Combustion Analyzer

A combustion analyzer determines the material composition by burning samples and detecting the generated gases. It is used to measure the content of elements such as carbon and sulfur in materials, and is applied in quality control in industries such as chemical engineering and metallurgy.
Selection
When selecting a combustion analyzer, consider the types of elements detected, accuracy requirements, sample types, and ease of operation. Match industry standards, evaluate maintenance needs and costs, and ensure the instrument is suitable for actual testing scenarios.

Terms

Standards

Instruments

Equipment supports vertical and horizontal combustion test, can set combustion and extinguishing time and repeability times, automatic stop test, Internal dimensions 305 * 355 * 610mm, suitable for a variety of organic materials.

$ 691.00

Stainless steel combustion box flue gas and corrosion resistance, Control system Degree of automation, flame time 0-99 minutes and 99 seconds adjustable, flame height 20-100mm adjustable, automatic recording of the test process.

$ 832.00

Equipped with combustible gas concentration detection and alarm system, automatically cut off the gas and start the exhaust; Test space ≥ 0.5m ³, flame height 20-175mm adjustable; support a variety of combustion angle adjustment to ensure test accuracy.

$ 1445.00

Gas detection alarm device and automatic exhaust system, flame time 0-999.9s adjustable, flame height 20-175mm adjustable, support a variety of combustion angle adjustment to ensure safe and accurate testing.

$ 1848.00

Using Bunsen burner combustion device, nozzle inner diaMeter 9.5mm, automatic ignition control, flame application time accuracy of +/- 0.1 seconds, can simulate open flame environment to evaluate battery flame resistance and leakage risk.

$ 1776.00

Test space ≥ 0.5m ³, flame application time 0~ 99min99s can be set, combustion angle 20 °, 45 °, 90 ° adjustable, flame height 20mm to 175mm adjustable, motor drive automatic alignment spline.

$ 1174.00

Catalytic combustion Sensor, adjustable detection accuracy, temperature compensation and automatic zero correction function, support 4~ 20mA output and RS485 digital output, suitable for hazardous areas.

$ 143.00

Using catalytic combustion Sensor, range 0~ 100% LEL adjustable, with infrared remote control debugging and 4~ 20mA output, support alarm record query and automatic temperature compensation, suitable for hazardous environment.

$ 152.00

Using catalytic combustion Sensor, range 0~ 100% LEL adjustable, with automatic zero correction and temperature compensation function, support 4~ 20mA and RS485 output, infrared remote control safety adjustment.

$ 122.00

Using catalytic combustion Sensor, range 0~ 100% LEL, with automatic zero correction and temperature compensation function, support infrared remote control adjustment and 4~ 20mA standard output, suitable for dangerous places 1 and 2 zones.

$ 135.00

Using catalytic combustion detection principle, the range covers 0-100% LEL, Response Time ≤ 30 seconds, with flameproof structure and a variety of signal output, support remote monitoring and linkage control.

$ 190.00

Using catalytic combustion principle to detect 0-100% LEL range, Response Time ≤ 30 seconds, with flameproof structure and multi-signal output, support remote monitoring and customized Sensor.

$ 202.00

Using catalytic combustion Sensor, range 0~ 100% LEL adjustable, with automatic zero correction and temperature compensation function, Response Time does not exceed 60 seconds, support 4~ 20mA and RS485 output.

$ 135.00

Using catalytic combustion Sensor, range 0~ 100% LEL adjustable, with automatic zero correction and temperature compensation functions, support 4~ 20mA output and infrared remote control debugging, suitable for dangerous areas 1 and 2 zones.

$ 143.00

Using catalytic combustion detection principle, the range covers 0-100% LEL, Response Time ≤ 30 seconds, with flameproof structure and a variety of signal output, support remote monitoring and infrared remote control operation, through a number of international safety certifications.

$ 190.00

Articles

How is a high-temperature muffle furnace applied in ash determination?
This article introduces the application of high-temperature muffle furnaces in ash determination. The principle of ash determination involves completely burning the sample at high temperatures, leaving behind inorganic mineral residues. The muffle furnace provides a stable and controllable thermal environment, ensuring accurate results.
Flash point tester for determination of closed cup flash point of varnish
This article introduces the method for determining the closed-cup flash point of varnish using a flash point tester. The flash point refers to the minimum temperature at which the vapor on the surface of the varnish ignites momentarily when exposed to a flame after heating. It is a crucial indicator for assessing the fire risk during its production, storage, and transportation.
Total Chlorine Content Microcoulometric Titration Detector for Pulp
This article introduces a method for detecting the total chlorine content in pulp using a microcoulometric titrator. The principle involves generating a titrant through electrolysis, which reacts with chloride ions produced from the combustion of the sample. The chlorine content is accurately calculated by monitoring the amount of electricity consumed.
Use of Muffle Furnace for Ash Determination in Pulp Inorganic Matter Testing
This article introduces the application of the ash determination muffle furnace in the detection of inorganic substances in pulp. The muffle furnace removes organic matter in the sample through high-temperature combustion, and the remaining inorganic residue, known as ash, is used to analyze the content of fillers and metal ions in the pulp.
Spectrophotometric Determination of Sulfur Content by Ultraviolet Fluorescence Method
The determination of sulfur content by ultraviolet fluorescence spectrophotometry involves burning the sample to convert sulfur into sulfur dioxide, which is then excited by ultraviolet light to produce fluorescence for detection.