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Last updated:2025.04.30
Total visits:10

Da WANG

| Doctor Associate professor Master Supervisor

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Office Location: College of Environment B515

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Email: wangda@zjut.edu.cn

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  • Biography

    Da WANG, Doctorate, Associate Professor, MSc Supervisor.

    Dr. Da WANG received his Ph.D. in Civil Engineering from Harbin Institute of technology in 2019. His main research line focuses on the interfacial catalytic oxidation, advanced oxidation (mainly catalytic ozonation) and R&D of green environmental catalytic materials. Since April 2020, he works at the Zhejiang University of Technology, P. R. China as an associate professor, based in the College of Environment. He is (co)author of 50 articles with an h-index of 24, and is involved in more than 20 patents.



  • Results

    1.       Wang Da, Luo Kai, Tian Haole, Cheng Haijun, Stefanos Giannakis, Song Yang, He Zhiqiao, Wang Lizhang, Song Shuang*, Fang Jingyun and Ma Jun. Transforming Plain LaMnO3 Perovskite into a powerful ozonation catalyst: Elucidating the mechanisms of simultaneous A and B Sites modulation for enhanced toluene degradation[J]. Environmental Science & Technology, 2024, 58(27): 12167-12178.

    2.       He Yinning, Li Jiayi, Tang Jingyu, Cheng Haijun, Zeng Tao, He Zhiqiao, Wang Da*, Wang Lizhang, Song Shuang and Ma Jun. Constructed electron-dense Mn sites in nitrogen-doped Mn3O4 for efficient catalytic ozonation of pyrazines: degradation and odor elimination[J]. Water Research, 2023, 247: 120823.

    3.       Wang Da, He Yinning, Chen Yi, Yang Fan, He Zhiqiao, Zeng Tao, Lu Xiaohui, Wang Lizhang, Song Shuang* and Ma Jun. Electron transfer enhancing the Mn (II)/Mn (III) cycle in MnO/CN towards catalytic ozonation of atrazine via a synergistic effect between MnO and CN[J]. Water Research, 2023, 230: 119574.

    4.       Wang Da, Xu Haodan, Ma Jun*, Stefanos Giannakis, Lu Xiaohui, Chi Huizhong, Song Shuang and Qi Jingyao*. Enhanced mineralization of atrazine by surface induced hydroxyl radicals over light-weight granular mixed-quartz sands with ozone[J]. Water research, 2019, 149: 136-148.

    5.       Wang Da, Cai Liwen, Song Shuang, Stefanos Giannakis*, Ma Jun, Davide Vione and Cesar Pulgarin*. Bacterial inactivation in sunlit surface waters is dominated by reactive species that emanate from the synergy between light, iron, and natural organic matter[J]. Applied Catalysis B: Environmental, 2024, 343: 123573.

    6.       Dong Shiwen, Liu Luzhen, Xu Wen, Cheng Haijun, He Zhiqiao, Tang Juntao, Wang Da*, Wang Lizhang, Song Shuang and Ma Jun. Engineering triune active sites on alkali metal-doped graphite carbon nitride for aqueous catalytic ozonation[J]. ACS ES&T Engineering, 2024.

    7.       Dong Shiwen, Liu Luzhen, Xu Wen, Cheng Haijun, He Zhiqiao, Dong Feilong, Wang Da*, Wang Lizhang, Song Shuang and Ma Jun. Explore synergistic catalytic ozonation by dual active sites of oxygen vacancies and defects in MgO/biochar for atrazine degradation[J]. Journal of Environmental Chemical Engineering, 2024, 12: 114221.

    8.       Dong Shiwen, Xu Wen, Guo Qingqing, Luo Kai, Cheng Haijun, Tang Juntao, Wang Da*, He Zhiqiao*, Wang Lizhang, Song Shuang and Ma Jun. Enhanced 2, 6-dimethylpyrazine removal by catalytic ozonation with legumes biochar: The roles of oxygen- and nitrogen-containing functional groups[J]. Separation and Purification Technology, 2024, 334: 125991.

    9.       李佳艺, 何银宁, 陈怡, 沈星, 汪达*, 宋爽, 马军. 钛酸铁催化臭氧氧化降解水中莠去津[J]. 环境科学学报, 2024, 44(05): 102-111.

    10.    Wang Da, Xing Ying, Li Juan, Dong Feilong, Cheng Haijun, He Zhiqiao, Wang Lizhang, Stefanos Giannakis, Song Shuang* and Ma Jun. Degradation of odor compounds in drinking water by ozone and ozone-based advanced oxidation processes: a review[J]. ACS ES&T Water, 2023, 3: 3452-3473.

    11.    Dong Shiwen, Shen Xing, Guo Qingqing, Cheng Haijun, Stefanos Giannakis, He Zhiqiao, Wang Lizhang, Wang Da*, Song Shuang and Ma Jun. Valorization of soybean plant wastes in preparation of N-doped biochar for catalytic ozonation of organic contaminants: Atrazine degradation performance and mechanistic considerations[J]. Chemical Engineering Journal, 2023: 145153.

    12.    Wang Da, Stefanos Giannakis, Tang Jingyu, Luo Kai, Tang Juntao, He Zhiqiao, Song Shuang* and Wang Lizhang*. Effect of rGO content on enhanced Photo-Fenton degradation of Venlafaxine using rGO encapsulated magnetic hexagonal FeTiO3 nanosheets[J]. Chemical Engineering Journal, 2023: 147319.

