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中国地质大学(武汉)导师教师师资介绍简介-李平

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基本信息Personal Information 教授 博士生导师 硕士生导师
性别 : 女
学历 : 博士研究生
学位 : 博士
所在单位 : 生物地质与环境地质国家重点实验室
入职时间 : 2009年07月01日
联系方式 : qq
Email :

教师其他联系方式Other Contact Information

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个人简介Personal Profile
李平 博士,研究员(教授), 博士生导师,中国地质大学(武汉)腾飞计划入选者、青年拔尖人才,中国地质大学(武汉)生物地质与环境地质国家重点实验室地质微生物分室负责人之一;主要从事与环境地质成因的砷、氮、铁、硒和碳等元素生物地球化学过程研究;先后承担和参与包括自然科学基金重大研究计划项目等在内的多项国家及省部级科研项目;以第一作者或通讯作者在Water Research、Journal of Hazardous Materials、Science of the Total Environment、Frontiers in Microbilogy、International Biodeterioration & Biodegradation等重要国际SCI期刊上发表论文30多篇;担任国际SCI期刊InternationalBiodeterioration & Biodegradation编委,Environmental Science & Technology、Journal of Hazardous Materials、Environmental Pollution、Frontiers in Microbilogy、InternationalBiodeterioration & Biodegradation、Ecotoxicology、Geomicrobiology Journal、Applied Geochemistry、Journal of EnvironmentalQuality和Water, Air, & Soil Pollution等杂志的特约审稿专家。


联系方式:,QQ,Email pli@cug.edu.cn

研究兴趣与方向

微生物分子生态学
生物地球化学过程及其环境效应
地下水污染与控制

教育背景和工作经历
1994.9-1998.6武汉理工大学资源与环境学院选矿工程专业,获学士学位
2002.3-2003.2中国科学院水生生物研究所从事环境生物方面的助研工作
2003.9-2005.12华中师范大学生命科学学院生物化学与分子生物学专业,获硕士学位;
2006.1-2006.7湖北省生态工程职业技术学院从事生物科学相关的教学工作
2006.9-2009.6中国地质大学(武汉)环境学院环境工程专业,获博士学位
2009.7-今,中国地质大学(武汉)生物地质与环境地质国家重点实验室担任相关教学科研工作
2012.6-2014.10中国地质大学(武汉)地质学博士后
2010.6-2010.9英国卡迪夫大学 访问****
2013.1-2014.4美国蒙大拿州立大学 访问****

科研项目
国家自然科学基金重大研究计划(**地下水系统中微生物介导的关键氮循环过程及其环境效应,2019.1-2021.12 (项目主持人)
国家自然科学基金面上项目(**微生物作用下高温地热流体来源砷和硫的地球化学过程及其对砷迁移转化的影响,2018.1-2021.12 (项目主持人)
浙江省地质调查研究院工创中心开放基金-浙江省典型富硒区微生物富硒技术研发(),2021.1-2022.12(项目主持人)
浙江省国土资源厅地质矿产专项课题-浙江省典型富硒土壤区地质微生物资源调查与研究(),2018.1-2019.12 (项目主持人)
国家自然科学基金面上项目(**微生物参与内蒙古河套平原高砷地下水形成的分子生态学研究,2014.1-2017.12 (项目主持人)
国家自然科学基金创新群体项目(**)水文地质学,2016.1-2021.12 (主要参与人)
中国地质大学(武汉)腾飞计划(第5批)(),2014.1-2016.12(项目主持人)
中国博士后科学基金第六批特别资助(2013T60757)地热流体来源砷在环境中迁移转化的分子生态学研究,2013.6-2014.9(项目主持人)
国家自然科学基金国际(地区)合作与交流项目(NO)地热流体来源砷的环境生物地球化学研究,2012.1-2016.12 (主要参与人)
国家自然科学基金青年科学基金项目项目(**):强还原地下水环境中砷迁移转化的微生物地球化学作用研究, 2011.1-2013.12 (项目主持人)
国家自然科学基金国际(地区)合作与交流项目()高砷地下水微生物地球化学作用研究,2011.5-2011.12 (项目主持人)
中国地质大学(武汉)中央高校专项资金科研项目(CUGL090208):原生高砷地下水环境中的功能微生物群落研究,2009.11-2012.12(项目主持人)
教育部高校博士点专项科研基金(010):高砷地下水原位环境中微生物群落及其对砷的生物地球化学作用研究,2011.1-2013.12(项目主持人)
湖北省自然科学基金项目()江汉平原浅层地下水系统中砷的生物地球化学行为研究,2010.1-2011.12(项目主持人)
湖北省自然科学基金重点项目()畜禽养殖排泄物抗生物残留及对环境影响研究,2009.1-2010.12 (主要参与人)



