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   6522篇
  免费   1169篇
  国内免费   1055篇
测绘学   1207篇
大气科学   1309篇
地球物理   682篇
地质学   3333篇
海洋学   658篇
天文学   44篇
综合类   440篇
自然地理   1073篇
  2024年   56篇
  2023年   237篇
  2022年   280篇
  2021年   331篇
  2020年   251篇
  2019年   295篇
  2018年   234篇
  2017年   257篇
  2016年   225篇
  2015年   279篇
  2014年   431篇
  2013年   303篇
  2012年   402篇
  2011年   384篇
  2010年   350篇
  2009年   361篇
  2008年   352篇
  2007年   327篇
  2006年   330篇
  2005年   315篇
  2004年   272篇
  2003年   229篇
  2002年   226篇
  2001年   242篇
  2000年   182篇
  1999年   141篇
  1998年   167篇
  1997年   154篇
  1996年   154篇
  1995年   166篇
  1994年   127篇
  1993年   154篇
  1992年   118篇
  1991年   108篇
  1990年   108篇
  1989年   101篇
  1988年   18篇
  1987年   16篇
  1986年   8篇
  1985年   8篇
  1984年   6篇
  1983年   4篇
  1982年   7篇
  1981年   7篇
  1980年   3篇
  1977年   2篇
  1958年   2篇
  1957年   4篇
  1955年   2篇
  1954年   3篇
排序方式: 共有8746条查询结果,搜索用时 15 毫秒
91.
多频载波相位组合进行单点定位   总被引:1,自引:0,他引:1  
不同于双频数据的应用,多频数据的采用对单点定位有着特殊意义,可以更好地获得其模糊度的解。基于卫星导航定位系统多频载波相位线性组合理论,研究了具有特殊意义的组合观测值及其特性。在此基础上,通过多频观测值数据的数值仿真,采用新方法进行整周模糊度快速求解。编制了基于多频载波相位组合单点定位软件,通过结果的比较分析,得出有一定实际应用意义的结论。此方法算法简单,速度快,能够满足实时导航定位的需要,具有工程应用价值。  相似文献   
92.
潜热释放的作用在温带气旋的研究中一直是研究的重点。江苏省气象台沈阳等以一个产生极端降水的温带气旋为研究对象,基于全型涡度方程,计算了凝结潜热释放对气旋相对涡度倾向的贡献。结果表明,对流凝结潜热加热率最大可达稳定凝结潜热加热率的40倍。两类潜热加热中心均位于700 hPa以上,加热率垂直梯度在对流层低层为正,因而在加热中心下方形成正涡源中心。对流凝结潜热垂直梯度引发的涡度倾向比稳定凝结潜热高出1个数量级。虽然总的凝结潜热水平梯度引发的涡度倾向可以贡献气旋涡度实际增长值的65%,但对流凝结潜热垂直梯度的贡献高达其2倍。凝结潜热释放不仅能够直接引发涡度倾向,亦可通过改变位温梯度,进一步造成涡度倾向。  相似文献   
93.
《地下水》2006,28(4):F0004-F0004
陕西省水工程勘察规划研究院始建于一九四九年。长期以来承担着全省地下水监测研究、地下水盗源调查评价、地下水开发利用规划、钻井技术设备研究、科技推广等专业按术工作和机井工程建设监督、质量管理,钻井施工资质管理等行业技术管理工作。具有国家甲级水文水资源调查评价、建设项目水资源论证、水文地质勘察、岩土工程资质.  相似文献   
94.
水文地质学作为与国民经济发展密切相关的应用学科,在世界各国水资源调查、保护和管理方面发挥着重要的支撑作用。2006年是国际水文地质学家协会(IAH)成立五十周年。因此,2006年10月09日-2006年10月13日国际水文地质学家协会和中国国土资源部将在北京市联合举办“第34届国际水文地质大会”。这将是继1988年中国在桂林市成功举办“第21届国际水文地质大会”之后,再次在中国举办国际水文地质大会。  相似文献   
95.
