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山东大学环境科学与工程学院研究生导师简介-梁 爽

山东大学 免费考研网/2016-03-09





个人简介
梁爽,男,1979年3月生,新加坡国立大学博士,山东大学环境科学与工程学院副教授、硕士生导师、环境工程系副主任、流域水环境研究所副所长,国家基金函评专家。从事污水资源化领域的科研工作,在环境领域知名国际期刊上发表学术论文50余篇,其中ESI高被引论文(TOP 1%)2篇,论文他引率700余次,H-index 12;作为课题负责人,主持国家级、省部级及各类横向课题10余项。

工作经历
? 2008.01 ─ 山东大学环境科学与工程学院 副教授、硕士生导师、环境工程系副 主任,流域水环境研究所副所长
? 2011.04 ─2012.04 Visiting Scholar, Rice University
? 2006.12 ─ 2007.12 Research Fellow, Division of Environmental Science & Engineering,
National University of Singapore

教育背景
? 2002.07─2007.07 Ph. D. National University of Singapore
? 1997.09─2001.07 工学学士 青岛理工大学

研究领域
? Development of novel dynamic membrane bioreactors for wastewater reclamation
? Understanding and control of nitrous oxide emission in biological/ecological processes
? Fundamentals and applications of constructed wetlands for wastewater treatment
? Mathematical modeling of biodegradation and membrane filtration processes
? Fouling characterization and mitigation in membrane bioreactor (MBR) systems

学术兼职
? 国际水协会(IWA)会员、中国环境科学学会会员、山东省环境科学学会会员、北美膜协会(NAMS)会员、美国化学协会(ACS)会员。
? 国际知名期刊审稿人,为Environmental Science & Technology, Water Research, Journal of Membrane Science等环境领域顶级期刊审稿50余次
科研课题
(1) 教育部博士点新教师基金(**5);“用扩展DLVO理论解析污水处理中可溶性有机物膜污染机理”;课题负责人(教育部)
(2) 山东省优秀中青年科学家科研奖励基金(BS2009SW001);“动态膜生物反应器中膜形成与污染微观过程的分层解析及理论研究”;课题负责人(山东省科技厅)
(3) 国家自然科学基金(**);“MBR中溶解性微生物产物膜污染界面微距作用机制定量解析”;课题负责人(国家自然科学基金委)
(4) 山东大学自主创新基金(2010TS040);“自生动态膜过滤特性的分段微观解析与反应器综合模型创建”;课题负责人 (山东大学)
(5) 山东省自然科学基金(ZR2010EQ019);“自生动态膜生物反应器中成膜与污染“二阶段”微观理论研究体系的创建”;课题负责人(山东省自然科学基金委)
(6) 留学回国人员科研启动基金(第40批);“MBR中可溶性有机物膜污染机制量化解析及理论评价体系构建”;课题负责人(教育部)
(7) 国家重大科技专项(2012ZX07203-004-09)子任务;“河流反应器技术构建”;课题负责人(国家水专项管理办公室)
(8) 2013年第一批湖泊生态环境保护专项资金;“南四湖流域人工湿地及生态修复工程运营机制研究”;课题负责人(山东省环保厅)
(9) 南四湖人工湿地工程技术应用与评估;课题负责人(山东省环保厅)
(10) 南四湖退耕还湿调查与生态补偿机制研究;课题负责人(山东省环保厅)
(11) 山东省化工企业聚集区地下水污染状况专项调查技术协作;课题负责人(山东省环保厅)
(12) 2014年山东省地下水基础环境状况调查评估-规模化畜禽养殖场案例;课题负责人(山东省环保厅)
(13) 章丘市白云湖流域生态环境综合治理规划方案;课题负责人(章丘市环保局)

