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   135篇
  免费   31篇
  国内免费   58篇
安全科学   19篇
废物处理   13篇
环保管理   11篇
综合类   88篇
基础理论   34篇
污染及防治   41篇
评价与监测   5篇
社会与环境   2篇
灾害及防治   11篇
  2023年   8篇
  2022年   14篇
  2021年   11篇
  2020年   16篇
  2019年   14篇
  2018年   9篇
  2017年   7篇
  2016年   5篇
  2015年   12篇
  2014年   9篇
  2013年   15篇
  2012年   9篇
  2011年   15篇
  2010年   16篇
  2009年   8篇
  2008年   10篇
  2007年   6篇
  2006年   3篇
  2005年   7篇
  2004年   4篇
  2003年   5篇
  2002年   2篇
  2001年   5篇
  2000年   2篇
  1998年   5篇
  1997年   1篇
  1996年   1篇
  1995年   3篇
  1994年   1篇
  1992年   1篇
排序方式: 共有224条查询结果,搜索用时 718 毫秒
121.
水污染已经成为全球高度重视的一个环境污染问题,严重影响着人们的生活、工作和学习,所以现在急需一种良好的水处理剂。高铁酸钾是一种环境友好型多功能水处理剂,并且集氧化、吸附、絮凝、助凝、杀菌、除臭为一体。具有高效、无毒、无害等优点,因此在水处理中具有很好的应用前景。但由于其自身水溶液的不稳定性。大大限制了它的应用。  相似文献   
122.
● Effects of AER adsorption and NF on DBP precursors, DBPs, and TOX were examined. ● A treatment approach of resin adsorption followed by nanofiltration was developed. ● Both DOC and Br could be effectively removed by the sequential approach. ● DBPs, TOX, and cytotoxicity were significantly reduced by the sequential approach. Disinfection byproducts (DBPs) are emerging pollutants in drinking water with high health risks. Precursor reduction before disinfection is an effective strategy to control the formation of DBPs. In this study, three types of anion exchange resins (AERs) and two types of nanofiltration (NF) membranes were tested for their control effects on DBP precursors, DBPs, and total organic halogen (TOX). The results showed that, for AER adsorption, the removal efficiencies of DBP precursors, DBPs, and TOX increased with the increase of resin dose, and the strong basic macroporous anion exchange resin (M500MB) had the highest removal efficiencies. For NF, the highest removal efficiencies were achieved at an operating pressure of 4 bar, and the membrane (NF90) with a smaller molecular weight cut-off, had a better control efficiency. However, AER adsorption was inefficient in removing dissolved organic carbon (DOC); NF was inefficient in removing Br resulting in insufficient control of Br-DBPs. Accordingly, a sequential approach of AER (M500MB) adsorption followed by NF (NF90) was developed to enhance the control efficiency of DBPs. Compared with single AER adsorption and single NF, the sequential approach further increased the removal efficiencies of DOC by 19.4%–101.9%, coupled with the high Br removal efficiency of 92%, and thus improved the reduction of cyclic DBPs and TOX by 3.5%–4.9%, and 2.4%–8.4%, respectively; the sequential approach also reduced the cytotoxicity of the water sample by 66.4%.  相似文献   
123.
为掌握气水联动除尘装置影响因素及现场除尘效果,以便更好应用于现场实际。基于煤矿综掘工作面长压短抽通风控除尘系统,利用数值仿真和正交实验设计分析方法,系统研究除尘装置叶片参数、进风量和进风口位置等因素对除尘效果的影响规律。研究结果表明:叶片安装角为40°,扭转角为4°时,除尘器入口处负压值和进风量最大,而吸风口距工作面5 m、吸风量≥300 m3/min时的除尘效果较好。控除尘系统采用气水联动除尘装置后,各测点全尘除尘效率提高了40.8%~55.4%,呼吸性粉尘除尘效率提高了31.4%~41.3%,应用效果良好。  相似文献   
124.
针对工业固体废物如何进行容量总量控制的问题,在研究工业固体废物中有毒有害物质污染迁移转化规律的基础上,提出了相对工业固体废物中有毒有害物质进入大气、地表水体、地下水和在生物体内积累的相对容量总量控制概念,并探讨了城市或区域工业固体废物容量总量控制的确定方法  相似文献   
125.
用冲突分析理论分析了社会发展与环境资源冲突的典型案例——济南市生活垃圾填埋处置场的选址问题,预测了这一冲突的发展,研究设计了解决这一冲突问题的处理方案.  相似文献   
126.
