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Reactor
We are convinced that you will find our products and services about our solutions for your work in Reactor useful to ensure the quality of your daily analytical work in the lab. Here: Reaction
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Over 25% of Reactor steps during multiple-stage syntheses in the pharmaceutical and fine chemical industries involve hydrogenations. The specialty Reaction industry is also reliant on these processes. Heterogeneous catalytic hydrogenations are ideal in that the reaction can be tuned for best activity and selectivity, and afterwards the catalyst can be removed by simple filtration. The optimization of a hydrogenation process requires selection of multiple parameters such as the correct catalyst, temperature, pressure, solvent, additives, and substrate-to-catalyst ratio. Reactor.
We proudly present our know-how regarding Reaction. ReactIR™ is used to directly measure the liquid phase during hydrogenations. The solid catalyst is often not observed in the spectra even though the dispersions can be completely opaque (due to carbon-black-supported metal catalysts) and gas bubbles do not interfere with the measurements. MultiMaxIR™ has greatly facilitated the fast and efficient optimization of hydrogenation parameters with a unique combination of in-situ ATR-FTIR monitoring and parallel automated high-pressure reactors. During scale up and manufacturing, MonARC™ increases batch-to batch-consistency by safely detecting real-time process variance and reaction endpoint. We are convinced that you will find our information on Reactor useful to ensure the quality of your daily analytical work in the lab. Reaction.
Robust Hastelloy® probe bodies and diamond and sapphire windows allow virtually any class of Reactor to be measured. ReactIR options include ultra-long fibers, eliminating the need for dedicated facilities (e.g., purge and liquid nitrogen). This instrument to measure the Reaction can be in a control room far away from the sampling point, which is ideal for the pilot plant environment. As in FTIR, the peak height will be proportional to concentration, so kinetic profiles can be determined by monitoring component peaks over the course of the reaction. ConcIRT™ algorithms can also be easily applied to ReactIR reaction data to automatically provide spectra of the components and their kinetic behavior. If you want to learn more about Reaction kinetics - analytics, let us know. The Know-how of our capable serviceteam will help you. Reaction kinetics.
We are convinced that you will find our products and services about our solutions for your work in Reactor useful to ensure the quality of your daily analytical work in the lab.
Chemical process development is undergoing significant changes. Scientists in Reaction kinetics are feeling ever-increasing economic pressure to bring compounds to market faster. The use of automation, parallel tools, and a range of Reactor - analytics - both off-line and in-situ - is changing the way research is done. In-situ technologies such as ReactIR™ provide the process development scientist an additional tool to optimize Reaction.

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