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Vapor Analysis System

Advanced measurement through triple filtration Volatility – Mobility – Molecular Mass

For superior Senspitivity and Selectivity Vapor Analysis in Real Time

Vapor Analysis System image

Product Description

SEADM’s Vapor Analysis System enables the analysis of complex gas samples at levels as low as 10 fg (mass) and 0.01 parts per quadrillion (10-17 atm) (concentration)
The system has been developed specifically for the vapor analysis research community, in search for excellence. It is built from a light, portable Sampler and an Analyzer for laboratory use.

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Vapour Analysis System arquitecture

Features and advantages

  • Lowest limits of detection available (examples: 0.01 ppq for RDX; < 0.1ppq for TNT )
  • Optimum performance for continuous monitoring (process assessment, pollution control, etc.)
  • Once an analysis method has been developed, semi-automatic operation can be implemented
  • Reduced sampling time due to the very high sensitivity of the Analyzer
  • Measurements are done in real time (seconds to minutes depending on the application)
  • Complex samples can be thoroughly analyzed (including discovery mode) through a 2D mass-mobility analysis
Vapor analyzer graphic - seadm

Detection limit in pg for selected dioxins and furans obtained with SEADM’s vapor analysis system (using APPI ionization method and a AB Sciex 3200 QTrap MS) compared with the High resolution gas chromatography / High resolution mass spectrometry (HRGC/HRMS) method applied by The National Dioxin Air Monitoring Network (NDAMN, U.S.A.) in accordance to EPA Method 1613.

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The unbeatable performance of SEADM’s system allows you to optimize your research in vapor analysis

Related publications

  • Fernández de la Mora, G., Fernández de la Mora J., Zamora D., Amo-González M., Lanza M.
    Reaching a vapor sensitivity of 0.01 parts per quadrillion in the screening of large volume freight
    Analytical Chemistry. Nov, 2017
  • Fernández de la Mora, G., Zamora D., Amo-González M., Fernández de la Mora J.
    Detecting explosive vapours in large volume freight: 2016 improvements
    Workshop on Spectrometry for security applications, Birmingham. Dec, 2016
  • Amo M.; Cuesta R.; McCulloch R.
    Evaluating a Rapid Atmospheric Pressure Photoionization – Mass Spectrometry (APPI-MS) Method for the Detection of Polychlorinated Dibenzodioxins (PCDD) and Furans (PCDF) in Real Environmental Samples Collected within the Vicinity of Industrial Incinerators
    Congress Energy and Environment Knowledge Week 2016, Oct 2016
  • Fernández de la Mora, J., Amo-González M.
    High Dynamic Range Differential Mobility Analyzer (DMA) Coupled with a Mass Spectrometer and several Ionization Sources
    Submitted to Journal of The American Society for Mass Spectrometry, 2016
  • D. Zamora, M. Amo, M. Lanza, G. Fernández de la Mora, J. Fernández de la Mora
    Reaching a vapor sensitivity of 0.01 part per quadrillion (10-17 atm.) in the screening of large volume freight
    TED Workshop, Jun 2016
  • Fernández de la Mora, G., Zamora D., Fernández de la Mora J.,
    Detecting explosive vapors in large volume freight: Experience learned from a year of sampling from the atmosphere and maritime cargo
    TED conference, improvehearingnaturally.com Pitssburgh, PA. May, 2015
  • Fernandez de la Mora, G.
    A New Theory on Vapour Detection
    2nd Eucde Conference, 2013
  • Fernandez de la Mora, G.
    Explosive Screening by Vapour Detection: Operational Aspects
    Transec Conference, 2013

Product info

Technical brochure (includes specs)

Watch product videos

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Technical brochure (includes specs)

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Contents

  • Product Description
  • Features and advantages
  • Related publications
  • Product info
  • Watch product videos
  • Related products

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