae of the co-existing barnacle Balanus improvisus. Secondly, in a settlement preference experiment, we tested whether B. improvisus cyprid larvae settle on living algae when given a choice between natural algal surfaces and control surfaces. With this procedure, we were able to test both if the algae inhibit recruitment of cyprids, and if this inhibition is a result of chemistry. The settlement of B. improvisus larvae was strongly inhibited at concentrations estimated to be potentially ecologically relevant for all of the tested extracts. However, only C. crispus significantly inhibited settlement in the preference experiment, even though there was also a tendency for settlement inhibition on P. rotundus and O. ramosissima. In contrast, D. sanguinea seemed to stimulate settlement. This contradiction probably resulted from an extraction of metabolites that naturally occur only inside the alga. However, as this study shows, a combination of settlement assays with whole-cell extracts and preference tests of ecologically relevant fouling organisms on natural algal and control surfaces may be a useful procedure to avoid erroneous conclusions regarding natural antifouling roles of compounds based on settlement assays with only whole-cell extracts. Furthermore, this study also shows that production of inhibitory metabolites may explain the low degree of fouling, especially by B. improvisus, on C. crispus.Communicated by L. Hagerman, Helsingør  相似文献   
259.
260.
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