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   6106篇
  免费   600篇
  国内免费   1589篇
安全科学   569篇
废物处理   741篇
环保管理   1045篇
综合类   4034篇
基础理论   596篇
环境理论   2篇
污染及防治   784篇
评价与监测   300篇
社会与环境   137篇
灾害及防治   87篇
  2024年   16篇
  2023年   87篇
  2022年   159篇
  2021年   187篇
  2020年   244篇
  2019年   177篇
  2018年   178篇
  2017年   242篇
  2016年   285篇
  2015年   281篇
  2014年   492篇
  2013年   512篇
  2012年   553篇
  2011年   530篇
  2010年   366篇
  2009年   377篇
  2008年   309篇
  2007年   431篇
  2006年   457篇
  2005年   351篇
  2004年   289篇
  2003年   304篇
  2002年   263篇
  2001年   203篇
  2000年   202篇
  1999年   169篇
  1998年   122篇
  1997年   99篇
  1996年   93篇
  1995年   77篇
  1994年   67篇
  1993年   51篇
  1992年   31篇
  1991年   16篇
  1990年   16篇
  1989年   5篇
  1988年   2篇
  1987年   7篇
  1986年   3篇
  1984年   3篇
  1983年   3篇
  1982年   3篇
  1981年   4篇
  1980年   7篇
  1979年   6篇
  1977年   3篇
  1976年   2篇
  1973年   3篇
  1971年   3篇
  1970年   1篇
排序方式: 共有8295条查询结果,搜索用时 250 毫秒
981.
全球环境基金(GEF)"通过环境无害化管理减少电器电子产品的生命周期内持久性有机污染物和持久性有毒化学品(POPs/PTS)的排放全额示范项目"湖北省作为项目示范省之一.三家废弃电器电子产品拆解企业,分别开展了废弃电器电子产品拆解技术示范、湿法废弃印刷电路板处置BAT/BEP技术示范、利用再生铅连续熔炼炉协同处置阴极射线管含铅锥玻璃项目技术示范.电子废弃物全自动化分类与拆解生产线,为电子废弃物绿色循环与资源化提供了示范模式.  相似文献   
982.
“无废城市”建设已经成为应对城市固体废物(以下简称“固废”)管理挑战的国际趋势,我国也启动了“无废城市”建设试点工作。本文介绍了国际“无废城市”实践的背景和发展趋势,对我国和其他高收入国家的“无废城市”相关政策和具体实施方案进行了对比分析。分析结果表明,“无废城市”的推进政策与实施措施存在国别差异,我国的“无废城市”采纳了“问题导向”的推进策略,而高收入国家则是“目标导向”。最后对进一步推进我国“无废城市”建设试点工作提出了四点建议。  相似文献   
983.
以废腈纶为原料,经碱法水解反应和扩链反应制取乳液用高分子增稠剂。水解工艺条件为水解温度95℃,水解时间4h;水解配方为m(PAN):m(NaOH):m(H2O)=1:0.6:5;扩链反应温度95℃,扩链反应时间约4h。对不同乳液体系进行的增稠性能评价及应用表明,利用该技术制备出的高分子增稠剂性能优良,应用范围广泛。现已建成一套生产能力为1000t/a的工业装置。  相似文献   
984.
采用热重分析、固定床实验、红外分析(FT-IR)研究了生活垃圾热解行为及产物中含氧物质的分布规律。用热重分析确定了生活垃圾主要失重区间(190~450℃),并计算此温度区间热解活化能为42.76 k J/mol。在热解终温为450~650℃条件下进行生活垃圾固定床热解实验,结果表明:随热解终温的增加,固体产物中氧分布率逐渐减小(39.2%~29.3%);热解气中氧分布率逐渐增加(22.1%~30.9%);热解液中氧分布率在40%左右。生活垃圾热解气中含氧成分主要是CO和CO2,在温度为450~650℃时,CO含量明显高于CO2,而CO2的释放速率则大于CO;固体产物中含氧官能团主要有—OH和C—O,其中峰面积比例顺序为C—O>—OH;热解液中含氧官能团主要有—OH、C O和C—O,其峰面积的比例顺序为—OH>C—O>C O。  相似文献   
985.
硝基芳香化合物是环境中难降解的有机污染物之一 ,对环境的污染日益严重 ,利用生物技术对这类有机物进行降解是行之有效的新途径。针对几种单环硝基芳香化合物好氧降解的微生物、降解途径以及降解过程中的主要酶、降解性质粒、基因定位等分子遗传学的研究进展进行了综述  相似文献   
986.
