Download milli-extraction column for liquid-liquid phase separation

Survey
yes no Was this document useful for you?
   Thank you for your participation!

* Your assessment is very important for improving the workof artificial intelligence, which forms the content of this project

Document related concepts

Strengthening mechanisms of materials wikipedia , lookup

Superplasticity wikipedia , lookup

California Green Chemistry Initiative wikipedia , lookup

Thermal spraying wikipedia , lookup

Materials science wikipedia , lookup

Fine chemical wikipedia , lookup

Nuclear chemistry wikipedia , lookup

Drug discovery wikipedia , lookup

Al-Shifa pharmaceutical factory wikipedia , lookup

Chemical weapon proliferation wikipedia , lookup

Hydroformylation wikipedia , lookup

Safety data sheet wikipedia , lookup

Chemical Corps wikipedia , lookup

Chemical weapon wikipedia , lookup

Chemical potential wikipedia , lookup

Chemical industry wikipedia , lookup

Nicholas A. Peppas wikipedia , lookup

Cocrystal wikipedia , lookup

Liquid–liquid extraction wikipedia , lookup

Chemical plant wikipedia , lookup

VX (nerve agent) wikipedia , lookup

Process chemistry wikipedia , lookup

Chemical thermodynamics wikipedia , lookup

Solid wikipedia , lookup

Sol–gel process wikipedia , lookup

Ceramic engineering wikipedia , lookup

Transcript
MILLI-EXTRACTION COLUMN FOR
LIQUID-LIQUID PHASE SEPARATION
CHEMICAL PROCESS ENGINEERING
Best Practice Example created by
Additive Manufacturing has a high potential in chemical process
engineering because the components are getting smaller and more
complex. Additionally, they are optimized for the specific application.
Especially for the efficient extraction of a material from a solvent,
Additive Manufacturing can be used to develop different designs of
milli-extraction columns for liquid-liquid phase separation.
Dr.-Ing. Kai Sauerzapfe:
“The LCM-technology supported us in changing the material for some
reactors in the chemical process engineering from stainless steel to
ceramics. It was very easy to make first demonstrations and show the
advantages of ceramic materials. Due to the chemical and thermal stability of alumina, new materials can be processed and higher process
temperatures can be reached.”
www.lithoz.com