典型文献
                A facial strategy to efficiently improve catalytic performance of CoFe2O4 to peroxymonosulfate
            文献摘要:
                    Cobaltiron spinel(CoFe2O4)has been considered as a good heterogeneous catalysis to perox-ymonosulfate(PMS)in the degradation of persistent organic pollutants due to its magnetic properties and good chemical stability.However,its catalytic activity needs to be further improved.Here,a facial strategy,"in-situ substitution",was adopted to modify CoFe2O4 to improve its catalytic performance just by suitably increasing the Co/Fe ratio in synthesis process.Compared with CoFe2O4,the newly synthesized Co1.5Fe1.5O4,could not only sig-nificantly improve the degradation efficiency of phenol,from 50.69 to 93.6%,but also ex-hibited more effective mineralization ability and higher PMS utilization.The activation en-ergy advantage for phenol degradation using Co1.5Fe1.5O4 was only 44.2 kJ/mol,much lower than that with CoFe2O4(127.3 kJ/mol).A series of related representations of CoFe2O4 and Co1.5Fe1.5O4 were compared to explore the possible reasons for the outstanding catalytic ac-tivity of Co1.5Fe1.5O4.Results showed that Co1.5Fe1.5O4 as well represented spinel crystal as CoFe2O4 and the excess cobalt just partially replaced the position of iron without changing the original structure.Co1.5Fe1.5O4 had smaller particle size(8.7 nm),larger specific surface area(126.3 m2/g),which was more favorable for exposure of active sites.Apart from the superior physical properties,more importantly,more reactive centers Co(Ⅱ)and surface hydroxyl compounds generated on Co1.5Fe1.5O4,which might be the major reason.Further-more,Co1.5Fe1.5O4 behaved good paramagnetism,wide range of pH suitability and strong resistance to salt interference,making it a new prospect in environmental application.
                文献关键词:
                    
                中图分类号:
                    作者姓名:
                    
                        Lili Gao;Jieqiong Deng;Tong Li;Kai Qi;Jiandong Zhang;Qun Yi
                    
                作者机构:
                    College of Environmental Science and Engineering,Taiyuan University of Technology,Taiyuan 030024,China;College of Biomedical Engineering,Taiyuan University of Technology,Taiyuan 030024,China
                文献出处:
                    
                引用格式:
                    
                        [1]Lili Gao;Jieqiong Deng;Tong Li;Kai Qi;Jiandong Zhang;Qun Yi-.A facial strategy to efficiently improve catalytic performance of CoFe2O4 to peroxymonosulfate)[J].环境科学学报(英文版),2022(06):1-13
                    
                A类:
                Cobaltiron,5Fe1
                B类:
                    facial,strategy,efficiently,catalytic,performance,CoFe2O4,peroxymonosulfate,spinel,has,been,considered,good,heterogeneous,catalysis,PMS,degradation,persistent,organic,pollutants,due,its,magnetic,properties,chemical,stability,However,activity,needs,further,improved,Here,situ,substitution,was,adopted,modify,just,by,suitably,increasing,ratio,synthesis,process,Compared,newly,synthesized,Co1,5O4,could,not,only,sig,nificantly,efficiency,phenol,from,but,also,hibited,more,effective,mineralization,higher,utilization,activation,ergy,advantage,using,kJ,much,lower,than,that,series,related,representations,were,compared,explore,possible,reasons,outstanding,Results,showed,well,represented,crystal,excess,cobalt,partially,replaced,position,without,changing,original,structure,had,smaller,particle,larger,specific,surface,area,which,favorable,exposure,sites,Apart,superior,physical,importantly,reactive,centers,hydroxyl,compounds,generated,might,major,Further,behaved,paramagnetism,wide,range,suitability,strong,resistance,salt,interference,making,prospect,environmental,application
                AB值:
                    0.521008
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