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Fermenters / bioreactors

Bioreactors are specially designed vessels or systems to sustain biologically active processes. Sometimes, bioreactors can be simple vessels in which a reaction is carried out with the help of microorganisms. Often, bioreactors have temperature and atmosphere control to adjust gas concentration or maintain aerobic or anaerobic conditions. One example of a bioreactor is a fermenter to extract energy from carbohydrates (more) in an anaerobic environment. Different sizes are available, from small bioreactors of just milliliters to larger models that can harvest liters, to industrial-sized bioreactors that contain thousands of liters of liquids. In microbiology and cell culturing, bioreactors may be used to grow microbes or create special tissues.

Sartorius Biostat B-DCU Bioreactor System-cover
Sartorius Biostat B-DCU Bioreactor System

System consists of: 1x Sartorius Stedim BioPAT DCU Control Tower 4x Sartorius Stedim Biostat B-DCU B (more)ioreactor Unit 4x Sartorius Stedim Univessel SU Reactor Holder 8x Sartorius PMA7501 Scale 4x Sartorius BB Reactor Heating Blanket 4x Sartorius Filter Heater The Biostat B-DCU is a fermenter/bioreactor specifically designed to accommodate the requirements of process optimization and characterization in the biotech and biopharmaceutical industry. It provides enhanced functionality and an unrivalled level of options for cell culture and microbial processes making it the ideal scale-down model for your large scale process. Supply Tower Gases – Gas supply pressure 1.5 bar (Gasses must be dry, oil and dust-free), connection of gas hoses with d external 6 mm Water – Water supply pressure: 2 – 4 bar, Flow rate up to 20 l/min, Temperature minimum 4°C, Degree of hardness: 12° dH max. Integrated water pressure reduction down to: 1.5 bar Interfaces – 3+ external signal inputs 0–10 V 3+ external signal inputs 4–20 mA Fieldbus for serial or ethernet devices Digital output 24 V for on/off control of external devices Up to 4 analoge outputs for external pumps Connection for control of external drive motor (0–10 V) Dimensions (WxHxD): 360 x 768 x 432 mm Weight: 45 kg Motor drive Rotation speed: 20 – 400 rpm Process Control Temperature: Pt100 0 – 150°C (temperature control 0 – 80°C) Dissolved oxygen: single-use DO sensor patch 0–100% pH: single-use pH sensor patch 6.5 – 8.5 pH Redox: Combined measurement with pH sensor –1,000 –1,000 mV Balance substrate: 7 kg / 1 g Gravimetric flow controller: Accuracy for 7 kg balance 5 g/h O2 offgas: Zirconium dioxide 0–50 vol% CO2 offgas: Infrared 0–10 vol% Temperature control module for UniVessel SU Single-use Culture Vessel With Heating Blanket Electrical heating blanket Temperature control up to 50°C Heating capacity 2 L : 200 W

Netherlands
fermenters or bioreactors
Phenometrics PBR Photobioreactor-cover
Phenometrics PBR Photobioreactor

Phenometrics enable scientists to study algae under the same conditions found outdoors in the ponds, (more) but in the much more efficient confines of the laboratory. Each computer-controlled PBR uses breakthrough technology to re-create the environmental conditions such as temperature, light intensity, and CO2. Choose from pre-programmed experiments, or quickly and easily design your own, with the growth variables that are most important to you. Many researchers use the PBR to set specific parameters to maintain consistency between experiments. Most importantly, the PBR enables reproducibility, a key factor in algae research experiments. The PBR saves time and money while producing better results. Each PBR is also a measurement instrument, measuring growth rates, pH, and other factors in the algae reactor vessel, which are displayed on the computer monitor in a graph or data display. It is customizable to accommodate various probes and sensors that monitor algae culture and growth metrics. 3000 μ-Einstein LED specially designed lighting system with conical vessel that accurately mimics BOTH raceway or production tube bioreactors (controllable from 0- 3000 in steps of 25 μ-Einsteins. Fully programmable Diurnal Cycles; you set the length of sunlight day, and also the hour of peak sunlight. Fully programmable heating and cooling, linkable to the diurnal cycle; you can independently set the hour of peak heating (if different from peak sunlight). Active cooling and heating, from 5 – 50°C Algal Command Software provides for complete, simultaneous, integrated control of up to 256 bioreactors from a single computer, with collation of all data. All the reactors are linked together via Ethernet Hub. CO2 programmable and controlled from Algal Command. Mixing through active magnetic stirring and/or gas sparging. Active sparging of up to two gasses Temperature measurement True Turbidostatic measurement Field-configurable, fully autoclavable, low cost durable polycarbonate reactor vessel The reactor vessel can have as many inlets and outlets as you require 100% (+/- 10%) directly-proportional (by volume) up-scale to pond, raceway, or indoor reactor pH measured and controlled by Algal Command Custom-engineered Turbidostatic Pump allows for true turbidistatic operation; fully programmable and computer-controlled. System contains 4 reactors and pumps with laptop Culture vessel volume: 700ml Working volume: 150 – 600ml Light intensity: Variable up to full ocean sunlight at equator (>3000 mmol photons m-2 s-1) in steps of 25 Temperature control: Active cooling and heating Culture temperature range: 10 – 50°C Diurnal + heating and cooling cycles: Fully programmable and independant Ability to control and measure pH: 0 – 14, may be controlled automaticly using CO2 gas Mixing: Magnetic stirrer Gas control: Computerized, CO2 or other as required Groth rate measurement: Continuous, via turbidistat Sterilization: Entire reactor vessel assembly, including culture medium, may be autoclaved on the “Liquid” cycle Turbidistatic pump: True turbidistatic operation, fully programmable from groth fase Dimensions (HxWxD): 482 x 241 x 318 mm Weight: 7kg

€3,840.60 ex VAT
Netherlands
fermenters or bioreactors
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