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   6698篇
  免费   878篇
  国内免费   2886篇
安全科学   968篇
废物处理   413篇
环保管理   373篇
综合类   5946篇
基础理论   942篇
污染及防治   1400篇
评价与监测   261篇
社会与环境   88篇
灾害及防治   71篇
  2024年   83篇
  2023年   262篇
  2022年   336篇
  2021年   458篇
  2020年   360篇
  2019年   409篇
  2018年   263篇
  2017年   274篇
  2016年   354篇
  2015年   465篇
  2014年   566篇
  2013年   542篇
  2012年   608篇
  2011年   557篇
  2010年   490篇
  2009年   558篇
  2008年   540篇
  2007年   477篇
  2006年   473篇
  2005年   415篇
  2004年   326篇
  2003年   303篇
  2002年   258篇
  2001年   179篇
  2000年   142篇
  1999年   106篇
  1998年   79篇
  1997年   78篇
  1996年   73篇
  1995年   63篇
  1994年   69篇
  1993年   52篇
  1992年   66篇
  1991年   64篇
  1990年   62篇
  1989年   39篇
  1988年   7篇
  1987年   3篇
  1986年   3篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
971.
分别利用3种二价金属化合物和3种三价金属化合物,采用水热共沉淀法在碱性条件下对人工湿地中常用的生物陶粒基质进行层状双金属氢氧化物(LDHs)覆膜改性,并将9种不同类型的LDHs覆膜改性生物陶粒基质和普通生物陶粒基质分别填充于10个垂直流人工湿地模拟实验柱中,进行除磷净化实验.结果表明,9种不同类型的改性生物陶粒基质均能有效提高磷素的净化效果;Zn系LDHs改性生物陶粒对总磷、溶解性总磷、磷酸盐均有很好的处理效果,其中Zn Fe-LDHs、Zn Co-LDHs和Zn Al-LDHs对总磷的平均去除率均在92%以上,对溶解性总磷和磷酸盐的平均去除率均超过95%;其对磷素的净化机理主要集中于物理化学作用,同时还应与其对微生物生长的促进作用有关.  相似文献   
972.
一氧化氮合酶途径参与SO_2胁迫下蚕豆气孔运动调节   总被引:1,自引:1,他引:0  
李蕊  仪慧兰  仪民 《环境科学学报》2015,35(10):3406-3410
以蚕豆为材料,研究一氧化氮合酶(NOS)途径在SO2诱发气孔运动中的作用.研究发现:浓度7.5~200μmol·L-1的SO2衍生物处理后,蚕豆叶面气孔开度减小,气孔开度与SO2衍生物浓度呈负相关;SO2衍生物处理组叶组织中NOS活性增强;加入NO清除剂c-PTIO或NOS抑制剂L-NAME可抑制SO2衍生物诱发的气孔关闭;SO2衍生物处理组保卫细胞内NO和Ca2+水平升高,用c-PTIO降低胞内NO水平后Ca2+水平随之下降.结果表明,SO2衍生物胁迫可诱发保卫细胞内NO合成增加,NO通过调节胞内Ca2+水平升高,激活下游信号转导途径,调节气孔运动;NOS途径介导的NO合成参与了SO2胁迫下蚕豆气孔运动的调节.  相似文献   
973.
秸秆添加对厨余垃圾堆肥时H_2S和NH_3排放的影响   总被引:1,自引:1,他引:0  
《环境工程》2015,33(1):100-104
厨余垃圾堆肥过程中NH3和H2S的排放不但降低了堆肥的养分含量,而且会引发严重的恶臭。以厨余垃圾为研究对象,以玉米秸秆为膨松剂,设置5%、10%、15%、20%(质量分数)4个添加比例(湿基)的堆肥处理,研究秸秆添加量对厨余垃圾堆肥过程中H2S和NH3排放的影响。结果表明:从温度来看,仅T4处理未达到无害化和腐熟的要求。氧气不足是造成H2S排放的主要原因,4个堆肥处理的H2S主要集中在前2周排放,随着秸秆添加量的增加,H2S的排放量逐渐降低。与T1处理相比,T2、T3、T4的H2S累积排放量分别降低了35.5%、44.7%、64.2%。各处理NH3的排放趋势与H2S类似,高温期为NH3释放的关键时期,NH3累积释放量占总释放量的62.2%~72.2%,与T1处理相比,T2、T3和T4的NH3累积排放量分别降低了36.9%、45.2%、76.3%。由此可见,添加适量的玉米秸秆不但能促进厨余垃圾堆肥的进行,明显降低堆肥过程中H2S和NH3的排放,而且可以实现玉米秸秆的资源化利用。  相似文献   
974.
《环境工程》2015,(9):134-138
预测了内蒙古各盟市未利用地工业开发利用过程中以SO2排放为代表的有害气体对大气环境的影响,研究显示,2014—2018年间SO2排放量随着开发面积的增加而增长,单位面积SO2排放量呈逐年线性递减,新增加开发排入大气中SO2的总量呈增加趋势。同时规划期内SO2对区域空气质量的影响与SO2的排放总量呈正相关。新增工业产生的SO2排放导致5个盟市大气SO2浓度超标。  相似文献   
975.
采用水热合成法制备TiO2纳米材料,用BET、XRD、TEM技术对样品进行表征,结果表明,制备出来的样品均为纳米管,随着煅烧温度的增加,晶型从锐钛矿变成金红石相。实验考察了体系参数对臭氧/TiO2纳米管工艺降解2,4-二氯酚废水影响,结果表明:随着臭氧投加量的增加,废水COD的去除效率随之增加,初始浓度的增加会抑制降解效率,中性或弱碱性水环境有利于反应的进行。另外,通过研究叔丁醇对反应体系的影响,表明实验反应遵循羟基自由基的反应机理。  相似文献   
976.
