个人信息

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姓名: 吴鸣

部门: 生命科学技术学院

性别:

职务:

职称: 副教授

学位: 博士

毕业院校: 南京大学

联系电话: 18126789201

电子邮箱: wumingnj@foxmail.com

办公地址: 广东省广州市天河区黄埔大道西601号暨南大学石牌校区梁仲景楼406

通讯地址: 广东省广州市天河区黄埔大道西601号暨南大学石牌校区梁仲景楼406

邮编: 510632

传真:

荣誉奖励:

联系方式

手机18126789201(微信同号),QQ806178563,邮箱wumingnj@foxmail.com、wuming2021@jnu.edu.cn


个人简介

副教授,硕士生导师,暨南大学第四层次优秀青年人才,广州市农村科技特派员。长期从事土壤-地下水系统中污染物迁移转化和数值模型预测的研究,以污染物迁移转化的精细刻画-污染物迁移转化的REV尺度定量评估-污染物迁移转化数值模拟预测作为研究思路,对微塑料、DNAPL等污染物开展了大量的可视化实验和数值模拟的系统研究工作,建立了一整套污染物在多孔介质中运移的微观机理模型,研发了可见光微观成像技术对多孔介质的性质参数和污染物迁移转化和修复过程进行精确量化,研究成果有效推动了微塑料等污染物迁移转化的机制和风险防控相关研究。以第一/通讯作者在Water ResearchJournal of HydrologyHydrology and Earth System Sciences等土壤-地下水环境领域国际高水平期刊发表SCI论文29篇(含一区论文12篇),主持国家自然科学基金青年科学基金1项、广东省自然科学基金面上项目3项、广州市基础与应用基础面上项目1项、中国博士后面上项目1项、暨南大学校级项目2项,参与国家自然科学基金重点/面上/青年基金、国家重点研发专项等课题9项,申请和授权9项发明专利,获得江苏省高校科学技术研究成果奖、南京大学优秀博士论文等奖项,担任6个国际期刊的客座主编、编委,有关微塑料污染过程模拟和环境影响的研究成果被《科普时报》以《地下水污染的风险与挑战》为主题进行专门报道。

学习经历

20149– 20176

南京大学地球科学与工程学院水科学系

南京大学“英才计划”博士阶段,水文学及水资源专业博士学位

20129– 20148

南京大学地球科学与工程学院水科学系

南京大学“英才计划”硕士阶段

20089- 20126

南京大学地球科学与工程学院水科学系

水文与水资源工程本科学位



工作经历

20217-至今

暨南大学生命科学技术学院生态系

       第四层次优秀青年人才,副教授,硕士生导师

20209-20216

暨南大学地下水与地球科学研究院

       第四层次优秀青年人才,副教授,硕士生导师

20178-20208

暨南大学生态学博士后科研流动站

       博士后,助理研究员


研究方向

(1)    地下水中污染物迁移转化:微塑料、抗生素、纳米材料等新型污染物和重非水相污染物的迁移转化机制和修复技术,微观胶体颗粒相互作用能;

(2)    地下水数值模型与智能优化;

(3)    深度研发可见光微观成像技术和多维地下水模拟系统实验装置,精确探测多孔介质中污染物的运移和修复过程;

(4)    基于分形的多孔介质微观结构刻画;

(5)    大尺度流域的地下水-地表水耦合模拟。


主要论文

[1] Zhou Cheng, Yuheng Wu, Ming Wu*, Zhaohui Li, Yirong Deng, Jinze Wu, Yanru Hao, Cehui Mo, Qusheng Li, Jianfeng Wu, Jichun Wu, Bill X. Hu, Guoping Lu.A higher mass flux from the effected DNAPL migration and distribution patterns by brine flow in saturated porous media. Chemical Engineering Science, 2024, 295: 120161. (SCIIF:4.1,二区,A1Top期刊)

[2] Yiqun Cui, Ming Wu*, Guoping Lu, Zhou Cheng, Meng Chen, Yanru Hao, Cehui Mo, Qusheng Li, Jianfeng Wu, Jichun Wu, Bill X. Hu.Significance of non-DLVO interactions on the co-transport of levofloxacin and titanium dioxide nanoparticles in porous media. Environmental Pollution, 2024, 351: 124079. (SCIIF:7.6,二区,A1Top期刊)

