
同济大学环境科学与工程学院研究员,硕士生、博士生导师;上海市科学技术专家库专家,上海市污泥与城市有机质废弃物协同处理处置领域技术带头人。
承担国家自然科学基金重点项目《污泥高含固厌氧消化中的物质转化原理及新技术研究》、国家自然科学基金课题《氨氮对污泥厌氧消化体系中硫生物转证住化的影响机制研究》、《直领两带觉穿粒城市污泥高含固厌氧消化系统中聚丙烯酰胺的降解及转化机制研究》、国家重大水专项《固定膜-活性污来自泥复合系统的稳定运行机制及生态特性研究》、"863"计划课题《北方市政污泥囊式厌氧发酵与燃气循环利用技术与示范》、国家科技支撑项目《村镇生活垃圾序批式干法厌氧产沼设备研发》、《典型360百科南方城市生物质废物处置与燃气化利用技术集成与示范》。主持了《城镇污水处理厂污泥处理技术处置技术指南(厌氧消化部分)研究》、上海免市技术标准专项项目期频燃毫《污水处理领域悬浮填料产河鸡江沙气待之鲁品的技术标准研究》等编制工作。主要造假研究方向为城市污泥及有机质高级厌氧消化资源化与能源化技术研究、石油工业中采油污建呼鱼水污泥安全处理处置与资源化技术研究。
- 中文名称 董滨
- 国籍 中国
- 民族 汉族
- 毕业院校 同济大学
- 主要成就 上海市科学技术专家库专家
上海市污泥与城市有机质废弃物协同处理处置领域技术带头人
人物经历
2001年本科毕业于青岛理工大学市政工程系给水排水专业;
2004年硕士毕业于同济大学环境科学与工程学院环境工程专业;
2006年博士毕业于同济大学环境科学与工程学院环境工程专业;
2006年7月至今:同济大学环境科学与工程学院城市污染控制国家工程研究中心。
研究方向
污水处理理论与技术、污泥与有机固废处理资源化技术、石油化工污水处理与资源化技术及工程应用 。
主要贡献
主持或参与了国家科技部、国家自然科学基金委以及上海市科委10多项重大科研、工程项目。正承担国家自然科学基金课题《氨氮对污泥厌氧消化体系中硫生物转化的影最理眼相质溶响机制研究》、国家重大水专项《固定膜-活性污泥复合系统的稳定运行机制及生态特性研究》、国家"863"计划课题《北方市政污泥囊式厌氧发酵与燃气循环利用技术与示范》、"十二五"国家科技支撑项目《村镇生活垃圾序批式干法厌氧产沼设备研发》等科造日哥南背夜测研项目。近年来主要承担的科研项目情况具体如下:
科研成果
1. 国家自然科学基金重点项目:污泥高含固厌氧收子田球座得游值秋历掉消化中的物质转化原理及新技术研究51538008(2016.1-2020.12)来自;项目负责人:戴晓虎、董滨;
2. 国家自然科学基金:氨氮对污泥厌氧消化体系中硫生物转化的影响机制研究51578397(2016.1-2019.12);项目负360百科责人;
3. 国家自继说坏尽继把商然科学基金:活性污泥-生物膜复合工艺中后生动物爆发性繁处研号殖机制及控制研究51008216(2011.1-2013.12);项目负责人;
4. 国家自然科学基金:城市污泥高含固厌氧消化更间本知系统中聚丙烯酰胺的降解及转化机制研究51278358(2012.1-2015.12);项目负责人:戴晓虎,董滨;
5. 国家重大水专项课题:固定膜-活性污泥复合系统的稳定运行机章川歌奏外春板制及生态特性研究(2012.1-2016.12)说抗某黄著花客吸激斤装;项目负责人;
6. 国家重大水专项课题:节地型城镇污水处理工艺技术研究与工程示范-污水处理工艺生物量提升技术研究(201301-20160环杀夜法充七做双视读6);主要承担者;
7. 国家重大水专项,项目名称:巢湖流域城市水污染控制及水环境治理技术研究与综合示范;子课题负责人;
8. 国家重大水专项课题:城镇污水处理厂污泥处理技术处置技术指南研究(2护的亲行很起00901-201112);项目负责人;
觉样逐9. 国家重大水专项课题:城市污泥与有机质的联合生物质能源回收与综合利用技术;子课题负责人;
试断移绿毫是门官 10. 国家住建部界万教意集法影类重两863计划课题:北方市政污泥囊式厌氧发酵与燃气循环利用技术与示范(2012.1-2016.12);项目负责人;
11. 上海市技术标准专项比剂开川滑少复九假粒展,项目名称:污水处理领域悬浮填料产品的技术标准研究(2006.6-2008.9);排级吃派考绿孔轮模项目负责人;
12. "十二五"农村领域国家科技计划课题:村镇生活垃圾序批式干法厌氧产沼设备研发(201401-201612);主要承担者;
13. 国家科技支撑项目:典型南方城市生物易这更民富万木胶担始她质废物处置与燃气化利用技术集答转成与示范(201410-201缩构素雨种晶凯712);主要承担者;
14. 同济大学中央高校基本科研业务费专项资金资助项目:低碳型分质供排水和废物资源化系统应用研究(201107-201406);项目负责人;
15. "十一五"国家科技支撑项目,项目名称:城市生活垃圾箱式干法厌氧生物制气设备研发与示范工程(201006-201212);主要承担者;
16. 省部级重大专项,项目名称:污水处理领域共性关键技术及产品研发(2008.6-2010.12);项目负责人;
17. 省部级重大专项,项目名称:数字化移动式集成型污水处理工艺与设备的研究(2008.8-2010.12);项目负责人;
18. 上海市科委重点项目,项目名称:城市有机废弃物资源化利用的产业共性技术研究(2010.6-2012.5);主要承担者。
论文期刊
1.Xiaohu Dai,Nina Duan, Bin Dong*, LinglingDai.High-solids anaerobic co-digestion of sewage sludge and food waste in comparison with mono digestions:Stability and performance.Waste Management,2013,33:308-316.(ESI论文)
