Journal of Jilin University(Earth Science Edition) ›› 2024, Vol. 54 ›› Issue (3): 980-992.doi: 10.13278/j.cnki.jjuese.20220312

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Effects of Asbestos Tailings Pond on Geochemistry and Microbial Diversity of Contaminated Soils

Li Yingjun1, Song Zefeng2, Yang Yuesuo3,Deng Yanan1,Ren Hongyu1, Cai Kui4,5,Hu Ziru6   

  1. 1. Qinghai 906 Engineering Survey and Design Institute, Qinghai Bureau of Environmental Geology Exploration, 
    Xining 810007, China
    2. Institute of Resources and Environmental Engineering, Hebei GEO University, Shijiazhuang 050031, China
    3. College of New Energy and Environment, Jilin University, Changchun, 130021, China
    4. Institute of Geological Survey, Hebei GEO University, Shijiazhuang 050031, China
    5. Hebei Key Laboratory of Strategic Critical Mineral Resources, Hebei GEO University, Shijiazhuang 050031, China
    6. School of Water Resources and Environment, Hebei GEO University, Shijiazhuang 050031, China
  • Online:2024-05-26 Published:2024-06-01
  • Supported by:
    Supported by the Scientific Research Project of Qinghai Environmental Geological Exploration Bureau (KJ0120190626) and the National Key Research and Development Program of China (2019YFC1804800)

Abstract:  The asbestos composition and distribution, spatial migration and transformation of involved heavy metals, and their effects on microbial community structure and biodiversity in the soil surroundings in the Xiaobabao asbestos tailings ponds in Qilian County, Qinghai Province were investigated in this study, aiming at understanding the risk of asbestos pollution to soil environment and providing technical support for further treatment and mitigation of asbestos pollution. The results of investigations showed that the major mineral components in the field soil include quartz, clinochlore, serpentine, ferropargasite and albite and so on. Serpentine was identified as the representative mineral of asbestos. The results indicated that different spatial distribution of variouslysourced heavy metals along both vertical and longitudinal profiles across the site; The distribution trend of CaO was closely related to the serpentine minerals along these typical profiles. The spatial distribution of Cr showed a similar pattern with asbestos; The mass fraction of Cr exceeded the risk control value for soil contamination of construction land (78 mg/kg), especially in the asbestos tailings slag where the mass fraction of Cr greatly exceeded the risk control level. The asbestos stress reduced biodiversity of the local soil, leading to a great impact on soil microbial community structure. 


Key words: soil, asbestos, mineral, heavy metals, migration and transformation, distribution

CLC Number: 

  • P59
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