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一、基本情況
彭永臻:男,工學博士,博士生導師。現任北京工業大學環境科學與工程學科首席教授(兼任哈爾濱工業大學博士生導師),環境工程系主任兼水污染控制室主任。1981年作為我國首批碩士研究生畢業于哈爾濱工業大學。1993年破格晉升為教授,1996年評為博士生導師,先后獲黑龍江省優秀中青年專家、獲政府特殊津貼、“國家教學名師”、“全國模范教師”,“北京市人民教師提名獎”等稱號。
現任中國城鎮供水排水協會常務理事,中國環境科學學會環境工程分會副主任委員,《環境科學學報》副主編,《北京工業大學學報》副主編,《中國給水排水》、《給水排水》和《Frontiers of Environmental Science & Engineering in China》等9本雜志的編委。
主要研究方向是污水生物處理及其自動控制與智能控制、污水脫氮除磷的新工藝與新技術。先后獲得了20余項省部級以上科技進步獎和優秀教學獎,其中包括國家科技進步二等獎1次,省部級科技一等獲獎3次。領導的教學團隊于2007年被評為首批“國家級教學團隊”,負責的《水質工程學》和主講的《環境保護概論》先后獲國家精品課程。主編與參編了3本全國統編教材和7本專著,發表論文400余篇,其中SCI檢索的論文120余篇。獲得發明專利授權30余項。指導的博士生中已有37人獲博士學位,并于2005年和2006年連續2次獲得“全國優秀博士學位論文”獎,另2次獲“全國優秀博士學位論文”提名獎。
二、主要研究方向
污水生物處理的理論與應用、污水處理系統的自動控制與智能控制、污水脫氮除磷的新工藝與新技術。
三、主要在研課題
1.“十一五”國家科技支撐計劃重點項目--SBR工藝城市污水處理廠節能降耗關鍵技術(2006BAC19B03),(2007.1-2010.12)。
2.“十一五”重大科技專項課題(編號:2008ZX07317-007-105)--景觀河湖水環境管理與水體補水保障研究(2009.1--2011.12);
3.國家“十一五”重大科技專項課題--污水廠尾水作為城市河湖景觀補水的深度脫氮除磷技術(2008.9--2010.12);
4.國家“863計劃”項目--活性污泥微膨脹節能理論與方法及中試研究(2006AA06Z319),(2007.1-2009.12)。
5.北京市教委科研基地--科技創新平臺項目---污水脫氮除磷新理論與新工藝及節能降耗關鍵技術,(2008.1-2010.12)
6.北京市自然科學基金重點項目(8091001)--城市垃圾滲濾液生物處理及短程生物脫氮新技術,(2009.1--2011.12);
7.北京市高校人才強教深化計劃高層次人才資助項目(編號:PHR20090502)--污水脫氮除磷新理論與新工藝及節能降耗關鍵技術(2009.1--2011.12);
8.國家自然科學基金---海外青年學者合作研究基金項目(50628808)--聚磷菌和聚糖菌在強化生物除磷系統中競爭機理與控制,(2007.1-2009.12);
9.新加坡環境與水工業協會創新發展項目(EDBS07/1-53974092)--低溶解氧污泥微膨脹節能理論與方法研究。
10.新加坡環境與水工業發展協會項目(EDBS07/1-53974092)--CSBR過程控制及強化脫氮除磷研究。
四、科研工作
已主持了9項國家自然科學基金和2項教育部優秀年輕教師基金等30多項國家與省部級科研項目,目前正主持國家自然科學基金重大國際合作項目、國家“863”項目和國家“十一五”科技支撐項目等科研項目。先后獲得獲得了20余項省部級優秀教學成果獎和科技進步獎,2004年和2009年2次獲得國家科技進步獎二等獎。
2006-2014年主要代表論文如下:
1.G. B. Zhu, S. Y. Wang, W. D. Wang, Y. Wang, L. L. Zhou, B. Jiang, H. J. M. Op den Camp, N. Risgaard-Petersen, L. Schwark, Y. Z. Peng, M. M. Hefting, M. S. M. Jetten,C. Q. Yin.Hotspots of anaerobic ammonium oxidation at land-freshwater interfaces.Nature Geoscience,2013,6(2):103-107.