[3] Zhou Cheng#, Guoping Lu#, Ming Wu*, Zhaohui Li, Yirong Deng, Jinzhe Wu, Yanru Hao, Cehui Mo, Qusheng Li, Jianfeng Wu, Jichun Wu, Bill X. Hu. Quantification and Visualization of Groundwater Contamination Prevention Regionalization Based on Analytic Hierarchy Process Method (AHP) in Guangdong-Hong Kong-Macao Greater Bay Area, South China. Journal of Hydrology, 2024, 628: 130521. (SCIIF:5.9,一区,A1Top期刊)

[4] Xuanhao Lin#, Guoping Lu#, Ming Wu*, Zhou Cheng, Yanru Hao, Cehui Mo, Qusheng Li, Jianfeng Wu, Jichun Wu, Bill X. Hu. Determining the transport behaviors of biochar nano-particles in porous media. Chemical Engineering Research and Design, 2023, 199: 676-688. (SCIIF:3.7,三区,A2)

[5] Zhou Cheng#, Guoping Lu#, Ming Wu*, Yanru Hao, Cehui Mo, Qusheng Li, Jianfeng Wu, Jichun Wu, Bill X. Hu. The Effects of Spill Pressure on the Migration and Remediation of Dense Non-Aqueous Phase Liquids. Sustainability, 2023, 15: 13072. (SCIIF:3.3,三区,A2)

[6] Zhou Cheng#, Guoping Lu#, Ming Wu*, Qusheng Li. Representative Elementary Volume Estimation and Neural Network-Based Prediction of Change Rates of Dense Non-Aqueous Phase Liquid Saturation and Dense Non-Aqueous Phase Liquid-Water Interfacial Area in Porous Media. Separations, 2023, 10: 446. (SCIIF:2.5,四区,A2)

[7] Ming Wu, Zhou Cheng*, Guoping Lu*, Cehui Mo, Yanru Hao, Qusheng Li, Jianfeng Wu, Jichun Wu, Bill X. Hu. Impact of grain geometry on chlorohydrocarbon contaminant transformation and reductive dichlorination activity. Geoenergy Science and Engineering, 2023, 229: 212143. (SCIIF:N/A,二区,A1Top期刊)

[8] Yuheng Wu#, Zhou Cheng#, Ming Wu*, Yanru Hao, Guoping Lu, Cehui Mo, Qusheng Li, Jianfeng Wu, Jichun Wu, Bill X. Hu. Quantification of two-site kinetic transport parameters of polystyrene nanoplastics in porous media. Chemosphere, 2023, 338: 139506. (SCIIF:8.1,二区,A1Top期刊)

[9] Yanna Chen#, Cehui Mo#, Ming Wu*, Yanru Hao, Zhou Cheng, Guoping Lu, Qusheng Li, Bill X. Hu, Jianfeng Wu, Jichun Wu. Important effects of polypropylene on migration of ciprofloxacin in groundwater. Journal of Environmental Chemical Engineering, 2023, 11: 109847. (SCIIF:7.4,二区A1Top期刊)

[10] Zhou Cheng#, Xuanhao Lin#, Ming Wu*, Guoping Lu**, Yanru Hao, Cehui Mo, Qusheng Li, Jianfeng Wu, Jichun Wu, Bill X. Hu. Combined Effects of Polyamide Microplastics and Hydrochemical Factors on the Transport of Bisphenol A in Groundwater. Separations, 2023, 10(2): 123. (SCIIF:2.5,四区,A2)

[11] Zhou Cheng#, Cehui Mo#, Ming Wu*, Huihui Cao, Yanru Hao, Guoping Lu, Qusheng Li, Jianfeng Wu, Jichun Wu, Bill X. Hu. Effects of Graphene on the Transport of Quinolones in Porous Media. Water, 2023, 15: 593. (SCIIF:3.0,三区,A2)

