Chromatography Columns, with Ground Cone
Product Code : EL-CC-10045
Lab Glassware Manufacturer manufactures and exports Chromatography Columns, with Ground Cone from its Ambala, Haryana facility, supplying school, college and research laboratories in India as well as export buyers that have recently included institutions in Denmark, Sweden and Norway — part of a wider base of enquiries from across the Nordic region.
Quick answer: This Borosilicate Glass chromatography column has a porosity-0 sintered disc, an upper socket that takes a stopcock adapter, and a lower ground cone that connects to a CR3T/23 stopcock adapter — giving flow control at both ends of the column during column separation.
| Specification | Detail |
|---|---|
| Material | Borosilicate glass |
| Disc | Glass sintered disc, porosity 0 |
| Upper fitting | Socket for a stopcock adapter |
| Lower fitting | Ground cone for a CR3T/23 stopcock adapter |
Flow Control at Both Ends
Having a stopcock-adapter connection at both the top and bottom of the column lets the operator manage eluent addition and collection independently, which is useful for multi-step chromatographic separations. The porosity-0 sintered disc retains the packing material in place at the base of the column. See the full range on the Chromatography Columns page.
Frequently Asked Questions
What connects to the upper socket?
The upper socket takes a stopcock adapter, used to control eluent flow into the column.
What connects to the lower cone?
The lower ground cone connects to a CR3T/23 stopcock adapter, used to control eluent flow out of the column.
What material is this column made from?
It is manufactured from Borosilicate Glass.
Related Products
See the full range of chromatography and fractionating columns on the Chromatography Columns subcategory page.
Request a Quote
Ready to order Chromatography Columns, with Ground Cone for your school, college, research lab or export order? Contact Us for a quotation, or visit the Tenders page for bulk and institutional procurement.
Last updated: September 2026.