2.D. W. Gao, Y. Z. Peng,W. M. Wu.Kinetic Model for Biological Nitrogen Removal Using Shortcut Nitrification-Denitrification Process in Sequencing Batch Reactor.Environmental Science & Technology,2010,44(13):5015-5021.
3.S. Y. Wang, G. B. Zhu, Y. Z. Peng, M. S. M. Jetten,C. Q. Yin.Anammox Bacterial Abundance, Activity, and Contribution in Riparian Sediments of the Pearl River Estuary.Environmental Science & Technology,2012,46(16):8834-8842.
4.Q. Yang, X. H. Liu, C. Y. Peng, S. Y. Wang, H. W. Sun,Y. Z. Peng.N2O Production during Nitrogen Removal via Nitrite from Domestic Wastewater: Main Sources and Control Method.Environmental Science & Technology,2009,43(24):9400-9406.
5.Q. Yang, Y. Z. Peng, X. H. Liu, W. Zeng, T. Mino,H. Satoh.Nitrogen removal via nitrite from municipal wastewater at low temperatures using real-time control to optimize nitrifying communities.Environmental Science & Technology,2007,41(23):8159-8164.
6.X. Li, Y. Peng, N. Ren, B. Li, T. Chai,L. Zhang.Effect of temperature on short chain fatty acids (SCFAs) accumulation and microbiological transformation in sludge alkaline fermentation with Ca(OH)(2) adjustment. Water Research,2014,61(34-45.
7.S. J. Ge, Y. Z. Peng, S. Qiu, A. Zhu,N. Q. Ren.Complete nitrogen removal from municipal wastewater via partial nitrification by appropriately alternating anoxic/aerobic conditions in a continuous plug-flow step feed process.Water Research,2014,55(95-105.
8.J. H. Guo, Y. Z. Peng, Z. W. Wang, Z. G. Yuan, X. Yang,S. Y. Wang.Control filamentous bulking caused by chlorine-resistant Type 021N bacteria through adding a biocide CTAB.Water Research,2012,46(19):6531-6542.
9.Y. Ma, Y. Z. Peng, S. Y. Wang, Z. G. Yuan,X. L. Wang.Achieving nitrogen removal via nitrite in a pilot-scale continuous pre-denitrification plant.Water Research,2009,43(3):563-572.
10.Y. Z. Peng, S. J. Zhang, W. Zeng, S. W. Zheng, T. Mino,H. Satoh.Organic removal by denitritation and methanogenesis and nitrogen removal by nitritation from landfill leachate.Water Research,2008,42(4-5):883-892.
11.C. Y. Wu, Y. Z. Peng, S. Y. Wang,Y. Ma.Enhanced biological phosphorus removal by granular sludge: From macro- to micro-scale.Water Research,2010,44(3):807-814.
12.Y. Z. Chen, C. Y. Peng, J. H. Wang, L. Ye, L. C. Zhang,Y. Z. Peng.Effect of nitrate recycling ratio on simultaneous biological nutrient removal in a novel anaerobic/anoxic/oxic (A(2)/O)-biological aerated filter (BAF) system.Bioresource Technology,2011,102(10):5722-5727.
13.D. W. Gao, Y. Z. Peng, B. Li,H. Liang.Shortcut nitrification-denitrification by real-time control strategies.Bioresource Technology,2009,100(7):2298-2300.
14.S. J. Ge, Y. Z. Peng, S. Y. Wang, J. H. Guo, B. Ma, L. A. Zhang,X. Cao.Enhanced nutrient removal in a modified step feed process treating municipal wastewater with different inflow distribution ratios and nutrient ratios.Bioresource Technology,2010,101(23):9012-9019.
