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金属矿山 ›› 2026, Vol. 55 ›› Issue (1): 236-244.

• 安全与环保 • 上一篇    下一篇

冻融作用下生物炭-蓝藻结皮对矿区土壤镉淋溶迁移行为的影响#br#

刘学士 孙丰慧 刘芮宏 童华美 王 哲   

  1. 内蒙古科技大学能源与环境学院,内蒙古 包头 014010
  • 出版日期:2026-01-15 发布日期:2026-02-24
  • 通讯作者: 王 哲(1979—),女,教授,博士,硕士研究生导师。
  • 作者简介:刘学士(2000—),男,硕士研究生。
  • 基金资助:
    国家自然科学基金项目(编号:52264013);内蒙古自治区直属高校基础科研基金项目(编号:2023CXPT004)。

Effects of Biochar-cyanobacteria Crusts on the Leaching and Migration Behavior of Soil Cadmium in Mining Area under Freeze-thaw Action#br#

LIU Xueshi SUN Fenghui LIU Ruihong TONG Huamei WANG Zhe   

  1. School of Energy and Environment,Inner Mongolia University of Science and Technology,Baotou 014010,China
  • Online:2026-01-15 Published:2026-02-24

摘要: 为了验证冻融作用下生物炭-蓝藻结皮对矿区土壤镉(Cd)淋溶迁移行为的影响,本研究采用室内冻融
循环和模拟降水的方法进行土柱淋溶试验,分析了土壤淋溶液pH、电导率(EC )、Cd2+ 累计释放量、垂直迁移速率以及
纵向迁移量,同时采用Hydrus-1D 模拟土壤中Cd2+长期迁移过程。结果表明,冻融作用会使淋溶过程中土壤淋溶液的
pH 和Cd2+累计释放量升高;冻融循环增加了Cd2+的垂直迁移速率,裸土(CK)、生物炭(B)、蓝藻结皮(C)和蓝藻结皮
+生物炭组(CB)在10~20 cm 土层中Cd2+含量与冻融前相比分别增加了9. 90%、6. 94%、5. 49%和3. 97%,生物炭-蓝
藻结皮协同使用可缓解冻融循环带来的不利影响。在未来20 年时间跨度内,冻融循环前生物炭-蓝藻结皮协同使用
能有效地阻控Cd2+在淋溶作用下的向下迁移。经历冻融循环后CB 组对Cd2+ 的阻控能力下降,淋溶4 a 及以后,Cd2+
的含量超过《地下水质量标准》规定的Ⅲ类水质中Cd2+的标准限值,需建立长期的监测体系。

Abstract: In order to investigate the effects of biochar and cyanobacterial crust on the leaching and migration behavior of
soil cadmium (Cd) in mining areas subjected to freeze-thaw cycles,soil column leaching experiments were conducted using indoor
freeze-thaw cycles and simulated precipitation. The analysis included pH,electrical conductivity,cumulative release,vertical
migration rate,and vertical migration amount of Cd2+ in the soil leachate. Additionally,Hydrus-1D was employed to simulate
the long-term migration of Cd2+ in the soil. The results show that freeze-thaw can increase the pH and Cd2+ cumulative release
of soil leaching solution during leaching. The freeze-thaw cycle increased the vertical migration rate of Cd2+ ,and the Cd2+ content
of CK,B,C and CB in 10~20 cm soil layer increased by 9. 90%,6. 94%,5. 49% and 3. 97%,respectively,compared with
that before freeze-thaw cycle. The synergistic use of biochar and cyanobacterium crust could alleviate the adverse effects of
freeze-thaw cycle. In the next 20 years,the synergistic use of biochar and cyanobacteria crust before freeze-thaw cycle can effectively
inhibit the downward migration of Cd2+ under the action of leaching. After the freeze-thaw cycle,the control of the CB
group to Cd2+ decreased. Following more than four years of leaching,the concentration of Cd2+ exceeded the standard limit for
Class Ⅲ water quality as stipulated in the Groundwater Quality Standard. Therefore,it is imperative to establish a long-term
monitoring system.

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