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AMI-300 fully automatic chemical adsorption analyzer

Product ID:WBhxxf015

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Supply Ability:50 SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberAMI-300
    Brand NameJINGWEIGAOBO
    Payment TermsTT,PAYPAL
    AMI-300 fully automatic chemical adsorption analyzer
    Introduction:
    The AMI-300 flagship model is a new generation fully automatic chemical adsorption analysis instrument provided by AMI Instrument Company. This instrument is a fully automatic catalytic characterization instrument designed based on the unmanned concept, with high reliability independent control software and complete data processing software. It was first developed by catalyst researchers and serves catalyst researchers as a chemical adsorption instrument. It, along with its predecessors AMI-1, AMI-100, and AMI-200, is the first chemical adsorption instrument in the industry to provide fully automatic analysis and testing. This instrument can provide necessary kinetic parameters for characterizing catalysts.
    characteristic:
    1. Insulation zero station: Ensure that the gas does not come into contact with the sample during the calibration pulse process to improve accuracy.
    2. Overall pipeline insulation: All valves and pipelines are placed in a heatable insulation box to prevent condensation.
    3. External mass spectrometer: Real time integration of MS data and AMI-300 data is achieved through direct data exchange (DDE).
    4. Small dead volume of the system: Use low volume valves and 1/16 pipelines to reduce dead volume and minimize peak diffusion to the greatest extent possible.
    5. Safety protection: independent furnace over temperature protector, gas path safety valve, check valve, circuit breaker, and TCD anti dry burning system.
    6. Easy to load samples: The mobile shell furnace makes it easy to remove and load sample tubes.
    7. Cold trap: A cold trap filled with desiccant can be installed downstream of the sample tube to remove condensates before flowing through TCD.
    8. Quantitative injection port: Provides a quantitative needle injection port for precise calibration of the quantitative ring volume.
    9. TCD detector: A high-precision 4-fire TCD detector with high linearity, accuracy, sensitivity, and stability. There are different filament materials to choose from.
    10. Auxiliary detector: It can accept any auxiliary detector that provides analog voltage output, such as flame ionization detector (FID).
    11. Structural material: The sealing components and materials are customized and designed according to your needs.
    Technical parameters:
    Model: AMI-300
    Typical sample: 0.1-1g
    Workstation: 1 analysis station
    Temperature range: Room temperature -1200
    Low temperature options: -130 -1200 ° C
    Temperature rate: 1 /min - --50 /min
    Gas input (low pressure): 4 carrier gases, 4 processing gases, 2 mixed gases (optional 2 auxiliary gases)
    Standard operating pressure: Atmospheric pressure
    Gas flow rate: 5-50ml/min
    Sample tube type (low pressure): quartz U-tube, bubble tube, straight wall tube
    Temperature control range: -130 ° C to -1200 ° C (low-temperature system)
    TCD detector: two materials to choose from (tungsten; gold/tungsten)
    Pipeline material: 316 stainless steel, 1/16 inch
    Sealing ring: optional Viton, Buna-N, Kalrez, etc
    Size: Width 56cm; 60cm high; 61cm deep

  • Introduction:
    The AMI-300 flagship model is a new generation fully automatic chemical adsorption analysis instrument provided by AMI Instrument Company. This instrument is a fully automatic catalytic characterization instrument designed based on the unmanned concept, with high reliability independent control software and complete data processing software. It was first developed by catalyst researchers and serves catalyst researchers as a chemical adsorption instrument. It, along with its predecessors AMI-1, AMI-100, and AMI-200, is the first chemical adsorption instrument in the industry to provide fully automatic analysis and testing. This instrument can provide necessary kinetic parameters for characterizing catalysts.
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