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   231166篇
  免费   19748篇
  国内免费   40686篇
安全科学   39474篇
废物处理   6780篇
环保管理   25100篇
综合类   126387篇
基础理论   25006篇
污染及防治   34359篇
评价与监测   14102篇
社会与环境   11338篇
灾害及防治   9054篇
  2024年   1790篇
  2023年   6124篇
  2022年   7323篇
  2021年   6821篇
  2020年   8267篇
  2019年   9514篇
  2018年   10626篇
  2017年   6447篇
  2016年   7187篇
  2015年   9126篇
  2014年   14854篇
  2013年   11943篇
  2012年   16746篇
  2011年   18117篇
  2010年   13161篇
  2009年   13818篇
  2008年   16236篇
  2007年   15060篇
  2006年   14233篇
  2005年   11975篇
  2004年   10915篇
  2003年   10441篇
  2002年   8612篇
  2001年   6989篇
  2000年   5585篇
  1999年   3413篇
  1998年   2075篇
  1997年   1825篇
  1996年   1874篇
  1995年   1722篇
  1994年   1644篇
  1993年   1334篇
  1992年   1448篇
  1991年   1216篇
  1990年   1181篇
  1989年   1668篇
  1988年   1614篇
  1987年   1488篇
  1986年   1168篇
  1985年   1116篇
  1984年   1071篇
  1983年   1006篇
  1982年   822篇
  1981年   674篇
  1980年   478篇
  1979年   278篇
  1978年   188篇
  1977年   94篇
  1976年   86篇
  1974年   100篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
991.
992.
993.
994.
畜禽环境中抗生素的去除及其风险评估   总被引:2,自引:0,他引:2  
抗生素作为饲料添加剂广泛应用于畜禽养殖业,造成养殖环境抗生素大量蓄积,尤其是在畜禽粪便中,长期的积累不仅污染养殖场内土壤环境,残留的抗生素还会随畜禽粪便进入周边水体及农田环境,威胁农作物及人体健康。目前,国内相关研究主要集中在抗生素的降解工艺及降解规律方面,而对其去除效率的影响因素及风险评价研究相对较少。笔者综述了国内外抗生素的降解转化及去除方式等的研究进展,并概述了抗生素在畜禽环境中的生态风险评估的研究现状,为抗生素的高效去除、风险预估及畜禽粪便资源化安全利用提供理论基础和技术支撑。  相似文献   
995.
• In situ preparation of FeNi nanoparticles on the sand via green synthesis approach. • Removal of tetracycline using GS-FeNi in batch and column study. • Both reductive degradation and sorption played crucial role the process. • Reusability of GS-FeNi showed about 77.39±4.3% removal on 4th cycle. • TC by-products after interaction showed less toxic as compared with TC. In this study, FeNi nanoparticles were green synthesized using Punica granatum (pomegranate) peel extract, and these nanoparticles were also formed in situ over quartz sand (GS-FeNi) for removal of tetracycline (TC). Under the optimized operating conditions, (GS-FeNi concentration: 1.5% w/v; concentration of TC: 20 mg/L; interaction period: 180 min), 99±0.2% TC removal was achieved in the batch reactor. The removal capacity was 181±1 mg/g. A detailed characterization of the sorbent and the solution before and after the interaction revealed that the removal mechanism(s) involved both the sorption and degradation of TC. The reusability of reactant was assessed for four cycles of operation, and 77±4% of TC removal was obtained in the cycle. To judge the environmental sustainability of the process, residual toxicity assay of the interacted TC solution was performed with indicator bacteria (Bacillus and Pseudomonas) and algae (Chlorella sp.), which confirmed a substantial decrease in the toxicity. The continuous column studies were undertaken in the packed bed reactors using GS-FeNi. Employing the optimized conditions, quite high removal efficiency (978±5 mg/g) was obtained in the columns. The application of GS-FeNi for antibiotic removal was further evaluated in lake water, tap water, and ground water spiked with TC, and the removal capacity achieved was found to be 781±5, 712±5, and 687±3 mg/g, respectively. This work can pave the way for treatment of antibiotics and other pollutants in the reactors using novel green composites prepared from fruit wastes.  相似文献   
996.
• Strong metal-support interaction exists on Pt/Fe3O4 catalysts. • Pt metal particles facilitate the formation of oxygen vacancies on Fe3O4. • Fe3O4 supports enhance the strength of CO adsorption on Pt metal particles. The self-inhibition behavior due to CO poisoning on Pt metal particles strongly impairs the performance of CO oxidation. It is an effective method to use reducible metal oxides for supporting Pt metal particles to avoid self-inhibition and to improve catalytic performance. In this work, we used in situ reductions of chloroplatinic acid on commercial Fe3O4 powder to prepare heterogeneous-structured Pt/Fe3O4 catalysts in the solution of ethylene glycol. The heterogeneous Pt/Fe3O4 catalysts achieved a better catalytic performance of CO oxidation compared with the Fe3O4 powder. The temperatures of 50% and 90% CO conversion were achieved above 260°C and 290°C at Pt/Fe3O4, respectively. However, they are accomplished on Fe3O4 at temperatures higher than 310°C. XRD, XPS, and H2-TPR results confirmed that the metallic Pt atoms have a strong synergistic interaction with the Fe3O4 supports. TGA results and transient DRIFTS results proved that the Pt metal particles facilitate the release of lattice oxygen and the formation of oxygen vacancies on Fe3O4. The combined results of O2-TPD and DRIFTS indicated that the activation step of oxygen molecules at surface oxygen vacancies could potentially be the rate-determining step of the catalytic CO oxidation at Pt/Fe3O4 catalysts. The reaction pathway involves a Pt-assisted Mars-van Krevelen (MvK) mechanism.  相似文献   
997.
