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XDLR-Q600 Single Control Fully Automatic Calorimeter

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Description

XDLR-Q600 Single Control Fully Automatic Calorimeter adopts the following standards:

GB/T 213-2008 “Method for determination of calorific value of coal”

GB/T 384-1981 “Method for determination of calorific value of petroleum products”

GB/T 30727-2014 “Method for determination of calorific value of solid biomass fuel”

GB/T14402-2007 “Determination of combustion calorific value of combustion performance of building materials and products”

GB/T 30991-2014 “General technical conditions for intelligent oxygen bomb calorimeter”

JC/T 1005-2006 “Method for determination of calorific value of cement black raw meal”

JJG 672-2018 “Verification procedures for oxygen bomb calorimeter”

ASTM D5865-13 “Method for determination of calorific value of coal and coke”

ISO 1928:2009 “Determination of calorific value of solid mineral fuels”

CEN/TS 14918 “Determination of calorific value of solid biofuels”

BS EN 15400-2011 “Solid recovered fuels – calorific value test”

IS:1350-1970 “Determination of coal and coke”

xdlr q600 single control fully automatic calorimeter
xdlr q600 single control fully automatic calorimeter

XDLR-Q600 Single Control Fully Automatic Calorimeter Technical Parameters

Temperature measurement range5~40℃
Temperature resolution0.0001℃
Test accuracy≤0.15%
AccuracyBetter than national standards
Test timeConventional method: ≤16min
Fast method: ≤11min
Heat capacity fluctuation≤0.20% within one year
Lifting methodautomatic lifting
Oxygenation methodautomatic oxygenation
Water levelvisible water level
Placement methodvertical, horizontal
Quantitative methodmeasuring cup quantitative
Power<1kW
Dimensions570mm (length) × 550 mm (width) × 530 mm (height)
Power supply voltageAC220V±22V
50Hz±1Hz
Weight68kg
Automatic Calorimeter Technical Parameters

XDLR-Q600 Single Control Fully Automatic Calorimeter Product Features

More convenient operation:High degree of automation, automatic and accurate water volume in the inner cylinder; automatic adjustment and tracking of system temperature; less manual operation content, reducing human errors and labor intensity, and improving work efficiency.

Fast experiment:Unique three-head thread and corrosion-resistant oxygen bomb (can burn biomass), short test time.

Good stability:The quantitative water cup ensures the accurate and stable water volume in the inner cylinder, ensures the consistency of each measurement result, and has a built-in automatic refrigeration cycle control device. Different inner and outer cylinder temperature control methods can be selected according to needs, with a built-in filtration system to prevent system blockage, long-term stability of instrument heat capacity, and heat capacity change ≤0.2%.

Powerful software system:Experiment login permission management, automatic recording of experimental process, traceability. Sample code and weight information are automatically transmitted; test results are backed up and uploaded; anti-tampering experimental data, suitable for fuel control system. It has a self-diagnosis function and is easy to maintain.

Reserved standard interface: convenient for connection with the laboratory control system.

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