Description
Specifications Table
| Product Name | Syringe-driven Filters, Nylon-66, 0.22 Colcemid®m, 13 mm, Non-sterile |
|---|---|
| Quantity/Pack Size | 1 × 250 no |
| Form | Syringe-driven |
| Grade | Nylon-66 |
| Application | Lab filtration |
Product Description
Syringe-driven Filters, Nylon-66, 0.22 Colcemid®m, 13 mm, Non-sterile are essential tools in any laboratory setting. These filters are designed to ensure the purity and reliability of your samples, making them ideal for various lab applications. The Nylon-66 material offers excellent chemical compatibility and durability, ensuring consistent performance.
With a pore size of 0.22 microns, these filters are perfect for removing bacteria and other contaminants from your samples, ensuring accurate and reliable results. The 13 mm size fits most standard syringe barrels, making them versatile and easy to use. Whether you are a student, researcher, or educator, these filters are a must-have for your lab supplies.
At eqipped, we understand the importance of high-quality lab supplies. That’s why we offer only the best products to meet your needs. Our Syringe-driven Filters are non-sterile, making them suitable for a wide range of applications. Whether you are filtering solvents, reagents, or other liquids, these filters will deliver consistent and reliable performance.
FAQs
What is the pore size of these syringe filters?
The pore size of these syringe filters is 0.22 microns, making them effective for removing bacteria and other contaminants.
What is the material of these filters?
These filters are made of Nylon-66, which offers excellent chemical compatibility and durability.
Are these filters sterile?
No, these filters are non-sterile, making them suitable for a wide range of applications.
What is the size of these filters?
The size of these filters is 13 mm, which fits most standard syringe barrels.
Can these filters be used for filtering solvents?
Yes, these filters are suitable for filtering solvents, reagents, and other liquids, ensuring consistent and reliable performance.





