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◆ Advanced Science2026-05-25· Electrocatalyst

Hydrogen (H <sub>2</sub> ) Recovery From Hydrogen Sulfide (H <sub>2</sub> S): Current Technologies, Challenges, and Future Outlook

Divyesh Cirikonda, Astrid Campos‐Mata, Şehmus Özden, Shreyasi Chattopadhyay, Pulickel M. Ajayan

原始摘要(英文原文)· Original abstract
ABSTRACT Hydrogen sulfide (H 2 S) can be transformed into hydrogen (H 2 ) through several chemical and catalytic processes, offering a promising route for both waste treatment and clean H 2 production. This colorless, flammable, and toxic gas is found abundantly in swamps, volcanoes, hot springs, sewages, other natural gas fields, and even in refineries and during some industrial processes. A very low concentration of H 2 S could cause adverse health impacts and even fatality. Therefore, removal of H 2 S is necessary. Moreover, decomposition of H 2 S produces H 2 which is being considered as one of the most promising sustainable clean energy solutions. The by‐product, sulfur, holds additional value through its diverse industrial applications and contribute to the circular economy. Numerous techniques, including thermal, thermo‐catalytic, photocatalytic and electrocatalytic approaches, are employed for H 2 S decomposition. This review provides a comprehensive discussion on recent progress on H 2 S splitting via different methods, including thermocatalysis, photocatalysis, electrocatalysis and plasma‐assisted decomposition to guide innovations in this highly promising yet unexplored areas. Moreover, energy requirement, economic viability and current market status are also explored. Finally, key challenges and future perspectives of this highly promising research area are discussed, directing great potential for future explorations.
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Hydrogen (H <sub>2</sub> ) Recovery From Hydrogen Sulfide (H <sub>2</sub> S): Current Technologies, Challenges, and Future Outlook — 科研速览 Science Skim