Municipal solid waste (MSW) is one of the most well-known biomass resources that can be utilized to produce renewable energy. Numerous countries are plagued by the proliferation of waste, particularly organic waste that can be utilized for energy recovery. Palestine suffers from inefficient solid waste management, and only recently have a few projects focused on bioenergy production been implemented. Throughout the years, the city of Tulkarm experiences power outages which cause a challenge to the Palestine Technical University-Kadoorie campus in Tulkarm. Thus, the possibility of energy recovery from the organic portion in Palestine Technical University-Kadoorie was evaluated. The analysis of an economic impact included discussions of a number of economic aspects, including Levelized cost of energy, internal rate of return, present worth, annual worth, and payback period. On the other hand, a carbon dioxide savings analysis and gas emission were evaluated. The outcomes of the energy optimization demonstrated that the suggested system could supply the institution with an average of roughly 7 MWh of electrical energy. According to the economic study, this project offers 0.25 million dollars in present value, 0.144 million dollars in annual value, a 13 percent internal rate of return, a payback period of 6 years, and a levelized cost of energy of 0.11 dollars for each kWh generated. Additionally, the environmental assessment revealed that this system might reduce CO2 emissions by around 8,343,778 tons. For effective waste management, energy recovery, and emission reduction, it is advised to implement anaerobic digestion technology.  相似文献   
987.
The increase in animal and agro-industrial production must be accompanied by the development of appropriate waste and by-product management strategies. Anaerobic digestion is a promising approach to recycle these wastes and reintegrate them into the economic production cycle of biogas and biofertilizer. In order to improve the performance of the anaerobic mesophilic digestion of abundant agro-industrial wastes constituted by potato peel (PP), and poultry waste (PW) and study the contribution of bovine bone meal (BB) as additive rich in phosphorus, which can help to neutralize the acidity of the substrate. The 10-point simplex-centroid design and the isoresponse surfaces strategy were used. This study demonstrated that in mesophilic bio-digestion, the using bovine bones in admixture with agroindustrial residue provided for the proper balance of chemical components required for proliferation of microbiological agent of bioconversion, which also resulted in an increase in biogas production capacity. The best formula was so composed by 66.67% bovine bone, 16.67% potatoes peel, and 16.67% poultry waste. The stability was achieved here after only 12 days. The digestate generated from it was fulfilled with the microbiological and chemical requirements for safety defined by the NF U44-551 standard. Germination test revealed that this optimal produced digestate, did not hinder growth, in fact, almost 85% of seed was germinated. Finally, fertilization experiments prove that this digestate can boost the growth of bell pepper (Capsicum annuum).  相似文献   
988.
Biohythane production via single-stage anaerobic digestion (AD) is an effective way for sustainable energy recovery from lignocellulosic biomass. In this paper, biohythane was produced through the AD process from pineapple peel waste substrate using purely cultured Methanosarcina mazei with the enhancement of palm oil mill effluent (POME) sludge as the inoculum. This study focuses on the effects of the lignocellulosic pre-treatment method, the addition of POME sludge into M. mazei culture medium as inoculum, and various operational conditions (food to microorganisms (F/M) ratios, temperature, pH) on gas production performances. The experimental results indicate that these parameters influenced the efficiency of biohythane production by producing the peak maximum biohythane production rate values (HPRmax) and (MPRmax), H2:CH4 = 1.93:0.67 L/L-d, and biohythane yield (HY) and (MY), H2:CH4 = 1.18:0.55 mL/L-substrate. This study demonstrates that biohythane gas (H2 + CH4 + CO2) production from pineapple waste can be accelerated by M. mazei only with the enhancement of POME sludge through single-stage AD system under mesophilic batch process conditions.  相似文献   
989.
The rise in the number of fungi that resisted antifungal action is of serious concern nowadays. In this study, the potential of acid condensate (AC) produced from microwave-assisted pyrolysis of palm kernel shell (PKS) was investigated for its antifungal properties through molecular docking evaluation. The phenolic-rich AC was determined for its chemical compositions using the GC–MS analysis where compounds with the highest phenolics content were further evaluated (using the Autodock Tools 1.5.7) for its potential enzymes/protein binding properties. From the GC–MS analysis, catechol, guaiacol and syringol were present at highest percentages. This directly correlates with results obtained from the molecular docking works where all these ligands managed to bind (indicated by H-bond, π-stacking, hydrophobic interaction) with some of the amino acid at the active sites which indicate its potential to inhibit substrate binding of this enzyme. As a conclusion, this study demonstrated the potential use of AC from agricultural biomass such as PKS as a natural-based antifungal agent that can reduce environmental and health impacts.  相似文献   
990.
Waste-to-energy is a promising approach to face the current challenge of waste overproduction in Reunion Island, a French territory. In this particular context of an isolated and tropical territory, it is essential to study the properties of potential feedstocks to choose the most appropriate conversion process. This article reports on the composition of Residual Household Waste from Reunion Island and its physico-chemical parameters. Twelve representative samples of Residual Household Waste were subjected to thermal and elemental analysis. The results showed that their composition had a significant influence on the physico-chemical properties, including calorific value. Residual Household Waste from the selective sorting (rich in wood, plastic, and sanitary textiles) as well as dry mixed RHW are the most interesting for energy recovery. Due to their high volatile matter and high carbon content, and their low moisture content, these types of waste have a high calorific value exceeding 18 MJ/kg. Furthermore, the RHW sample comply with the environmental and health criteria applied by French regulations concerning halogen and heavy metal. Thus, it seems that Residual Household Waste can be an alternative to conventional fuels used in incineration or pyro-gasification processes. However, the study also points the need for a pre-treatment process for these wastes. Indeed, it is necessary to sort them correctly in order to avoid the risks of pollution and important maintenance. And more importantly, drying beforehand is unavoidable to improve combustibility and obtain optimal energy conversion.  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