代表性学术论文
1) Ren L., Ni S., Liu C., Liang S., Zhang B., Kong Q., and Guo N. (2015) Effect of zero-valent iron on the start-up performance of anaerobic ammonium oxidation (anammox) process. Environmental Science and Pollution Research 22, 2925–2934.
2) Zhao, C., Xie, H., Xu, J., Xu, X., Zhang, J., Hu, Z., Liu, C., Liang, S., Wang, Q. and Wang, J. (2015) Bacterial community variation and microbial mechanism of triclosan (TCS) removal by constructed wetlands with different types of plants. The Science of the total environment 505, 633-639.
3) Wu, H., Zhang, J., Ngo, H.H., Guo, W., Hu, Z., Liang, S., Fan, J. and Liu, H. (2015) A review on the sustainability of constructed wetlands for wastewater treatment: Design and operation. Bioresource Technology 175, 594-601.
4) Wu, H., Fan, J., Zhang, J., Ngo, H.H., Guo, W., Hu, Z. and Liang, S. (2015) Decentralized domestic wastewater treatment using intermittently aerated vertical flow constructed wetlands: Impact of influent strengths. Bioresource Technology 176, 163-168.
5) Zhao, Y., Zong, R., Gao, X., Xie, H., Yin, Y. and Liang, S. (2014) Fouling Behavior of Sodium Alginate During Microfiltration at Various Ionic Compositions: XDLVO Approach. Huanjing Kexue 35(4), 1343-1350.
6) Liu, H., Liang, S., Gao, J., Ngo, H.H., Guo, W., Guo, Z. and Li, Y. (2014) Development of biochars from pyrolysis of lotus stalks for Ni(II) sorption: Using zinc borate as flame retardant. Journal of Analytical and Applied Pyrolysis 107, 336–341.
7) Liu, H., Liang, S., Gao, J., Huu Hao, N., Guo, W., Guo, Z., Wang, J. and Li, Y. (2014) Enhancement of Cr(VI) removal by modifying activated carbon developed from Zizania caduciflora with tartaric acid during phosphoric acid activation. Chemical Engineering Journal 246, 168–174.
8) Jia, W., Liang, S., Zhang, J., Ngo, H.H., Guo, W., Yan, Y., Zou, Y., 2013. Nitrous oxide emission in low-oxygen simultaneous nitrification and denitrification process: Sources and mechanisms. Bioresource Technology. 136, 444–451.
9) Liang, S., Qu, L., Meng, F., Han, X., Zhang, J., 2013. Effect of sludge properties on the filtration characteristics of self-forming dynamic membranes (SFDMs) in aerobic bioreactors: Formation time, filtration resistance, and fouling propensity. Journal of Membrane Science. 436, 186–194.
10) Kong, Q., Liang, S., Zhang, J., Xie, H., Miao, M., Tian, L., 2013. N2O emission in a partial nitrification system: Dynamic emission characteristics and the ammonium-oxidizing bacteria community. Bioresource Technology. 127, 400–406.
11) Jia, W., Liang, S., Ngo, H.H., Guo, W., Zhang, J., Wang, R., Zou, Y., 2013. Effect of phosphorus load on nutrients removal and N2O emission during low-oxygen simultaneous nitrification and denitrification process. Bioresource Technology. 141, 123–130.
12) Li, C., Liang, S., Zhang, J., Ngo, H.H., Guo, W., Zheng, N., Zou, Y., 2013. N2O reduction during municipal wastewater treatment using a two-sludge SBR system acclimatized with propionate. Chemical Engineering Journal. 222, 353–360.
13) Li, C., Zhang, J., Liang, S., Ngo, H.H., Guo, W., Zhang, Y., Zou, Y., 2013. Nitrous oxide generation in denitrifying phosphorus removal process: main causes and control measures. Environmental Science and Pollution Research. 20, 5353–5360.
14) Fan, J., Liang, S., Zhang, B., Zhang, J., 2013. Enhanced organics and nitrogen removal in batch-operated vertical flow constructed wetlands by combination of intermittent aeration and step feeding strategy. Environmental Science and Pollution Research. 20, 2448–2455.
15) Liang, S., Zhao, T., Zhang, J., Sun, F., Liu, C., Song, L., 2012. Determination of fouling-related critical flux in self-forming dynamic membrane bioreactors: Interference of membrane compressibility. Journal of Membrane Science. 390–391, 113–120.
16) Meng, F., Liao, B., Liang, S., Yang, F., Zhang, H., Song, L., 2010. Morphological visualization, componential characterization and microbiological identification of membrane fouling in membrane bioreactors (MBRs). Journal of Membrane Science. 361, 1–14.
17) Liang, S., Liu, C., Song, L., 2009. Two-Step Optimization of Pressure and Recovery of Reverse Osmosis Desalination Process. Environmental Science & Technology. 43, 3272–3277.
18) Liang, S., Zhao, Y., Liu, C., Song, L.,2008. Effect of solution chemistry on the fouling potential
of dissolved organic matter in membrane bioreactor systems. Journal of Membrane Science. 310, 503–511.
19) Liang, S., Song, L., 2007. Characteristics and Fouling Behaviors of Dissolved Organic Matter in Submerged Membrane Bioreactor Systems. Environmental Engineering Science. 24(5), 652–662.
20) Liang, S., Liu, C., Song, L., 2007. Soluble microbial products in membrane bioreactor operation: Behaviors, characteristics, and fouling potential. Water Research. 41, 95–101.
21) Liang, S., Song, L., Tao, G., Kekre, K.A., Seah, H., 2006. A modeling study of fouling development in membrane bioreactors for wastewater treatment. Water Environment Research. 78(8), 857–863.

代表性专利:
2012-07 动态膜生物反应器的两阶段运行模式 发明专利
2014-04 一种以粗孔过滤组件为载体的生物膜反应器及其运行方法 发明专利

联系方式
Tel (Office): 86-**
Fax: 86-**
Email: liangshuang@sdu.edu.cn



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