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   963篇
  免费   150篇
  国内免费   175篇
安全科学   396篇
废物处理   27篇
环保管理   49篇
综合类   500篇
基础理论   112篇
污染及防治   92篇
评价与监测   46篇
社会与环境   18篇
灾害及防治   48篇
  2024年   4篇
  2023年   17篇
  2022年   32篇
  2021年   57篇
  2020年   46篇
  2019年   50篇
  2018年   36篇
  2017年   39篇
  2016年   45篇
  2015年   47篇
  2014年   40篇
  2013年   67篇
  2012年   74篇
  2011年   80篇
  2010年   57篇
  2009年   51篇
  2008年   44篇
  2007年   80篇
  2006年   72篇
  2005年   72篇
  2004年   32篇
  2003年   43篇
  2002年   29篇
  2001年   30篇
  2000年   30篇
  1999年   27篇
  1998年   15篇
  1997年   15篇
  1996年   12篇
  1995年   13篇
  1994年   8篇
  1993年   8篇
  1992年   8篇
  1991年   2篇
  1990年   1篇
  1989年   2篇
  1988年   1篇
  1987年   1篇
  1986年   1篇
排序方式: 共有1288条查询结果,搜索用时 78 毫秒
41.
This work applies optimization and an Eulerian inversion approach presented by Bagtzoglou and Baun in 2005 in order to reconstruct contaminant plume time histories and to identify the likely source of atmospheric contamination using data from a real test site for the first time. Present-day distribution of an atmospheric contaminant plume as well as data points reflecting the plume history allow the reconstruction and provide the plume velocity, distribution, and probable source. The method was tested to a hypothetical case and with data from the Forest Atmosphere Transfer and Storage (FACTS) experiment in the Duke experimental forest site. In the scenarios presented herein, as well as in numerous cases tested for verification purposes, the model conserved mass, successfully located the peak of the plume, and managed to capture the motion of the plume well but underestimated the contaminant peak.  相似文献   
42.
In a proton exchange membrane electrolyzer cell (PEMEC), liquid/gas diffusion layer (LGDL) is expected to transport electrons, heat, and reactants/products to and from the catalyst layer with minimum voltage, current, thermal, interfacial, and fluidic losses. In addition, carbon materials, which are typically used in PEM fuel cells (PEMFCs), are unsuitable in PEMECs due to the high ohmic potential and highly oxidative environment of the oxygen electrode. In this study, a set of titanium gas diffusion layers with different thicknesses and porosities are designed and examined coupled with the development of a robust titanium bipolar plate. It has been found that the performance of electrolyzer improves along with a decrease in thickness or porosity of the anode LGDL of titanium woven meshes. The ohmic resistance of anode LGDL and contact resistance between anode LGDL and the anode catalyst play dominant roles in electrolyzer performance, and better performance can be obtained by reducing ohmic resistance. Thin titanium LGDLs with straight-through pores and optimal pore morphologies are recommended for the future developments of low-cost LGDLs with minimum ohmic/transport losses.  相似文献   
43.
为保护铁路线,以某化工厂距离高铁路线最近的丙烯球罐为例,提出丙烯球罐泄漏最小隔离区域划分方法以及2种保护高铁线路方案,利用重气扩散模型和定量风险评价(QRA)软件分别进行丙烯扩散模拟、爆炸模拟,并进行危险与可操作性分析(HAZOP)和保护层分析(LOPA)。结果表明:球罐发生泄漏及火灾爆炸等事故,会给附近铁路线带来严重破坏;丙烯泄漏或球罐因周围其他设备设施或可燃物质着火而温度升高时,保护措施不足;隧道的安全可靠性要高于仅设1道防爆墙,隧道长度需覆盖最小隔离区域的可及范围,在扩散区域内也需设立普通挡墙,在极度危险情况下,需要实施高铁停开等保护措施。  相似文献   
44.
• Effects of metabolic uncoupler TCS on the performances of GDMBR were evaluated. • Sludge EPS reduced and transformed into dissolved SMP when TCS was added. • Appropriate TCS increased the permeability and reduced cake layer fouling. • High dosage aggravated fouling due to compact cake layer with low bio-activity. The gravity-driven membrane bioreactor (MBR)system is promising for decentralized sewage treatment because of its low energy consumption and maintenance requirements. However, the growing sludge not only increases membrane fouling, but also augments operational complexities (sludge discharge). We added the metabolic uncoupler 3,3′,4′,5-tetrachlorosalicylanilide (TCS) to the system to deal with the mentioned issues. Based on the results, TCS addition effectively decreased sludge ATP and sludge yield (reduced by 50%). Extracellular polymeric substances (EPS; proteins and polysaccharides) decreased with the addition of TCS and were transformed into dissolved soluble microbial products (SMPs) in the bulk solution, leading to the break of sludge flocs into small fragments. Permeability was increased by more than two times, reaching 60–70 L/m2/h bar when 10–30 mg/L TCS were added, because of the reduced suspended sludge and the formation of a thin cake layer with low EPS levels. Resistance analyses confirmed that appropriate dosages of TCS primarily decreased the cake layer and hydraulically reversible resistances. Permeability decreased at high dosage (50 mg/L) due to the release of excess sludge fragments and SMP into the supernatant, with a thin but more compact fouling layer with low bioactivity developing on the membrane surface, causing higher cake layer and pore blocking resistances. Our study provides a fundamental understanding of how a metabolic uncoupler affects the sludge and bio-fouling layers at different dosages, with practical relevance for in situ sludge reduction and membrane fouling alleviation in MBR systems.  相似文献   
45.
