
姓名:徐大勇 职称:教授 部门:永利yl23411官网 地址:芜湖市北京中路2号楼群楼204室 邮编:241000 电话:0553-2871026 Email: xdy826@ahpu.edu.cn | |
学术经历: 2009.09-至今,永利yl23411官网,讲师、副教授、教授 2018.08-2019.05,美国堪萨斯州立大学,访问学者 2006.09-2009.8,同济大学,环境公司,博士研究生 开设课程: 主要开设《环境生态学》、《环境生态修复工程》以及《现代生态工程设计》等课程 研究方向: 污染环境生态修复、污泥处理及资源化、水土重金属污染治理 获奖情况:
科研项目: 1.安徽省高校自然科学基金重点项目,“高效稳定菌藻共生系统的开发及其处理畜禽养殖废水的应用研究”,批准号:2024AH040021,起止时间:2024.09-2026.12,主持。 2.国家自然科学基金青年项目,“人工湿地处理污泥过程重金属的迁移转化及其生物有效性研究”,批准号:51408001,起止时间:2015.1-2017.12,主持。 3. 安徽省高校自然科学基金重点项目,“污泥基生物炭粒的制备及其处理酸性矿井水的效果和机理研究”,批准号:KJ2018A0103,起止时间:2018.1-2019.12,主持。 4. 芜湖市科技计划项目,“Fenton氧化联合多孔混凝土人工湿地处理剩余污泥重金属研究”,批准号:2016hm11,起止时间:2016.9-2018.8,主持。 5.安徽省高等公司省级优秀青年人才基金重点项目,“掺粉煤灰多孔混凝土的制备及其处理酸性矿井水的机理研究”,批准号:2013SQRL038ZD,起止时间:2014.1-2016.12,主持。 6. 芜湖市科技计划项目,“掺粉煤灰多孔混凝土联合人工湿地治理酸性工业废水研究”,批准号:2012cxy13,起止时间:2012.9-2014.8,主持。 7. 横向项目,餐余垃圾资源化处理技术工艺研究,2020.7-2022.12,10万,主持。 8. 横向项目,高性能MBR膜污水处理设备膜组件研发项目,2019.10-2022.10,12万,主持。 9. 横向项目,高效处理洗胶废水并产能的CW-MFC系统,2022.5-2025.6,10万,主持。 10. 横向项目,高效处理复合污染废水的CW-MFC系统开发及应用,2022.09-2025.12,100万,主持。 11.横向项目,新型除氟剂的研发,2025.10-2026.04,5万,主持。 12.横向项目,面向高功率密度电机的PCB定子SMC软磁涂层热-磁协同调控技术应用研究,2025.12-2027.12,80万,主持。 代表性论文: [1]. Zhang Q. Y., Jin W. Q., Tang X. L., Mao X., Zuo R., Hong Y. J.*, Xu D. Y.*. Heavy metal removal and concurrent stabilization of pig manure via constructed wetland-microbial fuel cell driven by sponge iron: Microbial response and mechanistic insight [J]. Process Safety and Environmental Protection, 2026, 208:108462. [2]. Khan A., Hong R., Chen S. S., Liu T. T., Kaya S.,Chen W. H., Xu D. Y.*, Dual-charged, non-swelling amine/carboxyl functionalized Fe–Mn mixed oxide composite for simultaneous removal of anionic and cationic azo dyes: Experimental and DFT studies [J]. Chinese Journal of Chemical Engineering, doi.org/10.1016/j.cjche.2025.09.036. [3]. Adnan Abbas, Muhammad Ahmad, Maryam Yousaf, Linghui Pan, Dayong Xu*. Synergistic role of microbes and wetland plants in an advanced-acclimatized constructed wetland for enhanced removal of heavy metals [J]. Gondwana Research, 2026, 150:274-286. [4]. Khan A., Xiao S., Xie Y., Kaya S., Zareen S., Muhammad N., Parveene K., Xu D. Y.*, Rb-promoted Fe/CeO2 nanocatalyst for aniline conversion into azoxybenzene, DFT calculations and mechanism[J]. New Journal of Chemistry, 2025, 49(3):921-934. [5]. Khan A., Hong R., Chen S. S., Muhammad N., Adnan A., Zhang Y., Shah F., Chen W. H., Xu D. Y.,* Traditional and photocatalytic conversion of aniline into azocompounds a comprehensive experimental and theoretical review[J]. RSC Advance, 2025, 15, 28231. [6]. Tao Z. K., Fan Y. Q., Lv Z. A., Xu D. Y.*, Simulation of Landfill Reactors to Understand Hg Release via the Landfill Cover Soil Surface[J]. Journal of Environmental Engineering, 2025, 151(6):.DOI:10.1061/JOEEDU.EEENG-8019. [7]. Tao Z. K., Fan Y. Q., Zhang Q. Y., Xu D. Y.*, An attempt to study the photoreduction rate of divalent mercury in landfill cover soils using experimental control system[J]. Waste Management, 2025, 198:87-94. [8]. Zuo R., Zhang, Q., Chen L., Jin W. Q., Chen S. S., Zhang X. Y., Xu D. Y.