The Technology Horizon for Photocatalytic Water Treatment: Sunrise or Sunset?

Stephanie K. Loeb(Yale University), Pedro J. J. Alvarez(Systems Engineering Research Center), Jonathon Brame(U.S. Army Engineer Research and Development Center), Ezra L. Cates(Clemson University), Wonyong Choi(Pohang University of Science and Technology), John C. Crittenden(Georgia Institute of Technology), Dionysios D. Dionysiou(University of Cincinnati), Qilin Li(Systems Engineering Research Center), Gianluca Li Puma(Loughborough University), Xie Quan(Dalian University of Technology), David L. Sedlak(University of California, Berkeley), T. David Waite(UNSW Sydney), Paul Westerhoff(Systems Engineering Research Center), Jae‐Hong Kim(Yale University)
Environmental Science & Technology
December 21, 2018
Cited by 760Open Access
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Abstract

Advanced oxidation processes via semiconductor photocatalysis for water treatment have been the subject of extensive research over the past three decades, producing many scientific reports focused on elucidating mechanisms and enhancing kinetics for the treatment of contaminants in water. Many of these reports imply that the ultimate goal of the research is to apply photocatalysis in municipal water treatment operations. However, this ignores immense technology transfer problems, perpetuating a widening gap between academic advocation and industrial application. In this Feature, we undertake a critical examination of the trajectory of photocatalytic water treatment research, assessing the viability of proposed applications and identifying those with the most promising future. Several strategies are proposed for scientists and engineers who aim to support research efforts to bring industrially relevant photocatalytic water treatment processes to fruition. Although the reassessed potential may not live up to initial academic hype, an unfavorable assessment in some areas does not preclude the transfer of photocatalysis for water treatment to other niche applications as the technology retains substantive and unique benefits.


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