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Gas 90%±5% Activated Carbon Saturation Sulfur Capacity Tester Temp 20-25℃ Carbon 5mm

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xGas Concentration | Mass Concentration Of Hydrogen Sulfide 5mg/L ± 0.5 Mg/L | Oxygen Volume Fraction | 0.6%~1.0% |
---|---|---|---|
The Mass Concentration Of Ammonia | 0.2 Mg/L~0.3 Mg/L | Water Bath Temperature | 20-25 ℃ |
Refrigeration Method | Compressor Refrigeration | Gas Relative Humidity | 90% ± 5% |
Gas Specific Speed | 0.25L/(min. Cm2) | Carbon Layer Height | 5mm |
Highlight | Activated Carbon Saturation Sulfur Capacity Tester,Activated Carbon Saturation Sulfur Capacity Testing,Activated Carbon Saturation Sulfur Capacity meter |
ST-64A Activated carbon saturation sulfur capacity tester
ST-64A activated carbon saturation sulfur 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 saturated sulfur capacity of coal based granular activated carbon, as well as for testing the saturated sulfur capacity of other types of activated carbon.
Experimental principle
Under specified experimental conditions, it is beneficial for the porosity of activated carbon to adsorb hydrogen sulfide gas. In the presence of oxygen and ammonia, a catalytic reduction reaction occurs, and the precipitated elemental sulfur adheres to the activated carbon until it is fully adsorbed. The mass of saturated sulfur adsorbed on the sample is calculated, and the sulfur capacity of the activated carbon is expressed in milligrams of increments per gram of saturated adsorption of dry activated carbon sample.
Technical parameters
● Adsorption
Gas concentration: Mass concentration of hydrogen sulfide 5mg/L ± 0.5 mg/L
Oxygen volume fraction 0.6%~1.0%
The mass concentration of ammonia is 0.2 mg/L~0.3 mg/L
The carrier gas during adsorption is nitrogen gas.
lWater bath temperature: 20-25 ℃
lRefrigeration method: compressor refrigeration
lGas relative humidity: 90% ± 5%
lGas specific speed: 0.25L/(min. cm2)
lCarbon layer height: 5mm
Water bath temperature |
20-25 ℃ |
Refrigeration method |
compressor refrigeration |
Gas relative humidity |
90% ± 5% |
Gas specific speed |
0.25L/(min. cm²) |
Carbon layer height |
5mm |
The self provided reagents, gases, and consumable glass equipment are as follows:
1. Pure nitrogen steel cylinder gas 40L with a purity of 98% 5 bottles
2. Hydrogen sulfide steel cylinder gas 4-8L with a concentration of 10%, 2 bottles
3. Ammonia steel cylinder gas 4-8L with a concentration of 5%, 2 bottles
4. Chemical reagents
4.1 Iodine standard titration solution 0.02mol/L
4.2 Sodium thiosulfate standard titration solution 0.02moI/L
4.3 Sulfuric acid standard solution 0.02mol/L
4.4 Sodium hydroxide standard titration solution 0.02moI/L
4.5 Mass fraction of zinc acetate solution 2%
4.6 Methyl orange indicator mass fraction 1%
4.7 Starch indicator 0.5%
4.8 Ammonia solution GB/T631 analytical pure 1 box
4.9 Sodium sulfide GB/T10500 analytical grade 5 bottles
4.10 Acetic acid (glacial acetic acid) GB/T676 analytical pure 1 box
4.11 Sulfuric acid 50% analytical purity 5 bottles
Vulnerable glass parts:
1. Measurement tube
2. Mixer
3. Absorption bottle
4. Tee pipe
5. Two way piston
ST-64A activated carbon saturation sulfur 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 saturated sulfur capacity of coal based granular activated carbon, as well as for testing the saturated sulfur capacity of other types of activated carbon.
Experimental principle
Under specified experimental conditions, it is beneficial for the porosity of activated carbon to adsorb hydrogen sulfide gas. In the presence of oxygen and ammonia, a catalytic reduction reaction occurs, and the precipitated elemental sulfur adheres to the activated carbon until it is fully adsorbed. The mass of saturated sulfur adsorbed on the sample is calculated, and the sulfur capacity of the activated carbon is expressed in milligrams of increments per gram of saturated adsorption of dry activated carbon sample.