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生态学杂志 ›› 2026, Vol. 45 ›› Issue (7): 2121-2127.doi: 10.13292/j.1000-4890.202607.033

• ·矿区生态过程与生态修复专栏· (专栏组织专家: 伍松林、王少锋、王美娥、刘允佳) • 上一篇    下一篇

基于室内土柱模拟的闽南花岗岩风化土壤中铊淋溶释放特征

马纪龙1,潘舒昕1,李帅蓓1,邱梓泰2,王求贵1,肖恩宗1,肖唐付1*   

  1. (1广州大学环境科学与工程学院, 广州 510006; 2安徽科技学院资源与环境学院, 安徽滁州 233100 )
  • 出版日期:2026-07-10 发布日期:2026-07-07

Leaching and release characteristics of thallium in weathered granite soils from southern Fujian: Insights from laboratory soil column simulations.

MA Jilong1, PAN Shuxin1, LI Shuaibei1, QIU Zitai2, WANG Qiugui1, XIAO Enzong1, XIAO Tangfu1*   

  1. (1School of Environmental Science and Engineering, Guangzhou University, Guangzhou 510006, China; 2School of Resources and Environment, Anhui Science and Technology University, Chuzhou 233100, Anhui, China).
  • Online:2026-07-10 Published:2026-07-07

摘要: 本研究旨在探究花岗岩地质高背景区自然降雨条件下,土壤中铊(Tl)的释放特征及其受农业活动与降雨酸度影响的作用机制。选取闽南地区两类不同土壤利用类型的富铊土壤(天然林土壤和柚园种植林土壤)为研究对象,通过动态土柱淋溶实验,模拟不同pH条件(3.0、4.5、5.4)下Tl的释放行为特征。结果显示,两类土壤的初始Tl含量分别为2.21和2.59 mg·kg-1,均明显高于福建省土壤背景值(0.81 mg·kg-1),表明该地区存在显著的Tl地质高背景特征。同类型土壤在不同pH条件下,Tl的淋出含量趋势一致,且随着模拟雨水酸度的增加而显著增加。其中,柚园土壤淋溶液中Tl浓度(1.73±1.20 μg·L-1)明显高于天然林土壤(1.33±0.82 μg·L-1),并显著高于研究区地表水中Tl的实测含量(0.58±0.11 μg·L-1)。这表明土壤中的Tl在降雨淋溶作用下具有进入地表水的风险,且通过垂向迁移影响地下水环境。水文地球化学相关性分析显示,淋溶液中Tl与K、Ca、Mg、Mn等阳离子浓度呈显著正相关(P<0.05),说明其释放过程受多种阳离子协同调控。本研究结果表明,在自然降雨条件下,土壤中Tl的释放与迁移行为受降雨pH值和农业活动的共同影响,农业利用显著加剧了Tl的释放强度和迁移速率,并在地质高背景区存在潜在的地下水及地表水Tl污染风险。


关键词: 铊, 土柱淋溶实验, 地球化学行为, 农业活动

Abstract: We investigated the release characteristics of thallium (Tl) in soils under natural rainfall conditions within a granite geological high-background area, as well as the influences by agricultural activities and rainfall acidity. Two Tl-rich soil types with distinct land-use patterns (natural forest soil and pomelo orchard soil) in southern Fujian were selected. Dynamic soil column leaching experiments were conducted to simulate Tl release behaviors under varying pH conditions (pH 3.0, 4.5, and 5.4). Results showed that the initial Tl concentrations in the two soils were 2.21 and 2.59 mg·kg-1 respectively, significantly exceeding the background value of Fujian Province (0.81 mg·kg-1), indicating pronounced Tl enrichment due to geological high-background conditions. The leached Tl concentrations exhibited a consistent upward trend with increasing rainfall acidity. Notably, Tl concentrations in leachates from pomelo orchard soils (1.73±1.20 μg·L-1) were significantly higher than those from natural forest soils (1.33±0.82 μg·L-1) and exceeded the measured Tl levels in local surface water (0.58±0.11 μg·L-1). These findings suggest that Tl in soils poses a risk of migration into surface water via rainfall leaching and further vertical infiltration into groundwater. Hydrogeochemical correlation analysis revealed significantly positive correlations between Tl and cations such as K, Ca, Mg, and Mn in leachates (P<0.05), indicating co-regulation of Tl release by multiple cations. Overall, this study demonstrates that Tl release and migration in soils under natural rainfall conditions are jointly controlled by rainfall pH and agricultural activities, with agricultural practices significantly intensifying Tl release rates and mobility. This study highlights potential risks of Tl contamination in groundwater and surface water within high geological background regions.


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