Skip to main navigation Skip to search Skip to main content

Enzymatically active high-flux selectively gas-permeable membranes for enhanced oil recovery and carbon capture

  • Susan Rempe, (Inventor)
  • , Ying Bing Jiang (Inventor)
  • , Juan M. Vanegas (Inventor)
  • , C. Jeffrey Brinker (Inventor)
  • , Joseph L. Cecchi (Inventor)

Research output: Patent

Abstract

A membrane structure for moving a gaseous object species from a first region having an object species first concentration, through the membrane structure, to a second region having an object species second concentration different from the first concentration is described. The membrane includes a supporting substrate having a plurality of pores therethrough, each of the plurality of pores defined by a first end, a second end and a surface of the supporting substrate extending between the first end and the second end as well as a nanoporous layer within the plurality of pores, wherein the nanoporous layer comprises a hydrophilic layer and a hydrophobic layer. The membrane also includes a liquid transport medium within the hydrophilic layer. The liquid transport medium includes a liquideous permeation medium and at least one enzyme within the liquideous permeation medium. The at least one enzyme is reinforced by at least one stabilizing component.
Original languageAmerican English
Patent numberUS 11,219,869 B2
StatePublished - Jan 11 2022
Externally publishedYes

Fingerprint

Dive into the research topics of 'Enzymatically active high-flux selectively gas-permeable membranes for enhanced oil recovery and carbon capture'. Together they form a unique fingerprint.

Cite this