Development and Application of Advanced Materials for Oil­ Spill Cleanup and Contaminant Removal

Year : 2026 | Volume : 13 | Issue : 01 | Page : 17 25
    By

    S. V. Joshi,

  • S. P. Borhade,

  • K. G. Mhalunde,

  • S. D. Sambare,

  • V. P. Bhaurkar,

  1. Assistant Professor, Department of Mechanical Engineering, Sanjivani College of Engineering, Kopargaon, Maharashtra, India
  2. Assistant Professor, Department of Mechanical Engineering, Sanjivani College of Engineering, Kopargaon, Maharashtra, India
  3. Assistant Professor, Department of Mechanical Engineering, Sanjivani College of Engineering, Kopargaon, Maharashtra, India
  4. Assistant Professor, Department of Mechanical Engineering, Sanjivani College of Engineering, Kopargaon, Maharashtra, India
  5. Assistant Professor, Department of Mechanical Engineering, Sanjivani College of Engineering, Kopargaon, Maharashtra, India

Abstract

Oil spills and environmental contaminants representing critical challenges to ecosystems and human health, demanding innovative and effective solutions. Advanced materials have emerged as transformative tools in addressing these issues, offering superior efficiency and sustainability compared to conventional methods. They are environmental and ecological threats, necessitating effective cleanup and removal strategies. The development and application of advanced materials are developing promising solutions for addressing the challenges. This study focuses on the design, synthesis, and deployment of innovative materials for oil spill remediation and contaminant removal, emphasizing their efficiency, sustainability, and cost-effectiveness. Key materials, such as functionalized graphene, aerogels, metal-organic frameworks (MOFs), and bio-based sorbents, are reviewed for their exceptional adsorption capacity, selectivity, and reusability. Recent advancements highlight the potential of hydrophobic and oleophilic materials to efficiently separate oil and water, while nanomaterials exhibit unparalleled properties for tackling contaminants at a molecular level. The findings underscore the transformative potential of advanced materials in safeguarding ecosystems, promoting sustainable practices, and supporting global environmental conservation efforts. This research shows the way for interdisciplinary innovations that combine material science, environmental engineering, and biotechnology to develop eco-friendly solutions for a cleaner and more sustainable future.

Keywords: Chemical dispersant, in-situ burning, oil-spillage, contaminants and sustainable environment

[This article belongs to Journal of Water Pollution & Purification Research ]

How to cite this article:
S. V. Joshi, S. P. Borhade, K. G. Mhalunde, S. D. Sambare, V. P. Bhaurkar. Development and Application of Advanced Materials for Oil­ Spill Cleanup and Contaminant Removal. Journal of Water Pollution & Purification Research. 2026; 13(01):17-25.
How to cite this URL:
S. V. Joshi, S. P. Borhade, K. G. Mhalunde, S. D. Sambare, V. P. Bhaurkar. Development and Application of Advanced Materials for Oil­ Spill Cleanup and Contaminant Removal. Journal of Water Pollution & Purification Research. 2026; 13(01):17-25. Available from: https://journals.stmjournals.com/jowppr/article=2026/view=238466


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Regular Issue Subscription Original Research
Volume 13
Issue 01
Received 24/02/2026
Accepted 06/03/2026
Published 14/03/2026
Publication Time 18 Days


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