    13.    Wang Da, Yang Zhe, He Yinning, Dong Shiwen, Dong Feilong, He Zhiqiao, Lu Xiaohui, Wang Lizhang, Song Shuang* and Ma Jun. Metribuzin and metamitron degradation using catalytic ozonation over tourmaline: Kinetics, degradation pathway, and toxicity[J]. Separation and Purification Technology, 2023: 123028.

    14.    Wang Da, Dong Shiwen, Fu Siqi, Shen Yi, Zeng Tao, Yu Weiting, Lu Xiaohui, Wang Lizhang, Song Shuang* and Ma Jun. Catalytic ozonation for imazapic degradation over kelp-derived biochar: Promotional role of N-and S-based active sites[J]. Science of The Total Environment, 2023: 160473.

    15.    Wang Da, Dong Shiwen, Hu Hangkai, He Zhiqiao, Dong Feilong, Tang Juntao, Lu Xiaohui, Wang Lizhang, Song Shuang* and Ma Jun. Catalytic ozonation of atrazine with stable boron-doped graphene nanoparticles derived from waste polyvinyl alcohol film: Performance and mechanism[J]. Chemical Engineering Journal, 2023: 140316.

    16.    Wang Da, Zhu Ying, Yu Weiting, He Zhiqiao, Dong Feilong, Shen Yi, Zeng Tao, Lu Xiaohui, Ma Jun, Wang Lizhang and Song Shuang*. Ag-MOF-derived 3D Ag dendrites used for the efficient electrocatalytic reduction of CO2 to CO[J]. Electrochimica Acta, 2022, 403: 139652.

    17.    汪达, 杨喆, 卢晓辉, 王立章, 宋爽*, 马军. 催化臭氧净水过程中催化材料晶面的作用[J]. 科学通报, 2022, 67(31): 3679-3694.

    18.    杨帆, 杨喆, 胡林涛, 郭子瑜, 汪达*, 宋爽, 马军. 基于浓度梯度算法控制的自动寻污船应用于暗管排查[J]. 中国给水排水, 2022, 38(13): 8-14.

    19.    胡航恺, 徐浩丹, 卢晓辉, 王立章, 马军, 宋爽, 汪达*. 水中有机物对紫外光催化还原溴酸盐的影响[J]. 中国环境科学, 2022, 42(03): 1164-1172.

    20.    Wang Da, Xu Jinli, Zhu Ying, Wen Lingsha, Ye Jiexu, Shen Yi, Zeng Tao, Lu Xiaohui, Ma Jun, Wang Lizhang and Song Shuang*. HKUST-1-derived highly ordered Cu nanosheets with enriched edge sites, stepped (211) surfaces and (200) facets for effective electrochemical CO2 reduction[J]. Chemosphere, 2021, 278: 130408.

    21.    Wang Da, Dong Shiwen, Wen Lingsha, Yu Weiting, He Zhiqiao, Guo Qingqing, Lu Xiaohui, Wang Lizhang, Song Shuang* and Ma Jun. Highly selective electrocatalytic reduction of CO2 to HCOOH over an in situ derived hydrocerussite thin film on a Pb substrate[J]. Chemosphere, 2022, 291: 132889.

    22.    Wang Da, He Yinning, Zhong Na, He Zhiqiao, Shen Yi, Zeng Tao, Lu Xiaohui, Ma Jun and Song Shuang*. In situ chloride-mediated synthesis of TiO2 thin film photoanode with enhanced photoelectrochemical activity for carbamazepine oxidation coupled with simultaneous cathodic H2 production and CO2 conversion to fuels[J]. Journal of Hazardous Materials, 2021, 410: 124563.

    23.    Wang Da, Xu Haodan, Ma Jun*, Lu Xiaohui, Qi Jingyao* and Song Shuang. Strong promoted catalytic ozonation of atrazine at low temperature using tourmaline as catalyst: Influencing factors, reaction mechanisms and pathways[J]. Chemical Engineering Journal, 2018, 354: 113-125.

    24.    Wang Da, Xu Haodan, Ma Jun*, Lu Xiaohui, Qi Jingyao* and Song Shuang. Morphology control studies of MnTiO3 nanostructures with exposed {0001} facets as a high-performance catalyst for water purification[J]. ACS Applied Materials & Interfaces, 2018, 10(37): 31631-31640.

    25.    Wang Da, Yu Yan, Zhang Zhipeng, Fang Huiying, Chen Jianmeng, He Zhiqiao and Song Shuang*. Ag/Ag2SO3 plasmonic catalysts with high activity and stability for CO2 reduction with water vapor under visible light[J]. Environmental Science and Pollution Research, 2016, 23(18): 18369-18378.

    26.    Xu Haodan, Wang Da, Ma Jun*, Zhang Tao, Lu Xiaohui and Chen Zhiqiang*. A superior active and stable spinel sulfide for catalytic peroxymonosulfate oxidation of bisphenol S[J]. Applied Catalysis B: Environmental, 2018, 238: 557-567.

    27.    He Zhiqiao, Wang Da, Fang Huiying, Chen Jianmeng and Song Shuang*. Highly efficient and stable Ag/AgIO3 particles for photocatalytic reduction of CO2 under visible light[J]. Nanoscale, 2014, 6(18): 10540-10544.


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Last updated:2025.04.30
Total visits:10