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   41283篇
  免费   451篇
  国内免费   357篇
安全科学   1350篇
废物处理   1847篇
环保管理   5630篇
综合类   6329篇
基础理论   10968篇
环境理论   11篇
污染及防治   10316篇
评价与监测   2802篇
社会与环境   2566篇
灾害及防治   272篇
  2022年   339篇
  2021年   411篇
  2020年   263篇
  2019年   348篇
  2018年   595篇
  2017年   620篇
  2016年   975篇
  2015年   695篇
  2014年   1080篇
  2013年   3348篇
  2012年   1311篇
  2011年   1764篇
  2010年   1466篇
  2009年   1499篇
  2008年   1853篇
  2007年   1813篇
  2006年   1665篇
  2005年   1413篇
  2004年   1432篇
  2003年   1359篇
  2002年   1266篇
  2001年   1581篇
  2000年   1093篇
  1999年   662篇
  1998年   532篇
  1997年   529篇
  1996年   552篇
  1995年   639篇
  1994年   589篇
  1993年   508篇
  1992年   539篇
  1991年   513篇
  1990年   510篇
  1989年   502篇
  1988年   434篇
  1987年   373篇
  1986年   363篇
  1985年   366篇
  1984年   406篇
  1983年   395篇
  1982年   409篇
  1981年   361篇
  1980年   273篇
  1979年   315篇
  1978年   269篇
  1977年   226篇
  1975年   231篇
  1974年   221篇
  1973年   243篇
  1972年   242篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
231.
Major and trace elements of selected pedons in the USA   总被引:6,自引:0,他引:6  
Few studies of soil geochemistry over large geographic areas exist, especially studies encompassing data from major pedogenic horizons that evaluate both native concentrations of elements and anthropogenically contaminated soils. In this study, pedons (n = 486) were analyzed for trace (Cd, Co, Cr, Cu, Hg, Mn, Ni, Pb, Zn) and major (Al, Ca, Fe, K, Mg, Na, P, Si, Ti, Zr) elements, as well as other soil properties. The objectives were to (i) determine the concentration range of selected elements in a variety of U.S. soils with and without known anthropogenic additions, (ii) illustrate the association of elemental source and content by assessing trace elemental content for several selected pedons, and (iii) evaluate relationships among and between elements and other soil properties. Trace element concentrations in the non-anthropogenic dataset (NAD) were in the order Mn > (Zn, Cr, Ni, Cu) > (Pb, Co) > (Cd, Hg), with greatest mean total concentrations for the Andisol order. Geometric means by horizon indicate that trace elements are concentrated in surface and/or B horizons over C horizons. Median values for trace elements are significantly higher in surface horizons of the anthropogenic dataset (AD) over the NAD. Total Al, Fe, cation exchange capacity (CEC), organic C, pH, and clay exhibit significant correlations (0.56, 0.74, 0.50, 0.31, 0.16, and 0.30, respectively) with total trace element concentrations of all horizons of the NAD. Manganese shows the best inter-element correlation (0.33) with these associated total concentrations. Total Fe has one of the strongest relationships, explaining 55 and 30% of the variation in total trace element concentrations for all horizons in the NAD and AD, respectively.  相似文献   
232.
Indicators of ecosystem recovery   总被引:6,自引:0,他引:6  
  相似文献   
233.
Excessive nitrogen (N) loading to N-sensitive waters such as the Neuse River estuary (North Carolina) has been shown to promote changes in microbial and algal community composition and function (harmful algal blooms), hypoxia and anoxia, and fish kills. Previous studies have estimated that wet atmospheric deposition of nitrogen (WAD-N), as deposition of dissolved inorganic nitrogen (DIN: NO3-, NH3/NH4+) and dissolved organic nitrogen, may contribute at least 15% of the total externally supplied or "new" N flux to the coastal waters of North Carolina. In a 3-yr study from June 1996 to June 1999, we calculated the weekly wet deposition of inorganic and organic N at eleven sites on a northwest-southeast transect in the watershed. The annual mean total (wet DIN + wet organics) WAD-N flux for the Neuse River watershed was calculated to be 956 mg N/m2/yr (15026 Mg N/yr). Seasonally, the spring (March-May) and summer (June-August) months contain the highest total weekly N deposition; this pattern appears to be driven by N concentration in precipitation. There is also spatial variability in WAD-N deposition; in general, the upper portion of the watershed receives the lowest annual deposition and the middle portion of the watershed receives the highest deposition. Based on a range of watershed N retention and in-stream riverine processing values, we estimate that this flux contributes approximately 24% of the total "new" N flux to the estuary.  相似文献   
234.
235.
IntroductionBecauseofthelowefficiencyoftheelectrostaticprecipitator (ESP)forcollectingthesubmicronparticles ,theelectricalagglomerationmethodhasledtoanincreasinginterestinreducingtheemissionofthefineparticles .Manyauthorshavestudiedelectricalagglomerati…  相似文献   
236.
237.
Russian Journal of Ecology - We estimated when the edge effect appears in the herb–dwarf shrub layer of pine forests near Yekaterinburg (Central Urals; Southern Taiga subzone) on 14 transects...  相似文献   
238.
Regional Environmental Change - Louisiana faces extensive coastal land loss which threatens the livelihoods of marginalized populations. These groups have endured extreme disruptive events in the...  相似文献   
239.
Regional Environmental Change - In the late 2000s, slaughterhouses across the Amazon entered into a series of agreements designed to reduce the environmental impact of the local cattle sector. In...  相似文献   
240.
Regional Environmental Change - The rapid environmental changes currently underway in many dry regions of the world, and the deep uncertainty about their consequences, underscore a critical...  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