Thermo Fisher Scientific has a strong commitment to supporting laboratories charged with the task of researching and monitoring POPs. Our commitment ensures high productivity, added value solutions for some of the most challenging POPs determinations. To reinforce our commitment, we have established a POPs Center of Excellence; staffed with experts in POPs analysis, to be used as a direct resource for our customers and associates.
Join the experience and receive expert testimonials regarding current global environmental threats. Review on demand presentations of today’s leading environmental analysts as they explore the various approaches and techniques used in the analysis of known and emerging environmental contaminants. Download for future reference or share with colleagues.
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High Resolution Multiple Ion Detection (MID) Data Acquisition for Target Compound Analysis using the DFS High Resolution Mass Spectrometer
DFS, GC-HRMS, Mass Accuracy, MID, POPs
Confirmation of Low Level Dioxins and Furans in Dirty Matrix Samples using High Resolution GC/MS
DFS, Dioxins, Dioxin-like PCBs, Furans, HRGC/HRMS
PCDD/F Screening at the Maximum Residue Level for Food Safety Analysis using Highly Selective Triple Quadrupole GC/MS/MS
EPA 1613A, Food Safety Analysis, Multiple Reaction Monitoring (MRM), PCP, PCDD/PCDF, Screening
DFS - Analysis of Brominated Flame Retardants with High Resolution GC/MS
Flame Retardants (PBDE), HRGC/HRMS, Multiple Ion Detection (MID), Persistent Organic Pollutants (POPs), RoHS/WEEE
Quantification of 16 EC Priority PAH Components with Magnetic Sector GC-HRMS
DFS, Food Analysis, HRGC/HRMS, Quantitation
High Sensitive MID Detection Method for Toxaphenes by High Resolution GC/MS
DFS, Environmental, HRGC/HRMS, Persisant Organic Pollutants (POPs), Quantitation
Sensitive and Accurate Quantitation of Perfluorinated Compounds in Human Breast Milk using Selected Reaction Monitoring Assays by LC/MS/MS
PFC-free Accela, TSQ Vantage, High Resolution MS, H-SRM, Perfluorinated Compounds
Fast, ultra-sensitive analysis of PBDEs in food using advanced GC-MS/MS technology
PBDEs, trace analysis, GC-MS/MS, isotope dilution
Determination of short - and medium-chained chlorinated paraffins in salmon samples using GC Orbitrap-MS
Chlorinated paraffins, polychlorinated biphenyls, PCBs,
Determination of Per- and Polyfluorinated Alkyl Substances (PFAS) in Drinking Water
Persistent Organic Pollutants (POPs) Workflow INTEGRATES Sample Prep
Persistent organic pollutants (POPs) are chemical substances that are of international concern. As a result of industrial activity, they are widely spread in the environment and persist for many years after formation.
Designed for Highest Sensitivity
The DFS High Resolution GC/MS is the highest performance, most efficient and simple to operate magnetic sector mass spectrometer ever built.
The Thermo Scientific EXTREVA ASE system is the first fully automated sample preparation instrument for solid and semi-solid samples. Perform sample extraction, in-cell cleanup, and evaporation in one seamless operation.
Leading the way in regulatory POPs quantification.
A Leading Solution for Automating the Laboratory and Integrating LIMS with the Enterprise.
|Case Study||Meeting the Laboratory Productivity Needs of High Volume, Ultra Trace Analysis with DualData GC-MS Workflow Solution|
|Case Study||Münster’s Chemical and Veterinary Analytical Institute|
Optimization of Analytical Conditions for Improved Sensitivity in the Analysis of Deca-BDE on a DFS High Resolution GC/HRMS system
Triple-Quadrupole GC-MS/MS Technique for PCDD, PCDF and DL-PCB Determination in Milk
Instrument Performance Standards: A new Concept for fast Routine Performance Checks and Method Development in GC/MS Analysis of Dioxins and Furans
EPA Method 1699: High Selective Multi-residue HRGC/HRMS Pesticide
Time Controlled Cryogenic Zone Compression (T-CZC): A Novel Gas Chromatographic Tool for Increasing Sensitivity
|Describes how combining time-controlled CZC with the sensitive and selective detection of high resolution mass spectrometry could push absolute instrumental detection limits from low femtogram down into the attogram range for specific POPs.|
|Webinar||Become a Smooth GC and GC-MS Operator|
|Webinar||Persistent Organic Pollutants (POPs) Workflow Integrates Sample Prep|
|Webinar||Leading Technologies in Dioxins Analysis|
|Webinar||Advancements in POPs Analysis: Increased Reproducibility and Efficiency with Decreased Cost|