<efrbr:recordSet xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:efrbr="http://vfrbr.info/efrbr/1.1" xmlns:efrbr-work="http://vfrbr.info/efrbr/1.1/work" xmlns:efrbr-expression="http://vfrbr.info/efrbr/1.1/expression" xmlns:efrbr-manifestation="http://vfrbr.info/efrbr/1.1/manifestation" xmlns:efrbr-person="http://vfrbr.info/efrbr/1.1/person" xmlns:efrbr-corporateBody="http://vfrbr.info/efrbr/1.1/corporateBody" xmlns:efrbr-concept="http://vfrbr.info/efrbr/1.1/concept" xmlns:efrbr-structure="http://vfrbr.info/efrbr/1.1/structure" xmlns:efrbr-responsible="http://vfrbr.info/efrbr/1.1/responsible" xmlns:efrbr-subject="http://vfrbr.info/efrbr/1.1/subject" xmlns:efrbr-other="http://vfrbr.info/efrbr/1.1/other" xsi:schemaLocation="http://vfrbr.info/efrbr/1.1 http://vfrbr.info/schemas/1.1/efrbr.xsd"><efrbr:entities><efrbr-work:work identifier="http://purl.tuc.gr/dl/dias/F1253B2A-69C6-49A1-BAA1-D9A08A546D7B"><efrbr-work:titleOfTheWork>A carbon-14 radiotracer-based study on the phototransformation of polystyrene nanoplastics in water: Versus in air</efrbr-work:titleOfTheWork></efrbr-work:work><efrbr-expression:expression identifier="http://purl.tuc.gr/dl/dias/F1253B2A-69C6-49A1-BAA1-D9A08A546D7B"><efrbr-expression:titleOfTheExpression>A carbon-14 radiotracer-based study on the phototransformation of polystyrene nanoplastics in water: Versus in air</efrbr-expression:titleOfTheExpression><efrbr-expression:formOfExpression vocabulary="DIAS:TYPES">
            Peer-Reviewed Journal Publication
            Δημοσίευση σε Περιοδικό με Κριτές
         </efrbr-expression:formOfExpression><efrbr-expression:dateOfExpression type="issued">2020-11-02</efrbr-expression:dateOfExpression><efrbr-expression:dateOfExpression type="published">2019</efrbr-expression:dateOfExpression><efrbr-expression:languageOfExpression vocabulary="iso639-1">en</efrbr-expression:languageOfExpression><efrbr-expression:summarizationOfContent>Nanoplastic (&lt;1 μm plastic debris) pollution, derived from degradation of larger plastic debris or direct release from cosmetic or cleaning products, is an emerging concern in the environment. In this study, we quantitatively investigated the degradation and mineralization of polystyrene (PS) nanoplastics under ultraviolet (UV) radiation at 254 nm using 14C radioisotope tracer technology. 14C-polystyrene (PS) nanoplastics were synthesized from 14C-styrene. Moreover, to study the role of water during the photodegradation of PS nanoplastics, 14C-PS nanoplastics were exposed to UV radiation in air or suspended in water. The X-ray photoelectron spectroscopy (XPS) results showed that after 48 h of UV irradiation, C-O groups formed on the surface while no significant change was observed from the Fourier-transform infrared spectroscopy (FTIR) analysis, indicating that short-term photo-oxidation only occurs on the thin surface layer of the PS nanoplastics. The molecular weight (Mw) of the PS nanoplastics increased in air after the irradiation, suggesting cross-linking of the PS chains, while it did not show significant changes in the presence of water. The mineralization of the PS nanoplastics was higher in water (17.1 ± 0.55%) than in air (6.17 ± 0.1%). A significant amount (11.0 ± 0.1%) of by-products with small Mw was detected in water during UV irradiation, much higher than that being washed out from the surface of nanoplastics exposed in air. The higher photoreactivity in water suggests that the mechanisms underlying the phototransformation of the PS nanoplastics in the two matrices could be different. The present study provided the first evidence of photodegradation of PS nanoplastics in aqueous environments.</efrbr-expression:summarizationOfContent><efrbr-expression:useRestrictionsOnTheExpression type="creative-commons">http://creativecommons.org/licenses/by/4.0/</efrbr-expression:useRestrictionsOnTheExpression><efrbr-expression:note type="journal name">Environmental Science: Nano</efrbr-expression:note><efrbr-expression:note type="journal volume">9</efrbr-expression:note><efrbr-expression:note type="page range">2907-2917</efrbr-expression:note></efrbr-expression:expression><efrbr-person:person identifier="30D46F68-C174-4B00-BF32-42FA4CF3704F"><efrbr-person:nameOfPerson vocabulary="">
            Tian Lili
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="A60CC84A-4D25-4C1E-A18F-766093DD0892"><efrbr-person:nameOfPerson vocabulary="">
            Chen Qianqian
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="21049C3A-D3D3-4AE4-A145-D42843A13711"><efrbr-person:nameOfPerson vocabulary="">
            Jiang Wei
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="C775670B-4413-4911-8D3B-B5B2C58E831B"><efrbr-person:nameOfPerson vocabulary="">
            Wang Lianhong
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="922B97CF-A91C-4433-A425-899015172A20"><efrbr-person:nameOfPerson vocabulary="">
            Xie Huixiang
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="http://users.isc.tuc.gr/~nkalogerakis"><efrbr-person:nameOfPerson vocabulary="TUC:LDAP">
            Kalogerakis Nikos
            Καλογερακης Νικος
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="7AD08702-01B0-4400-8710-0568F699FC29"><efrbr-person:nameOfPerson vocabulary="">
            Ma Yini
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="68C73D3E-5068-4D06-A7CC-95E90C4C135B"><efrbr-person:nameOfPerson vocabulary="">
            Ji Rong
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-corporateBody:corporateBody identifier="https://v2.sherpa.ac.uk/id/publisher/63"><efrbr-corporateBody:nameOfTheCorporateBody vocabulary="S/R:PUBLISHERS">
            Royal Society of Chemistry
         </efrbr-corporateBody:nameOfTheCorporateBody></efrbr-corporateBody:corporateBody><efrbr-concept:concept identifier="3C0B2DF1-4963-4CB0-B64C-8AB661DCA019"><efrbr-concept:termForTheConcept>
            Nanoplastic pollution
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="2B3DF34A-D732-4114-957A-98518659FA22"><efrbr-concept:termForTheConcept>
            Polystyrene
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="776ECA78-F3F8-4DF6-BAA7-3AB64C8C3CDC"><efrbr-concept:termForTheConcept>
            Radioisotope tracer technology
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="D4C5D3A8-B59F-467F-A32A-C8720AF5C985"><efrbr-concept:termForTheConcept>
            Infrared spectroscopy (FTIR) analysis
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="AE01228B-A8C3-4A53-8678-94977B95C5D4"><efrbr-concept:termForTheConcept>
            Photoreactivity
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