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Black carbon and dust in the Third Pole glaciers: Revaluated concentrations, mass absorption cross-sections and contributions to glacier ablation

机译:第三极冰川中的黑碳和灰尘:重估浓度,大量吸收横截面和冰川消融的贡献

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摘要

In snow and ice, light-absorbing particles (LAPs), such as black carbon (BC) and dust, accelerate the melting of Third Pole glaciers (TPGs). In this study, we revaluated LAP concentrations in the snow pits of TPGs (SP-TPGs), measured LAP mass absorption cross-sections (MACs), and simulated their effects on glacier darkening and melting based on the Spectral Albedo Model for Dirty Snow and a surface energy and mass balance model. The results indicated that because of their short distances to emission sources, the average BC concentrations measured in snow pits in the periphery of Third Pole were much higher than those measured in the inland Tibetan Plateau, and the average dust concentrations generally decreased from north to south. The average MACs of BC in the SP-TPGs varied from 3.1 to 7.7 m~2 g~(-1) at 550 nm, most of the average spectral values were comparable in the visible and near-infrared bands to those calculated by Mie theory, except those in Urumqi Glacier No. 1 (UR), Syek Zapadniy Glacier (SZ), and Laohugou Glacier No.12 (LH), while the average spectral MACs of dust in the SP-TPGs were considerably smaller in magnitude than most of the variations measured in other regions. Compared with the pure snow surfaces, BC and dust played comparable roles in reducing albedo in UR, SZ, LH, and Renlongba Glacier, whereas BC was the most prominent absorber in the other glaciers. The combined effect of BC and dust accelerated melting by 30.4-345.9 mm w.e. (19.7-45.3% of the total mass balance) through surface albedo darkening (0.06-0.17) and increased radiation absorption (25.8-65.7 W m~(-2)) within one month of the ablation season. This study provides a new data set of LAP concentrations and MACs and helps to clarify the roles of these factors in the cryospheric environment of the Third Pole.
机译:在冰雪中,吸光颗粒(圈)(如黑碳(BC)和灰尘,加速了第三极冰川(TPG)的熔化。在这项研究中,我们在TPGS(SP-TPGS)的雪坑中重估了膝盖浓度,测量的LAP质量吸收横截面(MAC),并基于脏雪的光谱反玻璃模型模拟了对冰川变暗和熔化的影响表面能量和质量平衡模型。结果表明,由于它们的发射源短距离,在第三杆周边的雪坑中测量的平均BC浓度远高于内陆藏高原在内陆藏高原中测量的BC浓度,并且平均粉尘浓度通常从北向南下降。 SP-TPG的BC的平均MAC在550nm的3.1至7.7m〜2g〜(1)中,大多数平均光谱值在可见和近红外条带中与MIE理论计算的那些相当,除了乌鲁木齐冰川1号(UR),Syek Zapadniy Glacier(SZ)和Laohugou Glacier No.12(LH)中的那些,而SP-TPG的平均光谱MAS的数量大于大多数在其他地区测量的变化。与纯雪表面相比,BC和粉尘在乌尔,SZ,LH和Renlongba Glacier中减少了Albedo,而BC是其他冰川中最突出的吸收器。 BC和粉尘加速熔化的组合效果30.4-345.9 mm。 (占总质量平衡的19.7-45.3%)通过表面反玻璃变暗(0.06-0.17),并在一个月的消融季节内增加辐射吸收(25.8-65.7 W m〜(2))。本研究提供了一种新的LAP浓度和MAC的新数据集,并有助于阐明这些因素在第三极的低温环境中的角色。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|147746.1-147746.12|共12页
  • 作者单位

    Institute of International Rivers and Eco-security Yunnan University Kunming Yunnan 650091 China Yunnan Key Laboratory of International Rivers and Transboundary Eco-security Yunnan University Kunming 650091 China;

    State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou 730000 China University of Chinese Academy of Sciences Beijing 100049 China;

    Key Laboratory of Wetland Ecology and Environment Northeast Institute of Geography and Agroecology Chinese Academy of Sciences Changchun 130102 China;

    State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou 730000 China;

    Ecole Polytechnique Federate de Lausanne School of Architecture Civil and Environmental Engineering Lausanne Switzerland;

    Key Laboratory of Aerosol Chemistry and Physics Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou 730000 China;

    State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou 730000 China;

    State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou 730000 China;

    State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou 730000 China;

    State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou 730000 China;

    Key Laboratory of Tibetan Environment Changes and Land Surface Processes Institute of Tibetan Plateau Research Chinese Academy of Sciences Beijing 100101 China;

    Key Laboratory of Tibetan Environment Changes and Land Surface Processes Institute of Tibetan Plateau Research Chinese Academy of Sciences Beijing 100101 China;

    State Key Laboratory of Cryospheric Sciences Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou 730000 China;

    School of Geography and Tourism Qufu Normal University Rizhao 276826 China;

    Institute of International Rivers and Eco-security Yunnan University Kunming Yunnan 650091 China Yunnan Key Laboratory of International Rivers and Transboundary Eco-security Yunnan University Kunming 650091 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Light-absorb particles; Black carbon; Albedo darkening; Accelerated melting; Third pole glaciers;

    机译:光吸收颗粒;黑碳;反医生变暗;加速融化;第三极冰川;

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