[12] Xinyao Ye#, Zhou Cheng#, Ming Wu*, Yanru Hao, Guoping Lu, Bill X. Hu, Cehui Mo, Qusheng Li, Jianfeng Wu, Jichun Wu. Effect of Clay Minerals on the Transport of Polystyrene Nanoplastic in Groundwater. Water Research, 2022, 223: 118978. (SCIIF:11.4,一区,A1Nature Index期刊,Top期刊)

[13] Xinyao Ye#, Zhou Cheng#, Ming Wu*, Bill X. Hu, Cehui Mo, Qusheng Li, Jianfeng Wu, Jichun Wu, Yanru Hao, Guoping Lu. Determining the mobility of polystyrene nano-plastic in saturated quartz Sand-Limestone porous media. Chemical Engineering Science, 2022, 260: 117949. (SCIIF:4.1,二区,A1Top期刊)

[14] Ming Wu, Yanna Chen*, Zhou Cheng*, Yanru Hao, Bill X. Hu, Cehui Mo, Qusheng Li, Haiming Zhao, Lei Xiang, Jianfeng Wu, Jichun Wu, Guoping Lu. Effects of polyamide microplastic on the transport of graphene oxide in porous media. Science of the Total Environment, 2022, 843: 157042. (SCIIF:8.2,一区,A1Top期刊)

[15] Xinyao Ye#, Zhou Cheng#, Ming Wu*, Yanru Hao, Bill X. Hu, Cehui Mo, Qusheng Li, Lei Xiang, Haiming Zhao, Jianfeng Wu, Jichun Wu, Guoping Lu. Investigating transport kinetics of polystyrene nanoplastics in saturated porous media. Ecotoxicology and Environmental Safety, 2022, 241: 113820. (SCIIF:6.2,二区,A1Top期刊)

[16] Ming Wu, Hhuihui Cao, Guoping Lu, Bill X. Hu*, Zhou Cheng*, Cehui Mo, Jianfeng Wu, Jichun Wu. Effects of nanometer alumina and humic acid on the retention and transport of hexavalent chromium in porous media. Ecotoxicology and Environmental Safety, 2021, 228: 113005. (SCIIF:6.2,二区,A1Top期刊)

[17] Ming Wu, Jianfeng Wu*, Jichun Wu, Bill X. Hu*.A new criterion for determining the representative elementary volume of translucent porous media and inner contaminant. Hydrology and Earth System Sciences, 2020, 24(12): 5903-5917.(SCIIF:5.7,一区,A1Top期刊)

[18] Ming Wu, Yun Yang, Jin Lin, Jianfeng Wu*, Jichun Wu, Bill X. Hu*.The co-effect of heterogeneity and solute concentration on representative elementary volume of DNAPL in groundwater. Journal of Hydrology, 2020, 585: 124795. (SCIIF:5.9,一区,A1Top期刊)

[19] Ming Wu, Jianfeng Wu*, Huihui Cao, Jichun Wu, Bill X. Hu*.The influences of ionic strength and permeability on DNAPLs representative elementary volume in porous media. Journal of Hydrology, 2019, 575: 94-104. (SCIIF:5.9,一区,A1Top期刊)

[20] Ming Wu, Zhou Cheng, Guangxiong Qin, Ming Lei, Jianfeng Wu*, Jichun Wu, Bill X. Hu*, Jin Lin. The change of representative elementary volume of DNAPL influenced by surface active agents during long-term remediation period in heterogeneous porous media. Science of the Total Environment, 2018, 625: 1175-1190. (SCIIF:8.2,一区,A1Top期刊)

[21]Ming Wu, Jianfeng Wu*, Jichun Wu*, Bill X. Hu. Effects of microarrangement of solid particles on PCE migration and its remediation in porous media. Hydrology and Earth System Sciences, 2018, 22(2): 1001-1015. (SCIIF:5.7,一区,A1Top期刊)

[22] Ming Wu, Jianfeng Wu*, Jichun Wu*, Bill X. Hu. A three-dimensional model for quantification of the representative elementary volume of tortuosity in granular porous media. Journal of Hydrology, 2018, 557: 128-136. (SCIIF:5.9,一区,A1Top期刊)

