membrane separations
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2022 ◽  
pp. 193-208
Author(s):  
Foroogh Mohseni Ghaleh Ghazi ◽  
Mitra Abbaspour ◽  
Mohammad Reza Rahimpour

2021 ◽  
Vol 8 ◽  
Author(s):  
Batuhan Kav ◽  
Bruno Demé ◽  
Christian Gege ◽  
Motomu Tanaka ◽  
Emanuel Schneck ◽  
...  

Glycolipids mediate stable membrane adhesion of potential biological relevance. In this article, we investigate the trans- and cis-interactions of glycolipids in molecular dynamics simulations and relate these interactions to the glycolipid-induced average separations of membranes obtained from neutron scattering experiments. We find that the cis-interactions between glycolipids in the same membrane leaflet tend to strengthen the trans-interactions between glycolipids in apposing leaflets. The trans-interactions of the glycolipids in our simulations require local membrane separations that are significantly smaller than the average membrane separations in the neutron scattering experiments, which indicates an important role of membrane shape fluctuations in glycolipid trans-binding. Simulations at the experimentally measured average membrane separations provide a molecular picture of the interplay between glycolipid attraction and steric repulsion of the fluctuating membranes probed in the experiments.


Author(s):  
Zdravka Lazarova ◽  
Venko Beschkov ◽  
Svetlozar Velizarov
Keyword(s):  

Author(s):  
Roberto Castro-Muñoz ◽  
Angélica Cruz-Cruz ◽  
Yrenka Alfaro-Sommers ◽  
Luisa Ximena Aranda-Jarillo ◽  
Emilia Gontarek-Castro

Author(s):  
Marc-Olivier Coppens

A nature-inspired solution (NIS) methodology is proposed as a systematic platform for innovation and to inform transformative technology required to address Grand Challenges, including sustainable development. Scalability, efficiency, and resilience are essential to nature, as they are to engineering processes. They are achieved through underpinning fundamental mechanisms, which are grouped as recurring themes in the NIS approach: hierarchical transport networks, force balancing, dynamic self-organization, and ecosystem properties. To leverage these universal mechanisms, and incorporate them effectively into engineering design, adaptations may be needed to accommodate the different contexts of nature and engineering applications. Nature-inspired chemical engineering takes advantage of the NIS methodology for process intensification, as demonstrated here in fluidization, catalysis, fuel cell engineering, and membrane separations, where much higher performance is achieved by rigorously employing concepts optimized in nature. The same approach lends itself to other applications, from biomedical engineering to information technology and architecture. Expected final online publication date for the Annual Review of Chemical and Biomolecular Engineering, Volume 12 is June 2021. Please see http://www.annualreviews.org/page/journal/pubdates for revised estimates.


Molecules ◽  
2021 ◽  
Vol 26 (5) ◽  
pp. 1242
Author(s):  
Roberto Castro-Muñoz ◽  
Grzegorz Boczkaj

Thanks to their well-defined molecular sieving and stability, zeolites have been proposed in selective membrane separations, such as gas separation and pervaporation. For instance, the incorporation of zeolites into polymer phases to generate composite (or mixed matrix) membranes revealed important advances in pervaporation. Therefore, the goal of this review is to compile and elucidate the latest advances (over the last 2-3 years) of zeolite applications in pervaporation membranes either combining zeolites or polymers. Here, particular emphasis has been focused on relevant insights and findings in using zeolites in pervaporative azeotropic separations and specific aided applications, together with novel concepts of membranes. A brief background of the pervaporation process is also given. According to the findings of this review, we provide future perspectives and recommendations for new researchers in the field.


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