2021
DOI: 10.1016/j.jhazmat.2020.124299
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Visible light photocatalytic degradation of polypropylene microplastics in a continuous water flow system

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Cited by 270 publications
(85 citation statements)
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“…The ZnO NRs/SnO x / Fe 0 NPs composite was then immobilized on glass fibers substrate in order to tarp the circulated microplastics particles suspended in water. The growth of ZnO NRs on the glass fibers is described elsewhere (Uheida et al, 2021). In brief, ZnO nanocrystallite seeds were deposited on glass fibers substrates of about 1 g, pre-heated to 350 C, by spraying 20 ml of zinc acetate dehydrate solution with concentration of 10 mM at flow rate of about 1 ml/min.…”
Section: Methodsmentioning
confidence: 99%
See 1 more Smart Citation
“…The ZnO NRs/SnO x / Fe 0 NPs composite was then immobilized on glass fibers substrate in order to tarp the circulated microplastics particles suspended in water. The growth of ZnO NRs on the glass fibers is described elsewhere (Uheida et al, 2021). In brief, ZnO nanocrystallite seeds were deposited on glass fibers substrates of about 1 g, pre-heated to 350 C, by spraying 20 ml of zinc acetate dehydrate solution with concentration of 10 mM at flow rate of about 1 ml/min.…”
Section: Methodsmentioning
confidence: 99%
“…Advanced oxidation processes (AOPs) including Fenton reaction, ozonation or electrochemical treatment are applied in the degradation of organic waste in water (Nakata and Fujishima, 2012) and recently have been extended to microplastic remediation (Hu et al, 2021). In principle, the combination of photocatalysis (Tofa et al, 2019a,b;Uheida et al, 2021) and Fenton processes (Hamd and Dutta, 2020) could lead to a faster photogenerated electron production, and the rapidly transferred electrons to iron reduce its state from Fe 3+ to Fe 2+ leading to the charge separation and resultant Fenton processes. The regenerated Fe 2+ increases a fast production of strong hydroxyl radicals (•OH) leading to a rapid degradation of the organic molecules.…”
Section: Introductionmentioning
confidence: 99%
“…Uheida et al tested the degradation of low-density polyethylene (LDPE) microplastic residues by irradiating zinc oxide nanorods (ZnO NRs) with visible light. The results of the study showed that the degradation rate of polymer residues was 30% [51]. Kang et al found that the degradation of 50% of microplastics in water bodies within 8 hours was achieved by the action of sulfate radicals and hydroxyl radicals [52].…”
Section: Chemical Treatment Technologymentioning
confidence: 98%
“…The toxicity of by-products formed during photochemical and photocatalytic oxidation strongly depends on the polymer origin. For example, it was reported that products of photochemical oxidation of PP microplastics reveal low toxicity to humans and to the living species in the aquatic environment [85]. The issue of the formation of toxic by-products occurring during microplastic degradation has not been adequately treated yet.…”
Section: Photocatalytic Degradationmentioning
confidence: 99%