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   2560篇
  免费   135篇
  国内免费   997篇
安全科学   158篇
废物处理   137篇
环保管理   208篇
综合类   1558篇
基础理论   413篇
环境理论   1篇
污染及防治   879篇
评价与监测   114篇
社会与环境   105篇
灾害及防治   119篇
  2024年   3篇
  2023年   59篇
  2022年   154篇
  2021年   113篇
  2020年   108篇
  2019年   95篇
  2018年   92篇
  2017年   120篇
  2016年   145篇
  2015年   167篇
  2014年   186篇
  2013年   245篇
  2012年   222篇
  2011年   241篇
  2010年   209篇
  2009年   184篇
  2008年   172篇
  2007年   162篇
  2006年   149篇
  2005年   70篇
  2004年   68篇
  2003年   88篇
  2002年   74篇
  2001年   58篇
  2000年   70篇
  1999年   73篇
  1998年   62篇
  1997年   56篇
  1996年   55篇
  1995年   45篇
  1994年   39篇
  1993年   35篇
  1992年   17篇
  1991年   11篇
  1990年   9篇
  1989年   7篇
  1988年   4篇
  1987年   4篇
  1986年   4篇
  1985年   2篇
  1984年   3篇
  1983年   3篇
  1982年   2篇
  1981年   1篇
  1977年   1篇
  1972年   2篇
  1918年   1篇
  1917年   1篇
  1916年   1篇
排序方式: 共有3692条查询结果,搜索用时 46 毫秒
861.
以环境水污染事件为背景,基于层次分析-线性加权法的构建环境水污染事件应急监测演练评估模型。利用层次分析法建立应急演练评估指标体系,构建各因素的判断矩阵,判断矩阵的特征向量作为评估指标的权重,由多位专家评估的权重值计算平均权重,然后利用线性加权法构建应急演练的综合评估模型。通过某江河的水污染事件应急演练实例,对评估模型进行了验证。  相似文献   
862.
向芸芸  陈培雄  杨辉  张鹤  陈全震 《海洋环境科学》2018,37(4):552-560, 578
海岛资源环境承载力评估能够识别生态系统的胁迫因子,明确海岛资源保护与开发的阈值界限,对于管控海岛及其邻近海域生态系统的生态环境具有重要意义。本文选择用海矛盾日益突出的海岛县洞头作为研究区,基于承载力的PSR概念模型,运用GIS空间分析、多指标评价等技术方法,从人-海复合生态系统的角度构建了海岛资源环境承载力的综合评价体系,对区域海岛生态系统的恢复力、资源环境容纳能力和抗干扰能力进行了量化,获得了洞头区压力、承压和响应调节系统的空间分异格局,据此探讨了洞头区在海陆边界、自然条件、社会经济发展等方面的不确定性,进而提出了海岛生态适应性管理的策略和措施。结果表明,洞头区资源环境承载力综合评价指数介于0.5~1.7之间,总体承载状况较好,现阶段仅有12%的海域处于超载状态,未来需从缓解人类社会经济活动压力、保持资源环境承压能力和提高系统反馈调节能力三个方面出发,开展适应性管控。  相似文献   
863.
能源和水资源之间存在紧密的耦合关系。以往的资源管理政策往往只关注单一资源,忽略了两者的关联性。为促进能源和水资源综合管理,有必要开展能源-水耦合关系和协同管理研究。从社会经济网络视角出发,论文综合运用系统投入产出和生态网络分析方法,构建了湖北省2007和2012年能源-水耦合网络核算框架。结果表明:1)2012年湖北体现能源最终消费量为14 304.93万tce,体现水资源最终消费量为346.66亿m3,相比2007年分别增长52.26%和7.89%,其中,体现在最终使用中能源与水资源流有近50%来自制造业;2)2007年湖北省水资源网络和能源网络的循环率都约为2.71%,与2007年相比,2012年水资源网络循环率显著增长至4.23%~4.40%,而能源网络循环率则变化较小;3)能源网络和水资源网络的系统鲁棒性都偏向于冗余度更高、效率更低的一侧;4)由于能源-水耦合网络的引入,2007—2012年间,在能源和水资源网络中,电力、热力生产和供应部门对于大多数部门的控制都呈现不同程度的增强趋势。研究辨识了能源与水资源协同管理的关键部门和路径,为湖北省能源和水资源可持续利用提供了理论与数据支撑。  相似文献   
864.
