Beads with a nanofiber core. This is a better way to purify water.
Article | Science and research

Beads with a nanofiber core. This is a better way to purify water.

The HYMNA project combines MBR and MBBR technologies with nanofiber biomass carriers to improve ammonia nitrogen removal and enable modular wastewater treatment.
Beads with a nanofiber core. This is a better way to purify water.
Regulated Drinking Water Testing: PFAS Detection, Sample Prep & Real Lab Insights
Interview | Video

Regulated Drinking Water Testing: PFAS Detection, Sample Prep & Real Lab Insights

Discover how regulated drinking water laboratories use GC-MS and LC-MS, rigorous QC protocols, and PFAS-focused workflows to ensure reliable analytical results and protect public health.
Regulated Drinking Water Testing: PFAS Detection, Sample Prep & Real Lab Insights
VOC Analysis in Drinking Water: Achieving ppt-Level Sensitivity with ITEX Dynamic Headspace GC-MS
Article | Water

VOC Analysis in Drinking Water: Achieving ppt-Level Sensitivity with ITEX Dynamic Headspace GC-MS

Trace-level VOCs shape drinking water quality and perception. ITEX dynamic headspace GC-MS enables ppt-level sensitivity for regulatory compliance and reliable odor-active compound analysis.
VOC Analysis in Drinking Water: Achieving ppt-Level Sensitivity with ITEX Dynamic Headspace GC-MS
Rapid and Sensitive Quantification of Nano- and Microplastics in Water, Sediment, and Biological Tissue by Pyrolysis-Gas Chromatography Tandem Mass Spectrometry with Dynamic Reaction Monitoring
Scientific article | Science and research

Rapid and Sensitive Quantification of Nano- and Microplastics in Water, Sediment, and Biological Tissue by Pyrolysis-Gas Chromatography Tandem Mass Spectrometry with Dynamic Reaction Monitoring

This study presents a sensitive Py-GC–MS/MS method using dynamic reaction monitoring to quantify nano- and microplastics in water, sediment, and biota at nanogram levels.
Rapid and Sensitive Quantification of Nano- and Microplastics in Water, Sediment, and Biological Tissue by Pyrolysis-Gas Chromatography Tandem Mass Spectrometry with Dynamic Reaction Monitoring
10 Facts About Water You Might Not Know – From a Chemist’s Perspective
Article | Water

10 Facts About Water You Might Not Know – From a Chemist’s Perspective

Water is far more than just H₂O. Discover 10 fascinating facts about its physicochemical mysteries — from isotopes and ice forms to lab purity standards and its vital role in scientific research.
10 Facts About Water You Might Not Know – From a Chemist’s Perspective
News from LabRulezGCMS Library - Week 40, 2025
Article | Application

News from LabRulezGCMS Library - Week 40, 2025

This week we bring you application notes by Agilent Technologies and EST Analytical, poster by Shimadzu and smart note by Thermo Fisher Scientific!
News from LabRulezGCMS Library - Week 40, 2025
Integrating AF4 and Py-GC-MS for Combined Size-Resolved Polymer-Compositional Analysis of Nanoplastics with Application to Wastewater
Scientific article | Science and research

Integrating AF4 and Py-GC-MS for Combined Size-Resolved Polymer-Compositional Analysis of Nanoplastics with Application to Wastewater

A novel AF4-MALS and Py-GC-MS workflow enables size-resolved polymer analysis of nanoplastics in wastewater. It improves detection, quantification, and offers insights into polymer composition.
Integrating AF4 and Py-GC-MS for Combined Size-Resolved Polymer-Compositional Analysis of Nanoplastics with Application to Wastewater
USEPA 524.2 Method Validation Using the Evolution Purge and Trap Concentrator and the Centurion WS Autosampler
Article | Application

USEPA 524.2 Method Validation Using the Evolution Purge and Trap Concentrator and the Centurion WS Autosampler

Explore how the Evolution purge & trap and Centurion WS autosampler streamline USEPA 524.2 method validation, improving sensitivity, reducing moisture issues, and ensuring compliance.
USEPA 524.2 Method Validation Using the Evolution Purge and Trap Concentrator and the Centurion WS Autosampler
Rapid Identification of Hydrogen Isotopes in Water Mixtures by FTIR Spectroscopy
Scientific article | Science and research

Rapid Identification of Hydrogen Isotopes in Water Mixtures by FTIR Spectroscopy

A rapid FTIR method was developed to measure hydrogen isotope ratios in water. Using molecular bending vibrations, it achieved ~0.5% sensitivity and ~1% deviation, proving reliable for H2O/D2O mixtures.
Rapid Identification of Hydrogen Isotopes in Water Mixtures by FTIR Spectroscopy
Monitoring of 12 DBPs in drinking water using a microextraction TD-GC-MS method
Scientific article | Science and research

Monitoring of 12 DBPs in drinking water using a microextraction TD-GC-MS method

A green HS-HiSorb-TD-GC-MS method for 12 DBPs in drinking water shows high sensitivity, accuracy, and compliance with EU 2020/2184, supporting sustainable water quality monitoring.
Monitoring of 12 DBPs in drinking water using a microextraction TD-GC-MS method