全文获取类型
收费全文 | 465篇 |
免费 | 97篇 |
国内免费 | 265篇 |
专业分类
安全科学 | 22篇 |
废物处理 | 20篇 |
环保管理 | 52篇 |
综合类 | 402篇 |
基础理论 | 212篇 |
污染及防治 | 88篇 |
评价与监测 | 23篇 |
社会与环境 | 6篇 |
灾害及防治 | 2篇 |
出版年
2024年 | 4篇 |
2023年 | 16篇 |
2022年 | 28篇 |
2021年 | 21篇 |
2020年 | 34篇 |
2019年 | 36篇 |
2018年 | 25篇 |
2017年 | 38篇 |
2016年 | 42篇 |
2015年 | 44篇 |
2014年 | 39篇 |
2013年 | 47篇 |
2012年 | 46篇 |
2011年 | 56篇 |
2010年 | 43篇 |
2009年 | 27篇 |
2008年 | 28篇 |
2007年 | 32篇 |
2006年 | 46篇 |
2005年 | 31篇 |
2004年 | 25篇 |
2003年 | 20篇 |
2002年 | 14篇 |
2001年 | 15篇 |
2000年 | 11篇 |
1999年 | 14篇 |
1998年 | 5篇 |
1997年 | 6篇 |
1996年 | 8篇 |
1995年 | 8篇 |
1994年 | 4篇 |
1993年 | 7篇 |
1992年 | 1篇 |
1991年 | 2篇 |
1990年 | 3篇 |
1989年 | 1篇 |
排序方式: 共有827条查询结果,搜索用时 15 毫秒
61.
62.
63.
Physical and Chemical Connectivity of Streams and Riparian Wetlands to Downstream Waters: A Synthesis 下载免费PDF全文
Ken M. Fritz Kate A. Schofield Laurie C. Alexander Michael G. McManus Heather E. Golden Charles R. Lane William G. Kepner Stephen D. LeDuc Julie E. DeMeester Amina I. Pollard 《Journal of the American Water Resources Association》2018,54(2):323-345
Streams, riparian areas, floodplains, alluvial aquifers, and downstream waters (e.g., large rivers, lakes, and oceans) are interconnected by longitudinal, lateral, and vertical fluxes of water, other materials, and energy. Collectively, these interconnected waters are called fluvial hydrosystems. Physical and chemical connectivity within fluvial hydrosystems is created by the transport of nonliving materials (e.g., water, sediment, nutrients, and contaminants) which either do or do not chemically change (chemical and physical connections, respectively). A substantial body of evidence unequivocally demonstrates physical and chemical connectivity between streams and riparian wetlands and downstream waters. Streams and riparian wetlands are structurally connected to downstream waters through the network of continuous channels and floodplain form that make these systems physically contiguous, and the very existence of these structures provides strong geomorphologic evidence for connectivity. Functional connections between streams and riparian wetlands and their downstream waters vary geographically and over time, based on proximity, relative size, environmental setting, material disparity, and intervening units. Because of the complexity and dynamic nature of connections among fluvial hydrosystem units, a complete accounting of the physical and chemical connections and their consequences to downstream waters should aggregate over multiple years to decades. 相似文献
64.
D.C. Goodrich W.G. Kepner L.R. Levick P.J. Wigington Jr. 《Journal of the American Water Resources Association》2018,54(2):400-422
Ephemeral and intermittent streams are abundant in the arid and semiarid landscapes of the Western and Southwestern United States (U.S.). Connectivity of ephemeral and intermittent streams to the relatively few perennial reaches through runoff is a major driver of the ecohydrology of the region. These streams supply water, sediment, nutrients, and biota to downstream reaches and rivers. In addition, they provide runoff to recharge alluvial and regional groundwater aquifers that support baseflow in perennial mainstem stream reaches over extended periods when little or no precipitation occurs. Episodic runoff, as well as groundwater inflow to surface water in streams support limited naturally occurring riparian communities. This paper provides an overview and comprehensive examination of factors affecting the hydrologic, chemical, and ecological connectivity of ephemeral and intermittent streams on perennial or intermittent rivers in the arid and semiarid Southwestern U.S. Connectivity as influenced and moderated through the physical landscape, climate, and human impacts to downstream waters or rivers is presented first at the broader Southwestern scale, and secondly drawing on a specific and more detailed example of the San Pedro Basin due to its history of extensive observations and research in the basin. A wide array of evidence clearly illustrates hydrologic, chemical, and ecological connectivity of ephemeral and intermittent streams throughout stream networks. 相似文献
65.