除草剂苯噻草胺对水稻田土壤微生物种群的影响   总被引:7,自引:0,他引:7  
以浙江大学华家池校区水稻土为材料,采用室内培养法,研究了不同浓度的外源除草剂苯噻草胺对水稻田土壤可培养微生物种群数量的影响.结果表明:土壤中各微生物类群对不同浓度的苯噻草胺具有各自不同的反应.苯噻草胺能刺激好氧细菌数量增加,但不利于真菌和放线菌的生长.低浓度苯噻草胺刺激水解发酵性细菌(AFB)、产氢产乙酸细菌(HPAB)和产甲烷细菌(MPB)数量的增加,但高浓度苯噻草胺却具有抑制性.在苯噻草胺施用第4周时可强烈刺激反硝化细菌(DNB)数量的增加.苯噻草胺也能刺激厌氧固氮菌(ANFB)数量增加,但这种刺激作用在第2周才出现,而且在培养后期消失.苯噻草胺的短期影响即急性毒性对土壤中可培养微生物的影响较小,比上一代除草剂丁草胺相对安全.图2表1参15  相似文献   
127.
Environmental Science and Pollution Research - Fe-Ni bimetallic nanoparticles supported on CNTs (Fe-Ni/CNTs) were synthesized, characterized, and applied for removal of 2,4-dichlorophenol (2,4-DCP)...  相似文献   
128.
为研究磺胺甲恶唑对斑马鱼胚胎/仔鱼的早期发育及抗氧化系统的影响,将受精2h的斑马鱼胚胎暴露在不同浓度的磺胺甲恶唑水溶液中,观察斑马鱼胚胎死亡率、孵化率、仔鱼心包囊肿率、心跳数、体长以及仔鱼内抗氧化酶活性、丙二醛(MDA)含量的变化。结果表明,磺胺甲恶唑对斑马鱼胚胎/仔鱼120h的急性毒性半数致死质量浓度(LC50)为1 250.5mg/L;斑马鱼胚胎孵化率随着暴露浓度的增加呈现明显的下降趋势,96h胚胎孵化率抑制的半数有效质量浓度(EC50)为1 299.7mg/L;当暴露质量浓度≥1 500mg/L时,斑马鱼胚胎患心包囊肿率明显升高,呈现剂量—效应关系;经磺胺甲恶唑暴露96h的斑马鱼仔鱼30s心跳数及120h斑马鱼仔鱼体长总体降低;10~(-2)mg/L磺胺甲恶唑染毒96h后,即观察到斑马鱼仔鱼细胞出现明显的氧化损伤,过氧化氢酶的酶活性受到显著抑制,超氧化物歧化酶和谷胱甘肽S-转移酶被显著诱导,MDA含量显著增加。研究表明,磺胺甲恶唑暴露对斑马鱼胚胎细胞产生了明显的损伤,进而可能影响斑马鱼仔鱼的发育。  相似文献   
129.
130.
• CW-Fe allowed a high-performance of NO3-N removal at the COD/N ratio of 0. • Higher COD/N resulted in lower chem-denitrification and higher bio-denitrification. • The application of s-Fe0 contributed to TIN removal in wetland mesocosm. • s-Fe0 changed the main denitrifiers in wetland mesocosm. Sponge iron (s-Fe0) is a porous metal with the potential to be an electron donor for denitrification. This study aims to evaluate the feasibility of using s-Fe0 as the substrate of wetland mesocosms. Here, wetland mesocosms with the addition of s-Fe0 particles (CW-Fe) and a blank control group (CW-CK) were established. The NO3-N reduction property and water quality parameters (pH, DO, and ORP) were examined at three COD/N ratios (0, 5, and 10). Results showed that the NO3-N removal efficiencies were significantly increased by 6.6 to 58.9% in the presence of s-Fe0. NH4+-N was mainly produced by chemical denitrification, and approximately 50% of the NO3-N was reduced to NH4+-N, at the COD/ratio of 0. An increase of the influent COD/N ratio resulted in lower chemical denitrification and higher bio-denitrification. Although chemical denitrification mediated by s-Fe0 led to an accumulation of NH4+-N at COD/N ratios of 0 and 5, the TIN removal efficiencies increased by 4.5%‒12.4%. Moreover, the effluent pH, DO, and ORP values showed a significant negative correlation with total Fe and Fe (II) (P<0.01). High-throughput sequencing analysis indicated that Trichococcus (77.2%) was the most abundant microorganism in the CW-Fe mesocosm, while Thauera, Zoogloea, and Herbaspirillum were the primary denitrifying bacteria. The denitrifiers, Simplicispira, Dechloromonas, and Denitratisoma, were the dominant bacteria for CW-CK. This study provides a valuable method and an improved understanding of NO3-N reduction characteristics of s-Fe0 in a wetland mesocosm.  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