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Titlebook: Environmental Mechanochemistry; Recycling Waste into Matej Baláž Book 2021 Springer Nature Switzerland AG 2021 waste treatment.waste manage

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Shells and Other Calcium Carbonate-Based Waste, production of hydrophobic filter or applications in dentistry. For shrimp shells, the application for chitin production is specific. An example of transforming bovine bones into efficient lead adsorbent is also provided.
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https://doi.org/10.1007/978-3-031-06340-4uit boards, displays (PDP or LCD), batteries and fluorescent lamps. The most common way of recycling this type of waste is the recovery of valuable metals (including rare Earth ones mainly from fluorescent lamps). In the case of batteries, the electrochemical characterization and tests of potential reuse is often discussed.
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https://doi.org/10.1007/978-1-349-19215-1n the waste. Namely, aluminium, magnesium, iron (steel) and tungsten-based waste recycling using high-energy ball milling are mentioned. The recycled materials are usually used as alloys, but also in the field of hydrogen production and storage.
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,The Burden of Freedom and the Hard Problem,ing using various agents based on calcium or iron. Waste tyre rubber can be efficiently devulcanized, transformed into energy storage materials or even used as a nutrient of Zn for plants by this methodology. Mechanochemistry can also turn acrylic waste or polyethylene bags into activated carbon suitable for electrochemical applications.
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https://doi.org/10.1007/978-3-030-41164-0n the automobile waste like polyhalogenated compounds and heavy metal ions can be efficiently immobilized by this approach. Glass waste and magnets can be recycled in the form of composite materials using high-energy ball milling.
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A New Perspective of Cultural DNA, but also of heavy metals, which can be efficiently leached out upon the assistance of high-energy ball milling. Due to milling, tailings can be embedded into composites with other waste materials (e.g., fly ash).
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