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副教授
副教授

杜京京

时间:2021-09-29  浏览数:2594次   

一、个人情况

杜京京198610月出生,河南省开封市人,理学博士,副教授,硕士生导师。河南省优秀硕士论文指导教师、河南省高校科技创新人才、河南省自然科学基金青年基金获得者。现任河南省城市科学研究会理事、《生态学杂志》青年编委、河南省化工学会青年工作委员会委员、中国环境科学学会减污降碳协同治理专业委员会委员。主要从事污染生态学和淡水生态学研究,研究成果以第一作者或通讯作者在Water ResearchJournal of Hazardous MaterialsEnvironmental Science: Nano等国际权威学术期刊上发表SCI论文20余篇,入选ESI高被引论文1篇,封面亮点论文1篇,自然指数期刊论文1篇,河南省优秀科技论文一等奖2篇。

办公地点:郑州市高新区科学大道136号,郑州轻工业大学8040威尼斯306房间

E-mail: dujj@zzuli.edu.cn               电话: 86608696

二、教育背景

2005.09-2009.07 河南师范大学,生物科学,学士

2009.09-2014.06 南京大学,生物学,博士

2013.08-2013.11 美国北卡罗莱纳州大学教堂山分校海洋研究所生态学专业,访问学者

2019.01-2020.01 丹麦奥胡斯大学生物学专业,访问学者

三、研究方向

新污染物生态毒理、淡水生态系统健康评估、电化学人工湿地开发

、承担课程及教学成果

承担课程:

本科《环境工程微生物学》、《环境生态学》、《环境工程微生物学实验》

研究生:《环境污染修复技术》、《环境工程中的分子生物学技术》

教学成果:

1)河南省一流本科课程-线上线下混合式 负责人

2)8040威尼斯一流本科课程-线上下线混合式 负责人

38040威尼斯第三批在线开放课程 主讲人

4)第二十三届河南教育教学信息化大奖赛暨河南省第三届信息技术与课程融合优质课大赛三等奖,第一完成人

5)获第二十一届河南教育教学信息化大奖赛暨河南省第三届信息技术与课程融合优质课大赛三等奖,第一完成人

、科研成果及奖励(项目、专利、奖励等)

项目:

1)国家自然科学基金面上项目,32271701,纳米聚苯乙烯介导的溪流凋落物分解下行效应及机制研究,2023.1-2026.1254万,在研,主持

2)国家自然科学基金青年基金项目,31500377,纳米氧化锌对河流凋落物降解的影响及机制研究,2016.1-2018.1220万,结题,主持

3)河南省自然科学基金优秀青年基金项目,232300421103,溪流生态系统多功能性对微塑料环境行为的响应及机制,2023.1-2023.1225万,在研,主持

4)河南省高校科技创新人才,24HASTIT027,氟西汀对溪流碎屑食物链的影响及机制,2024.1-2026.1260万,在研,主持

5)河南省生态环境厅项目,CLY20200035,重点行业重点重金属污染物污染防控专项资金项目,2020.7-2021.479万,结题,主持

6)濮阳市生态环境局项目,CLY20220050,黄河流域濮阳段水生态调查与评价项目,2022.6-2023.101016万,在研,主持

7)广西喀斯特植物保育与恢复生态学重点实验室开放课题,KK2022-5,基于喀斯特地区漓江流域微生物分解者调控的重金属污染食物链修复技术,2022.1- 2023.124万,在研,主持

8)河南省重点研发与推广专项,222102320261,基于天然黄铁矿的生物电化学人工湿地强化脱氮技术研究,2022.1-2023.121.5万,在研,主持

9)河南省重点研发与推广专项,212102310515,生物电化学人工湿地脱氮产电性能的优化及应用,2021.1-2022.121.5万,在研,主持

10)河南省重点研发与推广专项,182102310796,基于全域旅游战略的乡村河流生态廊道构建关键技术研究,2018.1-2019.122万,结题,主持

11)河南省高等学校重点科研项目,15A180063,重金属污染环境下基于水体凋落物分解者调控的食物链修复技术,2015.1-2017.122万,结题,主持

专利:

1)杜京京, 牛玉龙, 张雪婷, 王惜琳, 陶田颖, 原帅康, 张玲燕, 曹霞, 金宝丹, 赵建国,王兰. 一种生物电化学人工湿地系统及其应用, 202388, 中国, ZL202310041124.3

2)杜京京, 牛玉龙, 王惜琳, 渠文瑞, 张雪婷, 张玲燕, 原帅康, 金宝丹, 庞龙, 张志华,  孙鹏, 程旭, 陈灵, 杨艳琴, 张宏忠, 赵建国. 处理低碳废水的CW-MFC系统快速启动方法及装置, 2023224, 中国, ZL202210413713.5

3)杜京京, 牛玉龙, 王惜琳, 渠文瑞, 原帅康, 张玲燕, 李依原, 秦杨毅, 曹霞, 杨艳琴, 张宏忠. 一种非耗能增氧人工湿地系统、运行方法及应用, 20221220, 中国, ZL202210003527.4

4)杜京京, 牛玉龙, 渠文瑞, 屈明祥, 曹霞. 多阳极型微生物燃料电池人工湿地系统、运行方法及应用, 20211231, 中国, ZL202110161516.4.