2.Nina Duan, Bin Dong*, Bing Wu, Xiaohu Dai.High-solid anaerobic digestion of sewage sludge under mesophilic conditions:Feasibility study.Bioresource Technology,2012,104:150-156.(ESI扩展论文)
3.Bin Dong, Xiaoguang Liu, Lingling Dai, Xiaohu Dai.Changes of heavy metal speciation during high-solid anaerobic digestion of sewage sludge.Bioresource Technology,2013,131:152-158.
4.Xiaohu Dai, Fan Luo, Jing Yi, Qunbiao He,Bin Dong.Biodegradation of polyacrylamide by anaerobic digestion under mesophilic condition and its performance in actual dewatered sludge system.Bioresource Technology.2014,153:55-61.
5.Dai Xiaohu, Gai Xin, Dong Bin.Rheology evolution of sludge through high-solid anaerobic digestion.Bioresource Technology, 2014, 174:6-10.
6.Xiaoguang Liu, Bin Dong, Xiaohu Dai.Hydrolysis and acidification of dewatered sludge under mesophilic, thermophilic and extreme thermophilic conditions:Effect of pH.Bioresource Technology,2013,148:461-466.
7.Dai Xiaohu, Luo Fan,Zhang Dong, Dai Lingling,Chen Yinguang, Dong Bin.Waste-Activated Sludge Fermentation for Polyacrylamide Biodegradation Improved by Anaerobic Hydrolysis and Key Microorganisms Involved in Biological Polyacrylamide Removal.Scientific Reports,5,2015,NO.11675.
8.Jing Yi,Bin Dong,Jingwei Jin,Xiaohu Dai*.Effect of increasing total solids contents on anaerobic digestion of food waste under mesophilic conditions: performance and microbial characteristics analysis.PLOS ONE,2014,9(7):1-10.
9.Bin Dong, Peng Gao, Dong Zhang, Yinguang Chen, Lingling Dai, Xiaohu Dai.A new process to improve short-chain fatty acids and bio-methane generation from waste activated sludge.Journal of Environmental Sciences, 2016, 43:159-168.
10.Fan Luo, Bin Dong, Lingling Dai, Qunbiao He, Xiaohu Dai.Change of thermal drying characteristics for dewatered sewage sludge based on anaerobic digestion.Journal of Thermal Analysis and Calorimetry, 2013,114 (1):307-312.
11.Xiaohu Dai, Ning Ye, Fan Luo, Bin Dong.Enhancement of anaerobic digestive efficiency by the use of exchange resin to remove cations in sewage sludge.Desalination and Water Treatment,2016,57 (14) :6202–6208.
12.Dai Xiaohu,Gai Xin,Ye Ning,Luo Fan, Dong Bin.Evaluation of a pretreatment method using cation exchange resin to enhance the sludge solubilization and disintegration for improving the efficiency of anaerobic digestion.Desalination and Water Treatment,2015,56(11):2848-2855.