研究10种不同价格香烟燃烧烟气的多环芳烃(PAHs)含量特征,结果表明,每种香烟烟气都含有多环芳烃,但是含量差别较大,平均值为405.405ng/g。在检测出来的多环芳烃中,主要是以2,3环多环芳烃为主,占据的比例达到80%左右。因此香烟烟气中的多环芳烃应该引起人们的广泛关注。  相似文献   
46.
Ramus K  Kopinke FD  Georgi A 《Chemosphere》2012,86(2):138-143
The effect of dissolved humic substances (DHS) on the rate of water-gas exchange of two volatile organic compounds was studied under various conditions of agitation intensity, solution pH and ionic strength. Mass-transfer coefficients were determined from the rate of depletion of model compounds from an apparatus containing a stirred aqueous solution with continuous purging of the headspace above the solution (dynamic system). Under these conditions, the overall transfer rate is controlled by the mass-transfer resistance on the water side of the water-gas interface. The experimental results show that the presence of DHS hinders the transport of the organic molecules from the water into the gas phase under all investigated conditions. Mass-transfer coefficients were significantly reduced even by low, environmentally relevant concentrations of DHS. The retardation effect increased with increasing DHS concentration. The magnitude of the retardation effect on water-gas exchange was compared for Suwannee River fulvic and humic acids, a commercially available leonardite humic acid and two synthetic surfactants. The observed results are in accordance with the concept of hydrodynamic effects. Surface pressure forces due to surface film formation change the hydrodynamic characteristics of water motion at the water-air interface and thus impede surface renewal.  相似文献   
47.
通过对几种含油污泥无害化处理技术的比选,分析不同处理技术物耗、能耗情况,优选出经济有效的含油污泥焚烧技术,结合新疆油田含油污泥的特点,采用层燃螺旋炉排焚烧技术,利用其燃烧热能生产蒸汽用于原油生产,采用余热吸收急冷与碱液半干法除酸技术,有效控制了二次污染;采用布袋除尘与烟尘固化技术确保了烟气达标排放。年节省成本支出3095.88万元。  相似文献   
48.
朱育雷  倪长健  崔蕾 《环境工程》2017,35(1):98-102
基于2014年1月21日至2月5日成都市人民南路四段逐时PM_(2.5)质量浓度、大气能见度资料以及同期Mie散射激光雷达探测数据,遵循消光系数与细颗粒物质量浓度之间的关系,探讨污染边界层高度的演变特征。结果表明:污染时段内的污染边界层高度偏低,平均为221m;污染边界层高度与地面PM_(2.5)浓度的变化具有明显相关性,但污染边界层高度改变在前,地面PM_(2.5)浓度响应在后;污染边界层高度的日变化表现为单峰单谷型,峰值和谷值分别出现在08:00时和14:00时前后。  相似文献   
49.
麦草及其烟尘中正构烷烃的组成   总被引:1,自引:0,他引:1  
刘刚  李久海  徐慧  吴丹 《环境科学》2013,34(11):4171-4177
在明火和闷烧条件下对6种麦草进行焚烧试验,用GC/MS测定了秸秆和烟尘中正构烷烃的组成.结果表明,从麦秆和烟尘中检出的正构烷烃主要是C16~C33.麦秸中正构烷烃的总含量变化范围是19.6~62.3 mg·kg-1,平均值为36.0mg·kg-1.低碳数(碳数相似文献   
50.
北京夏季灰霾天臭氧近地层垂直分布与边界层结构分析   总被引:8,自引:3,他引:5  
后奥运时期首都北京的空气质量被更加关注,尤其是对于灰霾天与光化学复合污染的状况,而近地层数百米高度内的大气污染物与大气物理参数垂直分布观测对于空气质量变化过程评估至关重要.因此,本研究于2009年8月1-16日,在北京市325 m气象塔进行了相应的立体观测,观测平台垂直分布在距离地面高度8、47、120和280 m四层中.同时,在近地面320 m高度以内,分15层分别观测了大气温度、湿度、风速、风向.另外,使用气溶胶后向散射云高仪观测了边界层2.5 km内气溶胶后向散射系数.利用垂直分层的O3数据与边界层物理观测数据并结合天气形势、后向轨迹模式等方法,综合分析了本次观测数据之间的相互关系和内在联系.结果表明:夏季西北部低压槽控制的北京区域不利于低空大气扩散,容易形成光化学污染叠加灰霾污染,污染形成时白天地面小时最大φ(O3)可达120×10-9,280 m高度处可达155×10-9;来自西北偏西的气流一般较为干净,有利于北京污染物的清除,而来自西南和偏南的气流使北京的O3污染加重,导致区域性高浓度O3污染;在稳定天气条件下,夜间残留层与地面的φ(O3)差别越大,次日光化学生成的φ(O3)起点越高,表明残留层O3在次日混合层抬升过程中卷夹到地面,影响地面空气质量;300 m以内的近地层,在50 m高度左右存在φ(O3)变化程度剧烈层,这是城市冠层界面与大气化学反应共同作用的结果.  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