Choose the brand aligned with your industry so we can best serve your needs.
For researchers, scientists, and technical professionals: Your one-stop shop for the complete range of laboratory, production, and safety products and services.
Employing single-use bioreactor vessels for bioprocessing procedures eliminates the need for time-consuming cleaning and sterilization steps and reduces the risk of cross contamination between procedures.
DynaDrive single-use bioreactor stand configured for 120 V operation and puck sensors. Compatible with 5 L DynaDrive Bioreactor Bioprocess Container (BPC) Puck Sensor Version. Bioreactor stand holds, provides heating, and enables tubing management for the bioprocess container.
DynaDrive single-use bioreactor stand configured for 240 V operation and puck sensors. Compatible with 5 L DynaDrive Bioreactor Bioprocess Container (BPC) Puck Sensor Version. Bioreactor stand holds, provides heating, and enables tubing management for the bioprocess container.
DynaDrive single-use bioreactor stand configured for 240 V operation and traditional probe sensors. Compatible with 5 L DynaDrive Bioreactor Bioprocess Container (BPC) Traditional Probe Sensor Version. Bioreactor stand holds, provides heating, and enables tubing management for the consumable.
DynaDrive single-use bioreactor stand configured for 120 V operation and traditional probe sensors. Compatible with 5 L DynaDrive Bioreactor Bioprocess Container (BPC) Traditional Probe Sensor Version. Bioreactor stand holds, provides heating, and enables tubing management for the consumable.
Small and Specialty Supplier Partner Small and/or specialty supplier based on Federal laws and SBA requirements. Learn More
The Chemglass Jacketed Glass Bioreactor Vessel is a 7-liter jacketed borosilicate glass vessel designed for laboratory bioprocessing and fermentation. It provides jacketed temperature control, clear graduated sightlines, and GL-18 connections for integration with circulators and process tubing; suitable as a like-for-like replacement for common benchtop bioreactor systems.
7 L nominal volume with 200 mL graduation subdivisions and numbered marks every 1,000 mL.
Constructed from heavy-wall borosilicate glass for thermal shock resistance and visibility.
Jacketed design enables circulating fluid temperature control.
GL-18 glass thread connections for circulator; supplied with caps and plastic hose fittings.
Minimum working volume of 2 L.
Vessel inner diameter approximately 160 mm and overall height approximately 375 mm.
Intended for laboratory-scale fermentation and bioprocess applications.
Encompass Procurement Services Non-distribution item offered as a customer accommodation; additional freight charges may apply. Learn More
Small and Specialty Supplier Partner Small and/or specialty supplier based on Federal laws and SBA requirements. Learn More
Manufactured from 304 Stainless Steel and electro-polished.Vessel carriers are very stable and allow for easy transport of Bioreactor Vessels, Spinner Flasks or large Carboys.Dimensions/H x OAD (in.): CLS-1406-C06: 9 x 8 CLS-1406-C08: 11 x 10 CLS-1406-C15: 12 x 11 CLS-1406-C36: 17 x 13
Encompass Procurement Services Non-distribution item offered as a customer accommodation; additional freight charges may apply. Learn More
Small and Specialty Supplier Partner Small and/or specialty supplier based on Federal laws and SBA requirements. Learn More
The ABLE Biott 30 mL Disposable Bioreactor is a single-use bioreactor system for cell culture and microbial fermentation. It has a 30 mL working volume and is made of animal-derived component free (ADCF) materials. The bioreactor features an integrated impeller, integrated sparger, and integrated optical sensors for pH and DO. It is compatible with the ABLE Biott bioreactor controller. The bioreactor is sterile and ready-to-use out of the package. It is designed for process development and optimization in upstream bioprocessing workflows.
Encompass Procurement Services Non-distribution item offered as a customer accommodation; additional freight charges may apply. Learn More