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March 31, 2026Advanced Industrial and Engineering Polymer Research6 citationsOpen Access

Green Hydrogel as Sustainable Adsorbents: Bridging Biopolymer & Environmental Remediation

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YVYaksha VermaAVAkshay vermaJSJayati Sharma

Key Points

  • This review aims to explore how the structure and properties of green hydrogels influence their effectiveness as adsorbents in wastewater treatment.
  • Analysis of green hydrogels synthesized from biopolymers and biowaste.
  • Comparison of crosslinking techniques and their effects on adsorption characteristics.
  • Evaluation of pollutant removal mechanisms and regeneration potential.
  • Identified key factors affecting adsorption capacity and selectivity of green hydrogels.
  • Demonstrated effective removal of heavy metals and dyes from wastewater.
  • Outlined challenges in scaling up the use of green hydrogels in real-world applications.

Abstract

To limit increasing amounts of water pollution and to further the Circular Bioeconomy paradigm, there is a need for the development of sustainable and cost-effective adsorbents. Currently, there is much research being conducted on the use of biopolymers-based GHs in treating wastewater, however, most of the literature is focused on their materials properties so that little insight is provided into how the structure of hydrogels relates to their adsorption characteristics, reuse potential and practicality in real-life situations. Therefore, this review provides a critical overview of green hydrogels based on renewable resources and the waste generated during their production, using a structure-property-performance format. This paper will discuss the influence of polymer chemistry, functional group distribution, crosslinking techniques and network architecture on the adsorption capacity, selectivity, mechanical stability and regeneration potential of GHs. The assessment of the removal of the major classes of pollutants has been systematically evaluated in terms of the dominant adsorption mechanisms that could occur. Additionally, the green synthesis approaches are critically analyzed for their sustainability, durability, and scalability. Furthermore, the key limitations have been identified to highlight the gaps between laboratory studies and practical application. By bringing together a comparative analysis of different approaches, the mechanistic basis for adsorption, and application-based challenges, this review provides design principles and directions for future work to rationally develop next-generation, green hydrogel adsorbents for sustainable wastewater remediation. • GHs synthesized from renewable biopolymers. • Natural crosslinkers enable eco-friendly hydrogel fabrication. • Efficient adsorption of heavy metals and dyes. • Biowaste-derived hydrogels promote circular sustainability. • Promising materials for future wastewater remediation.

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Cite This Study

Verma et al. (2026) studied this question.

synapsesocial.com/papers/69cb645fe6a8c024954b8a24https://doi.org/10.1016/j.aiepr.2026.03.003
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