李建森 |
阿尔金山两侧盐湖物质来源、成钾作用及其控制因素研究 |
2021 |
地质学报 |
李建森 |
水化学及氢氧同位素组成指示的涩北气田地层水成因 |
2021 |
安全与环境工程 |
樊启顺 |
氯化钙型卤水成因的研究进展及其科学问题 |
2021 |
盐湖研究 |
姜盼武 |
柴达木盆地水—岩硼含量分布特征及其富集区域物源讨论 |
2021 |
盐湖研究 |
马正明 |
哈达贺休盐湖卤水氢氧同位素特征及成因分析 |
2021 |
盐湖研究 |
Lu, Xiaohang |
Nature of Volatile Organic Matter in Lake Sediments as a Reflection of Paleoclimate Changes Occurring at 4 ka in the Central Qaidam Basin |
2021 |
FRONTIERS IN EARTH SCIENCE |
Ma, Zhe |
The Forming Age and the Evolution Process of the Brine Lithium Deposits in the Qaidam Basin Based on Geochronology and Mineral Composition |
2021 |
FRONTIERS IN EARTH SCIENCE |
Hussain, Syed Asim |
Unraveling Sources and Climate Conditions Prevailing during the Deposition of Neoproterozoic Evaporites Using Coupled Chemistry and Boron Isotope Compositions (delta B-11): The Example of the Salt Range, Punjab, Pakistan |
2021 |
MINERALS |
Lu, Shuang |
Middle to late Eocene chemical weathering history in the southeastern Tibetan Plateau and its response to global cooling |
2021 |
PALAEOGEOGRAPHY PALAEOCLIMATOLOGY PALAEOECOLOGY |
卢晓航 |
不同岩性盐湖沉积物中挥发性有机质的特征 |
2021 |
盐湖研究 |
张光武 |
察尔汗盐湖西北部典型采区地下卤水赋存状态的地面核磁探测与数值模拟研究 |
2021 |
盐湖研究 |
陈富洪 |
格尔木河地表径流的趋势和突变特征分析 |
2021 |
盐湖研究 |
苏维刚 |
钻孔应变的干扰源及其干扰机制的多方法分析 |
2021 |
大地测量与地球动力学 |
Ling, Zhiyong |
Geochemical characteristics and provenance of aeolian sediments in the Yarlung Tsangpo valley, Southern Tibetan Plateau |
2021 |
ENVIRONMENTAL EARTH SCIENCES |
Kong, Fancui |
Deep hydrothermal and shallow groundwater borne lithium and boron loadings to a mega brine lake in Qinghai Tibet Plateau based on multi-tracer models |
2021 |
JOURNAL OF HYDROLOGY |
Han, Jinjun |
Driving factors of desertification in Qaidam Basin, China: An 18-year analysis using the geographic detector model |
2021 |
ECOLOGICAL INDICATORS |
陈亮 |
柴达木盆地表土重金属污染与来源分析 |
2021 |
环境科学 |
相江芸 |
格尔木河表层沉积物重金属污染现状及潜在生态风险评价 |
2021 |
盐湖研究 |
孔凡翠 |
大柴旦盐湖中镭同位素分布特征来源及示踪意义 |
2021 |
湖泊科学 |
Li, Leiming |
Effect of freeze-thaw cycles on soil physicochemical properties and fractions of Pb and Cr in the northeastern Qinghai-Tibet Plateau |
2021 |
GEOCHEMISTRY-EXPLORATION ENVIRONMENT ANALYSIS |