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   1923篇
  免费   112篇
  国内免费   632篇
安全科学   141篇
废物处理   119篇
环保管理   144篇
综合类   1121篇
基础理论   324篇
污染及防治   588篇
评价与监测   98篇
社会与环境   67篇
灾害及防治   65篇
  2024年   4篇
  2023年   49篇
  2022年   135篇
  2021年   103篇
  2020年   81篇
  2019年   84篇
  2018年   78篇
  2017年   92篇
  2016年   108篇
  2015年   113篇
  2014年   131篇
  2013年   190篇
  2012年   151篇
  2011年   166篇
  2010年   127篇
  2009年   111篇
  2008年   112篇
  2007年   122篇
  2006年   84篇
  2005年   66篇
  2004年   39篇
  2003年   58篇
  2002年   64篇
  2001年   45篇
  2000年   52篇
  1999年   51篇
  1998年   39篇
  1997年   39篇
  1996年   41篇
  1995年   25篇
  1994年   15篇
  1993年   28篇
  1992年   16篇
  1991年   9篇
  1990年   10篇
  1989年   3篇
  1988年   10篇
  1987年   3篇
  1986年   3篇
  1984年   3篇
  1982年   2篇
  1981年   2篇
  1958年   1篇
  1956年   2篇
排序方式: 共有2667条查询结果,搜索用时 125 毫秒
951.
研究了pH、初始浓度、时间及温度对甲基红在壳聚糖上吸附富集的影响。结果表明,pH是影响甲基红吸附富集的重要因素,最佳pH3.4。其动力学行为更好地符合Lagergren准二级反应动力学模型,随着温度增加,平衡吸附量减少。吸附过程的表观活化能(Ea)为7.518kJ/mol。壳聚糖对甲基红的吸附过程较好地符合Freundlich吸附等温方程。计算得到吸附过程的热力学参数△G0、△H0。和△S0分别为-24.88kJ/mol(303K)、-22.15kJ/mol和8.783J/(mol·K),表明壳聚糖对甲基红的吸附是一个自发的放热过程。红外光谱分析得到,壳聚糖吸附甲基红的过程中,壳聚糖分子中存在的大量羟基和氨基发挥了主要作用。  相似文献   
952.
Fe2+/活性炭非均相Fenton试剂氧化法降解苯酚   总被引:1,自引:0,他引:1  
采用Fe2+/活性炭非均相Fenton试剂催化处理高浓度模拟苯酚废水.以体积分数为40%的硫酸对颗粒活性炭进行预处理后加入质量分数为10%的硫酸亚铁溶液,制备Fe2+/活性炭.在非均相Fenton试剂氧化体系中,Fe2+/活性炭初次使用时,苯酚去除率为92%;连续重复使用5次,苯酚去除率仍可达53%.  相似文献   
953.
排导槽是泥石流治理常用的工程措施,泥石流若在槽内淤积,将极大影响排导槽防治效果。目前国内现行规范中没有关于排导槽淤积情况计算的相关条款,导致排导槽被泥石流淤埋的工程事故时有发生。鉴于此,分析了排导槽淤堵的常见原因,对现有的一些排导槽淤积验算公式进行了分析和整理,提出了一套基于槽宽验算、槽内泥深及流速验算等公式的排导槽防淤设计验算方法。该方法在雅(安)泸(沽)高速公路沿线某泥石流沟V型排导槽淤埋事故的处理中进行了应用,重建的排导槽经受了2011年6月17日特大暴雨形成的泥石流的考验,说明该方法实施效果良好,可供相关研究与设计参考。  相似文献   
954.

Purpose

Bacterial community structure and the chemical components in aerosols caused by rotating brushes in an Orbal oxidation ditch were assessed in a Beijing municipal wastewater treatment plant.

Methods

Air samples were collected at different distances from the aerosol-generating rotating brushes. Molecular culture-independent methods were used to characterize the community structure of the airborne bacteria in each sample regardless of cell culturability. A clone library of 16S rDNA directly amplified from air DNA of each sample was constructed and sequenced to analyze the community composition and diversity. Insoluble particles and water-soluble ions emitted with microorganisms in aerosols were analysis by a scanning electron microscope together with energy dispersive X-ray spectroscopy and ion chromatogram analyzer.

