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姓 名:
 周易勇
性 别:
 男
职 称:
 研究员
学 历:
 研究生
电 话:
 86-27-68780709
电子邮件:
 zhouyy@ihb.ac.cn

简历:
环境生物化学学科组组长,博士,研究员,博士生导师。1982年于武汉大学生物系生物化学专业毕业之后到湖北省化学研究所从事漆酶研究。1985至1988年在华中农业大学攻读硕士学位,主要探讨重金属污染对植物活性氧代谢酶系统的影响,随后到中国科学院水生生物研究所工作,自此努力将生态酶学的理论与方法引入水污染生物学,曾先后主持所长择优基金、淡水生态与生物技术国家重点实验室基金与国家自然科学基金等项目的研究,1993年5月至1994年8月应邀赴美国堪萨斯州立大学进行工作访问,1998年在中国科学院水生生物研究所获博士学位,导师为刘建康院士。1999年获中国科学院“青年科学家小组”基金项目资助,近年来以生态酶学为要点切入中国科学院知识创新工程重大项目、973基础研究、国家自然科学基金重点项目以及国家“十五”、 “十一五”、 “十二五”重大科技专项等重大项目,同时与捷克科学院水生生物研究所、丹麦哥本哈根大学、俄罗斯科学院动物研究所、意大利国家研究理事会海岸研究所、乌克兰科学院南海生物研究所、匈牙利布达佩斯技术与经济大学、波兰罗兹大学应用生态学系、波兰科学院自然保护研究所、保加利亚渔业资源研究所、斯洛文尼亚约瑟夫斯蒂芬研究所、韩国先进科技学院等研究机构进行广泛的交流与合作,聚焦于环境生物地球化学研究,系统融合了分子生物学、微生物学、生物化学、湖沼学、环境科学的理论和方法,构建了生态酶学的理论体系,阐明了湖泊富营养化过程中氮与磷循环的偶联途径,揭示了沉积物有机质富集与分解对湖泊富营养化和蓝藻水华的反馈机制,并据此开发生态技术且将其应用于湖泊修复的实践。已在《Hydrobiologia》、 《Arch. Hydrobiologia》、 《Aquaculture》、《European Journal of Phycology》、《Journal of Applied Phycology》、《Water, Air and Soil Pollution》、《Research in Microbiology》、《Water Research》、《Bioresource Technology》、《Microbiological Research》、《Geomicrobiology Journal》、《Science of the Total Environment》等学术刊物上发表论文百余篇,其中五十余篇被SCI收录,SCI 引用450 余次。

研究方向:
  湖泊富营养化与蓝藻水华发生机理、水体营养循环偶联机制、藻菌关系、微生物功能与群落、沉积物营养周转与控制技术、湖泊缓冲带污染拦截与构建技术、滞留型土地污水处理系统等。

专家类别:
享受国务院特殊津贴

职务:

社会任职:

获奖及荣誉:
湖北省科技进步一等奖(排名第六),武汉市科技进步一等奖(排名第六)
代表论著:

  1) Zhou, Z., Xu, P., Cao, X., Zhou, Y., & Song, C. (2016). Efficiency promotion and its mechanisms of simultaneous nitrogen and phosphorus removal in stormwaterbiofilters. Bioresource Technology, 218, 842-849.

  2) Wang Zhicong, Zhou Yiyong, Li Dunhai. 2016. The effect of gradient cooling on bloom decline in Microcystis (Cyanophyceae, Chroococcales). Phycologia, 55(2), 109-117.

  3) Hui Li, Yuqian Liu, Xiuyun Cao, Chunlei Song &Yiyong Zhou (2016):Functions of calcium-bound phosphorus in relation to characteristics of phosphorus releasingbacteria in sediment of a Chinese shallow lake (Lake Wabu).Geomicrobiology Journal, DOI:10.1080/01490451.2015.1099762.

  4) Li, H., Song, C. L., Cao, X. Y., & Zhou, Y. Y. (2016). The phosphorus release pathways and their mechanisms driven by organic carbon and nitrogen in sediments of eutrophic shallow lakes. Science of the Total Environment, 572, 280-288.

  5) Cao Xiuyun, Wang Zhicong, Zhou Yiyong, Song Chunlei, 2015. The contribution of attached bacteria to Microcystis bloom: evidence from field investigation and microcosm experiment. Geomicrobiology Journal, 33: 607-617.

  6) WangSiyang,Hui Li,Jian Xiao,Yiyong Zhou,Chunlei Song,Yonghong Bi,Xiuyun Cao (2016). Enhancement of sediment phosphorus release during a tunnelconstruction across an urban lake (Lake Donghu, China). Environ SciPollut Res., 23: 17774-17783.

