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TAC CP-500A Low Thermal Inertia Accelerated Calorimeter

Product ID:HZMTlrj0027

Price: Please inquire PDF Format
Supply Ability:50 SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberTAC CP-500A
    Brand NameHANGZHOUYANGYI
    Payment TermsT/T, paypal
    TAC CP-500A Low Thermal Inertia Accelerated Calorimeter
    Introduction
    TAC CP-500A is a high-end adiabatic accelerated calorimeter with low thermal inertia developed based on the real-time compensation principle of sample heat dissipation power. It breaks through the existing adiabatic accelerated calorimeter. ”Bottleneck, the thermal inertia factor is separated from the heat capacity of the sample cell, and accurate thermodynamic and kinetic parameters can be obtained without performing thermal inertia factor correction. The instrument is compatible with the heating-wait-search mode and can seamlessly replace the classic adiabatic accelerated calorimeter in the fields of organic chemistry, petrochemicals, pharmaceuticals, agricultural fertilizers, fine chemicals, and other chemical process research and development, optimization and amplification, and chemical thermal hazard assessment. In addition, the accuracy of the measurement data is significantly improved compared with the classical adiabatic accelerated calorimeter, which can effectively promote the scientific research of chemical reaction kinetics.
    Features
    1) Simulate the ideal adiabatic environment, can directly measure more accurate thermal behavior parameters such as reaction starting temperature, maximum reaction rate, adiabatic temperature rise, etc.
    2) No correction of thermal inertia factor is required, and thermodynamic and kinetic parameters that are not related to the heat capacity of the sample container can be calculated to achieve accurate evaluation of key indicators that characterize chemical reactions / chemical thermal hazards
    3) Compatible with classic heating-wait-search mode, isothermal mode, and scanning mode, which can realize seamless replacement of classic adiabatic accelerated calorimeter
    4) With adiabatic scanning mode, fast and accurate screening of chemical / chemical reaction thermal hazards
    5) Have complete data analysis software, integrate the "Guidelines for the Safety Risk Assessment of Fine Chemical Reaction Safety" of the General Administration of Safety Supervision, and realize one-stop assessment of the danger of reaction processes 
    Technical Parameters
    Working environment: 5 ℃ ~ 40 ℃, <85% RH
    Temperature control range: room temperature to 500 ℃
    Temperature detection threshold: 0.005 ℃ / min ~ 0.02 ℃ / min
    Temperature tracking rate: 0.005 ℃ / min ~ 60 ℃ / min
    Temperature display resolution: 0.001 ℃
    Pressure range: 0 ~ 20000kPa
    Pressure resolution: 1kPa
    Sample cell capacity: 8ml
    Sample cell specifications: spherical, cylindrical (optional)
    Sample cell material: stainless steel, titanium alloy, Hastelloy (optional)
    Phi value: approaching 1.0
    Interface: USB or serial port
    Power: 220V 50Hz
    Power: 3000W

  • Introduction
    TAC CP-500A is a high-end adiabatic accelerated calorimeter with low thermal inertia developed based on the real-time compensation principle of sample heat dissipation power. It breaks through the existing adiabatic accelerated calorimeter. ”Bottleneck, the thermal inertia factor is separated from the heat capacity of the sample cell, and accurate thermodynamic and kinetic parameters can be obtained without performing thermal inertia factor correction. The instrument is compatible with the heating-wait-search mode and can seamlessly replace the classic adiabatic accelerated calorimeter in the fields of organic chemistry, petrochemicals, pharmaceuticals, agricultural fertilizers, fine chemicals, and other chemical process research and development, optimization and amplification, and chemical thermal hazard assessment. In addition, the accuracy of the measurement data is significantly improved compared with the classical adiabatic accelerated calorimeter, which can effectively promote the scientific research of chemical reaction kinetics.
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