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   281篇
  免费   8篇
  国内免费   87篇
安全科学   23篇
废物处理   19篇
环保管理   31篇
综合类   193篇
基础理论   33篇
污染及防治   65篇
评价与监测   12篇
  2023年   7篇
  2022年   8篇
  2021年   12篇
  2020年   13篇
  2019年   19篇
  2018年   12篇
  2017年   13篇
  2016年   16篇
  2015年   21篇
  2014年   11篇
  2013年   18篇
  2012年   16篇
  2011年   23篇
  2010年   15篇
  2009年   11篇
  2008年   8篇
  2007年   15篇
  2006年   25篇
  2005年   18篇
  2004年   18篇
  2003年   11篇
  2002年   12篇
  2001年   9篇
  2000年   12篇
  1999年   9篇
  1998年   4篇
  1997年   3篇
  1996年   4篇
  1995年   4篇
  1994年   4篇
  1993年   1篇
  1987年   1篇
  1979年   1篇
  1971年   2篇
排序方式: 共有376条查询结果,搜索用时 623 毫秒
121.
根据甲胺生产废水中各有机物沸点的差异,利用盐酸作为掩蔽剂,通过正交试验和单因素优化试验,对蒸馏法回收甲胺生产废水中甲醇的工艺条件进行优化,表明:在保温温度85℃,保温时间180min,掩蔽剂比(酸(∶氨+胺))1.1:1条件下,甲醇的回收率在80%以上,剩余的氨氮维持在0.4g/L,COD去除率约30%,掩蔽效率在97%以上,出水氯离子浓度为190~195mg/L,pH值6.94~6.99;余液中的混胺盐和铵盐通过蒸发结晶可制得高效氮肥。因此用蒸馏法回收甲醇具有良好的效果,实现了甲胺生产废水中甲醇的资源化。  相似文献   
122.
无机膜分离技术在水处理领域的应用研究   总被引:2,自引:0,他引:2  
对无机膜分离技术在含油废水、生活污水及工业废水等水处理领域的研究现状、工程实例和应用前景进行综述,指出无机膜具有耐高温、耐腐蚀、耐污染、机械强度高等优异性能,在苛刻反应条件下的工业废水处理方面优势明显,尤其是陶瓷微滤和超滤膜在水处理领域的商品化应用已日渐成熟和稳定,并提出未来在无机膜应用领域的发展方向.  相似文献   
123.
• Ceramic membrane filtration showed high performance for surface water treatment. • PTC pre-coagulation could enhance ceramic membrane filtration performance. • Ceramic membrane fouling was investigated by four varied mathematical models. • PTC pre-coagulation was high-effective for ceramic membrane fouling control. Application of ceramic membrane (CM) with outstanding characteristics, such as high flux and chemical-resistance, is inevitably restricted by membrane fouling. Coagulation was an economical and effective technology for membrane fouling control. This study investigated the filtration performance of ceramic membrane enhanced by the emerging titanium-based coagulant (polytitanium chloride, PTC). Particular attention was paid to the simulation of ceramic membrane fouling using four widely used mathematical models. Results show that filtration of the PTC-coagulated effluent using flat-sheet ceramic membrane achieved the removal of organic matter up to 78.0%. Permeate flux of ceramic membrane filtration reached 600 L/(m2·h), which was 10-fold higher than that observed with conventional polyaluminum chloride (PAC) case. For PTC, fouling of the ceramic membrane was attributed to the formation of cake layer, whereas for PAC, standard filtration/intermediate filtration (blocking of membrane pores) was also a key fouling mechanism. To sum up, cross-flow filtration with flat-sheet ceramic membranes could be significantly enhanced by titanium-based coagulation to produce both high-quality filtrate and high-permeation flux.  相似文献   
124.
A novel Ultrasonic Assisted Membrane Reduction (UAMR)-hydrothermal method was used to prepare flower-like Pt/CeO2 catalysts. The texture, physical/chemical properties, and reducibility of the flower-like Pt/CeO2 catalysts were characterized by X-Ray Diffraction (XRD), Scanning Electron Microscope (SEM), Transmission Electron Microscope (TEM), N2 adsorption, and hydrogen temperature programmed reduction (HE-TPR) techniques. The catalytic performance of the catalysts for treating automobile emission was studied relative to samples prepared by the conventional wetness impregnation method. The Pt/CeO2 catalysts fabricated by this novel method showed high specific surface area and metal dispersion, excellent three-way catalytic activity, and good thermal stability. The strong interaction between the Pt nanoparticles and CeO2 improved the thermal stability. The Ce4+ ions were incorporated into the surfactant chains and the Pt nanoparticles were stabilized through an exchange reaction of the surface hydroxyl groups. The SEM results demonstrated that the Pt/CeO2 catalysts had a typical three-dimensional (3D) hierarchical porous struc- ture, which was favorable for surface reaction and enhanced the exposure degree of the Pt nanoparticles. In brief, the flower-like Pt/CeO2 catalysts prepared by UAMR-hydrothermal method exhibited a higher Pt metal dispersion, smaller particle size, better three-way catalytic activity, and improved thermal stability versus conven- tional materials.  相似文献   
125.
研制的环保型原油族组分-溶剂分离器是一种非常规玻璃蒸馏装置,在玻璃器皿内部加热多个原油族组分的有机溶液,在分离原油族组分和有毒溶剂的同时回收了溶剂,使室内空气质量达到国家标准,减少了空气污染.  相似文献   
126.
