ISSN 1006-3021 CN11-3474/P
Published bimonthly started in 1979
沉积物的粒度分布特征及砷的次生富集机制
  
关键词:borehole sediment  grain size  arsenic  enrichment  Baoding Plain
基金项目:本文由国家重点研发计划项目(编号: 2021YFA0715900)、广东省基础与应用基础研究基金(编号: 2024A1515030174)、河北省中央引导地方科技发展资金项目(编号: 246Z3601G)和河北省自然科学基金杰青基金项目(编号: D2023504030)联合资助。
作者单位E-mail
段艳华 土壤污染防治与安全全国重点实验室(南方科技大学, 环境科学与工程学院)生态环境部流域地表水-地下水污染综合防治重点实验室(南方科技大学, 环境科学与工程学院) duanyh@sustech.edu.cn 
杨羽霞 生态环境部流域地表水-地下水污染综合防治重点实验室(南方科技大学, 环境科学与工程学院)  
郭文思 生态环境部流域地表水-地下水污染综合防治重点实验室(南方科技大学, 环境科学与工程学院)  
马云杰 生态环境部流域地表水-地下水污染综合防治重点实验室(南方科技大学, 环境科学与工程学院)  
曹文庚 中国地质科学院水文地质环境地质研究所河北省/中国地质调查局地下水污染机理与修复重点实验室  
郑焰 土壤污染防治与安全全国重点实验室(南方科技大学, 环境科学与工程学院)生态环境部流域地表水-地下水污染综合防治重点实验室(南方科技大学, 环境科学与工程学院) yan.zheng@sustech.edu.cn 
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摘要:
Characteristics of Sediment Grain Size Distribution and the Mechanism of Arsenic Secondary Enrichment
      The differential distribution of sediment grain size is a key factor controlling the spatial heterogeneity of arsenic (As) distribution in sediments and is the most sensitive indicator for reconstructing sedimentary environments and tracing the sources of As in sediments. Studying the particle size distribution of sediments as well as the distribution of As in different grain size fractions helps trace the source-sink relationship and release-migration processes of As. This study focused on 68 sediment samples from seven boreholes with different sedimentary facies in the Baoding Plain. The grain size distribution and geochemical characteristics of the sediments were analyzed, and the factors controlling the heterogeneous distribution of the sediment chemical composition were clarified. The main carriers of As in the sediments were identified, and the sources of As in the sediments were elucidated using the As/Fe ratios. The results showed that the grain size distribution of the sediment samples was mainly controlled by lithology, with little difference in grain size distribution among sediments of the same lithology in different sedimentary facies. The heterogeneous distribution of the chemical composition of the sediment was strongly controlled by hydrodynamic sorting. The fine fraction (grain size < 0.062 mm) in the fine-grained (clay to silty sand) and coarse-grained sediments (fine sand to gravel) accounted for (85±12)% and (22±5)%, respectively. The proportion of the fine sediment fraction was significantly positively correlated with the total organic carbon (TOC), total As, and HCl-extractable As/Fe/Mn. The As content in the sediments ranged from 0.5 to 29.5 mg/kg, with an average of (7.6±4.7) mg/kg. The As sediments were primarily derived from the lithosphere, with secondary Fe/Mn oxides as the main carriers. This mobilizable Fe/Mn oxide-loaded As poses a high risk of As release into groundwater.
DUAN Yanhua,YANG Yuxia,GUO Wensi,MA Yunjie,CAO Wengeng,ZHENG Yan.2026.Characteristics of Sediment Grain Size Distribution and the Mechanism of Arsenic Secondary Enrichment[J].Acta Geoscientica Sinica,47(3):454-468.
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