时胜男
发布时间:2021-03-28 12:11:56
时胜男 Shengnan Shi
教授 博导
邮箱:shishengnan013@163.com

履历

  • 哈尔滨工业大学工学博士 (2011-2014)
  • 辽宁师范大学讲师 (2014-2017)
  • 辽宁师范大学副教授 (2017-2022)
  • 辽宁师范大学教授(2022)

 

研究方向

  • 环境微生物学、微生物生态学
  • 招生专业:微生物学、生态学
  • 新型污染物驱动土壤/海洋沉积物元素循环、微生物群落组装及抗性基因传播机制解析

代表性论文

  •  Zeng Q, Xu J, Hou Y, Li H, Du C, Jiang B, Shengnan Shi*. Effect of Fe3O4 nanoparticles exposure on the treatment efficiency of phenol wastewater and community shifts in SBR system [J]. Journal of Hazardous Materials, 2021, 407: 124828.
  • Jiang B, Zeng Q, Hou Y, Li H, Liu J, Xu J, Shengnan Shi*, Fang Ma. Impacts of long-term electric field applied on the membrane fouling mitigation and shifts of microbial communities in EMBR for treating phenol wastewater [J]. Science of the Total Environment, 2020, 716: 137139.
  • Jiang B, Zeng Q, Liu J, Hou Y, Xu J, Li H, Shengnan Shi*, Fang Ma. Enhanced treatment performance of phenol wastewater and membrane antifouling by biochar-assisted EMBR [J]. Bioresource Technology, 2020, 306: 123147.
  • Shengnan Shi*, Liu J, Xu J, Zeng Q, Hou Y, Jiang B. Effects of biochar on the phenol treatment performance and microbial communities shift in sequencing batch reactors. Water Research, 2019, 161:1-10.
  • Shengnan Shi*,Xu J, Zeng Q, Liu J, Hou Y, Jiang B.Impacts of applied voltage on EMBR treating phenol wastewater: Performance and membrane antifouling mechanism. Bioresource Technology, 2019, 282: 56-62.
  • Jiang B, Zeng Q, Liu J, Hou Y, Xu J, Li H, Shengnan Shi*, Ma F. Enhanced treatment performance of phenol wastewater and membrane antifouling by biochar-assisted EMBR. Bioresource Technology, 2020, 306:123147.
  • Jiang B, Zeng Q, Hou Y, Li H, Liu J, Xu J, Shengnan Shi*, Ma F. Impacts of long-term electric field applied on the membrane fouling mitigation and shifts of microbial communities in EMBR for treating phenol wastewater. Science of The Total Environment, 2020, 716: 137139.
  • Bei Jiang, Cong Du, Shengnan Shi*, Liang Tan, Meidi Li, Jiaxin Liu, Lanlan Xue, Xiangyu Ji. Enhanced treatment performance of coking wastewater and reduced membrane fouling using a novel EMBR, Bioresource Technology, 2017, 229: 39-45.
  • Jiaxin Liu, Shengnan Shi*, Xiangyu Ji, Bei Jiang, Lanlan Xue, Meidi Li.Performance and microbial community dynamics of electricity-assisted sequencing batch reactor (SBR) for treatment of saline petrochemical wastewater. Environmental Science and Pollution Research, 2017, 24: 17556-17565.
  • Lanlan Xue, Jiaxin Liu, Meidi Li, Liang Tan, Xiangyu Ji, Shengnan Shi*, Bei Jiang. Enhanced treatment of coking wastewater containing phenol, pyridine, and quinoline by integration of an E-Fenton process into biological treatment. Environmental Science and Pollution Research, 2017, 24: 9765-9775.
  • Xiangyu Ji, Jing Xu, Shuxiang Ning, Nan Li, Liang Tan, Shengnan Shi*. Cometabolic Degradation of Dibenzofuran and Dibenzothiophene by a Naphthalene-Degrading Comamonas sp. JB. Current Microbiology, 2017, 74: 1411-1416.
  • Bei Jiang, Shengnan Shi*, Lun Song, Liang Tan, Meidi Li, Jiaxin Liu, Lanlan Xue. Efficient treatment of phenolic wastewater with high salinity using a novel integrated system of magnetically immobilized cells coupling with electrodes. Bioresource Technology, 2016, 218: 108-114.
  • Bei Jiang, Liang Tan, Shuxiang Ning, Shengnan Shi*. A novel integration system of magnetically immobilized cells and a pair of graphite plate-stainless iron mesh electrodes for the bioremediation of coking wastewater. Bioresource Technology, 2016, 216: 684-690.
  • Shengnan Shi, Yuanyuan Qu, Hao Zhou, Qiao Ma, Fang Ma*. Characterization of a novel cometabolic degradation carbazole pathway by a phenol-cultivated Arthrobacter sp. W1. Bioresource Technology, 2015, 193: 281-287. (IF 2016=4.917)
