Chemical Absorbent Socks
Our oil absorbent socks are manufactured from 100% polypropylene outer and filler. This high capacity absorbent is ideal for diverting or “pooling” spills.
Diameter: 7,5cm
Lenght: 125cm and 300cm
Sorbency 125cm: 2,5-3,6 lt/pc
Sorbency 300cm: 6,0-8,4 lt/pc
Description
Chemical Absorbent Socks
Our chemical absorbent socks are manufactured from 100% polypropylene outer and filler. This high capacity absorbent is ideal for diverting or “pooling” spills. They are also useful for placing alongside or around machinery, tanks or drums to prevent any leaks spreading across the floor.
May be safely used with all aqueous solutions and liquids immiscible with water, such as corrosive chemicals, hazardous liquids, acids, hydrocarbons, solvents with the exception of strong oxidising agents.
Before any use in a spill situation a proper risk assessment should be carried out and all hazardous properties of the liquid or dangerous reactions taken into account.
The Chemical Absorbent Socks are 100% meltblown polypropylene and are hydrophilic meaning they will rapidly absorb chemical liquid spills.
The Chemical Absorbent Socks are colour coded to the BSIF Standards for easy recognition, distinction and visibility.
Benefits
- Manufactured from 100% meltblown polypropylene
- Excellent absorbency and fluid retention
- Can be incinerated, keeping disposal costs down
- Highly visible due to their distinctive colour
- Have high strength, even when saturated.
Applications
- To place around machinery to prevent spills from spreading
- To contain, control and absorb spills
- To provide temporary bunding around drums and IBC’s
- Chemical absorbent socks are an essential part of a spill response plan
Technical Data
0230/125/10 | 0230/125/20 | 0230/300/5 | |
Size | Φ 7.5cm x 125cm | Φ 7.5cm x 125cm | Φ 7.5cm x 300cm |
Colour | Yellow | Yellow | Yellow |
Pack Quantity | 10 | 20 | 5 |
Pack Wt (gross) | 3,3 kg | 6,5 kg | 4,1 kg |
Sorbency (pack) | 25-36 lt | 50-72 lt | 30-42 lt |
Sorbency: Lower figure test method to BS 7959-1:2004 using waterl. Higher figure based on high viscosity liquid with no drain.
Note:All weights, dimensions, and other figures quoted are approximate
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