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Vladimir Teplyakov

Researcher at Russian Academy of Sciences

Publications -  113
Citations -  1361

Vladimir Teplyakov is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: Membrane & Gas separation. The author has an hindex of 20, co-authored 107 publications receiving 1184 citations. Previous affiliations of Vladimir Teplyakov include Gubkin Russian State University of Oil and Gas & Moscow State University.

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Direct fluorination—Useful tool to enhance commercial properties of polymer articles

TL;DR: In this article, the industrial applications of direct fluorination of polymers are reviewed, such as separation factor of polymeric membranes for gas separation, barrier properties of polymer vessels, pipes and packagings, adhesion, printability, wetting and transparency in visible and IR.
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Lab-scale bioreactor integrated with active membrane system for hydrogen production : experience and prospects

TL;DR: In this paper, the results of organic wastes' bioconversion into hydrogen and of the respective H 2 /CO 2 gas mixtures' separation by using active membrane systems (membrane contactors) with moving liquid carriers are presented.
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Improving gas separation properties of polymeric membranes based on glassy polymers by gas phase fluorination

TL;DR: In this article, a gas phase fluorination was used for modification of polymeric films, different types of membranes (flat sheet and hollow fiber) and membrane modules, which can be successfully used for separation of components of biogas in membrane contactors and selective membrane valves for extraction of He/Ne fraction from waste in the metallurgy industry and separation of natural gas components.
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Separation of diluted butanol–water solutions via vapor phase by organophilic membranes based on high permeable polyacetylenes

TL;DR: In this paper, a continuous membrane-assisted method by example of butanol recovery from fermentation media is considered in which is based on combination of the gas stripping (convenient process) with membrane vapor separation (with preferable butanol vapor permeability).
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In situ synthesis of novel ZIF-8 membranes on polymeric and inorganic supports

TL;DR: In this article, the fabrication of integrated ZIF-8 membranes via a direct in situ crystallization on a porous polyacrylonitrile material and a composite aluminum zirconate based support was performed for the first time.