15.J. H. Guo, Y. Z. Peng, C. Y. Peng, S. Y. Wang, Y. Chen, H. J. Huang,Z. R. Sun.Energy saving achieved by limited filamentous bulking sludge under low dissolved oxygen.Bioresource Technology,2010,101(4):1120-1126.
16.J. H. Guo, Y. Z. Peng, S. Y. Wang, Y. A. Zheng, H. J. Huang,Z. W. Wang.Long-term effect of dissolved oxygen on partial nitrification performance and microbial community structure.Bioresource Technology,2009,100(11):2796-2802.
17.W. G. Jie, Y. Z. Peng, N. Q. Ren,B. K. Li.Utilization of alkali-tolerant stains in fermentation of excess sludge.Bioresource Technology,2014,157(52-59.
18.Y. Z. Peng,S. J. Ge.Enhanced nutrient removal in three types of step feeding process from municipal wastewater.Bioresource Technology,2011,102(11):6405-6413.
19.Y. Z. Peng, L. Zhang, S. J. Zhang, Y. P. Gan,C. C. Wu.Enhanced nitrogen removal from sludge dewatering liquor by simultaneous primary sludge fermentation and nitrate reduction in batch and continuous reactors.Bioresource Technology,2012,104(144-149.
20.Y. Y. Wang, Y. Z. Peng,T. Stephenson.Effect of influent nutrient ratios and hydraulic retention time (HRT) on simultaneous phosphorus and nitrogen removal in a two-sludge sequencing batch reactor process.Bioresource Technology,2009,100(14):3506-3512.
21.X. Yang, Y. Z. Peng, N. Q. Ren, J. H. Guo, X. X. Tang,J. C. Song.Nutrient removal performance and microbial community structure in an EBPR system under the limited filamentous bulking state.Bioresource Technology,2013,144(86-93.
22.J. H. Guo, Y. Z. Peng, S. Y. Wang, B. Ma, S. J. Ge, Z. W. Wang, H. J. Huang, J. R. Zhang,L. Zhang.Pathways and Organisms Involved in Ammonia Oxidation and Nitrous Oxide Emission.Critical Reviews in Environmental Science and Technology,2013,43(21):2213-2296.
23.J. F. Gao, Q. Zhang, K. Su, R. N. Chen,Y. Z. Peng.Biosorption of Acid Yellow 17 from aqueous solution by non-living aerobic granular sludge.Journal of Hazardous Materials,2010,174(1-3):215-225.
24.Y. K. Gong, Y. Z. Peng, Q. Yang, W. M. Wu,S. Y. Wang.Formation of nitrous oxide in a gradient of oxygenation and nitrogen loading rate during denitrification of nitrite and nitrate.Journal of Hazardous Materials,2012,227(453-460.
25.J. H. Guo, Y. Z. Peng, H. J. Huang, S. Y. Wang, S. J. Ge, J. R. Zhang,Z. W. Wang.Short- and long-term effects of temperature on partial nitrification in a sequencing batch reactor treating domestic wastewater.Journal of Hazardous Materials,2010,179(1-3):471-479.
26.J. Ma, Q. Yang, S. Y. Wang, L. Wang, A. Takigawa,Y. Z. Peng.Effect of free nitrous acid as inhibitors on nitrate reduction by a biological nutrient removal sludge.Journal of Hazardous Materials,2010,175(1-3):518-523.
27.Y. Z. Peng, J. H. Guo, H. Horn, X. Yang,S. Y. Wang.Achieving nitrite accumulation in a continuous system treating low-strength domestic wastewater: switchover from batch start-up to continuous operation with process control.Applied Microbiology and Biotechnology,2012,94(2):517-526.