[23] Ming Wu, Jianfeng Wu*, Jin Lin, Xiaobin Zhu, Jichun Wu*, Bill X. Hu. Evaluating the interactions between surface water and groundwater in the arid mid-eastern Yanqi Basin, northwestern China. Hydrological Sciences Journal, 2018, 63(9): 1313-1331. (SCIIF:2.8,三区,A2)

[24] Ming Wu, Zhou Cheng, Jianfeng Wu*, Jichun Wu*, Xiaolong Hu. Effects of inner heterogeneity on long-term DNAPL migration in porous media. Environmental Earth Sciences, 2017, 76:791. (SCIIF:2.8,四区,A2)

[25] Ming Wu, Jianfeng Wu*, Jichun Wu*. Simulation of DNAPL migration in heterogeneous translucent porous media based on estimation of representative elementary volume. Journal of Hydrology, 2017, 553: 276-288. (SCIIF:5.9,一区,A1Top期刊)

[26] Ming Wu, Zhou Cheng, Jianfeng Wu*, Jichun Wu*. Estimation of representative elementary volume for DNAPL saturation and DNAPL-water interfacial areas in 2D heterogeneous porous media. Journal of Hydrology, 2017, 549: 12-26. (SCIIF:5.9,一区,A1Top期刊)

[27] Ming Wu, Zhou Cheng, Jianfeng Wu*, Jichun Wu*. Quantifying representative elementary volume of connectivity for translucent granular materials by light transmission micro-tomography. Journal of Hydrology, 2017, 545: 12-27. (SCIIF:5.9,一区,A1Top期刊)

[28] Ming Wu, Jianfeng Wu*, Jie Liu, Jichun Wu, Chunmiao Zheng. Effect of groundwater quality on sustainability of groundwater resource: A case study in the North China Plain. Journal of Contaminant Hydrology, 2015, 179: 132-147. (SCIIF:3.5,三区,A2)

[29] Ming Wu, Zhou Cheng, Jianfeng Wu*, Jichun Wu*. Precise simulation of long-term DNAPL migration in heterogeneous porous media based on light transmission micro-tomography. Journal of Environmental Chemical Engineering, 2017, 5: 725-734. (SCIIF:7.4,二区A1Top期刊)

[30] Jian Song, Yun Yang, Xiaomin Sun, Jin Lin, Ming Wu, Jianfeng Wu*, Jichun Wu. Basin-scale multi-objective simulation-optimization modeling for conjunctive use of surface water and groundwater in northwest China. Hydrology and Earth System Sciences, 2020, 24: 2323-2341. (SCIIF:5.7,一区,A1Top期刊)

[31] Hongyu Hu, Guoping Lu*, Qiuying Lu, Yan Li*, Linjun Xie, Xuanhao Lin, Ming Wu, Cehui Mo, Bei Zhang. Hydrogeochemical Characteristics and Geothermometry of Hot Springs in the Tensile Tectonic Region Leizhou Peninsula and Hainan Island in South China. Geofluids, 2022, 2022:1101015. (SCIIF:1.2,四区,A2)

[32] 吴鸣,吴剑锋*,施小清,刘杰,陈干,吴吉春. 基于谐振子遗传算法的高效地下水优化管理模型. 吉林大学学报(地球科学版)2015455):1485-1492.  (中文核心期刊论文)

[33] 吴鸣,吴剑锋*,林锦,祝晓彬,吴吉春. 地下油罐泄漏区污染源的自动识别. 环境科学学报20133312):3251-3259. (中文核心期刊论文)

[34]陈燕娜,吴鸣*,程洲,胡晓农. 典型微塑料对环丙沙星在多孔介质运移的影响. 农业环境科学学报, 2021402):400-407. (中文核心期刊论文)

[35] 曹慧慧,吴鸣*,程洲,胡晓农,莫测辉.石墨烯对喹诺酮在饱和多孔介质中运移的影响. 农业环境科学学报2022413597-606. (中文核心期刊论文)

[36] 叶芯瑶,吴鸣*,胡晓农,程洲,莫测辉. 纳米塑料颗粒在饱和多孔介质中的迁移规律. 地质科技通报. 地质科技通报2022414225-233. (中文核心期刊论文)

