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dc.contributor.authorVikrant, K.en
dc.contributor.authorKim, K. -H.en
dc.contributor.authorDong, F.en
dc.contributor.authorHeynderickx, P. M.en
dc.contributor.authorBoukhvalov, D. W.en
dc.date.accessioned2024-04-08T11:06:01Z-
dc.date.available2024-04-08T11:06:01Z-
dc.date.issued2022-
dc.identifier.citationVikrant, K, Kim, KH, Dong, F, Heynderickx, PM & Boukhvalov, DW 2022, 'Low-temperature oxidative removal of gaseous formaldehyde by an eggshell waste supported silver-manganese dioxide bimetallic catalyst with ultralow noble metal content', Journal of Hazardous Materials, Том. 434, 128857. https://doi.org/10.1016/j.jhazmat.2022.128857harvard_pure
dc.identifier.citationVikrant, K., Kim, K. H., Dong, F., Heynderickx, P. M., & Boukhvalov, D. W. (2022). Low-temperature oxidative removal of gaseous formaldehyde by an eggshell waste supported silver-manganese dioxide bimetallic catalyst with ultralow noble metal content. Journal of Hazardous Materials, 434, [128857]. https://doi.org/10.1016/j.jhazmat.2022.128857apa_pure
dc.identifier.issn0304-3894-
dc.identifier.otherFinal2
dc.identifier.otherAll Open Access; Green Open Access3
dc.identifier.otherhttps://biblio.ugent.be/publication/8749525/file/01GWH2KBC8T57551KXF40CBAYF.pdf1
dc.identifier.otherhttps://biblio.ugent.be/publication/8749525/file/01GWH2KBC8T57551KXF40CBAYF.pdfpdf
dc.identifier.urihttp://elar.urfu.ru/handle/10995/131255-
dc.description.abstractUnder dark/low temperature (DLT) conditions, the oxidative removal of gaseous formaldehyde (FA) was studied using eggshell waste supported silver (Ag)-manganese dioxide (MnO2) bimetallic catalysts. To assess the synergistic effects between the two different metals, 0.03%-Ag-(0.5–5%)-MnO2/Eggshell catalysts were prepared and employed for DLT-oxidation of FA. The steady-state FA oxidation reaction rate (mmol g-1 h-1), when measured using 100 ppm FA at 80 °C (gas hourly space velocity (GHSV) of 5308 h-1), varied as follows: Ag-1.5%-MnO2/Eggshell-R (9.4) > Ag-3%-MnO2/Eggshell-R (8.1) > Ag-1.5%-MnO2/Eggshell (7.5) > Ag-5%-MnO2/Eggshell-R (7.2) > Ag-1.5%-MnO2/CaCO3-R (6.8) > MnO2-R (6) > Ag-0.5%-MnO2/Eggshell-R (3.2) > Ag/Eggshell-R (2.6). (Here, ‘R’ denotes hydrogen-based thermochemical reduction pretreatment.) The temperature required for 90% FA conversion (T90) at the same GHSV exhibited a contrary ordering: Ag/Eggshell-R (175 °C) > Ag-0.5%-MnO2/Eggshell-R (123 °C) > Ag-5%-MnO2/Eggshell-R (113 °C) > MnO2-R (99 °C) > Ag-1.5%-MnO2/Eggshell (96 °C) > Ag-3%-MnO2/Eggshell-R (93 °C) > Ag-1.5%-MnO2/Eggshell-R (77 °C). The eggshell catalyst outperformed the ones made of commercial calcium carbonate due to the presence of defects in the former. The MnO2 co-catalyst enhances the catalytic activities through the capture and activation of atmospheric oxygen (O2) with rapid catalytic regeneration. Also, MnO2 favorably captures the hydrogen of the adsorbed FA molecules to make the oxidation pathway thermodynamically more favorable. © 2022 Elsevier B.V.en
dc.description.sponsorshipMinistry of Scienceen
dc.description.sponsorshipNational Research Foundation of Korea, NRFen
dc.description.sponsorshipUniversiteit Genten
dc.description.sponsorshipMinistry of Science and ICT, South Korea, MSIT, (2021R1A3B1068304)en
dc.description.sponsorshipThis work was supported by a grant from the National Research Foundation of Korea (NRF) funded by the Ministry of Science and ITC (MSIT) of the Korean government (Grant No: 2021R1A3B1068304 ). P.M.H. would like to thank the Research and Development Program of Ghent University Global Campus (GUGC), Korea.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherElsevier B.V.en
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourceJournal of Hazardous Materials2
dc.sourceJournal of Hazardous Materialsen
dc.subjectCATALYTIC OXIDATIONen
dc.subjectFORMALDEHYDEen
dc.subjectINDOOR AIRen
dc.subjectSOLID BIOWASTEen
dc.subjectVOLATILE ORGANIC COMPOUNDSen
dc.subjectANIMALSen
dc.subjectCATALYSISen
dc.subjectEGG SHELLen
dc.subjectFORMALDEHYDEen
dc.subjectGASESen
dc.subjectHYDROGENen
dc.subjectMANGANESE COMPOUNDSen
dc.subjectOXIDATIVE STRESSen
dc.subjectOXIDESen
dc.subjectOXYGENen
dc.subjectSILVERen
dc.subjectTEMPERATUREen
dc.subjectCALCIUM CARBONATEen