5)杜京京, 马闯, 张珂, 张玉燕, 屈明祥, 扈斌, 张宏忠, 魏明宝, 刘楠, 金宝丹. 一种抑制氨气排放的高效堆肥复合菌种的制备方法及使用方法, 2021910, 中国, ZL201810588269.4.

6)杜京京, 张肖静, 马永鹏, 张玉燕, 周垠霏, 刘利娜. 一种基于蒲叶-真菌联合作用的镉污染食物链修复方法, 2018914, 中国, ZL201611070919.3.

获奖情况

1)杜京京, 张玉燕, 尹玉婷, 张锦, 马航, 李柯, 万宁. Do environmental concentrations of zinc oxide nanoparticle pose ecotoxicological risk to aquatic fungi associated with leaf litter decomposition?, 河南省优秀科技论文一等奖, 2023.

2)杜京京, 张玉燕, 屈明祥, 尹玉婷, 范康, 扈斌, 张宏忠, 魏明宝, 马闯. Effects of biochar on the microbial activity and community structure during sewage sludge composting, 河南省优秀科技论文一等奖, 2022.

3)蒲高忠, 杜京京, 曾丹娟, 莫凌, 廖建雄, 陈霞霞, 何文, 周龙武, 黄科朝, 仇硕. 典型纳米材料和重金属污染对河流生态系统群落结构与功能的影响机制, 广西科学院科学技术一等奖, 2021.

4)张宏忠, 马闯, 魏明宝, 刘永德, 赵继红, 杜京京, 郭春霞. 污泥无害化处理及综合利用关键技术与示范, 河南省科学技术进步奖三等奖, 2017.

5)马闯, 魏明宝, 张宏忠, 赵继红, 刘永德, 杜京京, 刘楠. 污泥无害化处理及综合利用关键技术研究与示范. 河南省优秀科技成果奖一等奖, 2017.

六、发表论著(著作、发表文章等)

1Du Jingjing, Wang Xilin, Tao Tianying, Zhang Xueting, Jin Baodan, Zhao Jianguo, Lv Yangyang, Zhang Qian, Hu Keying, Qv Wenrui, Xu Yuanqian, Cao Xia, Polystyrene size-dependent impacts on microbial decomposers and nutrient cycling in streams, Science of the Total Environment, 2023, 905, 167032.

2Du Jingjing, Wang Xilin, Zhang Yuyan, Pu Gaozhong, Jin Baodan, Qv Wenrui, Cao Xia, Can titanium dioxide nanoparticles modulate the effects of zinc oxide nanoparticles on aquatic leaf litter decomposition?, Chemosphere, 2023, 337, 139313.

3Niu Yulong, Qu Mingxiang, Du Jingjing *, Wang Xilin, Yuan Shuaikang, Zhang Lingyan, Zhao Jianguo, Jin Baodan, Wu Haiming, Wu Shubiao, Cao Xia, Pang Long. Effects of multiple key factors on the performance of petroleum coke-based constructed wetland-microbial fuel cell. Chemosphere, 2023, 315, 137780.

4Du Jingjing*, Qv Wenrui, Niu Yulong, Yuan Shuaikang, Zhang Lingyan, Yang Huilian, Zhang Yuyan. Co-exposures of acid rain and ZnO nanoparticles accelerate decomposition of aquatic leaf litter. Journal of Hazardous Materials 2022, 426:128141.

5Du Jingjing*, Qv Wenrui, Pu Gaozhong, Qv Mingxiang, Zhang Jin, Zhang Wenfang, Zhang Hongzhong. How do visible and UV light affect the structure and function of leaf-associated aquatic fungal communities polluted by TiO2 nanoparticles? Environmental Science: Nano 2022, 9(1):133-144.

6Du Jingjing*, Qv Wenrui, Niu Yulong, Qv Mingxiang, Jin Kai, Xie Jinyou, Li Zehong. Nanoplastic pollution inhibits stream leaf decomposition through modulating microbial metabolic activity and fungal community structure, Journal of Hazardous Materials 2022, 424(Part A):127392.

7Du Jingjing*, Niu Yulong, Wu Haiming, Konnerup Dennis, Wu Shubiao, Carlos A. Ramírez-Vargas, Yang Yanqin, Brix Hans, Carlos A. Arias. Effects of electroconductive materials on treatment performance and microbial community structure in biofilter systems with silicone tubings, Chemosphere 2022, 307(Part 2): 135828.