[37] 林宣浩,吴鸣*,卢国平,程洲,谢林君,吴宇恒,曾拥军,郝艳茹,莫测辉. 聚酰胺微塑料对双酚A在地下水中迁移的影响. 农业环境科学学报2023424),861-868. (中文核心期刊论文)

[38] 石祖峰,吴鸣,吴剑锋*. 地质灾害危险性定量评估的综合因子分析法. 上海国土资源201334(3), 93-96. (中文核心期刊论文)

[39] 廖朋辉,程洲,吴鸣,吴吉春*. 利用截留数定量表征流速变化时DANPL驱替运移行为. 环境科学学报201636(9)3266-3272. (中文核心期刊论文)

[40] 张浩佳,吴剑锋*,林锦,吴鸣,吴吉春.基于GSFLOW的地下水-地表水耦合模拟与分析. 工程勘察, 20155, 34-38. (中文核心期刊论文)

[41] 张浩佳,吴剑锋*,林锦,吴鸣,吴吉春. GSFLOW在干旱区地表水与地下水耦合模拟中的应用. 南京大学学报(自然科学), 201551(3), 576-603. (中文核心期刊论文)

[42] 张涛,吴剑锋*,林锦,吴鸣,张浩佳.基于水量平衡的博斯腾湖水位变化分析. 水文, 201535(3), 79-83. (中文核心期刊论文)

[43] 程洲,徐红霞,吴吉春*吴鸣. 地下水中Tween80DNAPL运移和分布的影响. 中国环境科学,201939(3)1068-1077. (中文核心期刊论文)

[44] 胡虹羽,卢国平,李岩,谢林君,曾拥军,吴鸣,莫测辉. 琼北地区地热水中氟的富集规律. 环境化学,202342(5)1633-1641. (中文核心期刊论文)

[45] 谢林君,林宣浩,卢国平,李岩,胡虹羽,曾拥军,吴鸣. 广东省龙川县北部温泉中氟的富集作用. 环境化学,202342(10)3420-3428. (中文核心期刊论文)

主要著作

承担课题

[1] 广东省自然科学基金面上项目“生物炭去除地下水中典型微塑料污染物的机理研究”,2023A15150122282023/01-2025/1210万,在研,主持。

[2] 暨南大学生命科学技术学院青年骨干支持计划B类项目,2023/05-2023/115万,结题,主持。

[3] 广州市基础与应用基础研究项目微塑料对氧化石墨烯在土壤-地下水中运移影响的研究 2022010104142022/04-2024/035万,结题,主持。

[4] 暨南大学“学科建设优秀青年骨干项目”,2022/03-2022/126.138万,结题,主持。

[5] 广东省自然科学基金面上项目“非均质条件下典型微塑料在土壤-地下水系统中的运移规律及机理研究”,2022A15150102732022/01-2024/0410万,结题,主持。

[6] 国家自然科学基金青年基金项目“基于可见光成像和数值模拟研究微塑料对DNAPL在地下水中运移的影响”419022462020/01-2022/1223万,结题,主持

[7] 广东省自然科学基金面上项目“典型微塑料对环丙沙星在多孔介质中运移影响的研究”,2020A15150104472019/10-2022/910万,结题,主持。

[8] 中国博士后基金“基于微纳米复合材料的分形多孔介质中污染修复的研究”,2017M6229052017/09-2019/095万,结题,主持。

[9] 粤港澳大湾区土壤污染控制与验证评估基地前期工作课题“粤港澳大湾区土壤与地下水协同修复技术研究”,401191532019/11-2020/0620万,结题,主要参与人。

[10] 国家自然科学基金重点项目“平原区典型关键带中DNAPL运移过程及其模拟”,417308562018/01/01-2022/12/31318万元,结题,主要参与人。

[11] 国家自然科学基金面上项目“地下水中典型污染物反应性迁移与修复的随机模拟优化研究”,417722542018/01/01-2021/12/3160万元,结题,主要参与人。

