中国给水排水2024年污水处理厂提标改造(污水处理提质增效)高级研讨会(第八届)邀请函暨征稿启事
 
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董应超 --- 中国科学院城市环境研究所,任研究员、博士生导师、研究组长 工学博士,研究员,博士生导师

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核心提示:董应超 --- 中国科学院城市环境研究所,任研究员、博士生导师、研究组长 工学博士,研究员,博士生导师
中国给水排水2024年污水处理厂提标改造(污水处理提质增效)高级研讨会(第八届)邀请函暨征稿启事

中国给水排水2024年污水处理厂提标改造(污水处理提质增效)高级研讨会(第八届)邀请函暨征稿启事
 

姓    名:
董应超
性    别:
电    话:
0592-6190790
职    称:
研究员
通讯地址:
厦门市集美大道1799号
邮政编码:
361021
电子邮件:
ycdong@iue.ac.cn

 简历:
 

  董应超,工学博士,研究员,博士生导师。1980年12月生于河南省禹州市。

  2003年进入中国科学技术大学固体化学与无机膜研究所进行硕博连读学习,2008年获得工学博士学位(导师:刘杏芹教授、孟广耀教授)。2008年至2012年先后在国内外研究机构进行环境能源过程应用无机陶瓷膜技术和环境陶瓷材料方面的研究工作:三一电气(上海)研究院“室主任”(2007-2008年);国家陶瓷工程中心/中国科学技术大学固体化学与无机膜研究所“博士后”(2008-2009年),合作导师为周健儿教授、孟广耀教授;爱尔兰Limerick大学“IRCSET Research Fellow”(2009-2011年,爱尔兰科学技术工程基金会资助),合作导师为Stuart Hampshire教授(世界陶瓷科学院院士);日本东京工业大学“PD Researcher”(2011-2012年)和“JSPS Fellow”(2012年,日本学术振兴会资助),合作导师为Katsuro Hayashi准教授和Hideo Hosono教授(世界陶瓷科学院院士)。2012年10月任职于中国科学院城市环境研究所,任研究员、博士生导师、研究组长。

  面向环境工程应用,研究组工作涉及无机陶瓷膜与膜过程、污染物分离转化及资源化、无机固体废弃物/矿物资源化和水污染控制等领域,致力于“无机陶瓷膜与污染控制技术”相关技术成果的转移转化。至今(2015年04月),在国际主流学术期刊(如J. Membr. Sci., J. Hazard. Mater., J. Mater. Chem. A, J. Am. Ceram. Soc., J. Eur. Ceram. Soc., Ceram. Int., J. Power Sources, Int. J. Hydrogen Energy, RSC Adv., Appl. Clay. Sci.等)、学术会议上等发表论文80多篇,其中SCI 收录近60篇,JCR一区论文33篇。论文引用600余次,H-index =15。申请专利4项。先后获得3项国际知名基金会项目的资助。正在承担国家自然科学基金委、福建省、厦门市、宁波市等课题多项,任《膜科学与技术》杂志编委(2014-)和研究所学术委员会委员。

 

 研究领域:
 

环境无机膜及膜过程;污染物分离转化及资源化技术;废水/固废资源化技术;水污染控制

 

 

 获奖及荣誉:
 

JSPS Fellow,日本学术振兴会JSPS,2012年
IRCSET Research Fellow,爱尔兰科技工程基金会IRCSET,2009年
FCT Fellow,欧盟(葡萄牙)博士后基金FCT,2009年

 

 代表论著:
 