8Du Jingjing*, Qv Mingxiang, Qv Wenrui, Liu Lina, Zhang Yuyan, Cui Minghui, Zhang Hongzhong. Potential threats of zeolitic imidazolate framework-8 nanoparticles to aquatic fungi associated with leaf decomposition, Journal of Hazardous Materials 2021, 401:123273.

9Du Jingjing*, Zhang Yuyan, Yin Yuting, Zhang Jin, Ma Hang, Li Ke, Wan Ning. Do environmental concentrations of zinc oxide nanoparticle pose ecotoxicological risk to aquatic fungi associated with leaf litter decomposition? Water Research 2020, 178:115840.

10Du Jingjing*, Zhang Yuyan, Qv Mingxiang, Yin Yuting, Zhang Wenfang, Zhang Jin, Zhang Hongzhong. Different phototoxicities of ZnO nanoparticle on stream functioning. Science of the Total Environment 2020, 725:138340.

11Du Jingjing*, Qv Mingxiang, Zhang Yuyan, Cui Minghui, Zhang Hongzhong.  Simulated sulfuric and nitric acid rain inhibits leaf breakdown in streams: A microcosm study with artificial reconstituted fresh water. Ecotoxicology and Environmental Safety 2020, 196:110535.

12Du Jingjing*, Guo Ruilin, Li Ke, Ma Bingbing, Chen Yan, Lv Yanna. Contributions of Zn ions to ZnO nanoparticle toxicity on Microcystis aeruginosa during chronic exposure. Bulletin of Environmental Contamination and Toxicology 2019, 103:802-807.

13Zhang Yuyan, Yin Yuting, Ma Hang, Cao Xinshuai, Ma Bingbing, Qv Mingxiang, Zhang Baozhong, Akbar Sibbiq, Du Jingjing*. Insight into chronic exposure effects of nanosized titanium dioxide on Typha angustifolia leaf litter decomposition. Chemosphere 2019, 224:680-688.

14Du Jingjing*, Zhang Yuyan, Qv Mingxiang, Li Ke, Yin Xiaoyun, Sorrell Brian Keith, Wei Mingbao, Ma Chuang. The effects of ZnO nanoparticles on leaf litter decomposition under natural sunlight. Environmental Science: Nano 2019, 6:1180-1188.

15Du Jingjing*, Zhang Yuyan, Hu Bin, Qv Mingxiang, Ma Chuang, Wei Mingbao, Zhang Hongzhong. Insight into the potentiality of big biochar particle as an amendment in aerobic composting of sewage sludge. Bioresource Technology 2019, 288:121469.

16Du Jingjing*, Zhang Yuyan, Guo Ruilin, Meng Fanxiao, Gao Yucong, Ma Chuang, Zhang Hongzhong. Harmful effect of nanoparticles on the functions of freshwater ecosystems: Insight into nanoZnO-polluted stream. Chemosphere 2019, 214:830-838.

17Du Jingjing, Zhang Yuyan, Qu Mingxiang, Yin Yuting, Fan Kang, Hu Bin, Zhang Hongzhong, Wei Mingbao, Ma Chuang. Effects of biochar on the microbial activity and community structure during sewage sludge composting. Bioresource Technology 2019, 272:171-179.

18Du Jingjing*, Qv Mingxiang, Li Ke, Yin Xiaoyun, Meng Fanxiao, Yang Jingchao, Ma Chuang. Impacts of benzophenone-type UV filters on cladoceran Daphnia carinata. Limnology 2019, 20:173-179.

19Du Jingjing*, Qv Mingxiang, Zhang Yuyan, Yin Xiaoyun, Wan Ning, Zhang Baozhong, Zhang Hongzhong. The potential phototoxicity of nano-scale ZnO induced by visible light on freshwater ecosystems. Chemosphere 2018, 208:698-706.

20Du Jingjing*, Zhang Yuyan, Guo Wei, Li Ningyun, Gao Chaoshuai, Cui Minghui, Lin Zhongdian, Wei Mingbao, Zhang Hongzhong. Chronic impacts of TiO2 nanoparticles on Populus nigra L. leaf decomposition in freshwater ecosystem. Journal of Hazardous Materials 2018, 350:121-127.

21Du Jingjing*, Zhang Yuyan, Cui Minghui, Yang Jingchao, Lin Zhongdian, Zhang Hongzhong. Evidence for negative effects of ZnO nanoparticles on leaf litter decomposition in freshwater ecosystems. Environmental Science: Nano 2017, 4(12):2377-2387.20Du Jingjing*, Zhang Yuyan, Liu Lina, Qv Mingxiang, Lv Yanna, Yin Yifei, Zhou Yinfei, Cui Minghui, Zhu Yanfeng, Zhang Hongzhong. Can visible light impact litter decomposition under pollution of ZnO nanoparticles? Chemosphere 2017, 187:368-375.