Researchers from National Taiwan University recently investigated the use of graphene oxide (GO) within a multifunctional nanocomposite for removing veterinary antibiotics – including sulfamethoxazole, oxytetracycline, and enrofloxacin – from livestock wastewater. The team created a nanocomposite that removes 95% of these antibiotics from water, providing a sustainable tool against drug pollution and antimicrobial resistance.
Image credit: Chemical Engineering Journal
The hybrid nanocomposite merges two clean-up strategies – adsorption and photocatalysis – into a single system. By integrating graphene oxide, biochar, and titanium dioxide (TiO₂), the researchers produced a porous, high-surface-area material that first attracts antibiotics and then breaks them down under ultraviolet light.
Researchers from National Taiwan University recently investigated the use of graphene oxide (GO) within a multifunctional nanocomposite for removing veterinary antibiotics – including sulfamethoxazole, oxytetracycline, and enrofloxacin – from livestock wastewater. The team created a nanocomposite that removes 95% of these antibiotics from water, providing a sustainable tool against drug pollution and antimicrobial resistance.
Image credit: Chemical Engineering JournalThe hybrid nanocomposite merges two clean-up strategies – adsorption and photocatalysis – into a single system. By integrating graphene oxide, biochar, and titanium dioxide (TiO₂), the researchers produced a porous, high-surface-area material that first attracts antibiotics and then breaks them down under ultraviolet light.
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