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夏 霆
阅读次数:     发布时间:2022-03-28    更新时间:2026-02-06

基本信息

 

   名:

  位:

   称:

导师类型:

博士生导师

联系方式:

xiating@njtech.edu.cn

研究方向:

水处理工艺、污染水土修复

藻类生态、灾害控制及资源利用

固废处置及资源利用

简历

1992.09-1996.07 河海大学 土木学院 工程与水文地质专业  学士

2004.04-2008.04 河海大学 环境科学与工程学院 市政工程专业  博士

2008.05-2012.06 中科院南京地理与湖泊研究所 博士后

2008.10- 至 今     南京工业大学 城市建设学院 市政工程系 教师

学术及社会兼职情况

江苏省学会产业研究院负责人(2024-2029)、中国水利学会疏浚与泥处理利用专委会理事、兼职律师及江苏省环境诉讼及环境损害司法鉴定咨询等专家库成员、校资环保产业平台公司生态环境领域总工程师等

承担科研与社会服务项目情况

1、“沿江灯光协同感光新污染物对鱼类的协同干扰研究”(江苏省科技智库计划项目JSKX0225054)

2、“浦口区突发供水水质异常专项应急预案”(2025)

3、“绿色低碳胶凝材料研发及其在市政与装配式建筑中的应用研究”(2025-2026)

4、“污物潜水泵无堵塞水力模型优化关键技术”(2025-2026)

5、“贵溪市青龙溪流域水生态保护一期工程可行性研究”(2023-2024)

6、“苏州市主要骨干河湖水生态调查评估项目”(2023-2024)

7、“江北新区长江岸线湿地保护与环境提升工程生态补偿项目”(2022-2025)

8、“苏州市主要骨干河湖调查评估”(2022-2023)

9、“苏州市七浦塘、阳澄湖等生态河湖状况评价”(2021-2022)

10、“皖西典型山村生活污水与农林面源协同生态处理模式与关键技术研究”(安徽省重点研发计划项目: 202004a06020030)

11、“射阳河生态河湖状况评估”(2020-2021)

12、“宿迁刘柴河、安东河、砂礓河健康评估”(2020-2021)

13、“太湖流域重要水生态敏感区生态变化趋势及管控方案”(国家“十三五”科技重大专项课题:2018ZX07208-004)

14、“苏州市水生态评估项目”(2019-2020)

15、“巢湖流域水生态分区环境监测指标技术服务”(2019-2021)

16、“持续污染胁迫下表流湿地生态健康长效维护关键技术研究”(安徽省科技攻关计划项目: 1804a0802194)

17、“苏州市湖库水源地藻类风险及供水安全关键技术优化与应用”(江苏省水利科技项目:2016042)

18、“苏州中心城区水文循环机制及适应性海绵城市构建技术研发与应用”(苏州民生科技项目:SS201619)

19、“太湖流域生态需水控制方法与目标研究”(江苏省太湖水环境综合治理科研项目:TH2013313)

20、“城市河道健康诊断技术开发与应用”(江苏省环境监测基金项目:1117)

21、此外“梯级拦蓄工程对大汶河生态系统及其服务功能影响评估”、“水生态修复关键技术研究”等,各类地方政府、企业委托科研及社会服务项目70余项

22、 “宋公河(五粮液段)综合治理工程及五粮液江北园区尾水湿地工程设计(2017-2019)”、“四川宜宾宋公河上游流域综合治理工程方案设计(2018-2020)”、“新疆昌吉州呼图壁县化工园区污水渗坑污染土壤及地下水管控方案及工程设计(2018-2019)”等水生态环境治理及土壤、地下水修复等30余项实践项目负责人

近年部分科研成果

[1] Application of Carbon-Loaded Solid Waste as Substrate in Constructed Wetlands: A Comparative Study of Two Carbon-Loading Methods and Their Water Treatment Performance(一作), Results in Engineering, 2026

[2] Preparation and Performance Research of RSC-g-P(AA-AM)/SiO2 Composite Water-Retaining Materials(一作), Polymer Engineering & Science, 2025; 0:1–12

[3] Study on synergistic stress effects on Spirogyra communis by allelopathic substances extract in Digitaria sanguinalis loaded with Spirogyra communis biochar(一作),Biomass and Bioenergy,2025 (201), 108070

