Polymeric Sorbents as Energy‐Efficient Alternative to Cryogenic Distillation for Light Hydrocarbon Purification

K Kelechi Festus A Ankit Mondal (New Chemistry Unit, International Centre for Materials Science and School of Advanced Materials, Jawaharlal Nehru Centre for Advanced Scientific Research (JNCASR), Jakkur P.O., Bangalore 560064, India) S Suman Mandal J Jazmine Aiya D. Marquez (Artie McFerrin Department of Chemical Engineering Texas A&M University College Station Texas USA) A Arnab Ghosh A Aishi Sikdar U Urme Podder A Ahana Sarkar (Department of Chemistry Texas A&M University College Station Texas USA) Q Qingsheng Wang H Hong‐Cai Zhou (Department of Chemistry Texas A&M University College Station Texas USA)

Abstract

ABSTRACT Light hydrocarbons are essential gaseous compounds for fuel, polymer manufacturing, fertilizer production, and so forth. The efficient recovery and purification of these gases are still challenging despite their significant industrial and domestic relevance. They exist in the gaseous state under ambient temperature and pressure and are typically recovered from natural gas streams containing multiple close‐boiling‐point hydrocarbons. So far, cryogenic distillation is the commonly used method for their separation and purification. It operates based on their boiling‐point differences, which amounts to significant energy consumption. To address this limitation, adsorption‐based technology is considered an energy‐efficient alternative for the purification of light hydrocarbons. To this effect, polymeric sorbents such as porous polymer networks (PPNs) are a potential alternative due to their robustness, stability, and scalability. This review provides an extensive discussion on cryogenic distillation, applications of light hydrocarbons, and progress in light hydrocarbon purification using polymeric sorbents. Additionally, the pore structure, stability, and techno–economic feasibility of the polymeric sorbents were extensively examined, covering current progress, mechanism of guest molecule separation, characterization techniques, and hurdles still encountered. Overall, since their application in light hydrocarbon separation is still an evolving field, this review will facilitate robust designs by providing the necessary know‐how and roadmaps needed for advancement.

Article Details

Volume / Issue Vol. 1, Issue 1
Published August 10, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (10)

K

Kelechi Festus

A

Ankit Mondal

New Chemistry Unit, International Centre for Materials Science and School of Advanced Materials, Jawaharlal Nehru Centre for Advanced Scientific Research (JNCASR), Jakkur P.O., Bangalore 560064, India

S

Suman Mandal

J

Jazmine Aiya D. Marquez

Artie McFerrin Department of Chemical Engineering Texas A&M University College Station Texas USA

A

Arnab Ghosh

A

Aishi Sikdar

U

Urme Podder

A

Ahana Sarkar

Department of Chemistry Texas A&M University College Station Texas USA

Q

Qingsheng Wang

H

Hong‐Cai Zhou

Department of Chemistry Texas A&M University College Station Texas USA