代表性论文(*联系作者)

Helin Wang,Ping Li*, Han Liu,et al.Microorganisms for ammonia/ammonium-oxidization and anammox detected in Holocene-Pleistocene aquifers with high arsenic concentrations. International Biodeterioration & Biodegradation. 2021, 105136 (IF2020=4.074,JCR2区)
Yanhong Wang*, Guanglong Zhang, Helin Wang,Yu Chen, Han Liu Zhou Jiang, Ping Li*, Yanxin Wang, Effects of different dissolved organic matter on microbial communities and arsenic mobilization in aquifers Journal of Hazardous Materials, 2021,411:125146(IF2020=9.038,JCR1区)
李平*, 谭添, 刘韩, 王和林. 地下水微生物功能群及生物地球化学循环, 微生物学报, 2021, DOI: 10.13343/j.cnki.wsxb.**
ChunleiHuang, Helin Wang, Xinyan Shi,Ping Li*, et al.Two newselenite reducing bacterial isolates from paddy soil and the potential Sebiofortification of paddy rice. Ecotoxicology, 2020, 27: 1047-1057(IF2020=2.52,JCR2区)
HanLiu,Ping Li*,Helin Wang, et al..Arsenicmobilization affected by extracellular polymeric substances (eps) of thedissimilatory iron reducing bacteria isolated from high arsenic groundwater.ScienceoftheTotalEnvironment,2020,735,139501.(IF2020=6.551,JCR1区)
YanhongWang, Dazhun Wei,Ping Li*,et al..Diversity andarsenic-metabolizing gene clusters of indigenous arsenate-reducing bacteria inhigh arsenic groundwater of the Hetao Plain, Inner Mongolia. Ecotoxicology,2020, DOI: 10.1007/s10646-020-02305-1(IF2020=2.52,JCR2区)
ZhouJiang,Ping Li*,Yanhong Wang, et al. Arsenicmoblization in a high arsenic groundwater revealed by metagenomic and geochipanalyses.Scientific Reports, 2019.9(1):12972.(IF2019=4.011,JCR1区)
ZhangX, Liu K,Li P, et al. Molecular Existence and Diversityof Nitrite-Dependent Anaerobic Methane Oxidizing (n-Damo) Bacteria in the Lakesof Badain of the Gobi Desert. 2019.Geomicrobiology Journal 36(7):1-11.(IF2019=1.972,JCR2区)
Wang YH, Li P*, Jiang Z, et al.. Diversity andabundance of arsenic methylating microorganisms in high arsenic groundwaterfrom Hetao Plain of Inner Mongolia, China. Ecotoxicology, 2018, 27: 1047-1057(IF2018=1.987,JCR2区)
Dai X, LiP*, Tu J, et al. Evidenceof arsenic mobilization mediated by an indigenous iron reducingbacterium from high arsenic groundwater aquifer in Hetao Basin of InnerMongolia, China. International Biodeterioration & Biodegradation, 2018, 128: 22-27(IF2018=3.562,JCR2区)
Jiang Z, Li P*,Tu J, et al. Arsenic in geothermal systems of Tengchong,China: Potential contamination on freshwater resources.International Biodeterioration & Biodegradation, 2018, 128:28-35(IF2018=3.562,JCR2区)
Yanxin Wang*, PingLi, Guo Q, et al. Environmentalbiogeochemistry of high arsenic geothermal fluids. Applied Geochemistry, 2018. 97:81-92.(IF2018=3.088,JCR2区)
Ping Li*, ZhouJiang, Yanhong Wang, et al. Analysis of the functional gene structure andmetabolic potential of microbial community in high arsenic groundwater. WaterResearch, 2017. 123: 268-276(IF2018=6.942,JCR1区)
Wang YH, Li P*, Jiang Z, et al. Microbial community of high arsenic groundwater in agricultural irrigationarea of Hetao Plain, Inner Mongolia. Frontiers in Microbilogy, 2016, 7: 1917(IF2016=4.165,JCR1区)
Jiang Z, Li P*, Nostrand J, et al. Microbialcommunities and arsenicbiogeochemistry at the outflow of an alkaline sulfide-richhot spring. ScientificReports, 2016, 6: 25262.(IF2016=5.228,JCR2区)
Zhou Jiang, Ping Li*, Dawei Jiang et al. Microbial Community Structure and ArsenicBiogeochemistry in an Acid Vapor-Formed Spring in Tengchong Geothermal Area,China. PLOS one. 2016, DOI: 10.1371/journal.pone.**(IF2016=3.057,JCR2区)
Ping Li,Yanhong Wang, Zhou Jiang etal. Microbial Community in High Arsenic Shallow Groundwater Aquifers inHetao Basin of Inner Mongolia, China. PLOS one.2015, 10(5): e**. doi:10.1371/journal.pone.**(IF2015=3.234,JCR2区)
Dawei Jiang, PingLi*, Zhou Jiang et al. Chemolithoautotrophic arsenite oxidation by athermophilic Anoxybacillusflavithermus strain TCC9-4 from a hot spring in Tengchong ofYunnan, China. Frontiers inMicrobilogy. 2015, DOI:10.3389/fmicb.2015.00360(IF2015=3.989,JCR1区)

