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   22153篇
  免费   233篇
  国内免费   367篇
安全科学   511篇
废物处理   987篇
环保管理   2580篇
综合类   3682篇
基础理论   5917篇
环境理论   4篇
污染及防治   5628篇
评价与监测   1548篇
社会与环境   1761篇
灾害及防治   135篇
  2022年   241篇
  2021年   198篇
  2020年   159篇
  2019年   196篇
  2018年   316篇
  2017年   360篇
  2016年   506篇
  2015年   391篇
  2014年   644篇
  2013年   1790篇
  2012年   721篇
  2011年   995篇
  2010年   872篇
  2009年   859篇
  2008年   1003篇
  2007年   1032篇
  2006年   847篇
  2005年   758篇
  2004年   749篇
  2003年   728篇
  2002年   700篇
  2001年   925篇
  2000年   644篇
  1999年   344篇
  1998年   238篇
  1997年   276篇
  1996年   293篇
  1995年   341篇
  1994年   306篇
  1993年   251篇
  1992年   265篇
  1991年   250篇
  1990年   271篇
  1989年   243篇
  1988年   212篇
  1987年   225篇
  1986年   200篇
  1985年   208篇
  1984年   200篇
  1983年   188篇
  1982年   176篇
  1981年   176篇
  1980年   157篇
  1979年   168篇
  1978年   130篇
  1977年   143篇
  1975年   117篇
  1974年   116篇
  1973年   133篇
  1972年   128篇
排序方式: 共有10000条查询结果,搜索用时 25 毫秒
951.
This paper deals with a systematic hydrogeological, geophysical, and hydrochemical investigations carried out in SIPCOT area in Southern India to demarcate groundwater pollution and saline intrusion through Uppanar River, which flows parallel to sea coast with high salinity (average TDS 28, 870 mg/l) due to back waters as well as discharge of industrial and domestic effluents. Hydrogeological and geophysical investigations comprising topographic survey, self-potential, multi-electrode resistivity imaging, and water quality monitoring were found the extent of saline water intrusion in the south and pockets of subsurface pollution in the north of the study area. Since the area is beset with highly permeable unconfined quaternary alluvium forming potential aquifer at shallow depth, long-term excessive pumping and influence of the River have led to lowering of the water table and degradation of water quality through increased salinity there by generating reversal of hydraulic gradient in the south. The improper management of industrial wastes and left over chemicals by closed industries has led surface and subsurface pollution in the north of the study area.  相似文献   
952.
This study evaluated the abilities of various plant species to act as bio-monitors for environmental uranium (U) contamination. Vegetation and soil samples were collected from a U processing facility. The water-way fed from facility storm and processing effluents was the focal sample site as it represented a primary U transport mechanism. Soils and sediments from areas exposed to contamination possessed U concentrations that averaged 630 mg U kg(-1). Aquatic mosses proved to be exceptional accumulators of U with dry weight (dw) concentrations measuring as high as 12,500 mg U kg(-1) (approximately 1% of the dw mass was attributable to U). The macrophytes (Phragmites communis, Scripus fontinalis and Sagittaria latifolia) were also effective accumulators of U. In general, plant roots possessed higher concentrations of U than associated upper portions of plants. For terrestrial plants, the roots of Impatiens capensis had the highest observed levels of U accumulation (1030 mg kg(-1)), followed by the roots of Cyperus esculentus and Solidago speciosa. The concentration ratio (CR) characterized dry weight (dw) vegetative U levels relative to that in associated dw soil. The plant species that accumulated U at levels in excess of that found in the soil were: P. communis root (CR, 17.4), I. capensis root (CR, 3.1) and S. fontinalis whole plant (CR, 1.4). Seven of the highest ten CR values were found in the roots. Correlations with concentrations of other metals with U were performed, which revealed that U concentrations in the plant were strongly correlated with nickel (Ni) concentrations (correlation: 0.992; r-squared: 0.984). Uranium in plant tissue was also strongly correlated with strontium (Sr) (correlation: 0.948; r-squared: 0.899). Strontium is chemically and physically similar to calcium (Ca) and magnesium (Mg), which were also positively-correlated with U. The correlation with U and these plant nutrient minerals, including iron (Fe), suggests that active uptake mechanisms may influence plant U accumulation.  相似文献   
953.
The study aims to establish denitrification potential of the Northern Arabian Gulf (NAG), as nitrogen critically affects the ocean productivity, obliterates acidity, oxidative capacity and radiative transfer capability of atmosphere. The experimental study was conducted by taking cores from intertidal zones from two different sites in North and South, referred as sites N and S; representing two distinct environmental milieu. The experiment was conducted in controlled laboratory conditions simulating the tidal cycles. Multiple cores were taken and loaded with seawater with different N concentrations, the redox potential was established for each condition. Redox potential was significantly lower at 10?cm depth compared to the surface in all cores (P?<?0.001). The redox potential at surface and at 10?cm depth was significantly lower at site S compared to site N (P?<?0.001; F?=?714.2), suggesting anaerobic sediments at site S. Effects of nitrate spiked seawater on denitrification under nonflooded and flooded conditions at the two sites were also studied. Three-way ANOVA analysis indicated that site, nitrate concentration, and flooding had significant main and interactive effects on the rate of denitrification. The results suggest that under ambient nitrate concentrations (0.03?mg NO3-N?l?1), 6.3?±?2.1?g NO3-N?ha?day can be denitrified by inter-tidal zone sediments. At a nitrate concentration of 1?mg NO3-N?l?1, 92?±?16?g NO3-N?ha?day may be denitrified whilst at a very high nitrate load of 10?mg NO3-N?l?1, the sediments may attain a rate of denitrification close to 404?±?78?g NO3-N?ha?day.  相似文献   
954.
955.
956.
957.
958.
959.
960.
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