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Biomass-Derived Materials for Environmental Applications, 1st Edition by Ioannis Anastopoulos, Eder Claudio Lima, Lucas Meili, Dimitrios A Giannakoudakis

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458
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5.37 MB
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About this ebook
The book "Biomass-Derived Materials for Environmental Applications," edited by Ioannis Anastopoulos, Eder Claudio Lima, Lucas Meili, and Dimitrios A. Giannakoudakis, provides a comprehensive review of bio-based materials designed to tackle global pollution and environmental degradation. [1, 2]
The text focuses on the production, characterization, and application of sustainable materials for environmental remediation. The topics covered in the book are organized into distinct categories based on material types and structural processes: [1]
Core Topics Covered
  • Material Classification & Synthesis: In-depth examination of the preparation, synthetic methodologies, and engineered physicochemical features of several bio-based sources, including:
    • Lignocellulosic Materials: Utilizing plant-based materials and forestry/agricultural byproducts (such as wood waste) for treatment purposes.
    • Natural Clays: The environmental utility and adaptation of earth-derived clay minerals.
    • Carbonaceous Materials: Production of renewable carbons, biochars, and activated carbons.
    • Composites & Advanced Materials: Hybrid networks and advanced architectures originating from natural materials. [1, 2]
  • Environmental Remediation & Pollution Control:
    • Active deployment strategies for the mitigation of pollutant discharges in terrestrial and aquatic environments.
    • Heavy focus on adsorption technologies, advanced oxidation, and modern separation processes to eliminate emerging contaminants, industrial effluents, and toxic chemical species from wastewater. [1, 2, 3]
  • Characterization Techniques: Methodologies linking the physical properties of biomass (such as porosity and surface area) directly to their dynamic removal mechanisms and performance capacity. [1]
  • Future Frameworks: Critical discussions, analytical conclusions, and future perspectives regarding technical challenges and scalability in green chemistry.

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