*, Gao C. F.* Cu/Fe-based mono/bimetallic composites as cathode catalysts facilitating the bioelectrochemical performance of constructed wetland-microbial fuel cell: a comparative study[J]. Ionics, 2025, 31:4563–4573. [9]. Dai C. C., Li K. X., Li Y. Z., Teng B. C., Chen Q., Jin X., Xu D. Y.*, Hong R.* Unveiling the directional dynamics: Hydrated electron driven defluorination in PFOA⁻ and PFOS⁻ through ab Initio molecular dynamics and quantum chemistry[J]. Water Research, 2025, 280:1234862025. [10]. Hong Y. J.*, Zhang S. Z., Yan Z. F., Naraginti Saraschandra, Zhu M. Q.*, Xu D. Y.*, The global research trends and hotspots on phthalate esters (PAEs): A comprehensive visualization and bibliometric analysis (2000-2023)[J].Environmental Chemistry and Ecotoxicology, 2025, 7:381-393. [8]. Tang, X. L., Wang L., Zhang Q. Y.*, Xu D. Y., Tao Z. K., Performance optimization for Pb(II)-containing wastewater treatment in constructed wetland-microbial fuel cell triggered by biomass dosage and Pb(II) level[J]. Environmental Science and Pollution Research, 2024, 31:15039-15049. [9]. Zhang Q. Y., Wang L., Xu D. Y.*, Tao Z. K., et al. Optimization of biomass carbon sources for simultaneous Pb(II) removal and bioelectricity generation in microbial fuel cell: based on agricultural waste types and pretreatment approaches[J]. Biomass Conversion and Biorefinery, 2024, 14(13):13889-13900. [10]. Hong Y. J., Xiao S., Naraginti S., Liao W.*, Feng C. L.*, Xu D. Y.*, Guo C. S., Jin X. W., Xie F. Z. Freshwater water quality criteria for phthalate esters and recommendations for the revision of the water quality standards[J]. Ecotoxicology and Environmental Safety, 2024, 279:116517. [11]. Chen L. J., Yang H. Q., Hong R., Xie X. H., Zuo R. J., Zhang X. Y., Chen S. S., Xu D. Y.*, Zhang Q. Y.*, Tetracycline adsorption on sludge-bamboo biochar prepared by gradient modification and co-pyrolysis: Performance evaluation and mechanism insight[J]. Journal of Environmental Chemical Engineering, 2024, 12:114121. [12]. Zhang Q. Y., Liu X. Y., Xie X. H.*, Xu D. Y.*, Zhang X. Y., Chen S. S., Hu Y., Lv Z. A., Liu N., Enhancing anthraquinone dyestuff degradation with composite activator: Proteomics of Burkholderia sp. DDMZ1-1[J]. International Biodeterioration & Biodegradation, 2024, 193:105859. [13]. Cheng, Z., Xu D. Y.*, Zhang Q. Y., Tao Z. K., Hong R., Chen Y., Tang X. L., Zeng S., Wang S. Y., Enhanced nickel removal and synchronous bioelectricity generation based on substrate types in microbial fuel cell coupled with constructed wetland: performance and microbial response[J]. Environmental Science and Pollution Research, 2023, 30:19725-19736. [14]. Zhang Q. Y., Wang L., Xu D. Y.