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   7602篇
  免费   1252篇
  国内免费   2118篇
安全科学   733篇
废物处理   393篇
环保管理   612篇
综合类   4759篇
基础理论   1174篇
环境理论   3篇
污染及防治   2168篇
评价与监测   395篇
社会与环境   349篇
灾害及防治   386篇
  2024年   5篇
  2023年   158篇
  2022年   401篇
  2021年   413篇
  2020年   374篇
  2019年   280篇
  2018年   300篇
  2017年   375篇
  2016年   345篇
  2015年   444篇
  2014年   590篇
  2013年   788篇
  2012年   665篇
  2011年   686篇
  2010年   557篇
  2009年   527篇
  2008年   537篇
  2007年   488篇
  2006年   429篇
  2005年   313篇
  2004年   220篇
  2003年   262篇
  2002年   238篇
  2001年   204篇
  2000年   193篇
  1999年   175篇
  1998年   173篇
  1997年   136篇
  1996年   135篇
  1995年   130篇
  1994年   112篇
  1993年   75篇
  1992年   72篇
  1991年   50篇
  1990年   41篇
  1989年   26篇
  1988年   13篇
  1987年   10篇
  1986年   14篇
  1985年   7篇
  1984年   3篇
  1983年   5篇
  1982年   3篇
排序方式: 共有10000条查询结果,搜索用时 156 毫秒
1.
明确硝酸盐的主要来源及转化过程对地下水氮污染防治和水资源开发利用具有重要意义.为了探明滇池周边浅层地下水中硝酸盐污染现状及来源,于2020年雨季(10月)和2021年旱季(4月)在滇池周边共采集73个浅层地下水样,运用水化学和氮氧同位素(δ15N-NO3-δ18O-NO3-)识别浅层地下水中硝酸盐的空间分布、来源及转化过程,并结合同位素混合模型(SIAR)定量评价不同来源氮对浅层地下水硝酸盐的贡献.结果表明,旱季浅层地下水中有40.5%的采样点ρ(NO3--N)超过地下水质量标准(GB/T 14848)Ⅲ类水质规定的20 mg·L-1,雨季超过47.2%的采样点ρ(NO3--N)超过20 mg·L-1.氮氧同位素和SIAR模型分析结果证明了土壤有机氮、化肥氮、粪肥和污水氮是浅层地下水硝酸盐的主要来源,以上氮源对旱季浅层地下水中硝酸盐的贡献率分别为13.9%、11.8%和66.5%,对雨季的贡献率分别为33.7%、31.1%和25.9%,而大气氮沉降贡献率仅为8.5%,对该区浅层地下水中硝酸盐来源贡献较小.硝化作用是旱季浅层地下水中硝态氮转化的主导过程,雨季以反硝化作用为主,且反硝化作用雨季比旱季明显.  相似文献   
2.
张军  李旭  刘磊玉  李雨茹 《环境科学》2023,44(12):6921-6932
为探究某燃煤电厂污染物排放中重金属对周边农田土壤环境的影响,采用辐射环形法,以电厂烟囱为中心,布设31个农田土壤采样点.使用电感耦合等离子体质谱仪(ICP-MS)测定土壤中10种重金属含量,分析土壤中重金属含量特征及潜在生态风险,基于地统计空间插值和AERMOD扩散模型对重金属空间分异情况和污染特征进行探究,并运用PMF受体模型对重金属进行源解析.结果表明:①燃煤电厂周边农田土壤重金属ω(Pb)、ω(Mn)、ω(Zn)、ω(Cr)、ω(Ni)、ω(Cu)、ω(As)、ω(Co)、ω(Hg)和ω(Cd)的平均值分别为414.46、286.38、155.22、69.54、55.77、53.48、31.73、19.86、0.78和0.71 mg·kg-1,其中Hg、Pb、Cd、As、Zn、Cu、Co、Cr和Ni的含量均超过陕西省土壤背景值,分别为背景值的26、19.36、7.88、2.83、2.23、2.49、1.87、1.11和1.93倍,元素Cd、Cr、Ni和Zn的高值区出现在电厂西北方向.②燃煤电厂周边农田土壤重金属潜在生态风险指数(RI)的均值为714.53,整体处于很强的生态风险水平,并在千河火车站、石油天然气公司附近出现高值富集区,Hg元素的单项潜在生态风险指数(Ei)为520.92,处于极强的生态风险水平.③燃煤电厂周边农田土壤重金属主要来源为煤炭燃烧的降尘源(32.16%)、工农业活动源(19.78%)、自然源(26.25%)和交通源(21.81%).土壤重金属含量较高值均分布在距电厂1~2 km范围内,重金属含量在距离电厂1 km范围内较小,在1~2 km范围逐渐增大,大于2 km后又呈逐渐减小趋势.研究得出的电厂周边农田土壤重金属空间分异情况及富集特征,可为开展土壤污染治理提供理论及数据支撑.  相似文献   
3.
Environmental Science and Pollution Research - Metallic glasses (MGs) with unique disordered atomic stacking structures exhibit excellent catalytic performance in wastewater treatment. The...  相似文献   
4.
Xu  Peiwei  He  Xiaoqing  He  Shengliang  Luo  Jinbin  Chen  Qiang  Wang  Zuoyi  Wang  Aihong  Lu  Beibei  Wu  Lizhi  Chen  Yuan  Xu  Dandan  Chen  Weizhong  Chen  Zhijian  Wang  Xiaofeng  Lou  Xiaoming 《Environmental science and pollution research international》2021,28(6):6691-6699
Environmental Science and Pollution Research - To better understand the cardiopulmonary alterations associated with personal exposed PM2.5-bound heavy meals, we conducted a cross-sectional study in...  相似文献   
5.

