5-Bromo-2-nitropyridine was prepared from the corresponding amine via hydrogen peroxide oxidation in large scale production. This transformation initially showed low conversion, high impurity content and lack of reproducibility in lab trials. Parallel to process development, safety studies were conducted to investigate the stability of oxidant mixture, its composition and the oxidation reaction itself by reaction and adiabatic calorimetry. The resulting robust reaction conditions and appropriate safety boundaries allowed to develop a reproducible, safe protocol for the implementation of this chemistry on large scale, obtaining consistent results throughout the campaign
The catalytic N-oxidation of alkylpyridines, a reaction which uses hydrogen peroxide as the oxidizin...
One-pot combination of the in-situ generation of hydrogen peroxide (H2O2) with selective oxidation r...
In a study of Nolan and Barton in 1987 it was already underlined that process safety is primarily ba...
Hydrogen peroxide embodies an ideal oxidant in terms of atom-economy, availability and green metrics...
In the recent years, the legislation related to the safety of industrial processes has become more r...
The direct synthesis of hydrogen peroxide in a microreactor is a safe and efficient process. Convent...
Hydrogen peroxide is a versatile and interesting reagent for many industrial processes; nevertheless...
Ketones are industrially produced in large quantities. They find application as solvents and polymer...
Hydrogei l peroxide is a chemical of continuing and growing commercial interest. Hydrogen peroxide i...
Based on the concept of green chemistry, a new green chemistry metric was developed with the conside...
Hydrogen peroxide is a widely used chemical but is not very efficient to make in smaller than indust...
This thesis focuses on the electrochemical production of H₂O₂ via water oxidation and its subsequent...
Hydrogen peroxide is an important chemical of increasing demand in today’s world. Currently, the ant...
Hydrogen peroxide is an important chemical of increasing demand in today’s world. Currently, t...
H2O2 is important in large-scale industrial processes and smaller on-site activities. The present in...
The catalytic N-oxidation of alkylpyridines, a reaction which uses hydrogen peroxide as the oxidizin...
One-pot combination of the in-situ generation of hydrogen peroxide (H2O2) with selective oxidation r...
In a study of Nolan and Barton in 1987 it was already underlined that process safety is primarily ba...
Hydrogen peroxide embodies an ideal oxidant in terms of atom-economy, availability and green metrics...
In the recent years, the legislation related to the safety of industrial processes has become more r...
The direct synthesis of hydrogen peroxide in a microreactor is a safe and efficient process. Convent...
Hydrogen peroxide is a versatile and interesting reagent for many industrial processes; nevertheless...
Ketones are industrially produced in large quantities. They find application as solvents and polymer...
Hydrogei l peroxide is a chemical of continuing and growing commercial interest. Hydrogen peroxide i...
Based on the concept of green chemistry, a new green chemistry metric was developed with the conside...
Hydrogen peroxide is a widely used chemical but is not very efficient to make in smaller than indust...
This thesis focuses on the electrochemical production of H₂O₂ via water oxidation and its subsequent...
Hydrogen peroxide is an important chemical of increasing demand in today’s world. Currently, the ant...
Hydrogen peroxide is an important chemical of increasing demand in today’s world. Currently, t...
H2O2 is important in large-scale industrial processes and smaller on-site activities. The present in...
The catalytic N-oxidation of alkylpyridines, a reaction which uses hydrogen peroxide as the oxidizin...
One-pot combination of the in-situ generation of hydrogen peroxide (H2O2) with selective oxidation r...
In a study of Nolan and Barton in 1987 it was already underlined that process safety is primarily ba...