0
Article Tier 2 Detection Methods Marine & Wildlife Remediation Sign in to save

Performance Assessment of Hydrocyclone System for Aquatic Microplastics Removal Using Online Microscopy Sensors

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

Assessing Hydrocyclone System’s Efficiency in Water-Borne Microplastics Capture Using Online Microscopy Sensors

AI summary Read the abstract

Researchers evaluated the efficiency of a hydrocyclone-based system for capturing water-borne microplastics, integrating online microscopy sensors to provide real-time monitoring of capture effectiveness and feedback for adaptive control under varying operating conditions.

Article

Comparative Analysis of Methods for Separating Microplastics from Aquatic Environments

AI summary Read the abstract

This study performs a comparative analysis of methods used to separate microplastics from aquatic environments, evaluating their relative effectiveness and limitations. Standardizing extraction and separation protocols is critical for producing comparable, reliable data across microplastic studies worldwide.

Article Tier 2

Microplastics Extraction and Counting from Wastewater and Sludge Through Elutriation and Hydrocyclone

AI summary Read the abstract

A combined elutriation and hydrocyclone method effectively separates and concentrates microplastics from wastewater and sludge, enabling more accurate counting of synthetic fibers and fragments. Improving extraction efficiency in wastewater treatment analysis is critical for quantifying how much microplastic escapes treatment plants and enters waterways.

Article Tier 2

Microplastic Detection and Analysis in Water Samples

AI summary Read the abstract

Thermoanalytical and spectroscopic methods enable detection and quantification of microplastics in water samples, which is critical for tracing pollution sources and protecting drinking water and desalination infrastructure. Robust water monitoring methods are essential for assessing human exposure risks from microplastic-contaminated water supplies.

Article Tier 2

Computational Fluid Dynamics of Microplastics Separation in Hydrocyclones: Effects of Operating Parameters

AI summary Read the abstract

Researchers used computational fluid dynamics to model how hydrocyclones — spinning water separation devices — can remove microplastics from water, testing different operating conditions. This engineering approach offers a scalable, low-cost option for filtering plastic particles from drinking water and wastewater before they reach the environment or human bodies.

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