1.
西藏当惹雍错和扎日南木错现代湖泊基本特征
[2048]
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2.
TIBETAN OBSERVATION AND RESEARCH PLATFORM Atmosphere-Land Interact..
[1958]
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3.
Changes of organic matter sources in sediment cores from a high-al..
[1851]
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4.
西藏纳木错植物物候及其对气候的响应
[1844]
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5.
夷平面研究评述
[1808]
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6.
Paleoclimatic implications of the hydrogen isotopic composition of..
[1733]
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7.
Stable isotope and ostracode species assemblage evidence for lake ..
[1720]
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8.
西藏纳木错1971~2004年湖泊面积变化及其原因的定量分析
[1709]
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9.
Environmental changes since 8.4 ka reflected in the lacustrine cor..
[1690]
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10.
Last glacial-Holocene geochronology of sediment cores from a high-..
[1642]
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11.
代用资料揭示青藏高原的气候和环境变迁
[1638]
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12.
Late Quaternary hydrological changes inferred from lake level fluc..
[1598]
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13.
Palaeo-water depth estimation for a 600-year record from Nam Co (T..
[1593]
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14.
Glacial distribution and mass balance in the Yarlung Zangbo River ..
[1523]
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15.
Ostracod-based environmental reconstruction over the last 8,400 ye..
[1506]
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16.
雅鲁藏布江流域冰川分布和物质平衡特征及其对湖泊的影响
[1489]
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17.
Ostracod-based environmental reconstruction over the last 8,400 ye..
[1397]
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18.
Origin of terra rossa over dolomite on the Yunnan-Guizhou Plateau,..
[1377]
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19.
Quantitative analysis of lake area variations and the influence fa..
[1371]
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20.
Spatial pattern of Abies and Picea surface pollen distribution alo..
[1349]
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21.
Comparisons between the chemical compositions of lake water, inflo..
[1348]
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22.
藏南沉错沉积物有机质δ~(13)C对湖区环境冷暖变化的响应
[1328]
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23.
Mineralogy and geochemistry of the Holocene lacustrine sediments i..
[1324]
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24.
Investigation of bathymetry and water quality of Lake Nam Co, the ..
[1311]
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25.
8.4ka以来纳木错湖芯介形类组合的环境变化意义
[1310]
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26.
Modern pollen distributions in Qinghai-Tibetan Plateau and the dev..
[1307]
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27.
湖芯沉积物揭示的末次冰消开始时期普莫雍错湖区环境变化
[1288]
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28.
Quartz features constrain the origin of terra rossa over dolomite ..
[1280]
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29.
青藏高原南部空姆错湖芯中陆源正构烷烃氢同位素比值的气候意义
[1276]
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30.
西藏纳木错水深分布及现代湖沼学特征初步分析
[1272]
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31.
Quantitative analysis of lake area variations and the influence fa..
[1263]
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32.
Stable isotope and ostracode species assemblage evidence for lake ..
[1260]
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33.
Further discussion about the features of Lake Puma Yum Co, South T..
[1256]
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34.
The response of lake-glacier variations to climate change in Nam C..
[1253]
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35.
藏南沉错沉积物水蚤残体组合对环境变化的响应
[1252]
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36.
藏南普莫雍错流域水体离子组成与空间分布及其环境意义
[1247]
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37.
Hydrogen isotope ratios of terrigenous n-alkanes in lacustrine sur..
[1238]
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38.
Heavy dust fall in Beijing, on April 16-17, 2006: Geochemical prop..
[1234]
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39.
Changes of organic matter sources in sediment cores from a high-al..
[1232]
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40.
Diatom assemblages and quantitative reconstruction for paleosalini..
[1229]
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41.
Distributions of lead isotopes with grain size in aeolian deposits
[1228]
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42.
Origin of terra rossa on Amdo North Mountain on the Tibetan platea..
[1223]
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43.
西藏纳木错表层沉积物中正构烷烃的来源与空间分布特征
[1218]
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44.
Grain size effect on Sr and Nd isotopic compositions in eolian dus..
[1214]
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45.
Ostracod assemblages and their environmental significance from the..
[1212]
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46.
青藏高原环境变化对全球变化的响应及其适应对策
[1209]
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47.
Bacterial Diversity of Freshwater Alpine Lake Puma Yumco on the Ti..
[1199]
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48.
西藏纳木错沉积物中单水方解石的发现及成因分析
[1190]
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49.
Environmental changes reflected by n-alkanes of lake core in Nam C..
[1188]
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50.
藏南沉错钻孔沉积物金属元素分布特征及其与粒度的关系
[1181]
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51.
Water and sediment chemistry of Lake Pumayum Co, South Tibet, Chin..
[1175]
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52.
西藏纳木错沉积物单水方解石出现前后的环境变化
[1166]
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53.
青藏高原湖泊表层沉积物中陆源正构烷烃氢同位素比值的气候意义
[1164]
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54.
青藏高原扎布耶盐湖晚全新世气候环境演化
[1164]
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55.
Airborne pollen in the Nam Co Basin and its implication for palaeo..
[1144]
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56.
Composition, spatial distribution, and environmental significance ..
[1135]
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57.
Quantitative analysis of lake area variations and the influence fa..
[1127]
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58.
西藏普莫雍错不同岩芯环境指标的对比研究及其反映的近200年来环境变化
[1118]
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59.
西藏纳木错湖芯正构烷烃及其反映的8.4ka以来的环境变化
[1113]
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60.
A study on environmental changes based upon cladoceran assemblages..
[1111]
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61.
藏南沉错湖泊沉积多指标揭示的2万年以来环境变化
[1096]
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62.
青藏高原湖泊沉积与环境演变研究:现状与展望
[1092]
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63.
白云岩之上红色粘土的磁组构特征及其成因指示意义探讨
[1084]
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64.
纳木错流域近30年来湖泊—冰川变化对气候的响应
[1073]
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65.
西藏纳木错东部湖水及入湖河流水化学特征初步研究
[1064]
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66.
西藏纳木错深水湖芯反映的8·4ka以来气候环境变化
[1038]
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67.
两种激光粒度仪测量湖泊沉积物粒度结果的对比
[1031]
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68.
西藏纳木错过去200年来的环境变化
[1005]
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69.
不同前处理对湖泊沉积物粒度测量结果的影响
[939]
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