Molecular weight(Mw) is a fundamental property of humic acids(HAs), which considerably affect the mobility and speciation of heavy metals in the environment. In this study, soil humic acid(HA) extracted from Jinyun Mountain, Chongqing was ultra-filtered into four fractions according to the molecular weight, and their properties were characterized.Complexation of cadmium was investigated by titration experiments. For the first time,Langmuir and non-ideal competitive adsorption-Donna(NICA-Donnan) models combined with fluorescence excitation-emission matrix(EEM) quenching were employed to elucidate the binding characteristics of individual Mw fractions of HA. The results showed that the concentration of acidic functional groups decreased with increasing Mw, especially the phenolic groups. The humification degree and aliphaticity increased with increasing Mw as indicated by elemental composition analysis and FT-IR spectra. The binding capacity of Cd~(2+) to Mw fractions of HA followed the order UF1( 5 kDa) UF2(5–10 kDa) UF4( 30 kDa) UF3(10–30 kDa). Moreover, the distribution of cadmium speciation indicated that the phenolic groups were responsible for the variations in binding of Cd~(2+) among different Mw fractions. The results of fluorescence quenching illustrated that the binding capacity of Cd~(2+) to Mw fractions was controlled by the content of functional groups, while the binding affinity was largely influenced by structural factors. The results provide a better understanding of the roles that different HA Mw fractions play in heavy metal binding,which has important implications in the control of heavy metal migration and bio-toxicity.  相似文献   
865.
A large amount of wastewater containing various toxic organic contaminants is produced during coal-to-liquids process. In this study, several spectroscopic methods were used to monitor the transformation of organic pollutants during an integrated chemical oxidation and biological process. The results showed that the hydrophobic acid fraction increased after Fenton oxidation, which was likely due to the production of small-molecule organic acids. Soluble microbial products were generated during biological treatment processes,which were degraded after ozonation; meanwhile, the hydrophilic base and acid components increased. Ultraviolet-visible spectroscopic analysis indicated that peaks at the absorption wavelengths of 280 and 254 nm, which are associated with aromatic substances, were detected in the raw water. The aromatic substances were gradually removed, becoming undetectable after biological aeration filter(BAF) treatment. Fourier transform infrared spectroscopy analysis revealed that the functional groups of phenols;benzene, toluene, ethylbenzene, and xylene(BTEX); aromatic hydrocarbons; aliphatic acids;aldehydes; and esters were present in raw wastewater. The organic substances were oxidized into small molecules after Fenton treatment. Aromatic hydrocarbons were effectively removed through bioadsorption and biodegradation after BAF process.Biodegradable organic matter was reduced and finally became undetectable after anoxic–oxic treatment in combination with a membrane bioreactor. Four fluorescent components were fractionated and obtained via excitation–emission matrix parallel factor analysis(EEM-PARAFAC). Dissolved organic matter fractionation in conjunction with EEM-PARAFAC was able to monitor more precisely the evolution of characteristic organic contaminants.  相似文献   
866.
臭氧是城市光化学烟雾的主要成分,同时也是重要的温室气体,因此臭氧污染已经成为城市空气质量的重要因素.对重庆市渝中区2015年3个空气质量自动监测点臭氧浓度进行比较,并分析了臭氧与环境、日照、气温、挥发性有机物、NO2、PM10、PM2.5的相关性.结果表明:臭氧浓度与监测点周围环境有关;臭氧浓度呈典型的季节变化趋势,与日照、气温呈明显的正相关;臭氧浓度小时值变化出现明显的日变化规律;臭氧浓度与挥发性有机物呈正相关,与NO2、PM10、PM2.5有较好的负相关性.  相似文献   
867.
