0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Detection Methods Human Health Effects Marine & Wildlife Remediation Sign in to save

Rapid, In Situ and Non‐Destructive Analysis for the Evaluation of Microplastics Degradation in Water Via Haze Measurement

Chemistry - Methods 2025 1 citation ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 53 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Rossella Greco, Rossella Greco, Rossella Greco, Rossella Greco, Rossella Greco, Lucia Baixauli Marin, J. Catalá, Lucia Baixauli Marin, Lucia Baixauli Marin, Lucia Baixauli Marin, J. Catalá, Viktorija Pankratova, Claudiu Bulbucan, Karina Thånell, Wei Cao Wei Cao Wei Cao Wei Cao

Summary

Researchers developed a new non-destructive method for evaluating microplastic degradation in water using haze measurements that track changes in light scattering. They tested the approach during photocatalytic degradation of polystyrene and polymethylmethacrylate microplastics using cobalt-based catalysts. The study suggests that haze measurement could be a cost-efficient and practical tool for monitoring microplastic removal in water treatment processes.

Polymers

Abstract The presence of microplastics (MPs) in water represents a current problem for marine life and a future serious issue for human health. This is pushing towards new approaches for the removal of MPs and, hence, their characterization and evaluation, which up to now has represented a limit for tentative procedures for their degradation. Herein, we reported on a new facile, in situ and non‐destructive approach for the qualitative analysis of polystyrene and polymethylmethacrylate MPs in water and their evaluation in photocatalytic degradation with the use of Co 3 O 4 @Co(OH) 2 heterostructures. The use of haze measurements allows to see the changes in light scattering of the MPs aqueous dispersions during the photocatalytic degradation and to know in situ the degradation of the MPs in the catalytic process. Significant changes in haze values were found in photocatalysis with Co 3 O 4 @Co(OH) 2 , in contrast to no variations in control test using Co(OH) 2 and Co 3 O 4 . Synchrotron‐radiation based scanning transmission x‐ray spectroscopy further denotes strong interactions between the heterostructures with MPs and oxidization of the latter. The possible comparison of different techniques suggests that haze measurements could be a valid and cost‐efficient methodology for the future evaluation of photocatalytic degradation of MPs in water.

Sign in to start a discussion.

Share this paper