典型文献
"Small amount for multiple times"of H2O2 feeding way in MOS2-Fex heterogeneous fenton for enhancing sulfadiazine degradation
文献摘要:
In recent years,MOS2 catalyzed/cocatalyzed Fenton/Fenton-like systems have attracted wide attention in the field of pollution control,but there are few studies on the effect of H2O2 feeding way on the whole Fenton process.Here,we report a new type of composite catalyst(MoS2-Fex)prepared in a simple way with highly dispersed iron to provide more active sites.MoS2-Fex was proved to possess selectivity for singlet oxygen(1O2)in effectively degrading sulfadiazine with a wide pH adaptability(4.0~10.0).Impor-tantly,the mechanism of the interaction between H2O2 and MoS2 on the Fenton reaction activity was revealed through the combination of experiment and density functional theory(DFT)calculations.Com-pared to the traditional"a large amount for one time"feeding way of H2O2,the"small amount for mul-tiple times"of H2O2 feeding way can increase the degradation rate of sulfadiazine from 36.9%to 91.1%in the MoS2-Fex heterogeneous Fenton system.It is demonstrated that the"small amount for multiple times"of H2O2 feeding way can reduce the side reaction of decomposition of H2O2 by MoS2 and effec-tively improve the utilization rate of H2O2 and the stability of MoS2-Fex.Compared with Fe2O3-based Fenton system,MoS2-Fex can significantly save the amount of H2O2.Compared with nano-iron pow-der,the formation of iron sludge in MoS2-Fex system was significantly reduced.Furthermore,long-term degradation test showed that the MoS2-Fe75/H2O2 system could maintain the effectiveness of degrading organic pollutants for 10 days(or even longer).This study has a guiding significance for the large-scale treatment of industrial wastewater by improved Fenton technology in the future.
文献关键词:
中图分类号:
作者姓名:
Zhuan Chen;Cheng Lian;Kai Huang;Jiahui Ji;Qingyun Yan;Jinlong Zhang;Mingyang Xing
作者机构:
Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering,Feringa Nobel Prize Scientist Joint Research Center,Frontiers Science Center for Materiobiology and Dynamic Chemistry,Institute of Fine Chemicals,School of Chemistry and Molecular Engineering,East China University of Science and Technology,Shanghai 200237,China;Shanghai Engineering Research Center for Multi-media Environmental Catalysis and Resource Utilization,East China University of Science and Technology,Shanghai 200237,China
文献出处:
引用格式:
[1]Zhuan Chen;Cheng Lian;Kai Huang;Jiahui Ji;Qingyun Yan;Jinlong Zhang;Mingyang Xing-."Small amount for multiple times"of H2O2 feeding way in MOS2-Fex heterogeneous fenton for enhancing sulfadiazine degradation)[J].中国化学快报(英文版),2022(03):1365-1372
A类:
fenton,cocatalyzed,Fe75
B类:
Small,amount,multiple,times,H2O2,feeding,way,MOS2,Fex,heterogeneous,enhancing,sulfadiazine,degradation,In,recent,years,Fenton,like,systems,have,attracted,wide,attention,field,pollution,control,but,there,few,studies,whole,process,Here,report,new,type,composite,catalyst,MoS2,prepared,simple,highly,dispersed,iron,provide,active,sites,possess,selectivity,singlet,oxygen,1O2,effectively,degrading,adaptability,Impor,tantly,mechanism,interaction,between,reaction,activity,revealed,through,combination,experiment,density,functional,theory,DFT,calculations,traditional,large,one,small,increase,from,It,demonstrated,that,side,decomposition,by,utilization,stability,Compared,Fe2O3,significantly,save,nano,pow,der,formation,sludge,reduced,Furthermore,term,test,showed,could,maintain,effectiveness,organic,pollutants,days,even,longer,This,study,has,guiding,significance,scale,treatment,industrial,wastewater,improved,technology,future
AB值:
0.468451
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