全文获取类型
收费全文 | 1648篇 |
免费 | 233篇 |
国内免费 | 1357篇 |
专业分类
安全科学 | 100篇 |
废物处理 | 83篇 |
环保管理 | 170篇 |
综合类 | 1980篇 |
基础理论 | 516篇 |
环境理论 | 1篇 |
污染及防治 | 304篇 |
评价与监测 | 43篇 |
社会与环境 | 35篇 |
灾害及防治 | 6篇 |
出版年
2024年 | 7篇 |
2023年 | 46篇 |
2022年 | 114篇 |
2021年 | 136篇 |
2020年 | 120篇 |
2019年 | 136篇 |
2018年 | 145篇 |
2017年 | 133篇 |
2016年 | 136篇 |
2015年 | 148篇 |
2014年 | 171篇 |
2013年 | 250篇 |
2012年 | 203篇 |
2011年 | 176篇 |
2010年 | 133篇 |
2009年 | 147篇 |
2008年 | 129篇 |
2007年 | 141篇 |
2006年 | 130篇 |
2005年 | 95篇 |
2004年 | 79篇 |
2003年 | 86篇 |
2002年 | 54篇 |
2001年 | 61篇 |
2000年 | 51篇 |
1999年 | 31篇 |
1998年 | 24篇 |
1997年 | 21篇 |
1996年 | 18篇 |
1995年 | 26篇 |
1994年 | 12篇 |
1993年 | 21篇 |
1992年 | 10篇 |
1991年 | 6篇 |
1990年 | 3篇 |
1989年 | 4篇 |
1988年 | 5篇 |
1987年 | 5篇 |
1986年 | 2篇 |
1985年 | 3篇 |
1984年 | 6篇 |
1983年 | 3篇 |
1982年 | 7篇 |
1981年 | 1篇 |
1979年 | 2篇 |
1978年 | 1篇 |
排序方式: 共有3238条查询结果,搜索用时 15 毫秒
1.
为了探索盐渍化土壤中微生物多样性及群落构成,有效筛选盐渍土壤中耐盐微生物菌群.采用高通量测序技术对采集的河北省滨海盐渍土(原生盐渍化)、设施盐渍土(次生盐渍化)和高产粮田(健康土壤)3个生境的耕层土壤样本细菌和真菌多样性、群落结构、网络关系及其影响因子进行测定.结果表明,与大田土壤相比,设施土壤中OM、AP、AK、TS和EC显著升高,滨海盐渍土壤的TS和EC显著升高,其他养分指标则显著降低.细菌α多样性依次为:设施盐渍土>高产粮田>滨海盐渍土,真菌α多样性则为高产粮田显著高于设施盐渍土和滨海盐渍土.在门和属水平上分析盐渍化土壤的菌群结构,细菌群落中绿弯菌门(Chloroflexi)及其菌属和真菌群落中子囊菌门(Ascomycota)及其中有益菌Trichocladium和病原菌Fusarium为盐渍化土壤中的优势微生物类群.土壤EC和TS两个盐分因子是对细菌和真菌菌群分布贡献最大的因子,与绿弯菌门中unclassified_A4b和unclassified_Chloroflexi以及变形菌门中unclassified_α-Proteobacteria等细菌菌属和子囊菌门中Trichocladium、unclassified_Chaetomiaceae、Crassicarpon、Cephaliophora和Sodiomyces等真菌菌属呈显著正相关.研究结果为盐渍化土壤修复所需的微生物资源筛选提供了理论依据. 相似文献
2.
AbstractThe roles of PM2.5-induced mitochondrial damage and oxidative stress on mast cell degranulation were examined in vitro. Mast cells were treated with suspensions of PM2.5 in Dulbecco’s modified Eagle’s medium at concentrations from 25 to 200?mg/L in the absence or presence of 10?mmol/L N-acetyl-L-cysteine. Biological effects and mitochondrial function were assessed by determining cell viability, β-hexosaminidase release, interleukin-4 secretion, reactive oxygen species generation, adenosine triphosphate production, potential alteration of mitochondrial membrane, and activities of mitochondrial electron transport chain complexes I and III. Exposure of mast cells to PM2.5 induced reduction of adenosine triphosphate production, collapse of mitochondrial membrane potential, and inhibition of the activity of complex III. Co-treatment of mast cells exposed to PM2.5 with N-acetyl-L-cysteine attenuated cytotoxicity and the production of reactive oxygen species, and decreased the release of β-hexosaminidase and interleukin-4. Evidently, PM2.5-induced oxidative stress plays an essential role in mitochondrial toxicity and mast cell activation. 相似文献
3.
4.
以实际中药废水作为阳极基质、实际含镉废水作为阴极电解液,构建了连续流双室微生物燃料电池(MFC),考察了其产电性能及对两种废水的处理效果。78 d的运行数据表明:系统可实现最大输出电压417mV、最大体积功率密度11.8 W/m3,最大体积功率密度运行条件下的库伦效率为18.5%;在阳极进水有机物浓度变化较大的情况下,实现了阳极对中药废水中有机物的有效去除,平均COD去除率为81.5%;阴极对含镉废水中Cd2+的去除率为79.4%~84.8%。这表明MFC同步处理中药废水及重金属废水具有一定的可行性。 相似文献
5.
