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Product Program
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Summary: |
3 systems, customized system design, PTB-approved for custody transfer, burner or catalytic reactor to oxidise the probe gas, ZrO2-sensor for residual Oxygen measurement, continuous process application, 19“-slide-in and HF1 cabinet |
Applications: |
Wobbe Index, Air Demand, Specific Gravity and Calorific Value in combustion gases; measurements in hazardous zone 2, T3, suitable for H2; for normally not flammable gases the CAT-model with catalytic reactor |
| Product Sheet RHADOX - Measuring Systems for Air Demand, Wobbe-Index, Specific Gravity and Calorific Value in Combustion Gases (500 KB) | |
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Summary: |
With micro-fuel-cell: measuring ranges 0 ... 25 vol-% and 0 ... 1ppm; EEx for zone 1; specific sensors e.g. for measuring in nearly 100% Hydrogen; components for process applications; 2-channel-instruments |
Applications: |
With micro-fuel-cell: O2-measurement e.g. in industrial gases as well as in complex gas mixtures; quick O2-analysis from 20 vol-% down to 2ppm within 20 minutes time. |
Product Sheet PAT 3100 - Oxygen Analysers PAT Series 3100 for the ppm- and vol-%-range (500 KB) Product Sheet PAT 3190 - Trace Oxygen analyser for inert gases - with Zirconia Sensor (200 KB) Product Sheet PAT 3195 - Trace Oxygen analyser for gases with trace impurities of combustibles - with Circonia Sensor (300 KB) |
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Series 3211 |
Summary: |
Range of probe lengths from 150 mm to 3 m Gas temperatures up to 1750°C
EEx d II B+H2 -probes for zone 1and 2; electronic controller Measuring
ranges: 0,2 to 25 vol-% O2, 1ppm to 100 vol-% O2 : AMS 3211 |
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Applications: |
Oxygen measurement in flue gases and for the control of combustion processes certified systems based on the 13. and 17.BImSchV and TA Luft Simultaneously controlling Oxygen and combustible gases with the probe AMS 3211-1500 - also certified for Ex-zone 1 |
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| Product Sheet AMS 3211 - (400 KB) | ||
Product Sheet AMS 3211-1500 - Zirconia Probes for the Simultaneous Measurement of Oxygen and Combustible Gases |
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Summary: |
The new FTTCA (Fourier-Transformed Thermal Conductivity Analysis)-technique makes possible the simultaneaus measurement of all three components in a multi-component gas mixture. On the one hand the FTTCA-method employs a physical effect known but not often used in process analytics and on the other hand FTTCA is feasible through the availibility of todays newly developed miniaturized thermal-conductivity sensors only. |
The physical effect comes from the different temperature dependence of the thermal conductivity of the different gas components. Hence the recording of a multi-dimensional concentration field, consequently followed by a fast Fourier-transformation, enables the analysis of three or four component gas mixtures. | |
Applications: |
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| Product Sheet AMS FTTCA 1100 - Fourier-transormed TCD for four or more components (500 KB) | |||
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Summary: |
Catalytic oxidation, 2 different catalysts: Pt or Pt/Pd, protective design according to EEx p IIC T3 for zone 2, 19“-slide-in, desktop or field instrument |
Applications: |
Generating hydrocarbon- and carbon-monoxide-free combustion air or zero gas |
| Product Sheet AMS 8100 and 8150 - Zero Gas Generator with Air Cleaning - General Purpose and Classified Areas (400 KB) | |
Calibrator |
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Summary: |
The calibrator consists of a membrane in the form of a coiled tube,
made from a material, which is permeable to the respec-tive gas component.
The tube is purged inside with a clean carrier gas (e.g. N2
5.0) under tightly controlled and constant flow, temperature and pressure
conditions.pressurised gas bottles. |
Applications: |
Generation
of calibration gases, mobile or stationary operated; |
| Product Sheet Calibrator (40 kb) | |
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(C) AMS GmbH 5.1/2007 Subject to technical modifications Text, drawings and layout: Analytic Journal
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