Spatial Relationships of Levees and Wetland Systems within Floodplains of the Wabash Basin,USA 下载免费PDF全文
Ryan R. Morrison Erin Bray Fernando Nardi Antonio Annis Quan Dong 《Journal of the American Water Resources Association》2018,54(4):934-948
Given the unique biogeochemical, physical, and hydrologic services provided by floodplain wetlands, proper management of river systems should include an understanding of how floodplain modifications influence wetland ecosystems. The construction of levees can reduce river–floodplain connectivity, yet it is unclear how levees affect wetlands within floodplains, let alone the cumulative impacts within an entire watershed. This paper explores spatial relationships between levee and floodplain wetland systems in the Wabash Basin, United States. We used a hydrogeomorphic floodplain delineation technique to map floodplain extents and identify wetlands that may be hydrologically connected to river networks. We then spatially examined the relationship between levee presence, wetland area, and other river network attributes within discrete subbasins. Our results show that cumulative wetland area is relatively constant in subbasins that contain levees, regardless of maximum stream order within the subbasin. In subbasins that do not contain levees, cumulative wetland area increases with maximum stream order. However, we found that wetland distributions around levees can be complex, and further studies on the influence of levees on wetland habitat may need to consider finer resolution spatial scales. 相似文献
66.
为了有效处理低浓度抗生素残留废水,以水热法制备的BiOBr为载体,诺氟沙星(NOR)为模板,通过表面分子印迹法制备了BiOBr分子印迹材料(MIP).同时,采用SEM与XRD对制备的材料进行相分析及显微结构分析,并利用XPS、FTIR、BET和UV-Vis DRS对所合成材料的微观结构进行观察.最后,以诺氟沙星(NOR)为目标污染物,对MIP在暗反应下的吸附性能及300 W Xe灯照射下的光催化性能进行测定,并探讨pH、投加量、初始浓度、是否印迹处理对NOR去除的影响.实验结果表明,在pH为中性,MIP投加量为2.5 g·L-1的条件下,MIP对5 mg·L-1 NOR溶液的去除率达到96.2%,且对低浓度(1 mg·L-1)NOR溶液的去除率达到99%.综合表明,本文所制备的MIP适用于低浓度诺氟沙星废水的处理. 相似文献
67.
腐植酸中不同分子量组分与As(Ⅲ)的络合性能 总被引:1,自引:0,他引:1
采用超滤方法将腐植酸(HA)分成5个不同分子量组分,利用平衡透析法研究HA中不同分子量组分与As(III)的络合特征和作用机理,计算络合过程的条件分配系数、表观稳定常数.结果表明,腐植酸组分的分子量对HA与As(III)的络合过程有显著的影响,当分子量小于10kDa时,HA与As(III)络合能力明显强于其他条件.其中羧基和酚羟基在HA与砷络合中起重要作用,为主要络合位点.采用Scatchard分析和双位点配体模型对络合结果进行拟合,发现HA中不同分子量组分和As(III)的络合过程中均存在强和弱2种络合位点. 相似文献
68.
