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dc.contributor.authorMarkowska-Szczupak, Agata*
dc.contributor.authorJanczarek, Marcin*
dc.contributor.authorKowalska, Ewa*
dc.date.accessioned2021-02-11T20:33:33Z
dc.date.available2021-02-11T20:33:33Z
dc.date.issued2020*
dc.date.submitted2020-04-07 23:07:08*
dc.identifier44735*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/54271
dc.description.abstractThe Special Issue, “Nanomaterials for Environmental Purification and Energy Conversion”, describes the significant and increasing role of nanomaterials in catalysis. It is believed that the most important factor for future human development could be to use nanomaterials (nanotechnology) to solve such critical issues facing humanity such as environment, water and energy. It should be also pointed out that properties of nanomaterials differ substantially from that of bulk materials of the same composition, resulting in high reactivity. Therefore, it creates new perspectives for the catalytic processes in the broad sense. This issue was mainly dedicated as a platform for the contributions from The Symposium on Nanomaterials for Environmental Purification and Energy Conversion (SNEPEC), which was held in Sapporo, Japan in winter 2018. Accordingly, this book compiles the current state-of-the-art of research in the area of novel photocatalysts and highlights current research directions in the fields of advanced oxidation technologies, material science and nanotechnology. Written by leading experts in the field of photochemistry and chemical engineering, a collection of 17 papers, including 16 research papers and one review, covers a broad range of topics focusing on the exceptional role of catalytic nanomaterials in solving environmental and energy problems of modern societies. The majority of papers present the importance of photocatalytic nanomaterials, especially for degradation of organic pollutants and inactivation of microorganisms, but there is also a strong representation of conventional catalysis, based on nanomaterials for important processes such as catalytic hydrogen production and organic synthesis.*
dc.languageEnglish*
dc.subjectTA1-2040*
dc.subjectT1-995*
dc.subjectTA170-171*
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technologyen_US
dc.subject.otherPt-Au*
dc.subject.othern/a*
dc.subject.otherphotodegradation*
dc.subject.otherheterojunction*
dc.subject.othernarrow pore size distribution*
dc.subject.otherpolytriazine*
dc.subject.otherionic liquid-assisted solvothermal reaction*
dc.subject.otheralcohols*
dc.subject.othersalicylic acid*
dc.subject.othervisible light*
dc.subject.otherhydrogen production*
dc.subject.othernanocomposites*
dc.subject.otherflue gas*
dc.subject.otherzinc chromite*
dc.subject.othermultiwalled carbon nanotubes*
dc.subject.othermethylene blue*
dc.subject.otherceria nanowires*
dc.subject.otheroxalate*
dc.subject.otherCO2 reduction*
dc.subject.otheradsorption*
dc.subject.otherH2 evolution*
dc.subject.othernanomaterials fabrication*
dc.subject.otheroxygen vacancy*
dc.subject.othersolar radiation*
dc.subject.otherimmobilized catalyst*
dc.subject.otherlow-cost*
dc.subject.otherFe2O3 dispersion*
dc.subject.otherdyes*
dc.subject.otherRhB*
dc.subject.otheranatase*
dc.subject.otherconductive cotton filter*
dc.subject.otherreaction time*
dc.subject.otherCu/FTO nanocomposites*
dc.subject.otherionic liquids*
dc.subject.otherTiO2*
dc.subject.otherphotocatalysis activity*
dc.subject.otherdimethyl carbonate*
dc.subject.otherdisinfection*
dc.subject.otherCO2*
dc.subject.othermagnetic ZnO*
dc.subject.otherhumic acid*
dc.subject.othersynthesis gas*
dc.subject.othergraphene*
dc.subject.otherCu2O*
dc.subject.otherurea*
dc.subject.othercarbon nanotubes*
dc.subject.otherphotocatalytic reduction*
dc.subject.otherTiOF2*
dc.subject.otherNaOH-modified TiOF2*
dc.subject.otheroxygen carrier*
dc.subject.othertexture modification*
dc.subject.othernetwork shape*
dc.subject.othersensitization*
dc.subject.otherTiO2/Cu2O nanotubes*
dc.subject.otherphotocatalysis*
dc.subject.otherXAFS*
dc.subject.otheranodization*
dc.subject.othercarbon dioxide*
dc.subject.otherremoval of microbiological pollutants*
dc.subject.otherSBA-16*
dc.subject.otherchemical looping*
dc.subject.otherBCLA*
dc.subject.othertransfer efficiency*
dc.subject.otherrectorite*
dc.subject.otherCu nanoparticles*
dc.subject.otherpolydopamine*
dc.subject.otherchemical looping reforming of methane*
dc.subject.otherC/TiO2*
dc.subject.otherheterogeneous photocatalysis*
dc.subject.otherwater purification*
dc.subject.othertitanium dioxide*
dc.subject.otheryttrium promoted oxygen carrier*
dc.subject.othergravity feed*
dc.subject.otherZ-scheme*
dc.titleNanomaterials for Environmental Purification and Energy Conversion*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03921-815-8*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039218141*
oapen.relation.isbn9783039218158*
oapen.pages264*
oapen.edition1st*


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