Separation and Valorization of Chlorine From Tail Gas Streams

G Gesa H. Dreyhsig (Institute of Chemistry and Biochemistry Inorganic Chemistry Freie Universität Berlin Berlin Germany) M Merlin Kleoff (Institute of Chemistry and Biochemistry Inorganic Chemistry Freie Universität Berlin Berlin Germany) P Patrick Voßnacker (Institute of Chemistry and Biochemistry Inorganic Chemistry Freie Universität Berlin Berlin Germany) E Elisabeth Dorn (Institute of Chemistry and Biochemistry Inorganic Chemistry Freie Universität Berlin Berlin Germany) J Jacob H. Richter (Institute of Chemistry and Biochemistry Inorganic Chemistry Freie Universität Berlin Berlin Germany) S Sebastian Riedel (Institut für Chemie und Biochemie – Anorganische Chemie, Freie Universität Berlin, Fabeckstraße 34/36, 14195 Berlin, Germany)

Abstract

ABSTRACT The chemical industry generates chlorine‐containing tail gas streams on a million‐ton scale. Following the established linear approach, these streams are neutralized, consuming large quantities of caustic soda (NaOH), thereby producing waste streams of lower value. To overcome this unsustainable linear approach, we developed a circular process to recycle chlorine from tail gas streams. The process is enabled by an ion exchange resin [IEx]Cl that selectively adsorbs chlorine in the presence of other gases, including oxygen, nitrogen, carbon dioxide, and hydrogen, while forming the corresponding trichloride [IEx][Cl 3 ] by halogen bonding. Upon application of heat (80°C) and reduced pressure the adsorbed chlorine is efficiently released, and the ion exchange resin [IEx]Cl is regenerated. Importantly, the adsorbed chlorine can also be directly converted with ethylene or carbon monoxide into the base chemicals 1,2‐dichloroethane or phosgene, respectively. In this way, chlorine from tail gas streams can be recycled and valorized in an integrated process supporting the transformation of the chemical industry toward a more circular economy.

Article Details

Volume / Issue Vol. 1, Issue 1
Published August 11, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

G

Gesa H. Dreyhsig

Institute of Chemistry and Biochemistry Inorganic Chemistry Freie Universität Berlin Berlin Germany

M

Merlin Kleoff

Institute of Chemistry and Biochemistry Inorganic Chemistry Freie Universität Berlin Berlin Germany

P

Patrick Voßnacker

Institute of Chemistry and Biochemistry Inorganic Chemistry Freie Universität Berlin Berlin Germany

E

Elisabeth Dorn

Institute of Chemistry and Biochemistry Inorganic Chemistry Freie Universität Berlin Berlin Germany

J

Jacob H. Richter

Institute of Chemistry and Biochemistry Inorganic Chemistry Freie Universität Berlin Berlin Germany

S

Sebastian Riedel

Institut für Chemie und Biochemie – Anorganische Chemie, Freie Universität Berlin, Fabeckstraße 34/36, 14195 Berlin, Germany