Wang YH, Li P*, X Dai et al. Abundanceand diversity of methanogens: Potential role in high arsenic groundwater inHetao Plain of Inner Mongolia, China. Science of the Total Environment515–516 (2015) 153-161(IF2015=4.099,JCR1区)
Li P, Jiang D, Li B, etal. Comparative survey of bacterial and archaeal communities in higharsenic shallow aquifers using 454 Pyrosequencing and traditional methods.Ecotoxicology, 2014, 23(10): 1878-1889(IF2014=2.500,JCR2区)
Ping Li, Bing Li, Gordon Websteret al. Abundance and diversity of sulfate-reducing bacteria inthe high arsenic shallow aquifers of the Hetao Basin, Inner Mongolia. Geomicrobiology Journal, 2014 31: 802-812(IF2014=1.804,JCR2区)
Zhou Jiang, Ping Li*, Dawei Jiang, et al. Diversity and abundance of thearsenite oxidase gene aioA in geothermal areas ofTengchong, Yunnan, China. Extremophiles 2014, 18:161-170 (IF2014=2.174,JCR3区)
Zhou Jiang, Ping Li*, Yanhong Wang et al.. Vertical distribution of bacterial populationsassociated with arsenic mobilization in aquifer sediments from the Hetao plain,Inner Mongolia. Environmental Earth Sciences. 2014 71:311-318 (IF2014=1.572,JCR3区)
Yanhong Wang, Ping Li*, Zhou Jiang, et al. BacterialDiversity and Community Structure in High Arsenic Aquifers in Hetao Plain ofInner Mongolia. Geomicrobiology Journal 2014 31:338–349 (IF2014=1.804,JCR2区)
Wang YH Li P * , Jiang Z, et al. Vertical Distribution of BacterialCommunity in High Arsenic Sediment of Hetao Basin, Inner Mongolia.Ecotoxicology, 2014, 23(10): 1890-1899 (IF2014=2.500,JCR2区)
QiongWuHuiLiu Li-ShengYeLi P,et al. Biodegradation ofDi-n-butyl phthalate esters by Bacillus sp. SASHJ under simulated shallow aquifercondition. 2013. International Biodeterioration &Biodegradation76:102-107.(IF2013=2.059,JCR2区)
Li M D, Wang YX, Li P, et al. δ34S andδ18O of dissolved sulfate as biotic tracer of biogeochemicalinfluences on arsenic mobilization in groundwater in the Hetao Plain, InnerMongolia, China. Ecotoxicology, 2014, 23(10): 1958-1968. (IF2014=2.500,JCR2区)
Zhang F, Wang Y, Wang Z,Li P. et al. Karstdevelopment and sulfur deposit formation in the Ordos Basin: The role ofbacterial sulfate reduction. 2013. International Biodeterioration & Biodegradation76:92-97.(IF2013=2.059,JCR2区)
