Gravimetric sorption is a popular analytical method utilized for the determination of the rate of interaction between a gas and an either solid or liquid material. The gravimetric sorption technique works with a sample’s weight being continuously measured on a microbalance as gas pressure is modulated under a constant temperature. Sorption update is established based on the measured changes of weight.
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| Company | Hiden Isochema | Hiden Isochema | Hiden Isochema | Hiden Isochema |
| Item | IGA-1000 Advanced Gravimetric Sorption Analyzer | IGA-002 Vapor Sorption Analyzer | IGA-003 Dynamic Gas Sorption Analyzer | IGA-003-MC Binary Gas Sorption Analyzer |
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| Catalog Number | IGA-100 | IGA-002 | IGA-003 | IGA-003-MC |
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| Temperature Range | 77 K to 1000 °C | 77 K to 1000 °C | 77 K to 1000 °C | Inquire |
| Pressure Range | 10 bar (standard) 20 bar (optional) | 10 bar (standard) 20 bar (optional) | 10 bar (standard) 20 bar (optional) | 0.5 to 3 bar |
| Description | The IGA-100 is an advanced gravimetric sorption analyzer, powerfully combining high resolution vapor, mixed gas and TGA-MS measurements. A multiple inlet flow control system allows mixed gas experiments with combined pressure, flow and composition control, while anti-condensation protection and The IGA-100 is an advanced gravimetric sorption analyzer, powerfully combining high resolution vapor, mixed gas and TGA-MS measurements. A multiple inlet flow control system allows mixed gas experiments with combined pressure, flow and composition control, while anti-condensation protection and active pressure regulation enable high resolution vapor sorption-desorption measurements.
Features:
- Fully programmable with combined control of pressure, flow and gas composition
- Built-in anti-condensation protection to 50 °C for pure vapor sorption
- Optional integrated vapor generator module for dynamic vapor sorption (DVS)
- Sample temperatures from 77 K to 1000 °C
- Fully integrated quadrupole mass spectrometry option for evolved gas analysis (EGA)
- Unique combination of vapor sorption options to include DVS measurements with pressure and vacuum control
... Read More | The IGA-002 is a high resolution vapor sorption analyzer for precisely characterizing vapor-solid interactions. Compatible with an extensive range of vapors, the IGA-002 also offers the full gas sorption capability of the IGA-001, measuring changes in sample mass as a function of temperature and The IGA-002 is a high resolution vapor sorption analyzer for precisely characterizing vapor-solid interactions. Compatible with an extensive range of vapors, the IGA-002 also offers the full gas sorption capability of the IGA-001, measuring changes in sample mass as a function of temperature and pressure. The unique IGA method analyzes real time gravimetric data to determine kinetic parameters and simultaneously predict sorption equilibrium.
Features:
- Suitable for use with a wide range of gases, vapors, materials and methods
- Active vapor pressure regulation from 10-3 mbar
- Built-in anti-condensation protection to 50 °C
- Sample temperature stability and accuracy of ± 0.02 °C
- Unrivalled long term stability and continuous weight measurement
- Advanced kinetic analysis for sorption rate and diffusion coefficient determination
... Read More | The IGA-003 is a dynamic gas sorption analyzer incorporating multiple controllable inlets with combined pressure and flow control, and integrated mass spectrometry. Incorporating an ultra-sensitive microbalance, the IGA-003 measures changes in sample mass as a function of temperature, pressure and The IGA-003 is a dynamic gas sorption analyzer incorporating multiple controllable inlets with combined pressure and flow control, and integrated mass spectrometry. Incorporating an ultra-sensitive microbalance, the IGA-003 measures changes in sample mass as a function of temperature, pressure and gas composition. The unique IGA method analyzes real time gravimetric data to determine kinetic parameters and simultaneously predict sorption equilibrium.
Features:
- Fully programmable with combined control of pressure, flow and gas composition
- Optional integrated vapor generator module
- Sample temperatures from 77 K to 1000 °C
- Fully programmable for advanced method development
- Fully integrated quadrupole mass spectrometry option for evolved gas analysis (EGA)
... Read More | The IGA-003-MC is a gravimetric sorption analyzer for binary gas sorption analysis using the IMB (Integral Mass Balance) analysis technique. The IMB method allows binary gas adsorption isotherms to be measured by combining the controlled flow of a gas mixture with in situ gravimetric measurement andThe IGA-003-MC is a gravimetric sorption analyzer for binary gas sorption analysis using the IMB (Integral Mass Balance) analysis technique. The IMB method allows binary gas adsorption isotherms to be measured by combining the controlled flow of a gas mixture with in situ gravimetric measurement and outlet gas composition analysis using a mass spectrometer.
Features:
- Dynamic mode gas delivery with gas flow calibration
- Dedicated sample reactor with combi bath / heater for sample thermostatting
- Optimized sampling interface with a close-coupled Hiden mass spectrometer
- Recommended sample size is 3.5 grams for operation in the pressure range 0.5 bar to 3 bar
- Unique IMB method for partial uptake determination
... Read More |
| Applications | Gas adsorption capacity determination, Moisture and organic vapor sorption, Catalyst characterization, Moisture and organic vapor sorption with diffusion coefficient determination, Thermogravimetric Analysis (TGA) and Evolved Gas Analysis (EGA), Temperature Programmed Desorption/Oxidation/Reduction (TPD, TPO, TPR) | Moisture and organic vapor sorption, Diffusion coefficient determination, Thermodynamic and kinetic studies, Gas sorption capacity determination | Energy storage, Temperature Programmed Desorption/Oxidation/Reduction (TPD/TPO/TPR), Gas adsorption capacity determination, Thermodynamic and kinetic studies, Evolved Gas Analysis (EGA) and Thermogravimetric Analysis (TGA) | Inquire |
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