
Act. Alumina Desiccants for Chemical Tower Adsorption
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Basic Info
Place of Origin: | China |
---|---|
Productivity: | 5000 Metric Tons / Year. |
Supply Ability: | 5000 Metric Tons / Year. |
Payment Type: | L/C, T/T, D/P, Western Union |
Product Description
Product Description
Model NO.: KA401
Certificate: ISO9001: 2000
Type: Ka401, Ka402, Ka403, Ka404, Ka405
Trademark: JINCHENG
Transport Package: by Double Layer Plastic Bag, Each Box 25kgs Net.
Specification: 1-3mm, 3-5mm, 4-6mm, 5-7mm
Origin: China
HS Code: 3824999990
Activated Alumina DesiccantActivated alumina, there are many micro-paths, so the specific surface is large. It can be used as adsorbent, desiccant and catalyst carrier. It is also a kind of trace water desiccant and the pole-moleculue adsorbent, according to the adsorbed molecule polarization, the attachment force is strong for water, oxide, acetic acid, alkali etc.
Activated alumina defluorinates just as the anion exchange resin, but the selectivity is much strong. The defluorination effect of the activated alumina is good. The capacity is stable. It has high strength, low abrasion, no soften in water, no expansion, no powdery no crack. It can widely used in the deep drying of cracked gas, ethylene and propylene, hydrogen-generation, air separation, instrument air drying and fluorine treatment for H2O2, also in the adsorbing pollution material, such as H2S, SO2, HF and paraffin in the waste gas, especially in the drinking water defluorination.
Activated Alumina
Molecular Formula: Al2O3. N H2O (0
KA401: Is for as adsorbent
KA402: Is for defluorinating
KA403: Is for absorption in producing hydrogen perixide (H2O2)
KA404: Is for catalyst carrier
KA405: Is for dehydrating and drying in air seperation etc.
If you are interested, please feel free to send inquiry to us for more details.
Phisical Properties | ||||||
TYPE | KA401 | KA402 | KA403 | KA404 | KA405 | |
Appearance | White, Sphere, No Odor, Insoluble In Water, Innocuous | |||||
Crystal Type | x-p | x-p | y | y | x-p | |
Chemical Composition | Al2O3 % | >93.5 | >93.5 | >93.5 | >93.5 | >93.5 |
Na2O % | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | |
SiO2 | <0.2 | <0.2 | <0.2 | <0.2 | <0.2 | |
Fe2O3 | <0.2 | <0.2 | <0.2 | <0.2 | <0.2 | |
LOI | % | <6 | <6 | <6 | <6 | <6 |
Bulk Density | g/ml | 0.65-0.72 | 0.70-0.75 | 0.65-0.72 | 0.65-0.72 | 0.65-0.72 |
Surface Area | m2/g | 275 | 275 | 275 | 275 | 275 |
Pore Volume | ml/g | 0.30-0.45 | 0.30-0.42 | 0.40-0.46 | 0.40 | 0.30-0.50 |
Static Absorption (RH=60%) | % | Water Absorption 15-17 |
Fluorine Absorption 0.12 |
Water Absorption 50 |
Water Absorption 50-70 |
Water Absorption 17-19 |
Active | % | 56-62 | ||||
Attrition Loss | % | ≤1.0 | ≤1.0 | ≤1.0 | ≤0.4 | ≤0.8 |
Crushing Strength (kg/cm2) | Dia.0.4-1.2 | ≥3 | ||||
Dia.1-2 | ≥4 | ≥4 | ||||
Dia.2-3 | ≥6 | ≥6 | ||||
Dia.3-5 | ≥10 | ≥10 | ≥10 | ≥10 | ||
Dia.4-6 | ≥12 | ≥13 | ≥12 | ≥11 | ||
Dia.4-8 | ≥15 | ≥15 | ≥15 | ≥15 |



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