We can't find the internet
Attempting to reconnect
Something went wrong!
Hang in there while we get back on track
Simultaneous removal of diclofenac, triclosan, and microplastics using graphene oxide-chitosan sponges
No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →
More Papers Like This
Synthesis of recyclable and light-weight graphene oxide/chitosan/genipin sponges for the adsorption of diclofenac, triclosan, and microplastics
AI summary Read the abstract
Researchers created a lightweight, recyclable sponge made from graphene oxide, chitosan, and genipin that can effectively remove microplastics and pharmaceutical contaminants from water. The sponge maintained its effectiveness through multiple reuse cycles, making it a practical and affordable water treatment option. This type of technology could help reduce human exposure to microplastics and other harmful substances in drinking water.
Degradation and optimization of microplastic in aqueous solutions with graphene oxide-based nanomaterials
AI summary Read the abstract
Graphene oxide-based metal oxide nanomaterials degraded up to 50% of polyethylene microplastics under ultraviolet light within 480 minutes, with degradation kinetics following a pseudo-first-order model and confirmed by carbonyl group formation. This photocatalytic approach offers a promising, environmentally friendly method for removing microplastics from water that bypasses the size limitations of conventional filtration systems.
Nanoparticle in Removal of Microplastics
AI summary Read the abstract
Scientists found that tiny particles made of nickel can soak up microplastics from water, removing up to 83% of them in lab tests. This matters because microplastics are showing up in our drinking water, food, and even our bodies, and this cheap, eco-friendly method could one day help water treatment plants filter them out before they reach our taps. That said, this is early-stage lab research, so more testing is needed before it becomes a real-world solution.
Sorption of Pharmaceuticals on Microplastics
AI summary Read the abstract
Researchers reviewed the sorption of pharmaceuticals onto microplastics in the environment, finding that microplastics act as vectors for pharmaceutical contaminants, potentially enhancing their transport and bioavailability in aquatic ecosystems and increasing combined toxicity risks.
Sorption of Pollutants on Microplastics
AI summary Read the abstract
Researchers reviewed how microplastics act as sponges for environmental pollutants like pesticides, heavy metals, and pharmaceuticals, absorbing and concentrating these chemicals in ways that can amplify their toxicity when ingested by marine animals — and potentially by humans.
Research digests by email
When a large batch of papers lands in the Atlas, we read through it and send a short write-up of what stood out.