简要介绍了测量不确定度和测量误差的概念,二者之间的区别,不确定度主要来源及正确报告、应用和符合性评价等,提出分析测试中心应尽快培训人员,完成对每个检测方法的不确定度评定工作,以适应国家法律法规、客户和认可委要求。  相似文献   
96.
The purpose of the thesis is to analyze the temporal and dimensional distribution of sulfate-reducing bacteria (SRB) groups and quantity in Lake Erhai. In April and September 2005, two sediment cores were collected from Lake Erhai. SRB groups were analyzed by PCR with six-groups primers designed according to the specific 16SrDNA sequence. FISH (fluorescence in-situ hybridization) was established with the oligonucleotide probe (SRB385) and utilized to analyze SRB quantity in the sediments. The results showed that in the sediments of Lake Erhai four SRB groups were detected except Desulfobacterium and Desulfobacter, meanwhile Desulfovibrio-Desulfomicrobium were detected only in autumn; different SRB groups had different temporal and dimensional distribution, and each group in autumn is distributed more widely than in spring; FISH used to count SRB in the sediments of fresh lake was set up successfully; the analysis of correlation between the sediment's depth and SRB quantity had statistical meaning (P〈0.05) . The result showed that SRB quantity showed a decreasing trend with increasing depth. Through the analysis of randomized block designed analysis of variance, the difference in SRB quantity between spring and autumn also had statistical meaning (P〈0.001), which revealed SRB quantity in autumn was larger than in spring; the result of FISH showed that there were some SRB in the deeper sediments in which no above-mentioned six SRB groups were detected by PCR. SRB groups in the sediments of Lake Erhai were rich, and the quantities of SRB groups in autumn were larger than in spring; possibly there were uncultivable SRB groups in the sediments of Lake Erhai.  相似文献   
97.
Arsenic is one of the most important single-substance toxicants in the environment. In Inner Mongolia of China, 300000 residents are believed to drink water containing 〉50 μg/L. Skin lesions have been known as the most common consequences resulting from chronic exposure to arsenic. To clarify the prevalence of arsenic-induced skin lesions, it is important to assess the impact of this problem on the target population, and to make future planning. We evaluated the association between multi-level inorganic arsenic exposure from drinking water and skin lesions in an arsenic-affected area in Inner Mongolia, China. 109 and 32 subjects fi'om high-level arsenic-affected (〉5 μg/L) village and low-level (≤50 μg/L) village were recruited and had detailed physical examination with special emphasis on arsenic-related skin lesions. Arsenic exposure was measured for each participant with As concentration of primary well and the duration of using the well was recorded. Arsenic-induced skin lesions including keratosis, pigmentation, and/or leucomelanosis were diagnosed in 56 and 3 subjects in the two villages, respectively. Logistic regression was conducted to calculate prevalence-odd ratios of skin lesions by levels of arsenic exposure with adjustment of sex, age group, smoking and duration of exposure. A consistent dose-response relationship between arsenic exposure level and skin lesion risk was observed.  相似文献   
98.
Biological iron and manganese removal utilizing indigenous iron and manganese oxidizing bacteria (IRB hereafter) in groundwater can also be applied to arsenic removal according to our pilot-scale test. The arsenic removal probably occurred through sorption and complexation of arsenic to iron and manganese oxides formed by enzymic action of IRB. We investigated the chemical properties of iron and manganese oxides in IRB floc and the valence state of arsenic sorbed to the floc to clarify the mechanisms of the arsenic [especially As (Ⅲ)] removal. The floc samples were collected from two drinking water plants using IRB (Jyoyo and Yamatokoriyama, Japan), and our pilot - scale test site where arsenic and iron removal using IRB is under way (Mukoh, Japan). The Jyoyo and Yamatokoriyama IRB floc samples were subjected to As (Ⅲ) and As(Ⅴ) sorption experiments. The elemental composition of the floc samples was measured. XANES spectra were collected on As, Fe and Mn K-edges at synchrotron radiation facility Spring 8 (Hyogo, Japan). FT-IR and the X-ray diffraction spectra of the samples were also obtained. The IRB floc contained ca. 35 % Fe, 0.3%-3.5% Mn and 2%-6% P. The samples were highly amorphous and contained ferrihidrites and hydrated iron phosphate. According to XANES analyses of IRB, As associated with IRB was in +5 valence state when As (Ⅲ) (or As (Ⅴ)) was added in laboratory sorption test, Fe in +3 valence state, and Mn a mixture of+3 and +4 valence states. Small shift was observed in the XANES spectra of IRB on As K-edge as the equilibration time of the sorption experiment was increased. Gradual oxidation of a small amount of As (Ⅲ) associated with IRB or change in arsenic binding with sorption site were the probable mechanism.  相似文献   
99.
