0
Article Tier 2 Nanoplastics Remediation Sign in to save

Bio-Inspired Modification of Polymeric Sponges for Selective Removal of Microplastics and Nanoplastics from Water

No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →

More Papers Like This

Article Tier 2

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.

Article Tier 2

A review on micro and nano plastics removal from aqueous environment through bionanomaterials

AI summary Read the abstract

This review evaluates emerging bionanomaterials — including layered double hydroxides, magnetic nano-Fe3O4, carbon-based adsorbents, and electrospun nanofiber membranes — as green remediation tools for removing micro- and nanoplastics from water, with some achieving up to 90% removal efficiency. Developing effective, scalable, and environmentally benign removal technologies is urgent given that conventional water treatment plants are poorly equipped to intercept the smallest plastic particles that pose the greatest risk to human health.

Article Tier 2

Nano-based Remediation Strategies for Microplastic Pollution in the Environment

AI summary Read the abstract

Researchers reviewed nano-based remediation strategies — including photocatalytic nanomaterials, magnetic nanoparticles, and nano-adsorbents — as alternatives to conventional methods for removing microplastics from water and soil, finding they offer improved efficiency and selectivity for addressing widespread contamination.

Article Tier 2

Harnessing Nanomaterials for the Mitigation of Micro-nanoplastics

AI summary Read the abstract

This review examined how engineered nanomaterials — including metal oxides, carbon-based materials, and zero-valent metals — can photocatalytically degrade, adsorb, or facilitate removal of micro- and nanoplastics from the environment. Nanomaterial-based remediation strategies represent a promising next-generation toolkit for addressing plastic pollution at scales relevant to water treatment and environmental cleanup.

Article Tier 2

Novel Laboratory Experiments for Microplastic Removal from Water

AI summary Read the abstract

Researchers developed and tested novel laboratory experiments using advanced oxidative processes to remove microplastics from water, demonstrating that photocatalysis and other reactive oxygen species-based approaches can effectively degrade plastic particles and reduce microplastic concentrations in contaminated water sources.

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.

Email me about

Share this paper