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邱艳玲
2017-04-24 09:38 环境科学与工程学院  审核人:

基本资料:

邱艳玲,女,环境工程博士、特聘教授,博士生导师。2004年获日本长冈技术科学大学博士学位,毕业后在日本产业技术综合研究所担任学术振兴会研究员。曾获日本文部科学省国费奖学金、日中技术野上茂吉郎纪念研究奖励奖、日本学术振兴会外国人特别研究员、山东省泰山学者海外特聘专家称号。主要从事废水厌氧生物处理工程与有机废弃物资源化利用研究,针对沼气工程产气效率低等问题,采用传统工程技术与现代分子生物学技术相结合,开发高效厌氧发酵工艺,并对反应器中的主要功能菌群进行构造解析,建立关键微生物的分离培养及定量解析技术。研究成果在Appl Environ Microbiol, Archives of Microbiology, Bioresource Technology等微生物和环保专业期刊发表论文30余篇。主持国家科技支撑计划、中国科学院知识创新工程重要方向性项目、国家自然科学基金委面上项目、山东省科技攻关及省自然科学基金等多项科研项目。

通信地址:266071山东省青岛市宁夏路308# 青岛大学环境科学与工程学院 博观楼435

Email:qiuyl@qibebt.ac.cn


工作经历:

2016.12 –  目前,  青岛大学环境科学与工程学院,特聘教授

2007.12 – 2016.12,中科院青岛生物能源研究所,研究员

2004.04 – 2007.12,日本产业技术综合研究所,博士后研究员


代表论文:

1.Qiu, Y.L., Sekiguchi, Y., Imachi, H., Kamagata, Y., Tseng, I.-C., Cheng, S.-S., Ohashi, A. and H. Harada. Sporotomaculum syntrophicum sp. nov., a novel anaerobic, syntrophic benzoate-degrading bacterium isolated from methanogenic sludge treating wastewater from terephthalate manufacturing. Archives of Microbiology 2003, 179: 242-249.

2.Qiu, Y.L., Y. Sekiguchi, H. Imachi, Y. Kamagata, I-C. Tseng, S.-S. Cheng, A. Ohashi and H. Harada. Identification and isolation of anaerobic, syntrophic phthalate isomers-degrading microbes from methanogenic sludges treating wastewater from terephthalate manufacturing. Appl. Environ. Microbiol. 2004, 70: 1617-1626.

3.Qiu, Y.L., Y. Sekiguchi, S. Hanada, H. Imachi, I-C. Tseng, S.-S. Cheng, A. Ohashi and H. Harada, Y. Kamagata. Pelotomaculum terephthalicicum sp. nov. and Pelotomaculum isophthalicicum sp. nov.: two anaerobic bacterium that degrade phthalate isomers in syntrophic association with a hydrogenotrophic methanogen. Archives of Microbiology 2006, 185: 172-182.

4.Qiu, Y.L., S. Hanada, A. Ohashi, H. Harada, Y. Kamagata and Y. Sekiguchi  Syntrophorhabdus aromatica gen. nov., sp. nov., the first cultured anaerobe capable of degrading phenol into acetate in obligate syntrophic associations with a hydrogenotrophic methanogen. Appl. Environ. Microbiol. 2008, 74: 2051-2058.

5.Qiu, Y.L. Muramatsu, Mizuho,Hanada, Satoshi,Kamagata, Yoichi,Guo, Ro g-Bo,Sekiguchi, Yuji,Oligosphaera ethanolica gen. nov., sp nov., an anaerobic, carbohydrate-fermenting bacterium isolated from methanogenic sludge, and description of Oligosphaeria classis nov in the phylum Lentisphaerae,Int J Syst Evol Microbiol, 2013, 63: 533-539 

6.Qiu, Y.L., Kuang, Xiao-zhu,Shi, Xiao-shuang,Yuan, Xian-zheng,Guo, Rong-bo,Terrimicrobium sacchariphilum gen. nov., sp nov., an anaerobic bacterium of the class 'Spartobacteria' in the phylum Verrucomicrobia, isolated from a rice paddy field,Int J Syst Evol Microbiol,2014, 64: 1718-1723 

7.Qiu, Y.L.,Hanada S,Kamagata Y,Rongbo Guo,Sekiguchi Y,Lactivibrio alcoholicus gen. nov., sp nov., an anaerobic, mesophilic, lactate-, alcohol-, carbohydrate- and amino-acid-degrading bacterium in the phylum Synergistetes,Int J Syst Evol Microbiol,2014, 64: 2137-2145 

