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Catalyst Characterisation

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Understanding the reaction kinetics of a given catalyst is important, but it is not always the final word in catalyst characterization.

It is often important to assess various physical properties in full, from total surface area to catalyst dispersion.

Overview

These properties underlie the complex dynamics of catalytic materials by determining the number of reaction sites, thus catalytic activity. Hiden Analytical supplies a range of gas analysis and microreactor systems suitable for elucidating the physical properties of your catalysts.

Catalyst Characterisation Techniques

Temperature Programmed Desorption, Reduction & Oxidation

The surface properties of heterogeneous catalysts can be probed using a range of temperature-programmed profiles, typically desorption (TPD), reduction (TPR), or oxidation (TPO). Typically, a high sensitivity mass spectrometer is coupled with a microreactor or a vacuum chamber with a heated stage. Catalysts are subjected to a linear temperature ramp while the spectrometer continuously detects changes in the measuring environment. For example: It is possible to saturate a catalyst surface with a probe molecule like ammonia and observe the rate of desorption as a function of temperature and time.

Pulse Chemisorption

Catalyst characterization systems with pulse chemisorption (PCS) mode are based on the same basic principles as the above, with the added ability of repeatedly exposing catalysts to doses of reactive gas species through the primary stream. This enables researchers to carry out detailed investigations of catalytic activity by injecting specific sorbates at key catalytic stages, such as partial decomposition or oxidation.

Catalyst Characterisation with Hiden Analytical

Hiden Analytical supplies a range of quadrupole mass spectrometers and specialized catalyst characterization systems with built-in TPD, TPR, TPO and PCS modes. Contact us today if you would like more information about our product lines and specifications.

Further Reading

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Promotion Effect of Residual K on the Decomposition of N2O over Cobalt–Cerium Mixed Oxide 636.61 KB 19 downloads

Promotion effect of residual K on the decomposition of N2O over cobalt–cerium mixed...
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Preparation and Evaluation of Amonia Decomposition Catalysts by High-Throughput Technique 276.16 KB 22 downloads

Preparation and evaluation of amonia decomposition catalysts by high-throughput technique. ...
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Oxygen Selective Membranes Based on B-Site Cation-Deficient (Ba0.5Sr0.5)(Co0.8Fe0.2)yO3−ı 1.25 MB 24 downloads

Oxygen selective membranes based on B-site cation-deficient (Ba0.5Sr0.5)(Co0.8Fe0.2)yO3−ı...
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On the Synergy Effect in MoO3–Fe2(MoO4)3 Catalysts for Methanol Oxidation to Formaldehyde 686.71 KB 24 downloads

On the Synergy Effect in MoO3–Fe2(MoO4)3 Catalysts for Methanol Oxidation to Formaldehyde. ...
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New Polystyrene Sulfonic Acid Resin Catalysts with Enhanced Acidic and Catalytic Properties 154.84 KB 22 downloads

New polystyrene sulfonic acid resin catalysts with enhanced acidic and catalytic...
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Micro-Kinetic Analysis of Direct N2O Decomposition Over Steam-Activated Fe-Silicalite 494.01 KB 23 downloads

Micro-kinetic analysis of direct N2O decomposition over steam-activated Fe-silicalite...
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Methane Oxidation by NO and O2 from Reverse Spillover on Alumina Supported Palladium 566.05 KB 19 downloads

Methane oxidation by NO and O2 from reverse spillover on alumina supported palladium...
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Insight into the Key Aspects of the Regeneration Process in the NOx Storage Reduction... 742.29 KB 19 downloads

Insight into the key aspects of the regeneration process in the NOx storage reduction...
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Effect of Pt Impregnation on a Precipitated Iron-based Fischer–Tropsch Synthesis Catalyst 448.33 KB 19 downloads

Effect of Pt Impregnation on a Precipitated Iron-based Fischer–Tropsch Synthesis...
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Synthesis, characterization and catalytic properties of CuO nanocrystals with various shapes. 684.02 KB 32 downloads

Synthesis, characterization and catalytic properties of CuO nanocrystals with various...