Bacterial decolorization of anthraquinone dye intermediates is a slow process under aerobic conditions. To speed up the process, in the present study, effects of various nutrients on 1-amino-4-bromoanthraquinone-2-sulfonic acid (ABAS) decolorization by Sphingomonas xenophaga QYY were investigated. The results showed that peptone, yeast extract and casamino acid amendments promoted ABAS bio-decolorization. In particular, the addition of peptone and casamino acids could improve the decolorization activity of strain QYY. Further experiments showed that L-proline had a more significant accelerating effect on ABAS decolorization compared with other amino acids. L-Proline not only supported cell growth, but also significantly increased the decolorization activity of strain QYY. Membrane proteins of strain QYY exhibited ABAS decolorization activities in the presence of L-proline or reduced nicotinamide adenine dinucleotide, while this behavior was not observed in the presence of other amino acids. Moreover, the positive correlation between L-proline concentration and the decolorization activity of membrane proteins was observed, indicating that L-proline plays an important role in ABAS decolorization. The above findings provide us not only a novel insight into bacterial ABAS decolorization, but also an L-proline-supplemented bioaugmentation strategy for enhancing ABAS bio-decolorization.  相似文献   
977.
As the biggest iron and steel producer in the world and one of the highest CO2 emission sectors, China's iron and steel industry is undergoing a low-carbon transition accompanied by remarkable technological progress and investment adjustment, in response to the macroeconomic climate and policy intervention. Many drivers of the CO2 emissions of the iron and steel industry have been explored, but the relationships between CO2 abatement, investment and technological expenditure, and their connections with the economic growth and governmental policies in China, have not been conjointly and empirically examined. We proposed a concise conceptual model and an econometric model to investigate this crucial question. The results of regression, Granger causality test and impulse response analysis indicated that technological expenditure can significantly reduce CO2 emissions, and that investment expansion showed a negative impact on CO2 emission reduction. It was also argued with empirical evidence that a good economic situation favored CO2 abatement in China's iron and steel industry, while achieving CO2 emission reduction in this industrial sector did not necessarily threaten economic growth. This shed light on the dispute over balancing emission cutting and economic growth. Regarding the policy aspects, the year 2000 was found to be an important turning point for policy evolution and the development of the iron and steel industry in China. The subsequent command and control policies had a significant, positive effect on CO2 abatement.  相似文献   
978.
Soybean wastewater was used to generate biomass resource by use of purple non-sulfur bacteria (PNSB). This study investigated the enhancement of PNSB cell accumulation in wastewater by Mg2+ under the light-anaerobic condition. Results showed that with the optimal Mg2+ dosage of 10 mg/L, biomass production was improved by 70% to 3630 mg/L, and biomass yield also was improved by 60%. Chemical Oxygen Demand (COD) removal reached above 86% and hydraulic retention time was shortened from 96 to 72 hr. The mechanism analysis indicated that Mg2+ could promote the content of bacteriochlorophyll in photosynthesis because Mg2+ is the bacteriochlorophyll active center, and thus improved adenosine triphosphate (ATP) production. An increase of ATP production enhanced the conversion of organic matter in wastewater into PNSB cell materials (biomass yield) and COD removal, leading to more biomass production. With 10 mg/L Mg2+, bacteriochlorophyll content and ATP production were improved by 60% and 33% respectively.  相似文献   
979.
The emission of N2 is important to remove excess N from lakes, ponds, and wetlands. To investigate the gas emission from water, Gao et al. (2013) developed a new method using a bubble trap device to collect gas samples from waters. However, the determination accuracy of sampling volume and gas component concentration was still debatable. In this study, the method was optimized for in situ sampling, accurate volume measurement and direct injection to a gas chromatograph for the analysis of N2 and other gases. By the optimized new method, the recovery rate for N2 was 100.28% on average; the mean coefficient of determination (R2) was 0.9997; the limit of detection was 0.02%. We further assessed the effects of the new method, bottle full of water, vs. vacuum bag and vacuum vial methods, on variations of N2 concentration as influenced by sample storage times of 1, 2, 3, 5, and 7 days at constant temperature of 15°C, using indices of averaged relative peak area (%) in comparison with the averaged relative peak area of each method at 0 day. The indices of the bottle full of water method were the lowest (99.5%-108.5%) compared to the indices of vacuum bag and vacuum vial methods (119%-217%). Meanwhile, the gas chromatograph determination of other gas components (O2, CH4, and N2O) was also accurate. The new method was an alternative way to investigate N2 released from various kinds of aquatic ecosystems.  相似文献   
980.
In order to efficiently remove volatile organic compounds (VOCs) from indoor air, onedimensional titanate nanotubes (TiNTs) were hydrothermally treated to prepare TiO2 nanocrystals with different crystalline phases, shapes and sizes. The influences of various acids such as CH3COOH, HNO3, HCl, HF and H2SO4 used in the treatment were separately compared to optimize the performance of the TiO2 nanocrystals. Comparedwith the strong and corrosive inorganic acids, CH3COOH was not only safer andmore environmentally friendly, but also more efficient in promoting the photocatalytic activity of the obtained TiO2. Itwasobserved that the anatase TiO2 synthesized in 15 mol/L CH3COOH solution exhibited the highest photodegradation rate of gaseous toluene (94%), exceeding that of P25 (44%) by a factor ofmore than two. The improved photocatalytic activity was attributed to the small crystallite size and surface modification by CH3COOH. The influence of relative humidity (20%-80%) on the performance of TiO2 nanocrystals was also studied. The anatase TiO2 synthesized in 15 mol/L CH3COOH solution was more tolerant tomoisture than the other TiO2 nanocrystals and P25.  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