Product Name: | Alumina Inert Ceramic Ball |
---|---|
Material: | Alumina Ceramic,Sio2 |
Size: | 6mm,10mm,13mm,19mm,25mm,38mm etc |
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Standard inert ceramic balls are cost-effective, chemically stable packing media manufactured from kaolin clay and silica-rich raw materials. With moderate alumina (Al2O3) content, these balls serve as reliable support media, tower packing, or filler material in non-extreme chemical processes. They provide essential functions such as liquid/gas distribution, catalyst bed support, and void space filling in mild operating environments.
Fired at conventional kiln temperatures, these balls offer:
*Adequate mechanical strength for low-pressure reactors
*Basic chemical resistance to weak acids/alkalis
*Thermal stability for continuous use in medium-temperature processes
*Economic efficiency for large-volume applications
Ideal for: Water treatment, mild gas scrubbing, fertilizer production, and other non-corrosive/low-stress environments where premium high-alumina balls are over-specified.
Chemical composition for ceramic ball
Al2O3+SiO2 |
Al2O3 |
Fe2O3 |
MgO |
K2O+Na2O +CaO |
Other |
> 93% |
17-23% |
<1% |
<0.5% |
<4% |
<1% |
Physical composition for ceramic ball
Item |
Value |
Water absorption (%) |
<0.5 |
Bulk density (g/cm3) |
1.35-1.4 |
Specific gravity (g/cm3) |
2.3-2.4 |
Free volume (%) |
40 |
Operation temp.(max) (°C) |
1100 |
Moh's hardness (scale) |
>6.5 |
Acid resistance (%) |
>99.6 |
Alkali resistance (%) |
>85 |
Size available & Crush strength for ceramic ball
Size |
Crush strength |
|
Kg/particle |
KN/particle |
|
1/8''(3mm) |
>35 |
>0.35 |
1/4''(6mm) |
>60 |
>0.60 |
3/8''(10mm) |
>85 |
>0.85 |
1/2''(13mm) |
>185 |
>1.85 |
3/4''(19mm) |
>487 |
>4.87 |
1''(25mm) |
>850 |
>8.5 |
1-1/2''(38mm) |
>1200 |
>12 |
2''(50mm) |
>5600 |
>56 |
*Support Bed Base Layer: Under high-alumina balls in reactors to reduce costs
*Packed Towers: CO2 scrubbers, water deaeration, irrigation filtration
*Gas Distributors: Biogas purification, flue gas treatment
*Filler Media: Insulation layers, reactor bottom support
*Protective Barriers: Prevent resin/catalyst leakage in ion-exchange columns