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Significant lake expansion has accelerated permafrost degradation on the Qinghai-Tibet Plateau
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作者 LI Qingpeng LIU Wenhui +6 位作者 LIU Hairui ZHOU Guanghao song xianteng LI Qing LUO Bingnan song Bangxu ZHANG Qi 《Journal of Mountain Science》 SCIE CSCD 2024年第1期68-83,共16页
In recent years, lakes on the Qinghai-Tibet Plateau have become more responsive to climate change. In September 2011, Zonag Lake in Hoh Xil experienced sudden drainage, the water eventually flowed into Yanhu Lake, whi... In recent years, lakes on the Qinghai-Tibet Plateau have become more responsive to climate change. In September 2011, Zonag Lake in Hoh Xil experienced sudden drainage, the water eventually flowed into Yanhu Lake, which caused Yanhu Lake to continue to expand. The potential collapse of Yanhu Lake could directly threaten the operational safety of the adjacent Qinghai-Tibet Highway, Qinghai-Tibet Railway. To explore the implications of expanding lakes on the surrounding permafrost, we selected Hoh Xil Yanhu Lake on the Qinghai-Tibet Plateau to study the effect of lake expansion on permafrost degradation. The permafrost degradation in the Yanhu Lake basin from October 2017 to December 2022 was inverted using Sentinel-1 satellite image data and small baseline subset interferometry synthetic aperture radar(SBAS-In SAR) technology. Additionally, permafrost degradation from February 2007 and February 2010 was analyzed using advanced land observing satellite phased array-type L-band synthetic aperture radar(ALOS PALSAR) satellite images and differential interferometric synthetic aperture radar(D-In SAR) technique. The results showed that the permafrost around Yanhu Lake experienced accelerated degradation. Prior to the expansion of Yanhu Lake, the average annual deformation rate along the line of sight(LOS) direction was 6.7 mm/yr. After the expansion, the rate increased to 20.9 mm/yr. The integration of spatial-temporal distribution maps of surface subsidence, Wudaoliang borehole geothermal data, meteorological data, Yanhu Lake surface area changes, and water level changes supports the assertion that the intensified permafrost degradation could be attributed to lake expansion rather than the rising air temperature. Furthermore, permafrost degradation around Yanhu Lake could impact vital infrastructure such as the adjacent Qinghai-Tibet Highway and Qinghai-Tibet Railway. 展开更多
关键词 Lake expansion SBAS-InSAR D-INSAR Permafrost deformation Qinghai-Tibet Plateau
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沙塘川河西宁段表层沉积物重金属与稀土元素地球化学特征及其物源解析
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作者 杨莎 宋先腾 +1 位作者 徐双贵 逯克思 《贵州师范大学学报(自然科学版)》 CAS 2023年第6期10-20,共11页
选取青海省沙塘川河西宁段表层沉积物为研究对象,分析Cr等8种重金属的污染程度、潜在生态风险和物质来源以及稀土元素组成、分布特征和物质来源,并探讨稀土元素的控制因素。结果显示,重金属呈现轻度—中度污染状况,污染负荷程度为轻度,... 选取青海省沙塘川河西宁段表层沉积物为研究对象,分析Cr等8种重金属的污染程度、潜在生态风险和物质来源以及稀土元素组成、分布特征和物质来源,并探讨稀土元素的控制因素。结果显示,重金属呈现轻度—中度污染状况,污染负荷程度为轻度,元素生态风险高低顺序依次为Cd>Hg>Co>Pb>Ni>Cu>Cr>Zn。稀土元素整体表现为轻稀土元素富集,重稀土元素相对亏损的特征,Eu呈中等负异常,无明显Ce异常。轻重稀土元素之间分异显著,轻稀土元素内部分异明显,重稀土元素内部分异不明显。沉积岩源岩及矿物组成对稀土元素的组成起到了控制作用,化学风化对其影响较小。Co、Ni、Cu、Zn主要受矿物自然风化等自然源的影响,Cr、Pb、Cd、Hg主要受工业、农业等人为源的影响;稀土元素主要来源于自身水土侵蚀。 展开更多
关键词 沙塘川河西宁段 表层沉积物 重金属 稀土元素 地球化学特征 物质来源
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柴达木盆地诺木洪贝壳堤水体演变的介形类证据 被引量:1
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作者 李玮 屈海英 +3 位作者 李莎 周淑敏 宋先腾 王晓楠 《现代地质》 CAS CSCD 北大核心 2022年第1期14-26,共13页
柴达木盆地贝壳堤保存有大量大小混杂及两壳绞合的双壳类化石,是全球干旱区罕见的地貌景观,为青藏高原东北部中晚更新世的气候与环境演化提供了重要的区域地质记录。该记录在诺木洪西北约20 km出露,将其命名为诺木洪贝壳堤。目前诺木洪... 柴达木盆地贝壳堤保存有大量大小混杂及两壳绞合的双壳类化石,是全球干旱区罕见的地貌景观,为青藏高原东北部中晚更新世的气候与环境演化提供了重要的区域地质记录。该记录在诺木洪西北约20 km出露,将其命名为诺木洪贝壳堤。目前诺木洪贝壳堤的沉积属性存在河湖之争,对该贝壳堤剖面开展系统的介形类分析,建立了8个生物组合带,除1带化石稀少无法鉴定外,2-8带自下而上依次为:Ilyocypris-Candona-Candoniella组合、Ilyocypris-Candona-Leucocythere-Candoniella-Eucypris inflata组合、Leucocythere-Ilyocypris组合、Ilyocypris-Leucocythere-Candoniella-Candona组合、Ilyocypris-Candoniella-Leucocythere组合、Ilyocypris bradyi-Ilyocypris echinata组合和Ilyocypris bradyi-Candoniella组合。根据8个生物组合带的属种特征和古生态指标综合分析贝壳堤水体的演化过程,认为诺木洪贝壳堤为河流相沉积。1-5带沉积期由于频繁的河流改道,贝壳堤剖面处经历牛轭湖-浅水河流多次转变,牛轭湖阶段水体较深不利于介形类生存,而浅水河流阶段介形类相对繁盛;6-8带沉积期水体维持极浅河流状态,介形类繁盛,后因持续干旱河道封闭,水体盐度升高而不利于介形类生存;最终盐壳析出,诺木洪贝壳堤沉积结束。 展开更多
关键词 柴达木盆地 诺木洪贝壳堤 介形类 河流沉积
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