Although inorganic species are predominant in natural systems, but there are many kinds of organoarsenic species such as methylated and phenylated arsenic compounds. Phenylarsonic acid (PA) is a degradation product of organoarsenics used for chemical warfare agents, which has been detected in well water at the disposal site of the agents in Japan. There are few reports studying behavior of PA in soil. In this study, PA was adsorbed onto ferrihydrite and its chemical forms were determined using high performance liquid chromatography connected to inductivity-coupled plasma mass spectrometry (HPLC-ICP-MS). 100 mg/kg of PA was mixed with 0.03 g of 2-line ferrihydrite. For each suspension, pH was adjusted by HNO3 or NaOH. Each sample was incubated for more than 19 hours and the final pH was measured. After filtration, the chemical form of arsenic in the filtrate was measured using HPLC-ICP-MS. In addition, ferrihydrite separated by filtration was dissolved by 3 ml of 0.5 M HCI and the arsenic species in the solution was detected by HPLC-ICP-MS (column: Tosoh TSKgel SuperlC-AP, eluent: 0.01 M HNO3). It was verified that PA is not degraded by heating in 0.5 M HCl solution. At pH 3.1, any arsenic compounds were not detected from the solution, because almost all arsenic species were adsorbed onto ferrihydrite at lower pH. At pH= 12, however, 7%-10% of inorganic arsenic was detected in the solution. In solid phase, there are some problems to determine the precise ratio of inorganic and organic species. When the solution includes Fe ion at 0.01 M level, the retention time of arsenic species drifted compared to those in standard solution, which makes it difficult to determine precisely the arsenic species adsorbed on ferrihydrite. Therefore, more study is needed to determine the ratio of inorganic and organic species in the system.  相似文献   
100.
Uranium processing and mining activities that generate many contaminants, such as high concentrations of U (VI), sulfate and heavy metals (Zn, Cu, Ni, etc), may pose a serious threat to the groundwater resources. In recent years, considerable research has been conducted respectively on two kinds of permeable reactive barriers (PRB), including zerovalent iron (ZVI) and sulfate reducing bacteria (SRB), for in-situ removal of these pollutants from groundwater. However, little investigation has been carried out on the potential benefits of bioaugmenting ZVI barriers to enhance the elimination of the pollutants by combining ZVI with SRB systems. The main goal of this study was to conduct batch and column experiments to determine whether the combination of SRB and ZVI can function synergistically and accelerate the rate of pollutant removal. The results of anaerobic batch experiments demonstrated that although the integrated ZVI/PRB system itself has no ability to reduce and remove sulfate directly, SRB can utilize hydrogen gas produced during the slow process of ZVI corrosion as an electron donor to raise biomass yields significantly and accelerate reductive sulfate removal. In particular, ferrous cations produced as the byproduct of ZVI corrosion process reacted with hydrogen sulfide from sulfate reduction and formed iron-bearing sulfide precipitates, which can stimulate the growth of SRB and promote sulfate removal activity by eliminating the biotoxicity of hydrogen sulfide. It was also shown that secondary mineral products (pyrite/ferrous sulfide) formed as a consequence of microbial sulfate reduction and ZVI corrosion process can enhance the microbial precipitation of soluble U (VI) as insoluble uraninite(uranium dioxide).  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