8.Qiu, Y.L.,Xiaozhu Kuang,Xianzheng Yuan,Xiaoshuang Shi,Rongbo Guo,Paludibacter jiangxiensis sp nov., a strictly anaerobic, propionate-producing bacterium isolated from rice paddy field,Archives of Microbiology,2014, 196(3): 149-155

9.Jiang-Tao Qiao, Qiu, Y.L.*,Xian-Zheng Yuan,Xiao-Shuang Shi,Xiao-Hui Xu,Rong-Bo Guo,Molecular characterization of bacterial and archaeal communities in a full-scale anaerobic reactor treating corn straw,Bioresource Technology,2013, 143: 512-518 

10.Zhang, Jie,Guo, Rong-Bo,Qiu, Y.L.*,Qiao, Jiang-Tao,Yuan, Xian-Zheng,Shi, Xiao-Shuang,Wang, Chuan-Shui,Bioaugmentation with an acetate-type fermentation bacterium Acetobacteroides hydrogenigenes improves methane production from corn straw,Bioresource Technology,2015, 179: 306-313 

11.Yi Liu,Jiang-tao Qiao,Xian-Zheng Yuan,Rong-bo Guo,Qiu, Y.L.*,Hydrogenispora ethanolica gen. nov., sp. nov., an anaerobic carbohydrate-fermenting bacterium from anaerobic sludge.,Int J Syst Evol Microbiol,2014, 64: 1756-1762 

12.Su, Xiao-Li,Tian, Qi,Zhang, Jie,Yuan, Xian-Zheng,Shi, Xiao-Shuang,Guo, Rong-Bo,Qiu, Y.L.*, Acetobacteroides hydrogenigenes gen. nov., sp nov., an anaerobic hydrogen-producing bacterium in the family Rikenellaceae isolated from a reed swamp,Int J Syst Evol Microbiol,2014, 64: 2986-2991 

13.Yuan, Xianzheng; Shi, Xiaoshuang; Zhang, Dalei; Qiu, Y.L.; Guo, Rongbo; Wang, Lisheng Biogas production and microcystin biodegradation in anaerobic digestion of blue algae . Energy & Environmental Science, 2011, 4(4): 1511-1515.

14.Yuan, X. Z., Shi, X. S., Yuan, C. X., Wang, Y. P., Qiu, Y.L., Guo, R. B., & Wang, L. S.. Modeling anaerobic digestion of blue algae: Stoichiometric coefficients of amino acids acidogenesis and thermodynamics analysis. Water research. 2014, 49 (1): 113-123. 

15.Nobu M, Takashi Narihiro, Tamaki H, Qiu YL, Sekiguchi Y, Woyke T, Goodwin L, Davenport KW, Kamagata Y, Liu WT. The genome of Syntrophorhabdus aromaticivorans strain UI provides new insights for syntrophic aromatic compound metabolism and electron flow. Environmental Microbiology. 2014: 4861-4872.

16.Nobu M, Narihiro T, Tamaki H, Qiu, Y.L., Sekiguchi Y, Woyke T, Lynne G, Davenport KW, Kamagata Y, Liu WT.Draft genome sequence of Syntrophorhabdus aromaticivorans strain UI, a mesophilic aromatic compound-degrading syntroph, Genome Announcements, 2014, 2(1): 1 e01064-13.

17.Xiao-Shuang Shi, Xian-Zheng Yuan, Yu-Ping Wang, Shu-Juan Zeng, Qiu, Y.L., Rong-Bo Guo, Li-Sheng Wang.Modeling of the methane production and pH value during the anaerobic co-digestion of dairy manure and spent mushroom substrate. Chemical Engineering Journal, 2014, 244 (15), 258-263.

18.Xiao-Lei Fan, Rong-bo Guo, Xian-zheng Yuan, Qiu, Y. L., Zhiman Yang. Biogas production from Macrocystis pyrifera biomass in seawater system. Bioresource Technology,2015, 197: 339-347.

19.Xiao-Lei Fan, Huanyu Wang, Rong-bo Guo, Dawei Yang, Yanting Zhang, Xian-zheng Yuan, Qiu, Y. L., Zhiman Yang, Xiaoxian Zhao. Comparative study of the oxygen tolerance of Chlorella pyrenoidosa and Chlamydomonas reinhardtii CC124 in photobiological hydrogen production. Algal Research, 2016, 16: 240-244.

20.Zhiman Yang, Rongbo Guo, Xiaoshuang Shi, Shuai He, Lin Wang, Meng Dai, Qiu, Y. L., Xiaoxiao Dang. Bioaugmentation of Hydrogenispora ethanolica LX-B induces a shift in bacterial community structure favored higher hydrogen production. Bioresource Technology, 2016, 211: 319-326.


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