28.Y. Z. Peng,G. B. Zhu.Biological nitrogen removal with nitrification and denitrification via nitrite pathway.Applied Microbiology and Biotechnology,2006,73(1):15-26.
29.J. H. Guo, Y. Z. Peng, X. Yang, C. D. Gao,S. Y. Wang.Combination process of limited filamentous bulking and nitrogen removal via nitrite for enhancing nitrogen removal and reducing aeration requirements.Chemosphere,2013,91(1):68-75.
30.C. Y. Wu, Y. Z. Peng, R. D. Wang,Y. X. Zhou.Understanding the granulation process of activated sludge in a biological phosphorus removal sequencing batch reactor.Chemosphere,2012,86(8):767-773.
31.L. Zhang, S. J. Zhang, Y. P. Gan,Y. Z. Peng.Bio-augmentation to rapid realize partial nitrification of real sewage.Chemosphere,2012,88(9):1097-1102.
32.L. Zhang, S. J. Zhang, S. Y. Wang, C. C. Wu, Y. G. Chen, Y. Y. Wang,Y. Z. Peng.Enhanced biological nutrient removal in a simultaneous fermentation, denitrification and phosphate removal reactor using primary sludge as internal carbon source.Chemosphere,2013,91(5):635-640.
33.W. T. Zhang, Y. Z. Peng, N. Q. Ren, Q. S. Liu,Y. Z. Chen.Improvement of nutrient removal by optimizing the volume ratio of anoxic to aerobic zone in AAO-BAF system.Chemosphere,2013,93(11):2859-2863.
34.Y. Ma, Y. Z. Peng,X. L. Wang.Improving nutrient removal of the AAO process by an influent bypass flow by denitrifying phosphorus removal.Desalination,2009,246(534-544.
35.Y. Z. Peng, X. L. Wang,B. K. Li.Anoxic biological phosphorus uptake and the effect of excessive aeration on biological phosphorus removal in the A(2)O process.Desalination,2006,189(1-3):155-164.
五、教材與專譯著
1.彭永臻(主編)、崔福義編著,《給水排水工程計算機程序設計》,中國建筑工業出版社(1996);
2.崔福義,彭永臻,《給水排水工程儀表與控制》,中國建筑工業出版社(1999);
3.彭永臻主審,《水質工程實驗技術》,黑龍江教育出版社(2000);
4.彭永臻(主編),崔福義編著,《給水排水工程計算機應用》,中國建筑工業出版社(2002),建設部“九五”重點立項教材(代碼為JS018);
5.王淑瑩,高春娣,《環境導論》,中國建筑工業出版社(2004)(主審)
6.李圭白,張杰,彭永臻,崔福義等,《水質工程學》,中國建筑工業出版社(2005);
7.崔福義,彭永臻,南軍編著,《給水排水工程儀表與控制》,中國建筑工業出版社(2006);
8.Ma Yong,Peng Yongzhen,etc. Frontiers in Environmental Research,chapter 1“The Optimization and Control of Pre-denitrification Process to Improve Nitrogen Removal”,Nova Science Publishers of America (2006);
9.馬勇,彭永臻著,《城市污水處理系統的運行與過程控制》,科學出版社,(2007),獲2007年度國家科學技術學術著作出版基金;
10.王曉蓮,彭永臻著,《A2O法污水生物脫氮除磷處理技術與應用》,科學出版社,(2009);
11.楊慶,彭永臻編著,《序批式活性污泥法原理與應用》,科學出版社,(2010);
12.吳昌永,王然登,彭永臻編著,《污水處理顆粒污泥技術原理與應用》,中國建筑工業出版社(2011);
13.彭永臻著,《SBR法污水生物脫氮除磷及過程控制》,科學出版社,(2011);
14.彭永臻著,郭建華編著,《活性污泥膨脹機理、成因及控制》,科學出版社,(2012)。
六、聯系方式
E-mail:pyz@bjut.edu.cn;
Tel:010-67392627
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