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   77篇
  免费   23篇
  国内免费   14篇
大气科学   9篇
地球物理   20篇
地质学   32篇
海洋学   33篇
天文学   2篇
综合类   2篇
自然地理   16篇
  2022年   1篇
  2021年   2篇
  2020年   1篇
  2019年   4篇
  2018年   2篇
  2017年   3篇
  2016年   2篇
  2015年   1篇
  2014年   2篇
  2013年   6篇
  2012年   4篇
  2011年   7篇
  2010年   4篇
  2009年   6篇
  2008年   6篇
  2007年   7篇
  2006年   2篇
  2005年   1篇
  2004年   4篇
  2003年   6篇
  2002年   7篇
  2001年   3篇
  2000年   7篇
  1999年   6篇
  1998年   3篇
  1997年   3篇
  1996年   3篇
  1995年   1篇
  1994年   1篇
  1993年   1篇
  1992年   3篇
  1989年   2篇
  1986年   1篇
  1984年   2篇
排序方式: 共有114条查询结果,搜索用时 15 毫秒
1.
张风菊  薛滨  姚书春 《湖泊科学》2019,31(6):1770-1782
湖泊沉积物碳埋藏及其驱动机制是陆地生态系统碳循环及全球变化研究的热点问题之一,但以往湖泊碳循环的研究大多局限于有机碳,较少考虑无机碳的地位和作用.我国干旱-半干旱地区湖泊众多、无机碳储量丰富,在区域碳循环过程中的作用日益突出,因此探讨这些地区湖泊沉积物无机碳埋藏变化对深入理解区域碳循环具有重要意义.本研究通过对内蒙古高原呼伦湖15个沉积岩芯样品无机碳含量(TIC)的测定,结合沉积岩芯210Pb、137Cs年代标尺,分析了1850年以来呼伦湖无机碳埋藏速率时空变化,并揭示了影响呼伦湖无机碳埋藏的主要因素.结果表明,1980s之前,呼伦湖无机碳含量总体维持在相对稳定的低值,1980s之后开始快速增加,且近百年来呼伦湖平均无机碳含量在不同湖区差异不显著.1850年以来呼伦湖无机碳埋藏速率变化范围约为7.10~74.29 g/(m2·a),平均值约为36.15 g/(m2·a),且大体上可分为3个阶段,即1900s以前相对稳定的低值阶段、1900s-1950s期间的快速增加阶段以及1950s以来的波动增加阶段,各阶段无机碳埋藏速率平均值分别约为10.40、26.29和41.00 g/(m2·a).空间上,呼伦湖无机碳埋藏速率整体表现为中部高、南北两端低的分布格局,这可能与湖心水动力条件相对稳定,有利于碳酸盐沉积有关.此外,呼伦湖无机碳埋藏速率与湖区温度变化呈显著正相关,而与周边人类活动影响关系不明显,表明在未来全球变暖背景下,呼伦湖无机碳埋藏速率将进一步增加,湖泊在区域碳循环中的作用将更加显著.  相似文献   
2.
为揭示太湖流域降雨和湖水酸根阴离子长期变化特征及环境意义,通过历史数据收集和采样分析,对太湖流域降雨和湖水中的SO42-、NO3-变化特征和来源进行了研究.结果表明:自1990s以来太湖流域降雨中SO42-呈显著下降趋势,年平均下降率为0.28 mg/(L·a);NO3-浓度却呈显著上升趋势,年平均增长率为0.05 mg/(L·a),降雨中氮污染呈现加重的趋势.与之相反,湖水中SO42-呈显著上升趋势,年平均增长率为1.24 mg/(L·a);NO3-浓度却呈显著下降趋势,年平均下降率为0.02 mg/(L·a).30年以来,太湖水体SO42-/NO3-比值不断升高,远高于降水SO42-/NO3-比值.研究认为:流域SO2排放引起的酸沉降是湖水SO42-浓度增长的最重要原因,但氮氧化物排放并未引起湖水NO3-浓度升高,说明太湖流域对大气沉降的氮氧化物有滞留作用,而太湖水体是流域大气沉降硫酸盐的重要汇.综合治理太湖流域酸性物质排放对防止太湖水体酸化和治理富营养化都具有重要意义.  相似文献   
3.