以中国矿业大学南湖校区为例,采用分功能区监测布点的方法对校园各功能区人群密集地点的噪声污染等级进行监测和分析,以探明大学校园内各功能区人员密集时噪声所能达到的最大声级,并进行评价分析.结果表明:在人流密集状态下,校园内的各测点噪声等级均在60dB以上,处于噪声超限状态.故虽然校园内各测点全天的等效声级不超限或基本达到《声环境质量标准》(GB 3096-2008)的要求,但实质上校园声环境却时常处于"亚健康"状态.  相似文献   
868.
Tomato plant waste(TPW) was used as the feedstock of a batch anaerobic reactor to evaluate the effect of anaerobic digestion on Ralstonia solanacearum and Phytophthora capsici survival. Batch experiments were carried out for TS(total solid) concentrations of 2%, 4% and 6% respectively, at mesophilic(37 ± 1°C) and room(20–25°C) temperatures. Results showed that higher digestion performance was achieved under mesophilic digestion temperature and lower TS concentration conditions. The biogas production ranged from 71 to 416 L/kg VS(volatile solids). The inactivation of anaerobic digestion tended to increase as digestion performance improved. The maximum log copies reduction of R. solanacearum and P. capsici detected by quantitative PCR(polymerase chain reaction) were 3.80 and 4.08 respectively in reactors with 4% TS concentration at mesophilic temperatures. However, both in mesophilic and room temperature conditions, the lowest reduction of R. solanacearum was found in the reactors with 6% TS concentration, which possessed the highest VFA(volatile fatty acid) concentration. These findings indicated that simple accumulation of VFAs failed to restrain R. solanacearum effectively, although the VFAs were considered poisonous. P. capsici was nearly completely dead under all conditions. Based on the digestion performance and the pathogen survival rate, a model was established to evaluate the digestate biosafety.  相似文献   
869.
正The folloing works were presented at the 5th Sino-French Joint Workshop on Atmospheric Environment:Air Quality Improvement and Future Challenges:Sciences,TechnologiesSolutions on October 11-14,2016.They received the Best Poster Awards that were sponsored by the Journal of Environmental Sciences.  相似文献   
870.
To reveal the basic characteristics and controlling factors of water quality change in the project Wenyu to Chaobai reclaimed water diversion, the water quality in the study area was monitored for one year at seven monitoring sites. Inverse geochemical models of the statistical groups were developed using PHREEQC to elucidate the hydrochemistry characteristics of reclaimed water and the factors. The monitoring results indicated that nitrogen and phosphorus contents were significantly reduced along the river mainly caused by seasonal and location variation. The pH ranged from 7.44 to 9.81. Photosynthesis of algae and denitrification in anaerobic microenvironment ultimately led to a sudden p H increase after the Jian River and the Chaobai River confluence. Mg~(2+)and SO_4~(2-) levels dropped obviously in the summer and increased in winter seasons after intersection. Na+and Cl-are relatively stable, and marked drop in the concentration only after the two rivers meet. And there is a decrease of Ca~(2+) and HCO~(3-) and increase in CO_3~(2-) during monitoring period. As a whole, the primary ions and nutrient components, including nitrogen and phosphorus, had high levels in winter. Algae's photosynthesis and respiration were observed to have an impact on the river water quality; there was precipitation–dissolution of minerals and denitrification from upstream to downstream. Inverse geochemical PHREEQC modeling confirmed that there was precipitation of aragonite or calcite, and gypsum or anhydrite in summer, and dissolution in winter; as well as precipitation of dolomite in winter, and cationic exchange and denitrification along the river.  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