Artificial Photosynthesis Lab

Edri Lab @ Department of Chemical Engineering, BGU

A Dual-Functional Membrane for CO2 Capture and Electrocatalytic Reduction

Sumesh Sadhujan, Yakov Shitrit, Sonal Rajput, Iranna Udachyan, Tamar Friedman, Svetlana Pevzner, Chetan Prakash Sharma, Christopher J. Arnusch, Yaron S. Cohen, Eran Edri

Carbon capture, utilization, and sequestration technologies are critical for limiting global temperature rise. CO2 capture and utilization are traditionally performed as separate unit operations. Integrating them requires the use of dual-functional materials and offers a promising pathway to overcome energy demand and cost limitations. Herein, the fabrication of an electrocatalytic membrane (eCatMem) by laser-induced graphene processing of a gas-separating membrane is demonstrated, enabling CO2 reduction to formate. The membrane exhibits CO2/N2 permselectivity of ≈20, ensuring comparable performance when operating with pure CO2 or a 10% CO2/N2 gas mixture. The eCatMem achieves current densities of 10–50 mA cm2 with a Faradaic efficiency of ≈70% for formate production. This is the first of its kind demonstration of integrated membrane electrochemical reactive separation to form a liquid capture media that is also a product. This approach utilizes simple, low-cost materials and processes and offers a scalable way to integrate CO2 capture and utilization.

Publication language English
Volume 18
Issue number 17
Publication status Published - 01.09.2025

Keywords

carbon capture and utilization
dual-functional materials
electrocatalytic carbon dioxide reduction
gas separation membranes
laser-induced graphene

ASJC Scopus subject areas

Environmental Chemistry
General Chemical Engineering
General Materials Science
General Energy

Sustainable Development Goals

SDG 13 - Climate Action
Access to Document
10.1002/cssc.202500474
Other files and links
Link to publication in Scopus