以栉孔扇贝(Chlamys,farreri)为试验生物,应用生物富集双箱动力学模型,研究了暴露在不同质量浓度的As<'3+>溶液中,栉孔扇贝对无机砷的耐受性;通过对富集与排出过程中栉孔扇贝体内无机砷含量的动态监测及对检测结果的非线性拟合,得出栉孔扇贝富集无机砷的吸收速率常数(k<,1>)、排出速率常数(k<,2>)、生...  相似文献   
4.
曾承 《盐湖研究》2011,19(2):20-24
青海湖Q14B沉积物柱芯560~415 cm(约14.0~10.5 ka B.P.)段,介壳1δ8O高于无机碳酸盐1δ8O可能反映了此时青海湖表层水温高于底层水温;介壳1δ8O与无机碳酸盐1δ8O之间的较小差值可能揭示了此时青海湖水位很浅,气候干冷;介壳1δ8O变幅大于无机碳酸盐1δ8O变幅,则可能源于此时青海湖水位大幅度波动导致的底层水温变幅超过表层,以及无机碳酸盐1δ8O测自全碳酸盐所致。在利用湖泊碳酸盐1δ8O进行气候及环境变化研究时,有必要分别测试不同种属介形虫及不同无机碳酸盐矿物的同位素值。  相似文献   
5.
长江和长江口高含量无机氮的主要控制因素   总被引:41,自引:6,他引:41  
根据1998-1998年长江和长江口河水和雨水的现场调查、历史资料以及相关文献,定量分析长江流域无机氮的主要来源和输送调查。估算表明,降水无机氮、农业非点源氮(化肥和土壤流失的氮)和点源污水氮的输入分别占长江口无机氮输出通量的62.3%、18.5%和14.4%。氮的降水输入是长江口高含量无机氮的主要来源,进入长江的降水氮仅仅大约占长江流域全部降水氮的36.8%。降水米要受控于化肥气态损失、化石燃料及动植物过程中释放的物质等。实际上,化肥N的气态损失和农业非点源流失大约占长江流域年化肥N使用量的60%,这是控制长江口高含量无机氮的关键因素。  相似文献   
6.
本文据珠江口周年(1987年2月至1988年2月)调查资料,分析了珠江口桂山岛附近海域的三氮变化规律,讨论了三氮之间的相互关系,通量和停留时间以及各种因素对三氮的影响。结果表明:珠江河口水中三氮的时空分布具有夏、冬季含量高,春、秋季含量低,并随向外海方向递减的特点;三氮之间的关系可分别用倒指数方程Y=exp(A+B/X)的数学模式描述;NH_4-N,NO_3-N,NO_2-N的通量和停留时间分别为33.9,401.0,15.8g·atN/s和3.84,3.96,4.41d。  相似文献   
7.
渤海海区无机硒的形态及其分布   总被引:1,自引:1,他引:1  
姚庆祯  张经 《海洋与湖沼》2004,35(3):221-229
1998年9月利用氢化物发生原子荧光光谱测试方法对渤海中央海区共8个断面30个站位的无机硒进行了测定。结果表明,渤海无机硒总量、Se4^ 含量的变化范围分别为0.73-2.57nmol/L、0.18-0.72nmol/L,平均含量分别为1.31nmol/L和0.47nmol/L;Se^4 /Se^6 比值的平均值为0.68。渤海无机硒的含量与大洋水相当,无机硒主要以Se^6 为主。黄河对渤海的贡献非常明显,为渤海无机硒的主要来源之一。渤海无机硒的平面分布存在明显的梯度,沿岸向中央海区递减,垂直分布较均匀,表、底层差别不大。渤海无机硒的分布明显受两个水团的影响:一个是来自黄河的冲淡水,另一个是从渤海海峡北部进入的黄海水团。  相似文献   
8.
太湖水体光学衰减系数的特征及参数化   总被引:34,自引:3,他引:34  
利用2001-2002年周年太湖全湖不同湖区湖泊光学及表层水样的实测资料,分析了太湖水体表层光学衰减系数与透明度、无机和有机颗粒物质及叶绿素a的相关关系,建立了表层水光学衰减系数与无机、有机颗粒物质及叶绿素a多元线性回归方程。结果表明,光学衰减系数与透明度的关系为:Kdg0.096 1.852/ST;表层水光学衰减系数与无机、有机颗粒物质及叶绿素a多元线性回归方程为:Kd=0.219 0.0768Ciss 0.214Cdet 0.006Cchl;光学衰减系数变化的主要影响因子是无机及有机颗粒物。  相似文献   
9.
