0
Article Tier 2 Detection Methods Environmental Sources Sign in to save

Insights into the simultaneous analysis of airborne microplastic and microrubber particles by off-line pyrolysis GC/MS

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

Advancing microplastic analysis: Pyrolysis-GC-MS method development and validation for small polymer particles in complex environmental matrices

AI summary Read the abstract

Scientists developed a more precise lab method to detect and measure tiny plastic particles (microplastics) hiding in soil and river water, testing it on real samples from grasslands and rivers. They found measurable levels of several plastic types, including PVC and polyethylene, in both environments, a reminder that microplastics are widespread in the ecosystems that produce our food and water. Better detection tools like this one are a key step toward understanding how much plastic pollution we're actually exposed to and what risks it might pose to our health.

Article Tier 2

Microplastics Detection Using Pyrolysis-GC/MS-Based Methods

AI summary Read the abstract

Pyrolysis coupled with gas chromatography and mass spectrometry (Py-GC/MS) enables reliable identification of polymer composition in suspected microplastic samples, providing the chemical confirmation required to classify particles accurately. Robust detection methods are foundational to monitoring microplastic pollution levels and understanding human exposure through food and water.

Article Tier 2

Microplastics Detection Using Pyrolysis-GC/MS-Based Methods

AI summary Read the abstract

Researchers reviewed pyrolysis-GC/MS, a technique that burns plastic particles and identifies them by their chemical breakdown products, finding it a reliable method for confirming whether environmental particles are truly microplastics — an important step toward standardizing detection.

Article Tier 2

A polymer dissolution-based protocol for monitoring microplastics by pyrolysis gas chromatography-mass spectrometry

AI summary Read the abstract

Researchers developed a pyrolysis gas chromatography-mass spectrometry protocol using polymer-specific solvent dissolution to reliably quantify six common plastics in environmental soil samples, achieving 78-90% analytical recovery and detection limits as low as 0.014 micrograms.

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