• Air masses from Zhejiang Province is the major source of O3 in suburban Shanghai. • O3 formation was in VOC-sensitive regime in rural Shanghai. • O3 formation was most sensitive to propylene in rural Shanghai. A high level of ozone (O3) is frequently observed in the suburbs of Shanghai, the reason for this high level remains unclear. To obtain a detailed insight on the high level of O3 during summer in Shanghai, O3 and its precursors were measured at a suburban site in Shanghai from July 1, 2016 to July 31, 2016. Using the Hybrid Single-Particle Lagrangian Integrated Trajectory (HYSPLIT) model and concentration weighted trajectories (CWT), we found that Zhejiang province was the main potential source of O3 in suburban Shanghai. When the sampling site was controlled by south-western winds exceeding 2 m/s, the O3-rich air masses from upwind regions (such as Zhejiang province) could be transported to the suburban Shanghai. The propylene-equivalent concentration (PEC) and ozone formation potential (OFP) were further calculated for each VOC species, and the results suggested that propylene, (m+p)-xylene, and toluene played dominant roles in O3 formation. The Ozone Isopleth Plotting Research (OZIPR) model was used to reveal the impact of O3 precursors on O3 formation, and 4 base-cases were selected to adjust the model simulation. An average disparity of 18.20% was achieved between the simulated and observed O3 concentrations. The O3 isopleth diagram illustrated that O3 formation in July 2016 was in VOC-sensitive regime, although the VOC/NOx ratio was greater than 20. By introducing sensitivity (S), a sensitivity analysis was performed for O3 formation. We found that O3 formation was sensitive to propylene, (m+p)-xylene, o-xylene and toluene. The results provide theoretical support for O3 pollution treatment in Shanghai.  相似文献   
998.
• The rice growth was promoted by nano-TiO2 of 0.1–100 mg/L. • Nano-TiO2 enhanced the energy storage in photosynthesis. • Nano-TiO2 reduced energy consumption in carbohydrate metabolism and TCA cycle. Titanium dioxide nanoparticle (nano-TiO2), as an excellent UV absorbent and photo-catalyst, has been widely applied in modern industry, thus inevitably discharged into environment. We proposed that nano-TiO2 in soil can promote crop yield through photosynthetic and metabolic disturbance, therefore, we investigated the effects of nano-TiO2 exposure on related physiologic-biochemical properties of rice (Oryza sativa L.). Results showed that rice biomass was increased >30% at every applied dosage (0.1–100 mg/L) of nano-TiO2. The actual photosynthetic rate (Y(II)) significantly increased by 10.0% and 17.2% in the treatments of 10 and 100 mg/L respectively, indicating an increased energy production from photosynthesis. Besides, non-photochemical quenching (Y(NPQ)) significantly decreased by 19.8%–26.0% of the control in all treatments respectively, representing a decline in heat dissipation. Detailed metabolism fingerprinting further revealed that a fortified transformation of monosaccharides (D-fructose, D-galactose, and D-talose) to disaccharides (D-cellobiose, and D-lactose) was accompanied with a weakened citric acid cycle, confirming the decrease of energy consumption in metabolism. All these results elucidated that nano-TiO2 promoted rice growth through the upregulation of energy storage in photosynthesis and the downregulation of energy consumption in metabolism. This study provides a mechanistic understanding of the stress-response hormesis of rice after exposure to nano-TiO2, and provides worthy information on the potential application and risk of nanomaterials in agricultural production.  相似文献   
999.
将废弃水基钻井液中的固相物质(以下简称固相物)与蚯蚓粪按不同比例混合制成试样土壤,用其种植景观植物空心菜和黑麦草,测定试样土壤的物理性质,分析种植过程试样土壤有机质、氮素、磷素的变化,对比植物种植前后试样土壤重金属含量的变化。结果表明,蚯蚓粪能够有效改善试样土壤物理性质,提高试样土壤肥力;为使试样土壤用于景观植物种植,固相物所占比例(以质量比计)宜在1∶8以下,固相物∶蚯蚓粪为1∶10时植物长势更佳;试样土壤在种植景观植物后重金属含量均有降低。可见,利用固相物与蚯蚓粪协同土壤化并通过种植重金属超富集植物降低试样土壤重金属,是固相物无害化处理的可行方法。  相似文献   
1000.
快速的城市化导致不透水性下垫面急剧增加,进而加剧了径流污染,尤其是屋面径流污染。生物滞留池作为低影响开发理念的核心措施之一,对径流的净化效果显著。以屋面径流为控制对象,设计了3个生物滞留池用于探究不同土壤层厚度和不同进水方式对生物滞留池出水的影响。结果表明,实验收集的屋面径流污染严重,COD和TN为《地表水环境质量标准》(GB 3838—2002)劣Ⅴ类。经生物滞留池处理后发现,3个生物滞留池对悬浮物(SS)的去除效果较好,去除率为92.2%~98.7%,装填20cm土壤的表层进水生物滞留池较装填15cm土壤的生物滞留池出水污染物浓度低。装填20cm土壤的表层进水和侧向进水的生物滞留池对COD、TN和TP的去除能力总体相当,表层进水和侧向进水的生物滞留池对COD的去除率分别为91.7%、90.4%,对TN的去除率分别为93.8%、86.5%,对TP的去除率分别为70.1%和72.7%。  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