Characterization of the typical petroleum pollutants, polycyclic aromatic hydrocarbons (PAHs) and n-alkanes, and indigenous microbial community structure and function in historically contaminated soil at petrol stations is critical. Five soil samples were collected from a petrol station in Beijing, China. The concentrations of 16 PAHs and 31 n-alkanes were measured by gas chromatography-mass spectrometry. The total concentrations of PAHs and n-alkanes ranged from 973 ± 55 to 2667 ± 183 μg/kg and 6.40 ± 0.38 to 8.65 ± 0.59 mg/kg (dry weight), respectively, which increased with depth. According to the observed molecular indices, PAHs and n-alkanes originated mostly from petroleum-related sources. The levels of ΣPAHs and the total toxic benzo[a]pyrene equivalent (ranging from 6.41 to 72.54 μg/kg) might exert adverse biological effects. Shotgun metagenomic sequencing was employed to investigate the indigenous microbial community structure and function. The results revealed that Proteobacteria and Actinobacteria were the most abundant phyla, and Nocardioides and Microbacterium were the important genera. Based on COG and KEGG annotations, the highly abundant functional classes were identified, and these functions were involved in allowing microorganisms to adapt to the pressure from contaminants. Five petroleum hydrocarbon degradation-related genes were annotated, revealing the distribution of degrading microorganisms. This work facilitates the understanding of the composition, source, and potential ecological impacts of residual PAHs and n-alkanes in historically contaminated soil.

  相似文献   
6.
Huang  Ying  Jiang  Qiongji  Yu  Xubiao  Gan  Huihui  Zhu  Xia  Fan  Siyi  Su  Yan  Xu  Zhirui  He  Cunrui 《Environmental science and pollution research international》2021,28(37):51251-51264
Environmental Science and Pollution Research - Trace copper ion (Cu(II)) in water and wastewater can trigger peroxymonosulfate (PMS) activation to oxidize organic compounds, but it only works under...  相似文献   
7.
Polycyclic aromatic hydrocarbons(PAHs) and their nitrated derivatives(NPAHs) attract continuous attention due to their outstanding carcinogenicity and mutagenicity. In order to investigate the diurnal variations, sources, formation mechanism, and health risk assessment of them in heating season, particulate matter(PM) were collected in Beijing urban area from December 26, 2017 to January 17, 2018. PAHs and NPAHs in PM were quantitatively analyzed via gas chromatography-mass spectrometry(GC-MS). ...  相似文献   
8.
Environmental Science and Pollution Research - Biochar has strong potential to improve nitrogen (N) use efficiency in both agricultural and horticultural systems. Biochar is usually co-applied with...  相似文献   
9.
• The long-period groundwater evolution was identified by hydrochemical signatures. • The dominant processes in the groundwater evolution were verified. • Groundwater quality in the coastal areas was susceptible to deterioration due to SI. • Groundwater contamination arose from fertilizer, livestock manure & domestic sewage. The evolution of hydrochemical compositions influenced by long-period interactions between groundwater and the geo-environment is a fundamental issue for exploring groundwater quality and vulnerability. This study systematically investigated the hydrochemical processes and anthropogenic interference occurring in the river basin by bivariate plots, Gibbs diagrams, saturation index, and the major ions ratios. Apparent changes in groundwater hydrochemistry have been observed in the study area, illustrating the origins of major ions are affected by various internal and external factors. Results highlighted that TDS varied from freshwater to brackish water, ranging between 187.90 and 2294.81 mg/L. Ca2+ and HCO3 are the dominant ions in the studied samples. The results gained by Gibbs diagrams, bivariate plots, saturation index, and the major ions ratios demonstrated that minerals dissolution/precipitation, cation exchange, and human inputs play crucial roles in the unconfined aquifers. Moreover, the overuse of nitrogen fertilizer, livestock manure, and industrial/domestic sewage led to nitrate and nitrite contamination and brought significant challenges to the surrounding hydrogeo-environment. The present study could make an unambiguous identification of natural processes and anthropogenic interventions influencing groundwater hydrochemistry’s long-period evolution and create a preliminary strategy for groundwater resources management.  相似文献   
10.
• Pore structure affects biologically activated carbon performance. • Pore structure determines organic matter (OM) removal mechanism. • Microbial community structure is related to pore structure and OM removal. Optimizing the characteristics of granular activated carbon (GAC) can improve the performance of biologically activated carbon (BAC) filters, and iodine value has always been the principal index for GAC selection. However, in this study, among three types of GAC treating the same humic acid-contaminated water, one had an iodine value 35% lower than the other two, but the dissolved organic carbon removal efficiency of its BAC was less than 5% away from the others. Iodine value was found to influence the removal of different organic fractions instead of the total removal efficiency. Based on the removal and biological characteristics, two possible mechanisms of organic matter removal during steady-state were suggested. For GAC with poor micropore volume and iodine value, high molecular weight substances (3500–9000 Da) were removed mainly through degradation by microorganisms, and the biodegraded organics (soluble microbial by-products,<3500 Da) were released because of the low adsorption capacity of activated carbon. For GAC with higher micropore volume and iodine value, organics with low molecular weight (<3500 Da) were more easily removed, first being adsorbed by micropores and then biodegraded by the biofilm. The biomass was determined by the pore volume with pore diameters greater than 100 μm, but did not correspond to the removal efficiency. Nevertheless, the microbial community structure was coordinate with both the pore structure and the organic removal characteristics. The findings provide a theoretical basis for selecting GAC for the BAC process based on its pore structure.  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