Results

In total, most of the identified bacteria were Proteobacteria. The majority of sequences near the rotating brushes (the main source of the bioaerosols) were Proteobacteria (62.97 %) with ??-(18.52 %) and ??-(44.45?%) subgroups and Bacteroidetes (29.63 %). Complex patterns were observed for each sampling location, suggesting a highly diverse community structure, comparable to that found in water in the Orbal oxidation ditch. Accompany with microorganisms, 46.36???g/m3 of SO 4 2? , 29.35???g/m3 of Cl?, 21.51???g/m3 of NO 3 ? , 19.76???g/m3 of NH 4 + , 11.42???g/m3 of PO 4 3? , 6.18???g/m3 of NO 2 ? , and elements of Mg, Cl, K, Na, Fe, S, and P were detected from the air near the aerosols source.

Conclusions

Differences in the structure of the bacterial communities and chemical components in the aerosols observed between sampling sites indicated important site-related variability. The composition of microorganisms in water was one of the most important sources of bacterial communities in bioaerosols. Chemical components in bioaerosols may provide a media for airborne microorganism attachment, as well as a suitable microenvironment for their growth and survival in the air. This study will be benefit for the formulation of pollution standards, especially for aerosols, that take into account plant workers?? health.  相似文献   
955.
IMPLICATIONS: During the production of penicillin, a mass of waste bacterial residue is generated. In the past, the bacterial residues have been used for food additives. Unfortunately, doubts of their suitability as a feedstock have been raised because of the small amount of antibiotics and the degradation products remaining in the bacterial residues. So, penicillin bacterial residue is one of the hazardous wastes. Therefore, penicillin bacterial residue should be managed in accordance with the hazardous waste. To get a right method, the penicillin bacterial residue was characterized.  相似文献   
956.
大型水生植物对骆马湖氮、磷元素的影响   总被引:4,自引:1,他引:3  
对骆马湖有草区和无草区水体和沉积物中氮、磷元素含量分析,结果表明:无草区水体中总氮、总磷含量高于有草区;有草区表层沉积物总氮含量随时间变化明显,而无草区表层沉积物总氮含量随时间的变化很小;有草区与无草区表层沉积物中总磷含量的时间变化并无明显差异;有草区表层沉积物总氮含量基本上均高于无草区,而有草区表层沉积物总磷含量均要低于无草区。骆马湖有草区与无草区采样点沉积物碱性磷酸酶活性大小在58.41~315.07 mg/(kg.h)范围内变化,有草区的碱性磷酸酶的活性普遍低于无草区的碱性磷酸酶活性。在湖泊中种植大型水生植物确实可以减少水体污染,达到净化水质的目的。  相似文献   
957.
采用自制木粉/壳聚糖接枝丙烯酸-丙烯酰胺吸附树脂R1、R2、R3对二元金属离子Cu2+/Pb2+和Zn2+/Pb2+溶液中的吸附性能进行了较系统考察。Pb2+离子溶液中存在竞争离子Cu2+、Zn2+时,随竞争离子浓度增加,3种吸附树脂R1、R2、R3对Pb2+的吸附量明显下降,而竞争离子吸附量显著增加。二元溶液中各金属离子浓度相同时,3种树脂对竞争离子Cu2+、Zn2+的吸附量大于对Pb2+的吸附量;各溶液中分别加入NaCl及NaNO3、尿素后,对Pb2+离子的吸附量下降迅速。随吸附树脂用量增加,竞争离子Cu2+、Zn2+的吸附量逐渐减小,Pb2+的吸附量在吸附树脂用量0.10 g/L(Zn2+/Pb2+溶液)或0.15 g/L(Cu2+/Pb2+溶液)时出现最大值。溶液pH值对树脂吸附性能有显著影响。3.0  相似文献   
958.
微波诱导鳞片石墨-H2O2催化氧化处理甲基紫废水   总被引:2,自引:0,他引:2  
研究微波诱导鳞片石墨-H2O2催化氧化处理甲基紫废水工艺,探讨各种因素的协同作用及对废水脱色效果的影响,并采用SEM、EDX、XRD和FTIR对新鲜及使用6次后的鳞片石墨进行表征。结果表明,微波诱导鳞片石墨-H2O2能高效快速降解废水中的甲基紫;在50mL初始pH为3,质量浓度为10mg/L的甲基紫废水中,H2O2用量1mL/L,鳞片石墨3g/L,微波输出功率259W,微波辐射时间9min的最佳处理工艺条件下,甲基紫脱色率达到了98.80%;微波、鳞片石墨、H2O2体系对甲基紫废水降解效果明显,产生协同效应。紫外-可见光谱分析表明,废水中甲基紫结构被破坏,但仍含有少量苯环等小分子。动力学研究表明,脱色反应符合一级反应动力学规律,反应速率常数^为0.42613min^-1,反应半衰期t。为1.626min。  相似文献   
959.
A hybrid selective noncatalytic reduction/selective catalytic reduction (SNCR/SCR) system that uses two types of technology, low-temperature SCR process and SNCR process, was designed to develop nitrogen oxide (NOx) reduction technology. SCR was conducted with space velocity (SV) = 2400 hr?1 and hybrid SNCR/SCR with SV = 6000 hr?1, since the study focused on reducing the amount of catalyst and both achieved 98% NOx reduction efficiency. Characteristics of NOx reduction by NH3 were studied for low-temperature SCR system at 150 °C using Mn-V2O5/TiO2 catalyst. Mn-added V2O5/TiO2 catalyst was produced, and selective catalyst reduction of NOx by NH3 was experimented. NOx reduction rate according to added Mn content in Mn-V2O5/TiO2 catalyst was studied with varying conditions of reaction temperature, normalized stoichiometric ratio (NSR), SV, and O2 concentration. In the catalyst experiment according to V2O5 concentration, 1 wt.% V2O5 catalyst showed the highest NOx reduction rate: 98% reduction at temperature window of 200~250 °C. As a promoter of the V2O5 catalyst, 5 wt.% Mn was added, and the catalyst showed 47~90% higher efficiency even with low temperatures, 100~200 °C. Mn-V2O5/TiO2 catalyst, prepared by adding 5 wt.% Mn in V2O5/TiO2 catalyst, showed increments of catalyst activation at 150 °C as well as NOx reduction. Mn-V2O5/TiO2 catalyst showed 8% higher rate for NOx reduction compared with V2O5/TiO2 catalyst in 150 °C SCR. Thus, (5 wt.%)Mn-(1 wt.%)V2O5/TiO2 catalyst was applied in SCR of hybrid SNCR/SCR system of low temperature at 150 °C. Low-temperature SCR hybrid SNCR/SCR (150 °C) system and hybrid SNCR/SCR (350 °C) showed 91~95% total reduction rate with conditions of SV = 2400~6000 hr?1 SCR and 850~1050 °C SNCR, NSR = 1.5~2.0, and 5% O2. Hybrid SNCR/SCR (150 °C) system proved to be more effective than the hybrid SNCR/SCR (350 °C) system at low temperature.

