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dc.contributor.authorLisi, Luciana*
dc.contributor.authorCimino, Stefano*
dc.date.accessioned2021-02-11T09:34:41Z
dc.date.available2021-02-11T09:34:41Z
dc.date.issued2019*
dc.date.submitted2019-12-09 11:49:15*
dc.identifier42561*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/42790
dc.description.abstractCatalyst lifetime represents one of the most crucial economic aspects in industrial catalytic processes, due to costly shutdowns, catalyst replacements, and proper disposal of spent materials. Not surprisingly, there is considerable motivation to understand and treat catalyst deactivation, poisoning, and regeneration, which causes this research topic to continue to grow. The complexity of catalyst poisoning obviously increases along with the increasing use of biomass/waste-derived/residual feedstocks and with requirements for cleaner and novel sustainable processes. This book collects 15 research papers providing insights into several scientific and technical aspects of catalyst poisoning and deactivation, proposing more tolerant catalyst formulations, and exploring possible regeneration strategies.*
dc.languageEnglish*
dc.subjectT1-995*
dc.subjectTP155-156*
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issuesen_US
dc.subject.othercyclic operation*
dc.subject.othern/a*
dc.subject.othernickel catalysts*
dc.subject.otherregeneration*
dc.subject.otherCu/SSZ-13*
dc.subject.othersyngas*
dc.subject.otherNH3-SCR*
dc.subject.otheroxysulfate*
dc.subject.otherNi-catalyst*
dc.subject.otherMW incinerator*
dc.subject.otheriso-octane*
dc.subject.otherhydrogenation*
dc.subject.otherdry reforming of methane*
dc.subject.otheroxysulfide*
dc.subject.otherCo-Zn/H-Beta*
dc.subject.otherLow-temperature catalyst*
dc.subject.otherRh catalysts*
dc.subject.otherdeactivation*
dc.subject.othervanadia species*
dc.subject.otherSO2 poisoning*
dc.subject.othervehicle emission control*
dc.subject.otherbarium carbonate*
dc.subject.othersodium ions*
dc.subject.othersulfur deactivation*
dc.subject.othertetragonal zirconia*
dc.subject.othersulfur poisoning*
dc.subject.otherLiquefied natural gas*
dc.subject.otherwater*
dc.subject.otherdeactivation by coking*
dc.subject.otherphase stabilization*
dc.subject.othercatalyst*
dc.subject.otherNO removal*
dc.subject.otherphysico-chemical characterization*
dc.subject.otheroctanol*
dc.subject.otherSEM*
dc.subject.otheraluminum sulfate*
dc.subject.otheroxygen storage capacity*
dc.subject.otherunusual deactivation*
dc.subject.otherdiesel*
dc.subject.othernitrous oxide*
dc.subject.otherexhaust gas*
dc.subject.otherover-reduction*
dc.subject.otherpoisoning*
dc.subject.othercatalyst deactivation*
dc.subject.otherammonium sulfates*
dc.subject.otherCO2 reforming*
dc.subject.otherSO3*
dc.subject.otherRh*
dc.subject.otherin situ regeneration*
dc.subject.othercopper*
dc.subject.otherV2O5–WO3/TiO2 catalysts*
dc.subject.otherpalladium sulfate*
dc.subject.otherSelective Catalytic Reduction (SCR)*
dc.subject.otherbiogas*
dc.subject.otherthermal stability*
dc.subject.otherphthalic anhydride*
dc.subject.otheroctanal*
dc.subject.othernatural gas*
dc.subject.othersulfur-containing sodium salts*
dc.subject.otherwashing*
dc.subject.othercoke deposition*
dc.subject.othervanadia-titania catalyst*
dc.subject.otherCPO reactor*
dc.subject.otherhomogeneous catalysis*
dc.subject.otherNOx reduction by C3H8*
dc.subject.othernitrogen oxides*
dc.subject.othereffect of flow rate*
dc.subject.otherDeNOx*
dc.subject.othercatalytic methane combustion*
dc.subject.otherdeactivation mechanism*
dc.subject.otherTEM*
dc.subject.othercatalyst durability*
dc.titleCatalysts Deactivation, Poisoning and Regeneration*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03921-547-8*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039215461*
oapen.relation.isbn9783039215478*
oapen.pages254*
oapen.edition1st*


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