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   <dc:title>Recycled cyanobacteria ashes for sono-enhanced photo-Fenton wastewater decontamination</dc:title>
   <dc:creator>Artal López, Raúl</dc:creator>
   <dc:creator>Philippe, Laetitia</dc:creator>
   <dc:creator>Gómez, Elvira</dc:creator>
   <dc:creator>Serrà i Ramos, Albert</dc:creator>
   <dc:subject>Fotocatàlisi</dc:subject>
   <dc:subject>Depuració de l'aigua</dc:subject>
   <dc:subject>Photocatalysis</dc:subject>
   <dc:subject>Water purification</dc:subject>
   <dc:description>Currently, there is massive generation of persistent organic pollutants, which are hazardous sub-stances, owing to the exponential industrial growth and the associated waste production. Conse-quently, green and reliable strategies for decontaminating wastewater and generating value-added products are needed to realize the global demand of sustainability. In this study, an efficient sustain-able circular process for water remediation with nearly zero residue production is developed using iron-rich cyanobacteria ashes. These cyanobacteria ashes are obtained from the combustion of Ar-throspira platensis var lonar and are used as Fenton-like photocatalysts in different assisted photo-Fenton reactions (processes enhanced by light). The use of these iron-rich cyanobacteria ashes is par-ticularly effective for the sono-enhanced photo-Fenton processes for water remediation (mineraliza-tion > 94.9%), with an outstanding reusability. At the end of the effective lifetime of the photocata-lyst, the remaining ashes can be subsequently reused as a supplement during the growth of new cy-anobacteria, thus closing the circular process. The proposed approach is a green and sustainable pro-cess integrating both carbon dioxide fixation and clean-water production aimed at attaining sustain-able development.</dc:description>
   <dc:date>2020-05-22T10:32:58Z</dc:date>
   <dc:date>2022-05-15T05:10:17Z</dc:date>
   <dc:date>2020-05-15</dc:date>
   <dc:date>2020-05-22T10:32:58Z</dc:date>
   <dc:type>info:eu-repo/semantics/article</dc:type>
   <dc:type>info:eu-repo/semantics/acceptedVersion</dc:type>
   <dc:identifier>0959-6526</dc:identifier>
   <dc:identifier>https://hdl.handle.net/2445/162030</dc:identifier>
   <dc:identifier>698636</dc:identifier>
   <dc:language>eng</dc:language>
   <dc:relation>Versió postprint del document publicat a: https://doi.org/10.1016/j.jclepro.2020.121881</dc:relation>
   <dc:relation>Journal Of Cleaner Production, 2020, vol. 267, p. 121881</dc:relation>
   <dc:relation>https://doi.org/10.1016/j.jclepro.2020.121881</dc:relation>
   <dc:relation>info:eu-repo/grantAgreement/EC/H2020/754364/EU//EMPAPOSTDOCS-II</dc:relation>
   <dc:rights>cc-by-nc-nd (c) Elsevier B.V., 2020</dc:rights>
   <dc:rights>http://creativecommons.org/licenses/by-nc-nd/3.0/es</dc:rights>
   <dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
   <dc:format>27 p.</dc:format>
   <dc:format>application/pdf</dc:format>
   <dc:publisher>Elsevier B.V.</dc:publisher>
   <dc:source>Articles publicats en revistes (Ciència dels Materials i Química Física)</dc:source>
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