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      Solar photo-Fenton for water disinfection: An investigation of the competitive role of model organic matter for oxidative species

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          Advanced Oxidation Processes for Organic Contaminant Destruction Based on the Fenton Reaction and Related Chemistry

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            Decontamination and disinfection of water by solar photocatalysis: Recent overview and trends

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              Cellular defenses against superoxide and hydrogen peroxide.

              Life evolved in an anaerobic world; therefore, fundamental enzymatic mechanisms and biochemical pathways were refined and integrated into metabolism in the absence of any selective pressure to avoid reactivity with oxygen. After photosystem II appeared, environmental oxygen levels rose very slowly. During this time, microorganisms acquired oxygen tolerance by jettisoning enzymes that use glycyl radicals and exposed low-potential iron-sulfur clusters, which can be directly poisoned by oxygen. They also developed mechanisms to defend themselves against superoxide (O(2)()) and hydrogen peroxide, partially reduced oxygen species that are generated as inadvertent by-products of aerobic metabolism. Contemporary organisms have inherited both the vulnerabilities and the defenses of these ancestral microbes. Current research seeks to identify these, and bacteria comprise an exceptionally accessible experimental system that has provided many of the answers. This manuscript reviews recent developments and identifies remaining puzzles.
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                Author and article information

                Journal
                Applied Catalysis B: Environmental
                Applied Catalysis B: Environmental
                Elsevier BV
                09263373
                April 2014
                April 2014
                : 148-149
                : 484-489
                Article
                10.1016/j.apcatb.2013.09.051
                ae605f0c-dd0e-4e53-a113-284b706926b3
                © 2014

                https://www.elsevier.com/tdm/userlicense/1.0/

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