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The effect of microplastics on the adsorption of ofloxacin and Cu (II) by sawdust biochar
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Potential Impacts of polypropylene Microplastics on the Adsorption Process of Cr(VI) by Biochar
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Biochar is a cheap, eco-friendly material used to filter toxic chromium out of contaminated water, but this study found that when microplastics are mixed in, they interfere with biochar's ability to soak up this pollutant. This matters because microplastics are now everywhere in our water systems, and if they're quietly undermining our water treatment methods, harmful chemicals like chromium could be slipping through and ending up in the water we drink.
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This study found that both polypropylene and polystyrene microplastics significantly inhibited copper ion adsorption by a novel beta-cyclodextrin modified biochar in water remediation tests, reducing maximum copper uptake by up to 24% through surface blocking and pore occlusion. The results reveal that co-occurring microplastics can undermine the effectiveness of engineered adsorbents for heavy metal removal, complicating real-world water treatment in contaminated environments where multiple pollutants coexist.
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Researchers tested two types of biochar for their ability to adsorb both conventional and biodegradable microplastics, finding that biochar may offer a sustainable, low-cost method for capturing these particles from contaminated environments.
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Researchers review biochar as a tool for adsorbing and immobilizing microplastics from environmental media, finding it significantly increases microplastic removal capacity, while cautioning that biochar can leach toxic compounds including PAHs and heavy metals, and calling for long-term studies and careful management before widespread application.
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