新乡市镉污染土壤细菌群落组成及其对镉固定效果 总被引:4,自引:0,他引:4
重金属污染土壤中具有丰富的微生物群落组成,为生物修复提供了微生物资源.本研究以新乡市某电池厂周边Cd污染土壤为研究对象,采用高通量测序和平板分离方法分析其细菌群落组成.传统培养方法表明新乡市重金属污染土壤细菌由厚壁菌门、放线菌门、变形菌门和拟杆菌门这4个门,芽孢杆菌属、节杆菌属和根瘤菌属等30个属组成;高通量测序表明,其由变形菌门、放线菌门和酸杆菌门等25门及400属组成.相较于培养方法,高通量测序群落组成更为丰富.基于高通量测序的分子生态网路分析表明其关键细菌分别为Arthrobacter、Marmoricola、Nocardioides、Ferruginibacter、Flavitalea、Nitrospira和Lysobacter等组成.对分离的159株可培养菌株进行Cd摇瓶吸附实验,结果表明Aneurinibacillus、Arthrobacter和Bacillus等11个属的30株菌具有较好地固定效果.效果验证实验表明,Ochrobactrum sp. 1-6、Bacillus sp.2-11和Pseudomonas sp.1-9等6株高效菌株能提高青菜(鸡毛菜)生物量、降低青菜不同组织中的Cd含量.本研究为新乡市重金属污染土壤修复提供菌种资源,同时为重金属污染土壤细菌群落和功能提供参考依据. 相似文献
69.
本研究以水源水库热分层期沉积物中有机物为研究对象,在分析其相对分子质量分布和有机物荧光特性的基础上,探究了沉积物中有机物为碳源时,好氧反硝化细菌的脱氮效能、细菌生长及碳去除性能.结果表明:①水源水库在热分层期,沉积物中相对分子质量>100×103的有机物所占比例较高;同时相比于不同月有机物的相对分子质量分布,7月时沉积物中相对分子质量大的有机物所占的比例最低(44.62%),显示出较小的相对分子质量;②水源水库沉积物中有机物由陆地类腐殖质组分C1(250 nm,425 nm)、类色氨酸和氨基酸物质C2(230 nm/280 nm,322 nm)和传统微生物类腐殖质混合物C3(250 nm,340 nm)所组成,其中色氨酸和氨基酸类的物质(组分C2)所占比例较高,同时在7月时显示出较大的总荧光强度;③好氧反硝化过程中,5月有机物显示出较好的作为电子供体的特征,而7月的有机物却表现出较好的作为能源物质的性能,同时使得好氧反硝化细菌WGX-9显示出较高的氮去除特性;④相比于天然有机物、藻类有机物和实际水源水库水,沉积物中有机物作为碳源时可以较好地促进菌株WGX-9的好氧反硝化脱氮效能.本文阐明了水源水库热分层期沉积物中有机物特性及对好氧反硝化细菌的影响,将为微污染水体氮污染控制工程提供依据. 相似文献
70.
沸石床多级生物膜焦化废水处理系统的NH_~4+-N去除稳定性研究 总被引:2,自引:1,他引:1
焦化废水处理中预处理蒸氨工艺不稳定容易引起生物处理出水NH+4-N的波动,为了在有机物去除的同时提高生物系统对NH+4-N的去除效果和稳定性,采用对NH+4-N有良好吸附性能的天然斜发沸石为生物填料构建沸石床多级生物膜系统,考察了进水负荷对系统运行稳定性的影响、抗冲击负荷能力以及系统的功能分区和污染物迁移转化规律.结果表明,当系统进水NH+4-N负荷≤0.21 kg/(m3·d)、COD负荷≤1.35 kg/(m3·d)时,出水NH+4-N和COD的平均浓度分别为(2.2±1.2)mg/L和(228±60)mg/L,平均去除率分别达(99.1±0.5)%和(86.0±2.6)%.在低、高两次NH+4-N冲击负荷[0.03 kg/(m3·d)和0.06 kg/(m3·d)]条件下,系统对NH+4-N的平均去除率仍然分别高达99.0%和92.9%,高于对比系统的96.8%和89.3%,表现出良好的抗NH+4-N冲击负荷性能与处理稳定性.系统好氧单元反应器沿程出现脱碳/硝化功能区(C/N区)和硝化功能区(N区),其中N区的NH+4-N 降解速率为C/N区的2~8倍.系统进水中相对分子质量<1×103、 1×103~1×104、>1×104的TOC浓度分别为227.6、104.8和35.0 mg/L,处理出水中的TOC浓度分别为31.2、 22.9和31.5 mg/L,其中相对分子质量<1×103和1×103~1×104这2个范围的有机物降解良好,出水残余物质主要为相对分子质量>1×103的有机物. 相似文献