Titania-based sonocatalysts for water remediation: a critical evaluation of mechanisms, performance, and its niche among advanced oxidation processes

Citations

WEB OF SCIENCE

0
Citations

SCOPUS

0

초록

Growing industrial discharge of persistent organic pollutants threatens ecosystems and health, necessitating effective water remediation. Among advanced treatments, sonocatalysis shows promise but critically lacks rigorous benchmarks and a clear strategic rationale against established methods like photocatalysis. This review addresses this critical gap by correlating the electronic and structural engineering of TiO2 composites with their sonocatalytic activity. Most significantly, this work introduces a novel comparative framework, employing normalized kinetic metrics, specifically, the mass-normalized reaction rate (mmol g−1 min−1) and the specific removal rate (L g−1 min−1), to objectively benchmark sonocatalysis against conventional and advanced photocatalysis. Our analysis delineates two distinct technological pathways. Sonocatalysis demonstrates definitive superiority in niche applications involving turbid, light-impenetrable, or highly concentrated industrial effluents, where its ultrasonic activation mechanism overcomes the fundamental limitation of photocatalysis. Conversely, advanced photocatalytic heterojunctions and hybrid systems offer greater energy efficiency and broader applicability for treating large volumes of less challenging wastewater.

키워드

WASTE-WATERREMOVALDEGRADATIONDYESPOLLUTANTSCATALYSTSBLUE
제목
Titania-based sonocatalysts for water remediation: a critical evaluation of mechanisms, performance, and its niche among advanced oxidation processes
저자
Khitab, FatimaMaitlo, Hubdar AliKim, Ki-Hyun
DOI
10.1039/d6ta02458k
발행일
2026-07
유형
Review
저널명
Journal of Materials Chemistry A
14
43
페이지
28858 ~ 28876