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高校地质学报 ›› 2025, Vol. 31 ›› Issue (04): 397-404.DOI: 10.16108/j.issn1006-7493.2024060

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活性氧化镁对铅污染下蜀土抗降雨侵蚀影响试验研究

徐 跃,沈征涛*   

  1. 南京大学 地球工程与科学学院,南京 210023
  • 出版日期:2025-08-20 发布日期:2025-08-20

Research on the Effect of Reactive Magnesium Oxide on the Resistance of Lead-contaminated Xiashu Soil to Rainfall Erosion

XU Yue,SHEN Zhengtao*   

  1. School of Earth Sciences and Engineering, Nanjing University, Nanjing 210023, China
  • Online:2025-08-20 Published:2025-08-20

摘要: 活性氧化镁作为一种新型土壤修复剂,因其高效的重金属固定能力、优越的耐久缓冲能力等特性在治理重金属污染土
方面具有广阔的应用前景。以往研究集中于活性氧化镁与重金属之间的化学作用机制,忽视了其对土体水理力学性质的影响。文章以活性氧化镁修复的5000 mg/kg人工铅污染下蜀土为研究对象,通过室内模拟降雨试验,研究了活性氧化镁对铅污染下蜀土抗降雨侵蚀的影响。结果表明,5%活性氧化镁处理导致试样径流量增加24.2%,而径流中的铅浓度下降69.8%。试样渗流中的铅浓度在试验初期没有太大的差异,但随着试验的进行,素土试样收集到的渗流中铅浓度增大,而添加了活性氧化镁的试样渗流中的铅浓度变化不明显。活性氧化镁能明显降低试样侵蚀流失的土质量(降低82.7%)。由径流侵蚀流失的沉积物黏粒占比(17%)随着活性氧化镁处理而减少,砂粒(6%)占比则升高,相比于素土试样的沉积物粒度组成有较大的改变(9%黏粒和12%砂粒)。相比于素土试样,含有活性氧化镁的试样径流侵蚀流失的沉积物中携带的铅总量下降了21%。该研究结果表明,活性氧化镁能显著增强铅污染下蜀土抗降雨侵蚀能力,还能固定重金属,在铅污染土壤修复中具有较好的应用潜力。

关键词: 活性氧化镁, 降雨侵蚀, 地表径流, 铅污染, 土壤修复

Abstract: As a new type of soil remediation agent, reactive magnesium oxide has a broad application prospect in the treatment of heavy metal contaminated soils due to its efficient heavy metal immobilization capacity, superior durability buffering capacity and other characteristics. Previous studies have focused on the chemical reaction mechanism between reactive MgO and heavy metals, neglecting its effect on the hydromechanical properties of soil. In this paper, the effect of reactive magnesium oxide on the resistance of Xiashu soil to rainwater erosion was investigated by indoor simulated rainfall test. The soil was artificially contaminated by lead at the concentration of 5000 mg/kg. It was found that 5% reactive MgO treatment led to a 24.2% increase in the runoff volume of the specimen, while the lead concentration in the runoff decreased by 69.8%. The lead concentration in the infiltration of the specimens did not show much difference at the beginning of the test, but as the test progressed, the lead
concentration in the infiltration collected from the soil specimens increased, while the lead concentration in the infiltration of the specimens with the addition of magnesium oxide did not change significantly. Reactive magnesium oxide significantly reduced the mass of erosion in the samples (by 82.7%). The proportion of clay (17%) and sand (6%) in the sediment carried by the runoff decreased with MgO treatment, and the sediment size composition changed considerably compared to that of the soil samples (9% clay and 12% sand). The total amount of lead carried in the sediments of the specimens containing MgO decreased by 21% compared to the plain soil specimens. The results of the present study indicate that reactive MgO can significantly enhance the erosion resistance of Xiashu soil with lead contamination, and also immobilize heavy metals, which has a good potential for application in the remediation of lead-contaminated soil.

Key words: reactive magnesium oxide, rainfall erosion, surface runoff, lead contamination, soil remediation

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