2017
DOI: 10.1021/acs.est.7b03583
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Pivotal Roles of Metal Oxides in the Formation of Environmentally Persistent Free Radicals

Abstract: Environmentally persistent free radicals (EPFRs) are emerging pollutants that can adversely affect human health. Although the pivotal roles of metal oxides in EPFR formation have been identified, few studies have investigated the influence of the metal oxide species, size, or concentration on the formation of EPFRs. In this study, EPFR formation from a polyaromatic hydrocarbon with chlorine and hydroxyl substituents (2,4-dichloro-1-naphthol) was investigated using electron paramagnetic resonance spectroscopy. … Show more

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Cited by 105 publications
(82 citation statements)
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References 40 publications
(103 reference statements)
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“…In addition, ZnO is an intrinsic semiconductor and can produce intrinsic defectivity at higher temperatures (D'Arienzo et al 2019;Özgür et al 2005). We detected the hole of ZnO by electron paramagnetic resonance (Table 1); this hole can result in electron transfer to the precursors, accelerating the formation and stabilization of the intermediate radicals (D'Arienzo et al 2019;Yang et al 2017a), which can further dimerize to form Cl-PAHs. Therefore, the concentrations of intermediate radicals catalyzed by ZnO were relatively higher than those of radicals catalyzed by CuO, contributing to the relatively higher concentrations of Cl-PAHs, polychlorinated naphthalenes (Liu et al 2014), and polychlorinated biphenyls (Liu et al 2013) on the surface of ZnO particles.…”
Section: Congener Pro Les Of Cl/br-pahs From Sezn Smelting Plants and Implications For The Dominant Formation Mechanismsmentioning
confidence: 99%
See 1 more Smart Citation
“…In addition, ZnO is an intrinsic semiconductor and can produce intrinsic defectivity at higher temperatures (D'Arienzo et al 2019;Özgür et al 2005). We detected the hole of ZnO by electron paramagnetic resonance (Table 1); this hole can result in electron transfer to the precursors, accelerating the formation and stabilization of the intermediate radicals (D'Arienzo et al 2019;Yang et al 2017a), which can further dimerize to form Cl-PAHs. Therefore, the concentrations of intermediate radicals catalyzed by ZnO were relatively higher than those of radicals catalyzed by CuO, contributing to the relatively higher concentrations of Cl-PAHs, polychlorinated naphthalenes (Liu et al 2014), and polychlorinated biphenyls (Liu et al 2013) on the surface of ZnO particles.…”
Section: Congener Pro Les Of Cl/br-pahs From Sezn Smelting Plants and Implications For The Dominant Formation Mechanismsmentioning
confidence: 99%
“…Organic radicals are important intermediates in the formation of persistent organic pollutants from precursors during thermal processes (Yang et al 2017c;Zhao et al 2020), and zinc oxide (ZnO) is known to catalyze the formation of those organic radical intermediates (Yang et al 2017a). The catalytic capacity of ZnO during the formation of dioxins has been con rmed, and the emissions of dioxins from secondary zinc (SeZn) smelting activities have been shown to be comparable to those from SeCu and SeAl smelting and much higher than dioxin emissions from thermal processes such as municipal solid waste incineration and steelmaking (Liu et al 2015).…”
Section: Introductionmentioning
confidence: 99%
“…Yang et al. [ 144 ] using 2,4‐dichloro‐1‐naphthol as precursor, investigated the effect of different metal oxides (Al 2 O 3 , ZnO, and NiO) on the formation of surface‐bound PFRs with the precursor. The spectra obtained with catalysis by different metal oxides resulted in the formation of different PFRs.…”
Section: Conversion Of Biomasses Into Biochar Catalystsmentioning
confidence: 99%
“…The variations are caused not only by the different meteorological conditions (e.g., humidity, temperature) but also by the presence of different sources (Ravindra et al, 2008;Tian et al, 2009). Although previous studies have con rmed that PAHs can form EPFRs during photochemical reaction or oxidation by O 3 in laboratory condition, the relationship between EPFRs and PAHs in actual atmospheric is still unknown (Borrowman et al, 2016;D'Arienzo et al, 2017;Jia et al, 2016;Jia et al, 2017;Jia et al, 2019b;Jia et al, 2018;Yang et al, 2017a). Moreover, PAHs from different sources have different congener compositions which is also a key factor in the relationships.…”
Section: Introductionmentioning
confidence: 99%