Measurement Range 0-10% Activated Carbon Penetration Sulfur Capacity Tester 450ml Electrolytic Cell

Place of Origin CHINA
Brand Name Shandong Shengtai Instrument
Certification GB/T7702.14-2008
Model Number ST-64B
Minimum Order Quantity 1
Packaging Details wooden case
Delivery Time 7-15 work days
Payment Terms T/T
Supply Ability 10000 sets/year

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Product Details
Measurement Range Of Total Sulfur 0-10% Combustion Analysis Time 3-8 Minutes
Temperature Control 500-1150℃ Controllable ±3℃
Temperature Measurement Accuracy Level 0.5 Length Of High Temperature Zone ≥90 Millimeters
Experimental Temperature 1050℃±5℃(temperature Can Be Adjusted As Needed) Heating Speed 25-30℃/min,About 30 Minutes To Reach 1050 ℃
Rated Power Supply 220V±10% 50HZ
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Product Description

ST-64B Activated carbon penetration sulfur capacity tester

 

ST-64B activated carbon penetration capacity testing device is developed in accordance with the national standard GB/T7702.14-2008 "Test methods for coal based granular activated carbon - Determination of sulfur capacity". It is suitable for testing the penetration capacity of coal based granular activated carbon, as well as for testing the penetration capacity of other types of activated carbon.

Experimental principle:

The test sample is burned in a purified air flow at a high temperature of 1050 ℃, and various forms of sulfur in the coal are decomposed and carried to the electrolysis cell by the air flow to combine with water to generate H2SO3. Due to its disruption of the dynamic equilibrium of the original iodine iodine ion pairs in the electrolysis cell, the instrument immediately outputs a current to electrolyze potassium iodide solution to generate iodine, in order to restore the original dynamic equilibrium, which is the Coulomb titration in GB/T214-1996. The amount of current consumed to restore the original dynamic equilibrium is related to the sulfur decomposed during combustion in the laboratory sample, which can be measured and calculated by a microprocessor

Measurement Range 0-10% Activated Carbon Penetration Sulfur Capacity Tester 450ml Electrolytic Cell 0

Technical parameters

Measurement range of total sulfur:0-10%

The sample combustion analysis time is 3-8 minutes, and the titration endpoint is automatically determined and returned.

Temperature control:500-1150 degrees Celsius, controllable ± 3 ℃. Temperature measurement: accuracy level 0.5; The heating element is a silicon carbon tube, with a high-temperature zone length of ≥ 90 millimeters. The experimental temperature is 1050 ℃± 5 ℃ (the temperature can be adjusted as needed).

Heating rate:25-30 ℃/min, up to 1050 ℃ in about 30 minutes.

Electrolytic cell:with a volume of 450 milliliters and a platinum metal electrode.

The stability of the instrument:It enters a stable state within 1 minute of starting up.

Rated power supply:220V±10% 50HZ

Measurement Range 0-10% Activated Carbon Penetration Sulfur Capacity Tester 450ml Electrolytic Cell 1

Measurement range of total sulfur 0-10%
Combustion analysis time 3-8 minutes
Temperature control 500-1150℃
Controllable ±3℃
Temperature measurement: accuracy level 0.5
Heating element Silicon carbon tube
Length of high temperature zone ≥90 millimeters
Experimental temperature 1050℃±5℃(temperature can be adjusted as needed)
Heating speed 25-30℃/min,About 30 minutes to reach 1050 ℃
Electrolytic cell with a volume of 450 milliliters and a platinum metal electrode.
The stability of the instrument It enters a stable state within 1 minute of starting up.
Rated power supply 220V±10% 50HZ

 

ST-64B activated carbon penetration capacity testing device is developed in accordance with the national standard GB/T7702.14-2008 "Test methods for coal based granular activated carbon - Determination of sulfur capacity". It is suitable for testing the penetration capacity of coal based granular activated carbon, as well as for testing the penetration capacity of other types of activated carbon.

Experimental principle:

The test sample is burned in a purified air flow at a high temperature of 1050 ℃, and various forms of sulfur in the coal are decomposed and carried to the electrolysis cell by the air flow to combine with water to generate H2SO3. Due to its disruption of the dynamic equilibrium of the original iodine iodine ion pairs in the electrolysis cell, the instrument immediately outputs a current to electrolyze potassium iodide solution to generate iodine, in order to restore the original dynamic equilibrium, which is the Coulomb titration in GB/T214-1996. The amount of current consumed to restore the original dynamic equilibrium is related to the sulfur decomposed during combustion in the laboratory sample, which can be measured and calculated by a microprocessor