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Flow Chemistry Projects | Real World Applications by Autichem
Flow chemistry projects and real world applications
Flow chemistry is widely used across pharmaceuticals and fine chemicals, particularly for reactions requiring precision, safety and scalability such as hydrogenation and nitration.

DART-DM20x5
The DART DMX20x5 offers five independent HTF zones and can be built in either Hastelloy or stainless steel, with a full choice of drives, automation and instrumentation. It’s designed specifically for photochemistry applications.

Dual Volume Reactor
This single-tube reactor is available in Hastelloy or stainless steel and provides two working volumes of 60 ml and 155 ml, supported by two independent heat-transfer zones. It’s engineered to handle highly viscous materials and processes with high solids concentrations.

DART-TVR Taylor Vortex Mixing
Built around a single-tube design in either Hastelloy or stainless steel, the DART-TVR incorporates Taylor Vortex Mixing and a gas membrane for the safe handling of oxygen. Two electric heat-transfer zones provide precise thermal control. It’s ideal for continuous gas–liquid reactions.

Flow Reactor: DART-DM7x2 Form 3
This reactor features two independent heat-transfer zones and is available in either Hastelloy or stainless steel. With a 14 ml working volume, it is engineered to process highly viscous materials and handle high solids concentrations. It has been successfully applied to the continuous synthesis of vitamin B1.

Flow Reactor – DART-DM7 Form 2
This electrically heated reactor combines PEEK and borosilicate glass construction with Taylor Vortex Mixing for enhanced mass transfer. With a 7 ml working volume, it is well suited to precise small-scale processes and has been applied to gold nanoparticle reactions in oncology research.

DM7 Photochem
This photochemical module offers two independent heat-transfer zones and can be configured in either Hastelloy or stainless steel. With a 14 ml working volume and a full choice of drives, automation and instrumentation, it provides a flexible platform for a wide range of photochemical applications.

DM7x4
With a 25ml working volume and PTFE/PFA/borosilicate glass construction, the DM7x4 reactor is designed specifically for photochemical processes involving suspended solids. It provides robust handling and reliable performance in challenging multiphase reactions.

Flow Technology DART--DM7 X
These reactor configurations are engineered for advanced reduction chemistry, including ester reductions and NO₂ reductions. They have been successfully applied to ruthenium-catalysed ester reduction processes used in the development of pharmaceutical intermediates.

DART-DM500
With a nominal working volume of 500 ml and construction options in Hastelloy or stainless steel, the DART-DM500 is designed for straightforward scale-up. It has been successfully used for continuous-flow Balz–Schiemann reaction protocols.