Implications:?NOx control is very important, since they are the part of greenhouse gases as well as the cause of acid rain and ozone hole. A technology, so-called hybrid SNCR/SCR process, was tested using Mn-V2O5/TiO2 monolithic catalyst for NOx reduction, and the method is promising. The results of this study would provide some ideas to parties such as policy makers, environmental engineers, and so on.  相似文献   
960.
A previously proposed technology incorporating TiO2 into common household fluorescent lighting was further tested for its Hg0 removal capability in a simulated flue-gas system. The flue gas is simulated by the addition of O2, SO2, HCl, NO, H2O, and Hg0, which are frequently found in combustion facilities such as waste incinerators and coal-fired power plants. In the O2 + N2 + Hg0 environment, a Hg0 removal efficiency (ηHg) greater than 95% was achieved. Despite the tendency for ηHg to decrease with increasing SO2 and HCl, no significant drop was observed at the tested level (SO2: 5–300 ppmv, HCl: 30–120 ppmv). In terms of NO and moisture, a significant negative effect on ηHg was observed for both factors. NO eliminated the OH radical on the TiO2 surface, whereas water vapor caused either the occupation of active sites available to Hg0 or the reduction of Hg0 by free electron. However, the negative effect of NO was minimized (ηHg > 90%) by increasing the residence time in the photochemical reactor. The moisture effect can be avoided by installing a water trap before the flue gas enters the Hg0 removal system.

Implications: This paper reports a novel technology for a removal of gas-phase elemental mercury (Hg0) from a simulated flue gas using TiO2-coated glass beads under a low-cost, easily maintainable household fluorescent light instead of ultraviolet (UV) light. In this study, the effects of individual chemical species (O2, SO2, HCl, NO, and water vapor) on the performance of the proposed technology for Hg0 removal are investigated. The result suggests that the proposed technology can be highly effective, even in real combustion environments such as waste incinerators and coal-fired power plants.  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