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Name: | Dong Pei | |||||
Academic Title: | Postdoctoral faculty | |||||
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Department: | Department of Environmental and Safety Engineering | |||||
Research Interests: | Environmental catalysis, electrocatalytic water remediation | |||||
E-Mail: | dongpei@upc.edu.cn | |||||
Telephone: | 18765923268 | |||||
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◎Educational Background | ||||||
2010-2014, Shandong University of Science and Technology, Environmental Engineering, Bachelor of Engineering 2014-2017, China University of Petroleum, Environmental Science and Engineering, Master of Engineering 2017-2021, China University of Petroleum, Environmental Chemical Engineering, doctor of engineering | ||||||
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◎Work Experience | ||||||
2021-Now, China University of Petroleum, College of Chemistry and Chemical Engineering, Department of Environmental and Safety Engineering, Postdoctoral faculty | ||||||
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◎Research Direction | ||||||
In recent years, I have been engaged in the regulated synthesis of electrocatalytic materials and the purification of water pollutants. I have mastered rich theoretical knowledge and accumulated much research experience in the development of multi-functional electrode, the efficient purification of organic wastewater and the exploration of catalytic mechanism. The main research contents include developing electrode materials with different micro-scale effects, revealing electrode structure-activity relationship and electrocatalytic reaction mechanism, and realizing efficient electrocatalytic degradation of organic wastewater. The above research results have been widely recognized by domestic and foreign peers. More than 10 high-level SCI papers were published in the last 5 years, including 5 papers in Journal of Hazardous Materials, Electrochimica Acta and other journals as the first/corresponding author. | ||||||
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◎Research Project | ||||||
[1]First accomplisher of the University's Postgraduate Innovation Fund [2]Main contributor of the National Science and Technology Major Project“Research on Catalytic Oxidation and Degradation Technology of Organics in Flowback Fluid”
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◎Representative Papers and Patents | ||||||
1. Paper [1] Pei Dong, Xi Chen, Meiting Guo, Zhiyuan Wu, Haolong Wang, Feifei Lin, Jinqiang Zhang, Shuaijun Wang, Chaocheng Zhao*, Hongqi Sun*. Heterogeneous electro-Fenton catalysis with self-supporting CFP@MnO2-Fe3O4/C cathode for shale gas fracturing flowback wastewater. Journal of Hazardous Materials 2021, 412, 125208. [2] Pei Dong, Haolong Wang, Wenjing Liu, Shuaijun Wang, Yang Wang, Jinqiang Zhang, Feifei Lin, Yongqiang Wang, Chaocheng Zhao*, Xiaoguang Duan, Shaobin Wang, Hongqi Sun*. Quasi-MOF derivative-based electrode for efficient electro-Fenton oxidation. Journal of Hazardous Materials 2021, 401, 123423. [3] Pei Dong, Wenjing Liu, Shuaijun Wang, Haolong Wang, Yongqiang Wang*, Chaocheng Zhao*. In suit synthesis of Fe3O4 on carbon fiber paper@polyaniline substrate as novel self-supported electrode for heterogeneous electro-Fenton oxidation. Electrochimica Acta 2019, 308, 54-63. [4] Meiting Guo; Mingjie Lu; Heng Zhao; Feifei Lin; Fengting He; Jinqiang Zhang; Shuaijun Wan g; Pei Dong*; Chaocheng Zhao*; Efficient electro-Fenton catalysis by self-supported CFP@CoFe2O4 electrode, Journal of Hazardous Materials, 2021, 423: 127033. [5] Chaocheng Zhao*, Pei Dong, Zongmei Liu, Guangrui Wu, Shuaijun Wang, Yongqiang Wang, Fang Liu. Facile synthesis of Fe3O4/MIL-101 nanocomposite as an efficient heterogeneous catalyst for degradation of pollutants in Fenton-like system. RSC Advances, 2017, 7(39): 24453-24461. [6] Wenjing Liu; Zhiyuan Wu; Pei Dong; Feifei Lin; Meng Zang; Shuai Qiao; Yingying Gu; Jinqia ng Zhang; Shuaijun Wang; Chaocheng Zhao*; Heteromorphic Ni Foam@Ni(OH)2/MnO2 as a Self-Standing E lectrode for Electro-Fenton Reactions, Journal of The Electrochemical Society, 2020, 167: 6651. [7] Shuaijun Wang, Qingyun Yan, Pei Dong, Chaocheng Zhao*, Yongqiang Wang, Fang Liu, Lin Li. Morphology and band structure regulation of graphitic carbon nitride microspheres by solvothermal temperature to boost photocatalytic activity. Applied Physics A, 2018, 124: 461. [8] Shuaijun Wang, Fengting He, Pei Dong, Zhaoxin Tai, Chaocheng Zhao*, Yongqiang Wang, Fang Liu, Lin Li. Simultaneous morphology, band structure, and defect optimization of graphitic carbon nitride microsphere by the precursor concentration to boost photocatalytic activity. Journal of Materials Research, 2018, 33: 3917-3927. [9] Wang Shuaijun, Dong Pei, Zhang Yu, Zhao Chaocheng*. Study of Methyl Orange Simulated Wastewater Treatment by Zeolite with Fe-Ce Bimetals. Petroleum refining and chemical industry, 2015, 46, 11. [10] Wang Shuaijun, Dong Pei, Cui Ailing, Wang Qian, Zhao Chaocheng*. Catalytic Degradation of Methyl Orange on MCM-41 Zeolite Supported Iron and Cerium. Environmental Protection of Chemical Industry, 2015, 35, 6. 2.Patent [1] Dong Pei, Zhao Chaocheng, Wang Shuaijun, Wang Dejun, Zhang Xianfeng, Gu Zhaoyang, Zhang Yong. Magnetic stirring reflux thermostatic photocatalytic fluidized bed simulator, ZL201520906732.7. [2] Dong Pei, Wang Shuaijun, Zhao Chaocheng, Wang Dejun, Gu Zhaoyang, Zhang Yong, Zhang Xianfeng, Guo Rui. Magnetic stirred reflux constant temperature fluidized bed reactor,ZL201520838110.5. [3] Zhao Hongfei, Wang Shuaijun, Dong Pei, Zhao Cahocheng, Tai Zhaoxin. Three-dimensional multi-electrode electrocatalytic fluidized bed reactor,ZL201820733791.2. [4] Liu Wenjing, Zhao Cahocheng, Dong Pei, Zhao Yuanyuan, Wang Shuaijun, Tai Zhaoxin. The invention relates to an electrocatalytic oxidation constant temperature electrolyzer device, ZL201820755751.8. [5] Zhao Cahocheng, Wang Shuaijun, Yan Qingyun, Wang Dejun, Dong Pei, Gu Zhaoyang, Wang Yongqiang, Liu Fang. A porous heterostructure composite photocatalyst and the preparation method, Application Publication Number:CN106345505A. | ||||||
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◎Representative Works | ||||||
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◎Awards and Honors | ||||||
2021 University-level Excellent Doctoral Dissertation | ||||||
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◎Courses Offered | ||||||
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◎Student Training | ||||||
Assisted guidance of 8 postgraduate students | ||||||
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◎Part-time Academic Job | ||||||
Journal reviewer of Journal of Alloys and Compounds and Separation and Purification Technology
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