1.  Lingling Li, Xinfa Dong, Yingchao Dong*, Li Zhu, Sheng-Jie You, Ya-Fen Wang, Incorporation of zinc for fabrication of low-cost spinel-based composite ceramic membrane support to achieve its stabilization, Journal of Hazardous Materials, 287 (2015) 188 –196.
2.  Li Zhu, Yingchao Dong*, Lingling Li, Jing Liu, Sheng-Jie You, Coal fly ash industrial waste recycling for fabrication of mullite-whisker-structured porous ceramic membrane supports, RSC Advances, 5 (2015) 11163 –11174.
3. Li Zhu, Yingchao Dong*, Stuart Hampshire, Sophie Cerneaux, Louis Winnubst, Waste-to-resource preparation of a porous ceramic membrane support featuring elongated mullite whiskers with enhanced porosity and permeance, Journal of the European Ceramic Society, 35 (2015) 711-721.
4.  Yingchao Dong, Katsuro Hayashi, Hiroki Nozoe, Yutaka Shinoda, Hideo Hosono, Chloride-ion-stabilized strontium mayenite: expansion of versatile material family, Journal of the American Ceramic Society, 97 (12) (2014) 4037–4044.
5.  Qikai Lü, Xinfa Dong, Zhiwen Zhu, Yingchao Dong*, Effect of CuO doping on sinterability, mechanical and electrical properties of Sm-doped CeO2 ceramic thick membrane solid electrolytes, Ceramics International, 40 (2014) 15545–15550.
6.  Jingjie Cao, Xinfa Dong, Lingling Li, Yingchao Dong*, Stuart Hampshire, Recycling of waste fly ash for production of porous mullite ceramic membrane supports with increased porosity, Journal of the European Ceramic Society, 34 (2014) 3181-3194.
7. Qikai Lü, Xinfa Dong, Zhiwen Zhu, Yingchao Dong*, Environment-oriented low-cost porous mullite ceramic membrane supports fabricated from coal gangue and bauxite, Journal of Hazardous Materials 273 (2014) 136-145.
8.  Qibing Chang, Jian-er Zhou, Yongqing Wang, Jian Liang, Xiaozhen Zhang, Sophie Cerneaux, Xia Wang, Zhiwen Zhu, Yingchao Dong, Application of ceramic microfiltration membrane modified by nano-TiO2 coating in separation of a stable oil-in-water emulsion, Journal of Membrane Science, 456 (2014) 128–133.
9.  Yingchao Dong, Hideo Hosono, Katsuro Hayashi*, Formation and quantification of peroxide anion in nanocage of 12CaO 7Al2O3, RSC Advances, 3 (40) (2013) 18311–18316.
10. Yingchao Dong, Dongfeng Li, Xuyong Feng, Xinfa Dong, Stuart Hampshire*, A high-strength Sm-doped CeO2 oxide-ion conducting electrolyte membrane for solid oxide fuel cell application, RSC Advances, 3 (38) (2013) 17395–17401.
11. Jun Xiong, Xinfa Dong, Yibing Song, Yingchao Dong**, A high performance Ru-ZrO2/carbon nanotubes-Ni foam composite catalyst for selective CO methanation, Journal of Power Sources, 242 (2013) 132–136.
12. Haifeng Dang, Xinfa Dong*, Yingchao Dong**, Jiasheng Huang, Facile and green synthesis of titanate nanotube/graphene nanocomposites for photocatalytic H2 generation from water, International Journal of Hydrogen Energy, 38 (2013) 9178–9185.
13. Haifeng Dang, Xinfa Dong*, Yingchao Dong**, Yan Zhang, Stuart Hampshire, TiO2 nanotubes coupled with nano-Cu(OH)2 for highly efficient photocatalytic hydrogen production, International Journal of Hydrogen Energy, 38 (2013) 2126–2135.
14. Jun Xiong, Xinfa Dong*, Yingchao Dong**, Xufeng Hao, Stuart Hampshire, Dual-production of nickel foam supported carbon nanotubes and hydrogen by methane catalytic decomposition, International Journal of Hydrogen Energy, 37 (2012) 12307–12316.
