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Applikon MiniBio bioreactor

Applikon MiniBio is truly a “ Reduced version ” laboratory-scale bioreactor.。 Applikon MiniBio It offers the same flexibility, allowing for customization to meet any process requirement. Its compact size helps reduce media costs while making the most efficient use of bench space.
Overview
Small footprint... a true bioreactor.
- Easy to set up and operate
- Requires only a small amount of workbench space.
- Use less culture medium during the cultivation period.
- Generate more data in a shorter time.
MiniBio It’s the ideal equipment for small-scale laboratory operations. It can effectively save time, occupy less bench space, and generate more data, while delivering fully scalable results. By working with our... BioSep When used in conjunction with efficient cell separation equipment, you can convert batch or fed-batch bioreactors into small-scale continuous bioprocessing systems.
The configurable top plate of the bioreactor adopts Luer The connector frees up space for multiple add-ons, sensors, and accessories, as well as readily available pipeline components, enabling rapid startup.
Conduct microbial and cell culture on a small scale.
Sometimes, less is more.
Compared to conventional laboratory-scale bioreactors, Applikon MiniBio It requires less media and bench space. Researchers can easily conduct multiple parallel experiments, generating more data at once and thereby scaling up efficiently.
Features
Small bioreactor MiniBio With its compact design, scientists can place multiple systems within the precious workspace. Parallel processing has never been easier.
| Generate scalable results Cultivate through small-scale operations to quickly access larger datasets. Help researchers obtain reliable data, streamline the scaling-up process, and achieve higher productivity.
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Application
| Applikon MiniBio Perfectly suited for the following application areas:
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MiniBio 250 |
MiniBio 500 |
MiniBio 1000 |
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Total capacity (mL) |
290 |
550 |
1250 |
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Working capacity (mL) |
200 |
400 |
1000 |
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Minimum working capacity (mL) |
50 |
100 |
200 |
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Overall capacity-to-diameter ratio |
2.3 |
2.1 |
2.3 |
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High work capacity-to-diameter ratio |
1.6 |
1.5 |
1.9 |
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Size (dxh) |
180 x 400 mm |
195 x 400 mm |
200 x 550 mm |
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Autoclave dimensions (dxh) |
180 x 250 mm |
195 x 250 mm |
200 x 400 mm |
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Drive system |
Direct drive, lip seal |
Direct drive, lip seal |
Direct drive, lip seal |
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Maximum stirring speed (rpm) |
50 - 2000 |
50 - 2000 |
50 - 1750 |
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Maximum blade tip speed (m/s) |
2.3 |
2.9 |
3.5 |
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Blade |
Select Rushton and Marine Type |
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Gas distributor |
Micro-bubbles, direct-through, and large-bubble ventilation tubes |
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Top ventilation |
Yes |
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Exhaust |
Electro-cooling exhaust gas condenser (in 37 Celsius @2vvm At that time, evaporation rate <4%/ Heaven) |
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Sampling |
Fixed sample tube, with optional sampling system. |
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Drainage |
Height-adjustable drain pipe |
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Add-on |
4 One fixed inlet and an optional micro liquid injector |
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pH |
Measurement: 8 mm Standard pH Sensor Control: via an acid pump (variable-speed pump) or CO 2 The combination of a gas and an alkali pump (variable-speed pump) |
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DO 2 |
Measurement: LumiSens Optics DO 2 Sensor. Control: Through N 2 air, O 2 (Standard needle valve, optional) MFC ) The combination with stirring |
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Temperature |
Measurement: In the protective tube of the ceiling thermometer Pt-100 Sensor Control: Electric cooling and heating jacket via the bioreactor wall |
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Foam |
Measurement: Height-Adjustable Resistive Foam Sensor Control: Defoaming Feed Pump (Variable-Speed Pump) |
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Liquid level |
Measurement: Height-Adjustable Resistive Liquid Level Sensor Control: Variable-speed liquid-injection pump or variable-speed liquid-discharge pump |
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Optional entry |
Membrane, chemostat, liquid input system |
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Optional sensor |
Biomass, optical density, O 2 and CO 2 Offline analysis, weighing |
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