Enhanced degradation and mineralization of estriol over ZrO2/OMS-2 nanocomposite: Kinetics, pathway and mechanism
Department精细石油化工中间体国家工程研究中心(ERC)
Zixuan Hao1; Yingping Huang1,4; Yanlan Wang2; Xu Meng3; Xiaopei Wang3; Xiang Liu1
The second department催化新工艺
2022
Source PublicationChemosphere
Issue308Pages:136521
If8.943
compositor第三作者单位
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/29489
Collection精细石油化工中间体国家工程研究中心(ERC)
Corresponding AuthorYingping Huang; Xu Meng; Xiang Liu
Affiliation1.Engineering Research Center of Eco-Environment in Three Gorges Reservoir Region of Ministry of Education, College of Materials and Chemical Engineering, China Three Gorges University
2.Department of Chemistry and Chemical Engineering, Liaocheng University
3.State Key Laboratory for Oxo Synthesis and Selective Oxidation, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences
4.College of Hydraulic & Environmental Engineering, China Three Gorges University
Recommended Citation
GB/T 7714
Zixuan Hao,Yingping Huang,Yanlan Wang,et al. Enhanced degradation and mineralization of estriol over ZrO2/OMS-2 nanocomposite: Kinetics, pathway and mechanism[J]. Chemosphere,2022(308):136521.
APA Zixuan Hao,Yingping Huang,Yanlan Wang,Xu Meng,Xiaopei Wang,&Xiang Liu.(2022).Enhanced degradation and mineralization of estriol over ZrO2/OMS-2 nanocomposite: Kinetics, pathway and mechanism.Chemosphere(308),136521.
MLA Zixuan Hao,et al."Enhanced degradation and mineralization of estriol over ZrO2/OMS-2 nanocomposite: Kinetics, pathway and mechanism".Chemosphere .308(2022):136521.
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