15. Yingchao Dong, Stuart Hampshire, Jianer Zhou, Xinfa Dong, Bin Lin, Guangyao Meng, Mechanical strengthening of Sm-doped CeO2 ceramics by 1 at.% cobalt oxide for solid oxide fuel cell application, Journal of Power Sources, 196 (2011) 8402– 8405
16.Yingchao Dong, Stuart Hampshire, Jian-er Zhou, Xinfa Dong, Bin Lin, Guangyao Meng, Combustion synthesis and characterization of Cu-Sm co-doped CeO2 electrolytes, Journal of the European Ceramic Society, 31 (2011) 2365-2376.
17. Jian-er Zhou, Yingchao Dong*, Stuart Hampshire, Guangyao Meng, Utilization of sepiolite in the synthesis of porous cordierite ceramics, Applied Clay Science, 52 (2011) 328-332.
18. Yingchao Dong, Stuart Hampshire, Jian-er Zhou, Zhanlin Ji, Jiandong Wang, Guangyao Meng, Sintering and characterization of flyash-based mullite with magnesia addition, Journal of the European Ceramic Society, 31 (2011) 687–695.
19. Yingchao Dong, Stuart Hampshire, Jian-er Zhou, Guangyao Meng, Synthesis and sintering of Gd-doped CeO2 electrolytes with and without 1 at.% CuO dopping for solid oxide fuel cell applications, International Journal of Hydrogen Energy, 36 (2011) 5054–5066.
20. Yingchao Dong, Stuart Hampshire, Bin Lin, Yihan Ling, Xiaozhen Zhang, High sintering activity Cu-Gd co-doped CeO2 electrolyte for solid oxide fuel cells, Journal of Power Sources, 195 (2010) 6510-6515.
21. Yingchao Dong, Stuart Hampshire, Jian-er Zhou, Bin Lin, Zhanlin Ji, Xiaozhen Zhang, Guangyao Meng, Recycling of fly ash for preparing porous mullite membrane supports with titania addition, Journal of Hazardous Materials, 180 (2010) 173-180.
22. Yingchao Dong, Jian-er Zhou, Bin Lin, Yongqing Wang, Songlin Wang, Lifeng Miao, Ying Lang, Guangyao Meng, Xingqin Liu, Reaction-sintered porous mineral-based mullite ceramic membrane supports made from recycled materials, Journal of Hazardous Materials, 172 (2009) 180-186.
23. Yingchao Dong, Xuyong Feng, Xuefei Feng, Yanwei Ding, Xingqin Liu, Guangyao Meng, Preparation of low-cost mullite ceramics from natural bauxite and industrial waste fly ash, Journal of Alloys and Compounds, 460 (1-2) (2008) 599-606.
24. Yingchao Dong, Xuyong Feng, Dehua Dong, Songlin Wang, Jiakui Yang, Jianfeng Gao, Xingqin Liu, Guangyao Meng, Elaboration and chemical corrosion resistance of tubular macro-porous cordierite ceramic membrane supports, Journal of Membrane Science 304 (1-2) (2007) 65-75.
25. Yingchao Dong, Xingqin Liu, Qianli Ma, Guangyao Meng, Preparation of cordierite-based porous ceramic micro-filtration membranes using waste fly ash as the main raw materials, Journal of Membrane Science 285 (1-2) (2006) 173-181.
26.  Yingchao Dong, Shaofeng Chen, Xuebin Zhang, Jiakui Yang, Xingqin Liu, Guangyao Meng, Fabrication and characterization of low cost tubular mineral-based ceramic membranes for micro-filtration from natural zeolite, Journal of Membrane Science 281(1-2) (2006) 592-599.

 

 承担科研项目情况:
 

1. 福建省自然科学基金(2015.04-2018.04)〈面向污染物分离转化的陶瓷膜的制备与应用研究〉
2. 福建省工业科技重点项目(2014.03-2017.03)〈面向油水分离应用的低成本管状陶瓷膜的制备技术与装置示范〉
3. 福建省自然科学基金面上项目(2014.01-2016.12)〈抗菌功能化中空纤维复合陶瓷分离膜的制备科学研究〉
4. 国家自然科学基金项目(2014.01-2016.12)〈莫来石-C12A7中空纤维膜的表面物化特性与微生物失活机制研究〉
5. 日本学术振兴会JSPS项目(2012.04-2012.10)〈Key active oxygen species in nanoporous C12A7 ceramics responsible for oxidation reactivity〉
6. 爱尔兰科技工程基金会IRCSET项目(2009.10-2011.10)〈Fabrication of novel oxide-ceramics for energy/environmental applications〉

 
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