*, Tao Z. K., Li J. J., Chen Y., Cheng Z., Tang X. L., Wang S. Y., Optimization of biomass carbon sources for simultaneous Pb(II) removal and bioelectricity generation in microbial fuel cell: based on agricultural waste types and pretreatment approaches[J]. Biomass Conversion and Biorefinery, 2022, https://doi.org/10.1007/s13399-022-03451-8. [15]. Zhang Q. Y., Wang L., Xu D. Y.*, Tao Z. K., Li J. J., Chen Y., Cheng Z., Tang X. L., Wang S. Y., Optimization of biomass carbon sources for simultaneous Pb(II) removal and bioelectricity generation in microbial fuel cell: based on agricultural waste types and pretreatment approaches[J]. Biomass Conversion and Biorefinery, 2022, https://doi.org/10.1007/s13399-022-03451-8. [16] Wang L., Xu D. Y., Zhang Q. Y.*, Liu T. T., Tao Z. K., Simultaneous removal of heavy metals and bioelectricity generation in microbial fuel cell coupled with constructed wetland: an optimization study on substrate and plant types[J]. Environmental Science and Pollution Research, 2021, 29(1): 768-778 [17] Xu D. Y. *, Qiu X. Q., Xu Z. X., Effect of water hyacinth mulch on soil temperature, water content and maize yield (Zea mays L.) in southeast China[J]. Environmental Engineering and Management Journal, 2017, 16 (1): 85-91. [18] Hong Y. J., Xu Z. X., Feng C. L. *, Xu D. Y. *, Wu F. C. The Preparation of Biochar Particles from Sludge and Corncobs and Its Pb2+ Adsorption Properties[J]. Bulletin of Environmental Contamination and Toxicology, 2019, 103 (6): 848-853. [19] Hong Y. J., Liao W., Yan Z. F., Bai Y. C., Feng C. L. *, Xu Z. X., Xu D. Y*. Progress in the Research of the Toxicity Effect Mechanisms of Heavy Metals on Freshwater Organisms and Their Water Quality Criteria in China [J]. Journal of Chemistry, 2020, 2020: 1-12 [20] 刘婷婷, 徐大勇, 王璐, 杨伟伟, 夏宇扬. 电极间距对CW-MFC处理污泥中Zn和Ni的效果及其产电性能的影响[J]. 化工进展, 2021, 40(07):4074-4082. [21] 徐大勇, 张苗, 杨伟伟, 等. 氧化铝改性污泥生物炭粒制备及其对Pb(Ⅱ)的吸附特性[J]. 化工进展, 2020, 39(3):1153-1166. [22] 洪亚军, 徐祖信, 冯承莲, 徐大勇*. 化学预处理-人工湿地联合处理污泥中重金属[J]. 环境工程, 2019, 37 (11): 45-51. [23] 洪亚军, 徐祖信, 冯承莲, 徐大勇*. 水葫芦/污泥共热解法制备生物炭粒及其对Cr3+的吸附特性[J]. 环境科学研究, 2019: 1-13. [24] 姚巧凤, 徐大勇, 陈伟华, 等. 采用人工湿地处理Fenton氧化污泥过程中的重金属迁移转化模拟研究[J]. 永利yl23411官网学报, 2018, 33 (02): 1-7. [25] 徐大勇, 洪亚军, 唐海, 等. 柠檬酸和谷氨酸N,N-二乙酸优化处理污泥重金属[J]. 化工学报,2017, 68 (6): 1-13. [26] 徐大勇, 操沛沛, 乐王旭, 等. Fenton氧化剩余污泥过程重金属迁移及其形态变化[J]. 环境工程学报,2016, 10 (10): 5893-5900. [27] 徐大勇,操沛沛,程维明,等. Fenton氧化联合人工湿地处理污泥中的重金属[J]. 环境工程学报,2018, 12(1):221-233. [28] 洪亚军, 徐大勇, 范星, 等. 化学浸提联合植物修复技术处理污泥重金属的效果研究[J]. 永利yl23411官网学报, 2017, (04): 14-20. 授权发明专利: [1] 徐大勇,徐祖信,王晟,裘秀群.一种用于玉米种植的水葫芦生物覆盖方法, 2014.12.24,中国,201310359482.5; [2] 徐大勇,徐建平,裘秀群,李文,蔡昌凤,张冬冬,江文.一种用于处理酸性工业废水的系统,2015.1.14,中国,201310401393.2; [3] 徐大勇,蔡昌凤,徐建平,裘秀群,江林,王强.一种煤矿酸性矿井水的处理系统及其处理工艺,2014.12.24,中国,201310401437.1。 [4] 徐大勇,操沛沛,洪亚军,裘秀群. 一种用于处理Fenton氧化污泥的系统及方法,2018.08.17,中国,201610139492.1。 [5] 徐大勇,操沛沛,张勇,郭沈娟,裘秀群. 用水葫芦处理剩余污泥中重金属的系统及方法,2018.07.06,中国,201610137289.0。 [6] 徐大勇,裘秀群. 一种重金属污染土壤的水葫芦修复方法及修复系统,2018.08.24,中国,201610137257.0。201310401393.2 [7] 徐大勇,洪亚军,操沛沛,裘秀群. 一种污染土壤的修复方法,2019.01.18,中国,201610171376.8 [8] 徐大勇,刘婷婷,张苗,杨伟伟,王璐. 一种污泥处理系统及其处理工艺,2024.08.13,中国,201910842663.0 | |