Chitosan derivatives for selective ferric ion chelation

Technology
Conceptual
Company

Innovative chitosan derivatives designed for biodegradable and selective chelation of ferric ions, offering enhanced solubility, detergent properties, and scalability. Ideal for wastewater treatment and sustainable chemical applications.

Overview

Chitosan derivatives present a groundbreaking solution for sustainable and biodegradable chelation of ferric ions. Derived from chitin, the world's second most abundant biopolymer, these derivatives are designed to optimize molecular structure and weight, providing highly selective chelation of ferric ions. This innovation promises enhanced solubility and detergent properties, making it a valuable asset for environmental applications, particularly in wastewater treatment. The potential for intellectual property protection and scalability further enhances its appeal.

Technical specifications

Key features:

  • Selective Chelation: High specificity for Fe(III) ions with low specificity for Ca2+ ions.
  • Enhanced Solubility: Optimized for solubility at pH ≤10, crucial for effective application in various environments.
  • Sustainability: Derived from chitin, a sustainable and biodegradable alternative to conventional chemicals.
  • Versatile Applications: Potential use in wastewater treatment, biomedicine, and other industrial applications.

Research Approach:

  • Preparation of derivatives with varying molecular weights, acetylation, and substitutions.
  • Evaluation through UV titration and solubility tests.
  • Demonstration of detergent properties in relevant environments.
  • Development towards pilot-scale production.
Technology readiness level

Currently at Technology Readiness Level 3, this technology is in the early stages of validation with plans to advance swiftly to TRL 9. The research team is focused on optimizing solubility and chelation properties, with production processes moving towards pilot-scale implementation.


About Minamo

Minamo is a 2023 spinoff from the University of Iceland that develops patent-protected, antimicrobial silicone coatings designed to prevent healthcare-associated infections and biofouling. The company's technology is a two-step process involving environmentally friendly surface activation with hydroxyl amines in a non-toxic solvent, followed by biomolecule coating to confer antimicrobial properties. This approach seeks to enhance the biocompatibility of medical devices, such as implants and orthotics, without relying on toxic additives or antibiotics. By creating surfaces that deter bacterial adhesion, Minamo aims to improve patient safety and long-term device performance in clinical environments.

The technology is significant for the medical device industry as it addresses the critical challenge of infections related to silicone-based medical equipment. Through grants from organizations such as the Icelandic Technology Development Fund and recognition in international innovation forums, Minamo has demonstrated potential for scaling its research. The company actively engages with the global medical and silicone industries to forge collaborations and refine its solutions, aiming to provide a safer, more sustainable alternative that avoids occupational hazards and regulatory barriers typically associated with traditional antimicrobial treatments.

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