6.
Iwanaga Takumi 《International Journal of Green Energy》2020,17(14):946-950
ABSTRACT Biodiesel emulsion fuel is reported as one of the most feasible options capable of generating lower NOx emission than that from fossil fuels. However, oil and water in the emulsion fuel are easily separated and unstable. The aim of the present study is to consider the production and stability of biodiesel emulsion fuel by using tetraglycerin ester (CR-310), i.e., one of lipophilic surfactant, polyglycerol polyricinoleate (PGPR) and biodiesel, i.e., Waste cooking Oil Methyl Ester (WOME) produced based on waste cooking oil. The corresponding heat rate, water content, and viscosity are measured. Emphasis is placed on the effects of water content and surfactant on biodiesel emulsions. It is found that: (i) stable emulsion fuel is obtained by adding at least 2.0% of CR-310 and is maintained over 1 month, (ii) there is no effect of water content on stable emulsion fuel if CR-310 is used over 2.0%, and (iii) the viscosity of emulsion fuels is higher than that of the biodiesel fuel and is gradually increased with an increase in the water content. 相似文献
7.
铬污染土壤的微生物修复技术研究进展 总被引:6,自引:0,他引:6
介绍了土壤中铬的来源,存在形态,迁移转化及其对生物的危害,并重点阐述铬污染土壤的微生物修复机理:土壤中的Cr(VI)可以在微生物生物吸附、还原作用等作用下降低其生物可利用性和毒性,从而达到铬污染土壤修复的目的。针对微生物修复过程中存在的问题,提出了提高微生物修复铬污染土壤效果的措施,并对铬土壤污染微生物修复的发展趋势进行了展望。 相似文献
8.
微生物法降解药渣中残留四环素的试验研究 总被引:2,自引:0,他引:2
发酵法生产四环素过程中会产出大量废弃药渣,其中含有丰富的营养物质,但同时也残留一定量未提取完的四环素,从而限制其资源化利用。研究筛选到一株对药渣中残留四环具有高效降解作用的优势菌株,经16S rDNA鉴定为无丙二酸柠檬酸杆菌(Citrobacteramalonaticus)。该菌株在35℃、初始pH 5.5、装液量为50 mL、接种量为5%、转速为150 r/min条件下,处理四环素药渣72 h,药渣中残留四环素的降解率为86.1%。 相似文献
9.
在生物滴滤塔处理制革恶臭气体中,采用SBR法对活性污泥进行驯化,考查生物滴滤塔处理制革恶臭气体中微生物的特性。研究了微生物对氨氮和硫化物的去除效率以及驯化过程中污泥容积指数(SVI)的变化,并对挂膜后填料表面的微生物相进行扫描电镜观察。结果表明:经过19 d的驯化,微生物对氨氮和硫化物的去除率分别可以达到98.29%和94.16%,驯化期间污泥容积指数均保持在正常的范围之中。挂膜14 d的扫描电镜显示,填料表面有均匀的生物膜分布,说明微生物在填料上已经挂膜成功,驯化的微生物可以达到去除制革恶臭气体的要求。 相似文献
10.
Nitrogen deposition alters soil chemical properties and bacterial communities in the Inner Mongolia grassland 总被引:1,自引:0,他引:1
Nitrogen deposition has dramatically altered biodiversity and ecosystem functioning on the earth; however, its effects on soil bacterial community and the underlying mechanisms of these effects have not been thoroughly examined. Changes in ecosystems caused by nitrogen deposition have traditionally been attributed to increased nitrogen content. In fact, nitrogen deposition not only leads to increased soil total N content, but also changes in the NH4+-N content, NO3--N content and pH, as well as changes in the heterogeneity of the four indexes. The soil indexes for these four factors, their heterogeneity and even the plant community might be routes through which nitrogen deposition alters the bacterial community. Here, we describe a 6-year nitrogen addition experiment conducted in a typical steppe ecosystem to investigate the ecological mechanism by which nitrogen deposition alters bacterial abundance, diversity and composition. We found that various characteristics of the bacterial community were explained by different environmental factors. Nitrogen deposition decreased bacterial abundance that is positively related to soil pH value. In addition, nitrogen addition decreased bacterial diversity, which is negatively related to soil total N content and positively related to soil NO3--N heterogeneity. Finally, nitrogen addition altered bacterial composition that is significantly related to soil NH4+-N content. Although nitrogen deposition significantly altered plant biomass, diversity and composition, these characteristics of plant community did not have a significant impact on processes of nitrogen deposition that led to alterations in bacterial abundance, diversity and composition. Therefore, more sensitive molecular technologies should be adopted to detect the subtle shifts of microbial community structure induced by the changes of plant community upon nitrogen deposition. 相似文献