[4] Mechanistic study of steel slag synergistic ozone catalytic oxidation for enhancing sludge dewatering performance(一作), Journal of Environmental Chemical Engineering,2025(13), 117786

[5] Study on preparation of porous water treatment fillers from fly ash by foaming(一作),Environmental Progress & Sustainable Energy. 2025,70108

[6] Strengthening test of water treatment performance of foamed fy ash fller based on magnetic modification(一作),International Journal of Environmental Science and Technology,2025

[7] Allelopathic effects of gramineous plant extractson Spirogyra communis growth: insights from Zizania latifolia, Phragmites australis, and Digitaria sanguinalis(一作),Envirnimental Technology,2025, 46(21), 4345–4356

[8] Stress Effects of Allelopathic Aqueous Extracts in Artemisia argyi on Microcystis aeruginosa(一作), Polish Journal of Environmental Studies, 2025(6), 6869-6882

[9] Investigation of steel slag after direct wet carbonation and its efficiency in water treatment(一作), Journal of Water Process Engineering, 2024(68)106500

[10] Characteristics of Phosphorus Loss from Organic Farming and Forestry Land under Simulated Rainfall in the Mountainous Areas of Western Anhui(通讯), Polish Journal of Environmental Studies, 2023, 32(5)

[11] Effects of ceramsite derived from sewage sludge combined with the O3–FeCl3/PAM process on the dewatering of waste-activated sludge and investigation of dewatering mechanisms(一作), Water Science & Technology, 2023, 88(2)

[12] Effect of hydrodynamic condition on algae control based on montmorillonite modified lime-ceramic sand-lake sediments(一作), Water Quality Research Journal, 2022, 08

[13] Waste clay ceramsite supported Ti catalyst based on ozone/UV combination in treatment of black-odor waters(一作), Journal of Water Process Engineering, 2022(47), 102738

[14] Investigation of microplastics in sludge from five wastewater treatment plants in Nanjing, China(通讯), Journal of Environmental Management, 2022(301),113793

[15] Ceramsite sand and lime modified lake bottom sediments coupled with potassium ferrate pre-oxidation as emergency control of Microcystis aeruginosa blooms(一作), Journal of Water Process Engineering, 2021(44), 102412

[16] Construction of symbiotic system of filamentous algae and submerged plants and its application in wastewater purification(一作), Journal of Water Process Engineering, 2021(44), 102240

[17] Effects of dilution ratio on nutrient removal, sedimentation efficiency, and lipid production by Scenedesmus obliquus in diluted cattle wastewater(一作), Energy Sources Part A-recovery Utilization and Environmental Effects, 2020. 01

[18] Impact of phenol on the performance, kinetics, microbial communities and functional genes of an autotrophic denitrification system(一作), Bioprocess and Biosystems Engineering, 2019(42), 1105-1114

[19] A Study on Ceramsite Production Using Dredging Sea Mud and Its Biofilm Formation Capacity Evaluation(一作), Advances in Civil Engineering, 2018, 2401984

[20] 巢湖流域水生态健康研究,科学出版社2016年6月

[21] 巢湖流域藻类图谱,2016年1月

其他

1、“抗旱护绿——煤基固废赋能荒漠修复减排新模式”,第五届江苏省大学生节能减排社会实践与科技竞赛省赛二等奖(2025),指导教师

2、“以废治污——助力美好乡村减负振兴”,第九届江苏省“互联网+”大学生创新创业大赛红色之旅赛道省赛三等奖(2023),指导教师

3、“大宗工业固废附碳及在环境修复中的减污降碳利用”,第一届中国研究生“双碳”创新与创意大赛国赛二等奖(2022),指导教师

4、“污泥资源化用于环境治理—为绿水青山减负添美”,第七届中国国际“互联网+”大学生创新创业大赛暨第十届江苏省大学生创新创业大赛决赛产业命题赛道省赛二等奖(2021),指导教师

5、“河湖健康评价规范(DB3205/T 1016-2021)”,江苏省优秀水资源成果奖壹等奖(2022)

6、“苏州市湖库水源地藻类风险及供水安全关键技术优化与应用”,江苏省优秀水资源成果奖贰等奖(2021)