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April 24, 2026Materials3 citationsOpen Access

Review of Magnetic Adsorbents for Heavy Metals in Sludge Leachate: Synthesis, Mechanism, and Performance Evaluation

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SZShenglong ZhongSHShouming HuMLMing Li

Key Points

  • This review aims to consolidate the latest findings on magnetic adsorbents for effective heavy metal removal from sludge leachate.
  • Systematic review of current research on the synthesis and performance of magnetic adsorbents.
  • Analysis of various synthesis strategies and adsorption mechanisms.
  • Evaluation of challenges in practical applications and suggestions for future research.
  • Magnetic adsorbents show promising adsorption performance and convenience for separation.
  • Key synthesis strategies include magnetic core preparation and metal-organic frameworks.
  • Challenges in large-scale synthesis and regeneration efficiency are highlighted, requiring further investigation.

Abstract

The environmental challenges posed by heavy metal contamination in sludge leachate are becoming increasingly severe, necessitating the development of highly efficient remediation technologies. Among various treatment approaches, magnetic adsorbents have garnered significant attention as a promising solution due to their outstanding adsorption performance, convenient magnetic separation characteristics, and potential for regeneration. This paper systematically reviews the latest research progress on magnetic adsorbents designed for the complex system of sludge leachate, covering synthesis methods, surface functionalization, adsorption mechanisms, and performance evaluation. Key synthesis strategies are analyzed, including magnetic core preparation, inorganic coating, carbon composites, organic polymer grafting, functional molecule impregnation, and metal–organic framework (MOF) composites. The mechanisms by which these strategies influence material adsorption capacity, selectivity, and stability are elucidated. Despite significant achievements in laboratory studies, practical applications still face challenges such as large-scale synthesis, regeneration efficiency, cyclic stability, and adaptability to complex water bodies. Future research should focus on green synthetic pathways to advance the industrial application of structurally functional magnetic composite materials, providing systematic solutions from material design to process optimization for the sustainable remediation of heavy metal contamination in sludge leachate.

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Cite This Study

Zhong et al. (2026) studied this question.

synapsesocial.com/papers/69eb0ac4553a5433e34b4aeehttps://doi.org/10.3390/ma19091691
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