  • Shengnan Shi, Yuanyuan Qu, Qiao Ma, XuWang Zhang, Jiti Zhou, Fang Ma*. Performance and microbial community dynamics in bioaugmented aerated filter reactor treating with coking wastewater. Bioresource Technology, 2015, 190: 159-166.
  • Shengnan Shi, Yuanyuan Qu, Liang Tan, Fang Ma*. Biosynthesis of 1,2-dihydroxydibenzofuran by magnetically immobilized cells of Escherichia coli expressing phenol hydroxylase in liquid–liquid biphasic systems. Bioresource Technology, 2015, 197: 72-78.
  • Shengnan Shi, Yuanyuan Qu, Fang Ma*, JiTi Zhou. Bioremediation of coking wastewater containing carbazole, dibenzofuran, dibenzothiphene and naphthalene by a naphthalene-cultivated Arthrobacter sp. W1. Bioresource Technology, 2014, 164: 28-33.
  • Shengnan Shi, Yuanyuan Qu, Fang Ma*, JiTi Zhou. Bioremediation of coking wastewater containing carbazole, dibenzofuran and dibenzothiphene by immobilized naphthalene-cultivated Arthrobacter sp. W1 in magnetic gellan gum. Bioresource Technology, 2014, 166: 79-86.
  • Shengnan Shi, Xuwang Zhang, Fang Ma*, Tieheng Sun, Ang Li, Jiti Zhou, Yuanyuan Qu. Cometabolic degradation of dibenzofuran by Comamonas sp. MQ. Process Biochemistry, 2013, 48: 1553-1558.
  • Shengnan Shi, Fang Ma*, Tieheng Sun, Ang Li, Jiti Zhou, Yuanyuan Qu. Biotransformation of indole to indigo by the whole cells of phenol hydroxylase engineered strain in biphasic systems. Applied Biochemistry and Biotechnology, 2013, 169: 1088-1097.
  • Shengnan Shi, Fang Ma, Tieheng Sun, Ang Li, Jiti Zhou, Yuanyuan Qu. Mineralization and kinetics of reactive brilliant red X-3B by a combined anaerobic-aerobic bioprocess inoculated with the coculture of fungus and bacterium. Applied Biochemistry and Biotechnology, 2014, 172: 1106-1120.
  • Shengnan Shi, Fang Ma*, Tieheng Sun, Ang Li, Jiti Zhou, Yuanyuan Qu. Biotransformation of chloro-substitutedi ndoles to indigoids by phenol hydroxylase from Arthrobacter sp. W1. Applied Biochemistry and Biotechnology, 2013, 97: 5097-5103.
  • Shengnan Shi, Fang Ma*, Tieheng Sun, Ang Li, Jiti Zhou, Yuanyuan Qu. Multistep conversion of cresols by phenol hydroxylase and 2,3-Dihydroxy-Biphenyl 1,2-Dioxygenase. Frontiers of Environmental Science and Engineering, DOI 10.1007/s11783-013-0616-y.
  •  Liu Q, Li Y, Sun Y, Xie K, Zeng Q, Hao Y, Yang Q, Pu Y, Shengnan Shi*, Zheng Gong*. Deterioration of sludge characteristics and promotion of antibiotic resistance genes spread with the co-existing of polyvinylchloride microplastics and tetracycline in the sequencing batch reactor [J]. Science of the Total Environment, 2024, 906: 167544.
  • Wu J, Xiang J, Zeng Q, Liu Q, Li Y, Sun Y, Xie K, Shengnan Shi*, Zheng Gong*. Mitigation of the negative impacts of 84 disinfectant exposure for phenol treatment by an electro-enhanced SBR: Performance, oxidative stress, iron homeostasis and antibiotic resistance genes [J]. Journal of Water Process Engineering, 2023, 55: 104161.
  • Zeng Q, Xiang J, Yang C, Wu J, Li Y, Sun Y, Liu Q, Shengnan Shi*, Zheng Gong*. Microplastics affect nitrogen cycling and antibiotic resistance genes transfer of sediment [J]. Chemical Engineering Journal, 2023, 454: 140193.
  • Hou Y, Zeng Q, Li H, Wu J, Xiang J, Huifang Huang*, Shengnan Shi*. Metagenomics-based interpretation of the impacts of silica nanoparticles exposure on phenol treatment performance in sequencing batch reactor system [J]. Chemical Engineering Journal, 2022, 428: 132052.

开设课程

  • 环境学(本科生)
  • 环境微生物学(本科生)
  • 环境微生物学实验(本科生)
  • 应用环境微生物学(本科生)
  • 应用微生物学(本科生)
  • 水污染控制工程(研究生)
  • 微生物非培养技术原理与应用(研究生)

 

科研课题

  • 国家自然科学基金青年基金:优势菌-复合导电膜EMBR组合工艺治理芳烃废水及其机制研究(No.51508259),25.2万元,2016.1-2018.12,主持
  • 城市水资源与水环境国家重点实验室开放基金:杂环芳烃废水定向生物转化及资源化调控策略研究(QA201520),5万元,2015.1-2016.12,主持
  • 辽宁省自然基金指导计划项目:高效降解菌强化电絮凝耦合EMBR工艺治理高盐有机工业废水及其机制研究(2019-ZD-0472),5万元,2019.10-2021.9,主持
  • 大连高层次人才创新支持计划项目:微电场复合导电膜EMBR工艺治理海水养殖废水及其机制研究(2018RQ31),10万元,2019.1-2020.12,主持
 

荣誉奖励

 
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