  7) Yao Zhang,Yuqian Liu,Zijun Zhou,Siyang Wang,Xiuyun Cao,Chunlei Songand YiyongZhou.Variation in community composition of nirS-type denitrifiers in sediment of basins with different trophic states within a shallow lake. Fresenius Environmental Bulletin.Accepted

  8) Chen, X., H. Li, et al. (2016). "Sediment–water interaction in phosphorus cycling as affected by trophic states in a Chinese shallow lake (Lake Donghu)." Hydrobiologia 776(1): 19-33.

  9) Jiang, Y., Kang, N., Zhou, Y., Liu, G., & Zhu, D. (2016). The role of Fe(iii) on phosphate released during the photo-decomposition of organic phosphorus in deionized and natural waters. Chemosphere, 164, 208-214.

  10) Li, X., Yuan, S., Zhou, Y., Liu, G., & Zhu, D. (2016). Photodecomposition of organic phosphorus in aquatic solution under solar irradiation with nitrate: kinetics and influencing water parameters. Environmental Progress & Sustainable Energy. DOI 10.1002/ep.

  11) Wang Zhicong., Li Dunhai, Cao Xiuyun, Song Chunlei, Zhou Yiyong. 2015. Photosynthesis regulates succession of toxic and nontoxic strains in blooms of Microcystis (Cyanobacteria). Phycologia. 54(6), 640-648.

  12) Wang Zhicong, Zhou Yiyong, Li Dunhai. 2015. Photosynthetic activity of microcystis in fish guts and its implication for feasibility of bloom control by filter-feeding fishes. Fresenius Environmental Bulletin. 24(7): 2384-2393.

  13) JiLei,Chunlei Song, Xiuyun Cao, Yiyong Zhou, Daogui Deng.2015.Spatial variationin nutrient excretion by macrozoobenthos in a Chinese large shallow lake (Lake Taihu). Journal of Freshwater Ecology, 30(1), 169-180.

  14) Guanglong Liu, Li Gong, Yiyong Zhou, Duanwei Zhu, Xiuyun Cao, Chunlei Song.2015. NO3-/NO2- photosensitized degradation of phenol under simulated sunlight. Fresenius Environmental Bulletin. 24, 664-669.

  15) Li Hui, Ai-Hua Sun, JieHou, Xi Chen, Yun-Qin Bai, Xiu-Yun Cao, Chun-Lei Song and Yi-Yong Zhou, 2014. Phosphorus fractions, sorption characteristics, and its release in sediments of a Chinese eutrophic river (Nanfei River), FreseniusEnvironmental Bulletin.23(5):1222-1231.

  16) Wang Z.C., Li D.H., Cao X.Y., Song C.L., Zhou Y.Y. 2014. Photosyntheticadaptation mechanism of Microcystis (Cyanophyceae) related to changes of colonysize in a eutrophic lake. Phycologia 53(5): 552-560.

  17) Hou, J., Song, C., Cao, X., & Zhou, Y. (2013). Shifts between ammonia-oxidizing bacteria andarchaea in relation to nitrification potential across trophic gradients in two large Chineselakes (Lake Taihu and Lake Chaohu).Water Research 47, 2285-2296.

  18) Hou, J., X. Y. Cao, C. L. Song & Y. Y. Zhou, 2013. Predominance of ammoniaoxidizingarchaea and nirK-gene-bearing denitrifiers among ammonia-oxidizing anddenitrifying populations in sediments of a large urban eutrophic lake (Lake Donghu).Can J Microbiol 59(7):456-464 doi:DOI 10.1139/cjm-2013-0083.

  19) Lei Ji, Aihua Sun, Xi Chen, JieHou, Chunlei Song, Xiuyun Cao, Yiyong Zhou*, 2012. Intra-habitat heterogeneity of macrozoobenthic community under varying degrees of eutrophication and sediment characteristics in a Chinese large shallow lake (Lake Taihu). Fresenius Environmental Bulletin, 21(2a):406-412.

  20) Wen-Juan Xiao, Chun-Lei Song, Xiu-Yun Cao, Yi-Yong Zhou. Effects of air-drying on phosphorus sorption in shallow lake sediment, China. Fresenius Environmental Bulletin, 2012,21(3A):672-678.

  21) Liu H, et al. Shifting nutrient-mediated interactions between algae and bacteria in a microcosm: Evidence from alkaline phosphatase assay. Microbiol Res (2012), 167(2012):292-298.

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