News from LabRulezGCMS Library - Week 21, 2026
GCMSArticle | Application

News from LabRulezGCMS Library - Week 21, 2026

This week we bring you application note by Shimadzu, poster by MDCW / InfoMass and brochure by Thermo Fisher Scientific!
News from LabRulezGCMS Library - Week 21, 2026
Let´s Connect a whole (U)HPLC system without tools and trouble
LCMSArticle | Product

Let´s Connect a whole (U)HPLC system without tools and trouble

Discover how modern UHPLC capillary and fitting systems simplify installation, reduce dead volume, improve reliability, and save valuable laboratory time.
Let´s Connect a whole (U)HPLC system without tools and trouble
Identifying the transition from antemortem to post-mortem odor in cadavers cadavers in an outdoor environment (Darshil Patel, MDCW 2026)
GCMSPresentation | Video

Identifying the transition from antemortem to post-mortem odor in cadavers cadavers in an outdoor environment (Darshil Patel, MDCW 2026)

How does human odor transition after death? Darshil Patel explores early postmortem VOC evolution using GC×GC-TOFMS and reveals how these chemical changes may impact cadaver and rescue dog detection.
Identifying the transition from antemortem to post-mortem odor in cadavers cadavers in an outdoor environment (Darshil Patel, MDCW 2026)
From Raw Signals to Reliable Results: Post-Acquisition Data Workflows in ICP Analysis
ICPMSArticle | Academy

From Raw Signals to Reliable Results: Post-Acquisition Data Workflows in ICP Analysis

Learn how post-acquisition workflows in ICP-OES and ICP-MS improve calibration evaluation, interference correction, QC review, and data reliability.
From Raw Signals to Reliable Results: Post-Acquisition Data Workflows in ICP Analysis
How to Cut HPLC Sample Preparation Time for Derivatizing Amino Acids
LCMSArticle | Science and research

How to Cut HPLC Sample Preparation Time for Derivatizing Amino Acids

Automated in-needle amino acid derivatization for HPLC-FLD reduces sample preparation time, improves reproducibility, and minimizes manual laboratory work.
How to Cut HPLC Sample Preparation Time for Derivatizing Amino Acids
NIST26 EI GC/MS Software and Libraries
GCMSArticle | Product

NIST26 EI GC/MS Software and Libraries

NIST EI Search V4.0 (2026) introduces integrated GC/MS deconvolution, accurate mass EI data support, and an expanded EI library with more than 431,000 spectra for more confident compound identification.
NIST26 EI GC/MS Software and Libraries
Advances in Chromatography and Electrophoresis & Chiranal 2026 - Programme
GCMSICPMSLCMSArticle | Events

Advances in Chromatography and Electrophoresis & Chiranal 2026 - Programme

Experts in chromatography, mass spectrometry, metabolomics, GC×GC, SFC-MS, capillary electrophoresis, and multiomics will meet in Olomouc for lectures, posters, and networking.
Advances in Chromatography and Electrophoresis & Chiranal 2026 - Programme
ISC 2026 Short Course - mzmine for LC-MS data analysis
LCMSArticle | Events

ISC 2026 Short Course - mzmine for LC-MS data analysis

Join the ISC 2026 short course on mzmine for LC-MS data analysis and learn hands-on workflows for feature detection, alignment, compound annotation, and molecular networking.
ISC 2026 Short Course - mzmine for LC-MS data analysis
Proficiency testing schemes for sampling
GCMSICPMSLCMSArticle | Academy

Proficiency testing schemes for sampling

Learn how ISO/IEC 17043 applies to proficiency testing schemes for sampling, including evaluation models, statistical design, homogeneity, assigned values, and sampling uncertainty.
Proficiency testing schemes for sampling
Hydrogen Production from Biomass Gasification Using Dolomite and Mechanical Mixtures of CaO–MgO–K2CO3
ICPMSScientific article | Science and research

Hydrogen Production from Biomass Gasification Using Dolomite and Mechanical Mixtures of CaO–MgO–K2CO3

This study investigates CaO–MgO–K₂CO₃ mixtures for biomass gasification, achieving higher hydrogen yields than conventional dolomite catalysts.
Hydrogen Production from Biomass Gasification Using Dolomite and Mechanical Mixtures of CaO–MgO–K2CO3