LanzaTech
Decades ago, we recognized the harm humans were causing our planet. So, we implemented recycling ……...

TheSimular is a reaction calorimeter that is used within process development to investigate the thermal propertiesofa chemical reaction under the proposed operating conditions. The Simular allows for theoptimization of process conditions for maximumproduct yield and minimalsafety hazards, based on the derived thermodynamic and kinetic information of the reaction.
The Simular enables the determination of the plant cooling capacity required to keep a reaction isothermal (Tp), and the calculation of the maximum temperature the main reaction will reach in the event of a thermal runaway. The parameter known as theMaximum Temperature of Synthesis Reaction (MTSR) is a critical value in determiningwhether the emergency cooling capacity in a plant is capable ofdealing with anincrease in temperature.The Simular can be used to determine safer reaction conditions.
The Simular supports both the classical heat flow calorimetry method, and thequicker, more efficient,calibration-free power compensation calorimetry method, allowing selection of the most appropriate method for the scenario that is of interest.
Insulated reactorsin glass, Stainless Steeland Hastelloy.
Optional: titanium and zirconium (temperature and pressure range may differ).
Volume range 500 ml to 2 L (1 L standard).
-40 ⁰C to 250 ⁰C as standard (circulator dependent)
Optional : -80 ⁰C, up to 350 ⁰C (circulator dependent)
Stainless Steel and Hastelloy: vacuum to 100 bar(typical).
Glass: vacuum 0.05 bara to 1.0bar(typical).
Through active pumps, manual dip tubes, automated level control, or multisampling units, like theASU.
Optional: gas sampling.
Standard liquid feed pump and balance combination.
Optional liquid feeds:
Syringe pumps for low flow rate feed
Optional gas feeds:
Pressurized vessels for faster reaction rates and/or highly volatile reagents.
Bottle/balance combinations for gas feeds.
Mass flow controller for gas feeds (up to2000 ml/min).
Automatic solenoid valves for controlled gas addition.
All relevant inputs can be logged, enabling automated monitoring and, where appropriate, feedback control of the reactor system, such as:
Offline calculations forcomplex experiments can be performed using the iQ software, allowing the calculation of calorimetric values.
Optional: Sampling rate automation; adjusts to allow greater resolution during periods of experimental interest.
Automaticuser-configurable reaction conditionmonitoring and shutdown procedures,to ensure user safety.
Automatic hardware and software fail-safes are installed on every system.
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