Four NF membranes were compared regarding arsenate rejection and their properties. Rejection of arsenate had no relationship with membrane pore size. A more negative surface charge was favorable for arsenate rejection at neutral pH. A severe membrane fouling could lead to a great reduction of arsenic rejection. Nanofiltration (NF) has a great potential in removing arsenate from contaminated water. The performance including arsenate rejection, water permeability and resistance to fouling could however differ substantially among NF membranes. This study was conducted to investigate the influence of membrane pore size and surface properties on these aspects of membrane performance. Four fully-aromatic NF membranes with different physicochemical properties were adopted for this study. The results showed that surface charge, hydrophobicity, roughness and pore size could affect water permeability and/or arsenate rejection considerably. A more negative surface charge was desirable to enhance arsenate rejection rates. NF90 and a non-commercialized membrane (M#1) demonstrated the best performance in terms of arsenate rejection and water permeability. The M#1 membrane showed less membrane fouling than NF90 when used for filtration of real arsenic-containing groundwater. This was mainly due to its distinct chemical composition and surface properties. A severe membrane fouling could lead to a substantial reduction of arsenic rejection. The M#1 membrane showed the best performance, which indicated that membrane modification could indeed enhance the overall membrane performance for water treatment.  相似文献   
127.
• Shale oil and gas production generates wastewater with complex composition. • Membrane technologies emerged for the treatment of shale oil and gas wastewater. • Membrane technologies should tolerate high TDS and consume low primary energy. • Pretreatment is a key component of integrated wastewater treatment systems. • Full-scale implementation of membrane technologies is highly desirable. Shale oil and gas exploitation not only consumes substantial amounts of freshwater but also generates large quantities of hazardous wastewater. Tremendous research efforts have been invested in developing membrane-based technologies for the treatment of shale oil and gas wastewater. Despite their success at the laboratory scale, membrane processes have not been implemented at full scale in the oil and gas fields. In this article, we analyze the growing demands of wastewater treatment in shale oil and gas production, and then critically review the current stage of membrane technologies applied to the treatment of shale oil and gas wastewater. We focus on the unique niche of those technologies due to their advantages and limitations, and use mechanical vapor compression as the benchmark for comparison. We also highlight the importance of pretreatment as a key component of integrated treatment trains, in order to improve the performance of downstream membrane processes and water product quality. We emphasize the lack of sufficient efforts to scale up existing membrane technologies, and suggest that a stronger collaboration between academia and industry is of paramount importance to translate membrane technologies developed in the laboratory to the practical applications by the shale oil and gas industry.  相似文献   
128.
依据《环境空气和废气 颗粒物中砷、硒、铋、锑的测定 原子荧光法》(HJ 1133—2020)的要求,对采集环境空气中砷的9种滤膜的本底值、回收率、检出限、精密度和准确度进行了实验对比。根据实验各项性能指标及成本考虑,建议选择尼龙、硝酸纤维或混合纤维3种国产有机滤膜,其购买方便、价格较低,方法检出限均为0.2 ng/m3,精密度和准确度均能满足环境空气中砷的测定要求。  相似文献   
129.
采用聚丙烯平板膜组件,利用真空膜蒸馏处理发制品废水。考察了进料温度(45.0~70.0 ℃)、进料流量(60~150 L/h)、透过侧真空度(10.0~85.0 kPa)、废水pH、表面活性剂对膜性能的影响。在冷却水流量60 L/h、进料流量120 L/h、进料温度60.0 ℃、透过侧真空度75.0 kPa、废水pH约1.5的条件下,分别对实际发制品废水和模拟发制品废水进行了36 h的运行测试。实验结果表明:两种废水的平均膜渗透通量分别为32.09 kg/(m2·h)和32.66 kg/(m2·h),截留率分别保持在99.54%和99.83%以上;产水的pH约为6.8,COD和TDS几乎为0,完全满足《污水综合排放标准》(GB 8978—1996)中的二级排放标准。  相似文献   
130.
● A crosslinked polyaniline/carbon nanotube NF membrane was fabricated. ● Electro-assistance enhanced the removal rate of the NF membrane for bisphenol A. ● Intermittent voltage-assistance can achieve nearly 100% removal of bisphenol A. ● Membrane adsorption–electro-oxidation process is feasible for micropollutant removal. Nanofiltration (NF) has attracted increasing attention for wastewater treatment and potable water purification. However, the high-efficiency removal of micropollutants by NF membranes is a critical challenge. Owing to the adsorption and subsequent diffusion, some weakly charged or uncharged micropollutants, such as bisphenol A (BPA), can pass through NF membranes, resulting in low removal rates. Herein, an effective strategy is proposed to enhance the BPA removal efficiency of a crosslinked polyaniline/carbon nanotube NF membrane by coupling the membrane with electro-assistance. The membrane exhibited a 31.9% removal rate for 5 mg/L BPA with a permeance of 6.8 L/(m2·h·bar), while the removal rate was significantly improved to 98.1% after applying a voltage of 2.0 V to the membrane. Furthermore, when BPA coexisted with humic acid, the membrane maintained 94% removal of total organic carbon and nearly 100% removal of BPA at 2.0 V over the entire filtration period. Compared to continuous voltage applied to the membrane, an intermittent voltage (2.0 V for 0.5 h with an interval of 3.5 h) could achieve comparable BPA removal efficiency, because of the combined effect of membrane adsorption and subsequent electrochemical oxidation. Density functional theory calculations and BPA oxidation process analyses suggested that BPA was adsorbed by two main interactions: π–π and hydrogen-bond interactions. The adsorbed BPA was further electro-degraded into small organic acids or mineralized to CO2 and H2O. This work demonstrates that NF membranes coupled with electro-assistance are feasible for improving the removal of weakly charged or uncharged micropollutants.  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