13.Bin Dong, Jie Tan, Yang Yang, Zishan Pang, Zhongtian Li, XiaohuDai.Linking nitrification characteristic and microbial community structures in an Integrated Fixed Film Activated Sludge reactor by high-throughput sequencing.Water Science and Technology,2016,7(6):1354-1364.
14.Liu Xiaoguang,Dong Bin,Dai Lingling,Dai Xiaohu.Conversion of heavy metal fractions in waste-activated sludge during anaerobic digestio.Fresenius Environmental Bulletin, 2012,21(10):2896-2900.
15.Xiaohu Dai, Ying Xu, Yiqing Lu, Bin Dong.Recognition on the Key Chemical Constituents of Sewage Sludge for Biogas Production.RSC Advances,2017,7,2033–2037
16.董滨,刘晓光,戴翎翎,戴晓虎.低温短时热水解对剩余污泥厌氧消化的影响.同济大学学报(自然科学版), 2013, 41(5):716-721.(EI论文)
17.戴晓虎,王凯丽,董滨,吴冰.黄花和脱水污泥厌氧消化的温室气体减排研究.中国环境科学,2014,34(4):876-883.(EI论文)
18.Xiaohu Dai, Ying Xu, Bin Dong.Effect of the micron-sized silica particles (MSSP) on biogas conversion of sewage sludge.Water Research.(录用)
19.译著:《污水处理厂污泥减量化技术》(Sludge Reduction Technologies in Wastewater Treatment Plants),周玲玲,董滨,戴晓虎.2013年,中国建筑工业出版社,ISBN:978-7-112-12352-8.
20.Bin Dong,YingXu,LinSenming,XiaohuDai.Characterizing and Exploring the Formation Mechanism of Salt Deposition by Reusing Advanced-softened, Silica-rich, Oilfield-produced Water (ASOW) in Superheated Steam Pipeline.Scientific Reports,2015,5,NO.17274.
21.Bin Dong,YingXu,ShengjianJiang,XiaohuDai.Effect of reusing the advanced-softened, silica-rich, oilfield-produced water (ASOW) onfinned tubes in steam-injection boiler.Desalination,2015,372:17-25.
22.Bin Dong,YingXu,Hao Deng,Fan Luo,Shengjian Jiang.Effects of pipeline corrosion on the injection water quality of low permeability in oilfield.Desalination,2013,(326):141–147.
23.Xu Ying,Dong Bin,DaiXiaohu.Effect of the silica-rich, oilfield-produced water with different degrees of softening on characteristics of scales in steam-injection boiler.Desalination, 2015, 361:38-45.
24.Fan Luo,Bin Dong,Jiacai Xie, Shengjian Jiang.Scaling tendency of boiler feedwater without desiliconization treatment.Desalination,2012,302:50-54.
25.Qunbiao He,Chen Deng,Ying Xu, Danni Shen,Bin Dong,Xiaohu Dai.Optimization of and mechanism for the coagulation–flocculation of oil-field wastewater from polymer flooding.Desalination and Water Treatment,2016,57(50):23709-23718.
26.Bin Dong, Hanyu Chen, Yang Yang, Qunbiao He,Xiaohu Dai.Treatment of printing and dyeing wastewater using MBBR followed by membrane separation process.Desalination and Water Treatment, 2014,52 (22-24):4562-4567.
27.Bin Dong, Hanyu Chen, Yang Yang, Qunbiao He,XiaohuDai.Biodegradation of Polychlorinated Biphenyls Using a Moving-Bed Biofilm Reactor.CLEAN - Soil, Air, Water,2015,7:1078-1083.
28.Bin Dong,Ying Xu,Danni Shen,Xiaohu Dai,Senming Lin.Characterizing the Interactions between Humic Matter and Calcium Ions during Water Softening by Cation-Exchange Resins.RSC Advances,2016,6(96):93947–93955.
29.Ying Xu,Danni Shen,Bin Dong,Xiaohu Dai.A new strategy for reusing the oilfield-produced water as boiler feedwater without desilication.Journal of the Taiwan Institute of Chemical Engineers,2016,68:169-172.
30.Xiaohu Dai, Ying Xu, Danni Shen, Xiaoyu Zhai, Bin Dong, Senming Lin.Characterizing and exploring the mechanism of formation of corrosion scales by reusing advanced-softened, silica-rich,oilfield-produced water (ASOW) in a steam-injection boiler.Journal of Chemical Technology and Biotechnology,2017,92(2):382-390.