An affordable, portable solution to the oxygen crisis in India. Engineering at Alberta professor Arvind Rajendran helped colleagues develop a robust, mobile oxygen concentrator that can be used in rural settings.
#engineering#solutions
Read more at:
https://t.co/3wSnsSA9qc
Very proud to see this extensive review paper is finally published:
The first comprehensive review of multiscale performance-based screening of porous materials for carbon capture @ACSChemRev
https://t.co/5oC5edeiJH
Thanks to @LevSarkisov@chemshree@DFTeMa & Stefano Brandani
Excited to share with you all my first-authored publication in #ACS_AMI! In this work, we present a simple way to form a protective skin around any hydrogel by taking inspiration from nature. #softmatter#biomimeticmaterial#organohydrogel
https://t.co/UmUSlpinhY
The pre-print of our latest work on exploring the cost limits of #PVSA for post-comb #CO2capture is now available on @ChemRxiv!
https://t.co/1FiJbsBJF7
Starting as a Lecturer in @ChemEngManUni at @OfficialUoM. The PAST lab will aim to solve challenging #separation and #purification problems of the 21st century.
#PhD position on process development for #pharma compounds available (https://t.co/ACMc1Fp65T). Please RT. Thanks.😅
Some of my zeolite 13X (Zeochem Z10-02ND) CO2-N2-H2O competition data was added to the @nist adsorbent database today! Be sure to check the adsorption-composition curves for competitive data:
CO2-N2
https://t.co/bplQfVhSJK
CO2-H2O
https://t.co/xaGLdfK6eM
@DavidDanaci@IntAdsSoc Hi David! Thank you. Firstly, the scale and the complexity of the process - the number of trains/columns/pumps/valves etc needed to perform the separation. Secondly, we noticed that high adsorbent costs (eg. UTSA-16) can affect overall design (therefore costs) of the VSA process.
One of my posters for the #IASTwitterPoster Conference:
Diffusion of CH4 and N2 in a Reduced Pore Zorite (Ba-RPZ). Click the link to see the .pdf! https://t.co/KScxpwBFqP