[12] 国家自然科学基金青年基金项目“改进多尺度有限单元法求解复杂三维地下水流和溶质运移问题”,417022432018/01/01-2020/12/31 25万元,结题,主要参与人。

[13] 国家重点研发计划“水资源高效开发利用重点专项项目课题黄渤海沿海地区地下水开采优化调控技术研究”,2016YFC04028072016/07-2020/12200万,结题,主要参与人。

[14] 国家自然科学基金面上项目“华北平原典型区咸水下移机理及数值模拟研究”, 413722352014/01-2017/1286万,结题,主要参与人。

[15] 南京大学研究生科研创新基金项目“基于纳米复合材料PRB的非均质含水层PCE修复研究”,2014CL102014/07-2016/0712万,结题,第2申请人。

[16] 国家自然科学基金“地下水污染监测网的多目标优化模型”,410721752011/01-2013/1247万,结题,主要参与人。

[17] 国家基础研究计划项目(973项目)课题专题“地下淡水-咸水界面移动与驱动机制”,2010CB428803-32010/01-2014/12120万,结题,主要参与人。


发明专利

[1] 吴剑锋,吴鸣,吴吉春.一种半透明颗粒材料中重非水相有机污染物迁移模拟方法,发明专利,专利号:ZL201611195366.4,授权时间:2019315.

[2] 吴剑锋,吴鸣,吴吉春. 基于多孔介质三维微观结构模型的DNAPL迁移数值模拟方法,发明专利,专利号:ZL201711018115.3,授权时间:2021319.

[3] 吴鸣,叶芯瑶,程洲,卢国平,莫测辉. 一种模拟不同条件下微塑料溶液运移的装置及方法,发明专利,申请号:202111458730.2,申请日:20211201.

[4] 吴鸣吴宇恒,戴超涌,莫测辉,李取生,李慧,李彦文,胡晓农,吴剑锋,吴吉春,郝艳茹,卢国平. 一种基于矩形颗粒模型获得多孔介质迂曲度和渗透率的方法,发明专利,申请号:202210802019.2,申请202278.

[5] 吴鸣吴宇恒,程洲,莫测辉,李取生,向垒,赵海明,胡晓农,吴剑锋,吴吉春,郝艳茹,卢国平. 一种识别多孔介质的椭圆颗粒形状参数的方法,发明专利,申请号:202210802023.9,申请202278.

[6] 吴鸣吴宇恒,程洲,林宣浩,卢国平,郝艳茹,莫测辉,李取生,吴剑锋,吴吉春,胡晓农. 一种确定纳米塑料迁移参数随pH连续变化的方法,发明专利,申请号:2022116257369,申请日:20221216.

[7] 吴鸣林宣浩,程洲,吴宇恒,卢国平,郝艳茹,莫测辉,李取生,吴剑锋,吴吉春,胡晓农. 一种确定生物炭纳米颗粒团聚和沉积的临界水化学条件的方法,发明专利,申请号:2022117121578,申请日:20221229.

[8] 程洲,吴鸣,吴宇恒,莫测辉,郝艳茹,卢国平,吴剑锋,吴吉春,胡晓农. 一种去除水环境中流动相纳米塑料的方法,发明专利,申请号:2024108530635,申请日:2024628.

[9] 吴鸣,崔益群,程洲,吴剑锋,吴吉春. 一种预测纳米金属氧化物和抗生素在复合条件下迁移率的方法,发明专利,申请号:2024108530777,申请日:2024628.

讲授课程

[1] 本科生课程: 《环境微生物学》、《环境工程微生物学》、《旅游生态学》

[2] 研究生课程: 《土壤生态学》、《地下水污染概论》、《地下水污染防控》、《水文数值模拟技术》和《水环境动力学》

荣誉奖励

社会职务

[1]广州市农村科技特派员;

[2]担任国际期刊Journal of Chemistry的客座主编5个国际期刊HydrologyEarth SciencesPetroleum Science and EngineeringJournal of Energy and Natural ResourceJournal of Energy, Environmental & Chemical Engineering的编委;

[3]担任 Water ResearchJournal of HydrologySurveys in GeophysicsJournal of Hazardous MaterialsSCI主流期刊审稿人。