Large-scale 2000 L industrial bioreactor from Bailun — engineered for high-volume fermentation, vaccine production, enzyme manufacture, or biopharma applications.
High-capacity stainless steel bioreactor (5000 L / 6000 L) from Bailun — engineered for industrial-scale fermentation and bioproduction.
Compact glass bioreactor ideal for laboratory-scale microbial or cell culture and research applications.
Solid-state bioreactor for fermentation of fungi, enzymes, or substrates under solid-state conditions.
Heavy-duty stainless steel bioreactor suitable for pilot or industrial-scale fermentation and production.
A compact, entry-level benchtop bioreactor from Bionet designed for microbial and cell culture applications, offering autoclavable vessels, plug-and-play modularity, and flexible process control for research laboratories and teaching facilities.
Highly configurable laboratory bioreactor supporting stirred, airlift, or rocking mixing, compatible with multi-use vessels or single-use bags — ideal for diverse bioprocessing needs from R&D to pilot scale.
Mid-scale steam-in-place (SIP) bioreactor designed to transition processes from lab scale to pilot production with robust stainless-steel construction.
A high-capacity SIP stainless-steel bioreactor engineered for pilot to industrial scale production — with full customization and strong performance for microbial and cell-culture processes.
Customizable industrial-scale bioreactor platform for volumes above 200 L, designed to meet specific production requirements in microbial, cell culture, or biopharma manufacturing.
The ergonomic bioreactor.
Enterprise-grade, scalable SCADA-based bioprocess control software designed for pilot and industrial bioreactors. Provides real-time monitoring, full automation, modular integration, and robust data logging for fermentation and cell-culture production.
ROSITA is an intuitive and modular bioprocess control software for laboratory-scale bioreactors — enabling real-time monitoring, automated control loops, data logging, and process reproducibility for microbial and cell culture workflows.