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GYIG OpenIR  > 环境地球化学国家重点实验室
Investigation of the migration of natural organic matter-iron-antimony nano-colloids in acid mine drainage
Yuqin Zhang; Pan Wu; Jian Zhu; Peng Liao; Elias Niyuhire; Feifei Fan; Wenjian Mao; Lisha Dong; Ruyi Zheng; Yi Li
2024
Source PublicationScience of The Total Environment (IF:4.9[JCR-2016],5.102[5-Year])
Volume918Pages:177666
Abstract

Colloids can potentially affect the efficacy of traditional acid mine drainage (AMD) treatment methods such as precipitation and filtration. However, it is unclear how colloids affect antimony (Sb) migration in AMD, especially when natural organic matter (NOM) is present. To conduct an in-depth investigation on the formation and migration behavior of NOM, iron (Fe), Sb and NOM-Fe-Sb colloids in AMD, experiments were performed under simulated AMD conditions. The results demonstrate significant variations in the formation of NOM-Fe-Sb colloids (1–3–450 nm) as the molar ratio of carbon to iron (C/Fe) increases within acidic conditions (pH = 3). Increasing the C/Fe molar ratio from 0.1 to 1.2 resulted in a decrease in colloid formation but an increase in particulate fraction. The distribution of colloidal Sb, Sb(III), and Fe(III) within the NOM-Fe-Sb colloids decreased from 68 % to 55 %, 72 % to 57 %, and 68 % to 55 %, respectively. Their distribution in the particulate fraction increased from 28 % to 42 %, 21 % to 34 %, and 8 % to 27 %. XRD, FTIR, and SEM-EDS analyses demonstrated that NOM facilitates the formation and crystallization of Fe3O4 and FeSbO4 crystalline phases. The formation of the colloids depended on pH. Our results indicate that NOM-Fe-Sb colloids can form when the pH ≤ 4, and the proportion of colloidal Sb fraction within the NOM-Fe-Sb colloids increased from 9 % to a maximum of 73 %. Column experiments show that the concentration of NOM-Fe-Sb colloids reaches its peak and remains stable at approximately 3.5 pore volumes (PVs), facilitating the migration of Sb in the porous media. At pH ≥ 5, stable NOM-Fe-Sb colloids do not form, and the proportion of colloidal Sb fraction decreases from 7 % to 0 %. This implies that as pH increases, the electrostatic repulsion between colloidal particles weakens, resulting in a reduction in the colloidal fraction and an increase in the particulate fraction. At higher pH values (pH ≥ 5), the repulsive forces between colloidal particles nearly disappear, promoting particle aggregation. The findings of this study provide important scientific evidence for understanding the migration behavior of NOM-Fe-Sb colloids in AMD. As the pH gradually shifts from acidic to near-neutral pH during the remediation process of AMD, these results could be applied to develop new strategies for this purpose.

 

DOI10.1016/j.scitotenv.2024.170666
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Indexed BySCI
Language英语
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Cited Times:2[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/15746
Collection环境地球化学国家重点实验室
Affiliation1.College of Resources and Environmental Engineering, Key Laboratory of Karst Georesources and Environment, Guizhou Karst Environmental Ecosystems Observation and Research Station, Ministry of Education, Guizhou University, Guiyang 550025, China
2.State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
3.Ecole Normale Supérieure, Département des Sciences Naturelles, Centre de Recherche en Sciences et de Perfectionnement Professionnel, Boulevard Mwezi Gisabo, B.P.: 6983 Bujumbura, Burundi
4.Guizhou Institute of Soil and Fertilizer, Guiyang 550006, China
5.Guizhou Institute of Technology, Guiyang 550003, China
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GB/T 7714
Yuqin Zhang,Pan Wu,Jian Zhu,et al. Investigation of the migration of natural organic matter-iron-antimony nano-colloids in acid mine drainage[J]. Science of The Total Environment,2024,918:177666.
APA Yuqin Zhang.,Pan Wu.,Jian Zhu.,Peng Liao.,Elias Niyuhire.,...&Yi Li.(2024).Investigation of the migration of natural organic matter-iron-antimony nano-colloids in acid mine drainage.Science of The Total Environment,918,177666.
MLA Yuqin Zhang,et al."Investigation of the migration of natural organic matter-iron-antimony nano-colloids in acid mine drainage".Science of The Total Environment 918(2024):177666.
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