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Chemical and Process-Design Intensification and Use for Micro-Flow particle synthesis

Volker Hessel, Timothy Noël, Q Qi Wang

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Abstract

Means of flow intensification Micro process technology has given strong push to continuous chemical manufacture via facilitating heat and mass transfer; named transport intensification. Next big step was to develop tailored process chemistry in flow under highly intensified conditions – which is major essence in the field of Flow Chemistry. This has been coined Novel Process Windows and has two research pillars – the exploration of unusual and typically harsh process conditions (chemical intensification) and, in more holistic picture, an entirely new (end-to-end), highly integrated or simpler process design (process-design intensification). A survey based on several own-developed flow chemistries will underpin the above. This will demonstrate how to boost reactivity via high-T, high-p, high-c (solvent-free; alternative solvent) concepts.

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Means of flow intensification Micro process technology has given strong push to continuous chemical manufacture via facilitating heat and mass transfer; named transport intensification. Next big step was to develop tailored process chemistry in flow under highly intensified conditions – which is major essence in the field of Flow Chemistry. This has been coined Novel Process Windows and has two research pillars – the exploration of unusual and typically harsh process conditions (chemical intensification) and, in more holistic picture, an entirely new (end-to-end), highly integrated or simpler process design (process-design intensification). A survey based on several own-developed flow chemistries will underpin the above. This will demonstrate how to boost reactivity via high-T, high-p, high-c (solvent-free; alternative solvent) concepts.

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Available abstract

Means of flow intensification Micro process technology has given strong push to continuous chemical manufacture via facilitating heat and mass transfer; named transport intensification. Next big step was to develop tailored process chemistry in flow under highly intensified conditions – which is major essence in the field of Flow Chemistry. This has been coined Novel Process Windows and has two research pillars – the exploration of unusual and typically harsh process conditions (chemical intensification) and, in more holistic picture, an entirely new (end-to-end), highly integrated or simpler process design (process-design intensification). A survey based on several own-developed flow chemistries will underpin the above. This will demonstrate how to boost reactivity via high-T, high-p, high-c (solvent-free; alternative solvent) concepts.

Key concepts: Flow chemistry, Process (computing), Process design, Process engineering, Flow (mathematics), Nanotechnology, Computer science, Continuous flow

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