dc.subjectCATALYSTSen
dc.subjectCATALYTIC OXIDATIONen
dc.subjectFORMALDEHYDEen
dc.subjectINDOOR AIR POLLUTIONen
dc.subjectPRECIOUS METALSen
dc.subjectSILVER COMPOUNDSen
dc.subjectTEMPERATUREen
dc.subjectVOLATILE ORGANIC COMPOUNDSen
dc.subjectCALCIUM CARBONATEen
dc.subjectFORMALDEHYDEen
dc.subjectHYDROGENen
dc.subjectMANGANESE DIOXIDEen
dc.subjectMETALen
dc.subjectOXYGENen
dc.subjectSILVERen
dc.subjectFORMALDEHYDEen
dc.subjectMANGANESE DERIVATIVEen
dc.subjectMANGANESE DIOXIDEen
dc.subjectOXIDEen
dc.subjectSILVERen
dc.subjectBIMETALLIC CATALYSTSen
dc.subjectBIOWASTESen
dc.subjectEGG-SHELL CATALYSTSen
dc.subjectEGGSHELL WASTESen
dc.subjectGAS HOURLY SPACE VELOCITIESen
dc.subjectGASEOUS FORMALDEHYDEen
dc.subjectINDOOR AIRen
dc.subjectLOWS-TEMPERATURESen
dc.subjectOXIDATIVE REMOVALSen
dc.subjectSOLID BIOWASTEen
dc.subjectCATALYSTen
dc.subjectEGGSHELLen
dc.subjectFORMALDEHYDEen
dc.subjectINDOOR AIRen
dc.subjectLOW TEMPERATUREen
dc.subjectOXIDATIONen
dc.subjectOXIDATIVE STRESSen
dc.subjectPOLLUTANT REMOVALen
dc.subjectSILVERen
dc.subjectSOLID WASTEen
dc.subjectVOLATILE ORGANIC COMPOUNDen
dc.subjectWASTE MANAGEMENTen
dc.subjectAMBIENT AIRen
dc.subjectARTICLEen
dc.subjectCATALYSISen
dc.subjectCATALYSTen
dc.subjectEGG SHELLen
dc.subjectLOW TEMPERATUREen
dc.subjectOXIDATIONen
dc.subjectREDUCTION (CHEMISTRY)en
dc.subjectSTEADY STATEen
dc.subjectSYNERGISTIC EFFECTen
dc.subjectANIMALen
dc.subjectCHEMISTRYen
dc.subjectEGG SHELLen
dc.subjectGASen
dc.subjectOXIDATIVE STRESSen
dc.subjectTEMPERATUREen
dc.subjectMANGANESE OXIDEen
dc.titleLow-temperature oxidative removal of gaseous formaldehyde by an eggshell waste supported silver-manganese dioxide bimetallic catalyst with ultralow noble metal contenten
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.1016/j.jhazmat.2022.128857-
dc.identifier.scopus85128204874-
local.contributor.employeeVikrant K., Department of Civil and Environmental Engineering, Hanyang University, 222 Wangsimni-Ro, Seoul, 04763, South Koreaen
local.contributor.employeeKim K.-H., Department of Civil and Environmental Engineering, Hanyang University, 222 Wangsimni-Ro, Seoul, 04763, South Koreaen
local.contributor.employeeDong F., Yangtze Delta Region Institute (Huzhou) & Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Huzhou, 313001, Chinaen
local.contributor.employeeHeynderickx P.M., Center for Environmental and Energy Research (CEER), Engineering of Materials via Catalysis and Characterization, Ghent University Global Campus, 119–5 Songdo Munhwa-ro, Yeonsu-gu, Incheon, 406-840, South Korea, Department of Green Chemistry and Technology, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, Ghent, B-9000, Belgiumen
local.contributor.employeeBoukhvalov D.W., College of Science, Institute of Materials Physics and Chemistry, Nanjing Forestry University, Nanjing, 210037, China, Institute of Physics and Technology, Ural Federal University, Mira Street 19, Yekaterinburg, 620002, Russian Federationen
local.volume434-
dc.identifier.wos000793534300002-
local.contributor.departmentDepartment of Civil and Environmental Engineering, Hanyang University, 222 Wangsimni-Ro, Seoul, 04763, South Koreaen
local.contributor.departmentYangtze Delta Region Institute (Huzhou) & Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Huzhou, 313001, Chinaen
local.contributor.departmentCenter for Environmental and Energy Research (CEER), Engineering of Materials via Catalysis and Characterization, Ghent University Global Campus, 119–5 Songdo Munhwa-ro, Yeonsu-gu, Incheon, 406-840, South Koreaen
local.contributor.departmentDepartment of Green Chemistry and Technology, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, Ghent, B-9000, Belgiumen
local.contributor.departmentCollege of Science, Institute of Materials Physics and Chemistry, Nanjing Forestry University, Nanjing, 210037, Chinaen
local.contributor.departmentInstitute of Physics and Technology, Ural Federal University, Mira Street 19, Yekaterinburg, 620002, Russian Federationen
local.identifier.pure29983908-
local.identifier.pure63c98634-22bd-4539-b0be-2b9a23c68f69uuid
local.description.order128857-
local.identifier.eid2-s2.0-85128204874-
local.identifier.wosWOS:000793534300002-
local.identifier.pmid35429758-
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