The southwestern Adirondack region of New York receives among the highest rates of atmospheric nitrogen (N) deposition in the USA. Atmospheric N deposition to sensitive ecosystems, like the Adirondacks, may increase the acidification of soils through losses of exchangeable nutrient cations, and the acidification of surface waters associated with enhanced mobility of nitrate (NO3?). However, watershed attributes, including surficial terrestrial characteristics, in‐lake processing, and geological settings, have been found to complicate the relationships between atmospheric N deposition and N drainage losses. We studied two lake‐watersheds in the southwestern Adirondacks, Grass Pond and Constable Pond, which are located in close proximity (~26 km) and receive similarly high N deposition, but have contrasting watershed attributes (e.g. wetland area, geological settings). Since the difference in the influence of N deposition was minimal, we were able to examine both within‐ and between‐watershed influences of land cover, the contribution of glacial till groundwater inputs, and in‐lake processes on surface water chemistry with particular emphasis on N solutes and dissolved organic carbon (DOC). Monthly samples at seven inlets and one outlet of each lake were collected from May to October in 1999 and 2000. The concentrations of NO3? were high at the Grass Pond inlets, especially at two inlets, and NO3? was the major N solute at the Grass Pond inlets. The concentrations of likely weathering products (i.e. dissolved Si, Ca2+, Mg2+, Na+) as well as acid neutralizing capacity and pH values, were also particularly high at those two Grass Pond inlets, suggesting a large contribution of groundwater inputs. Dissolved organic N (DON) was the major N solute at the Constable Pond inlets. The higher concentrations of DON and DOC at the Constable Pond inlets were attributed to a large wetland area in the watershed. The DOC/DON ratios were also higher at the Constable Pond inlets, possibly due to a larger proportion of coniferous forest area. Although DON and DOC were strongly related, the stronger relationship of the proportion of wetland area with DOC suggests that additional factors regulate DON. The aggregated representation of watershed physical features (i.e. elevation, watershed area, mean topographic index, hypsometric‐analysis index) was not clearly related to the lake N and DOC chemistry. Despite distinctive differences in inlet N chemistry, NO3? and DON concentrations at the outlets of the two lakes were similar. The lower DOC/DON ratios at the lake outlets and at the inlets having upstream ponds suggest the importance of N processing and organic N sources within the lakes. Although an inverse relationship between NO3? and DOC/DON has been suggested to be indicative of a N deposition gradient, the existence of this relationship for sites that receive similar atmospheric N deposition suggest that the relationship between NO3? and the DOC/DON ratio is derived from environmental and physical factors. Our results suggest that, despite similar wet N deposition at the two watershed sites, N solutes entering lakes were strongly affected by hydrology associated with groundwater contribution and the presence of wetlands, whereas N solutes leaving lakes were strongly influenced by in‐lake processing. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
10.
Increasing food production to meet growing demand while reducing tropical deforestation is a critical sustainability challenge. This is especially true in sub-Saharan Africa, which faces serious food insecurity issues and where smallholder farming is the main driver of forest conversion. Competing theories imply opposite predictions as to whether deforestation increases or decreases with smallholder agricultural intensification, which can improve food security by increasing crop yields per area cultivated. This research provides new empirical evidence on the association between deforestation and smallholders’ use of modern inputs, in particular inorganic fertilizer on maize and improved maize seeds, using Zambia as a case study. We analyze this association nationwide in a spatially disaggregated manner at the lowest administrative level using machine learning-based small area estimation, which makes use of detailed nationally representative surveys on smallholder farm households for 2011 and 2014, and census data to statistically predict modern inputs use country-wide for 2011, when average maize yields were 1.28 tons/ha. Then, we evaluate the association between improved maize seed and fertilizer inputs and subsequent deforestation, while controlling for key geospatial covariates. The results support the land-sparing hypothesis, finding that smallholder farmers’ use of improved maize seed is negatively associated with deforestation on non-acidic (pH ≥ 5.5) soils, an effect that is enhanced by complementary inorganic fertilizer use. Fertilizer use on its own, however, is weakly associated with increased deforestation. Sustainable intensification via use of improved seeds on adequately fertile soils and improving soil health appears compatible with reducing both deforestation and food insecurity.  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