Ping Li, Zhou Jiang, Yanhong Wang et al. MicrobialDiversity in HighArsenic Groundwater in Hetao Basin of Inner Mongolia, China, GeomicrobiologyJournal 2013 30: 897-909(IF2013=1.804,JCR2区)
Jiang Z, PingLi*, Wang YH, et al. Effects of roxarsone on soil microbialcommunity functional diversity. International Biodeterioration &Biodegradation, 2013, 76: 32-35(IF2013=2.059,JCR2区)
Li P, Wang YH, Wang YX, et al.Bioaugmentation of cellulose degradation in swine wastewater treatment with acomposite microbial consortium. Fresenius Environ Bull 2010, 19(12): 3107-3112.
LiP, Wang YX, Wang YH, et al. Bacterial community structure anddiversity during establishment of an anaerobic bioreactor to treat swinewastewater. Water Sci Technol 2010, 61(1): 243-252.
Li P, Tong L, Liu K,et al. Biodegradation of 3-methylindole by Pseudomonasputida LPC24 under oxygen limited conditions. Fresenius Environ Bull 2010, 19(2): 238-242.
Li P, Tong L, Liu K, et al. Indole degrading of ammonia oxidizing bacteria isolated from swinewastewater treatment system. WaterSci Technol 2009(12), 59: 2405-2410.
李平 王焰新 刘琨等. 高效纤维素降解菌系的构建. 地球科学 2009, 34: 385-340.
Tong L, Li P, Wang YX, et al. Analysis of veterinary antibiotic residuesin swine wastewater and environmental water samples using optimizedSPE-LC/MS/MS. Chemosphere 2009, 74: 1090-1097.
Tong L, Wang YX, Li P, et al. HS-SPMEand SPE concentration for quantification of malodorous substances in piggerywastewater. Environmental Forensics, 2010. 11(4): 355-362
LiP, Nahimana L, Chen SL etal. High nitrogen removal from wastewater withseveral new aerobic bacteria isolated from diverse ecosystems. J EnvironSci-China 2006, 18: 525-529.
Li P, Zheng Yongliang, Jiang Yue, et al. Identification of an aerobicdenitrifying bacterium and its potential application in wastewater treatment.Chinese Journal of Applied & Environmental Biology, 2005, 11(5), 600-603

已获专利

李平,王焰新,童蕾等. 一株吲哚和粪臭素降解菌株LPC24的应用, 发明专利,2011.12专利号: CNA, 已授权
李平,童蕾,王焰新,刘琨,刘珩等. 畜禽养殖污水处理工艺及其处理系统 发明专利,2012.1专利号:CN B, 已授权
童蕾,李平,王焰新,刘琨,刘珩. 畜禽污水末端多级人工地质快渗处理系统. 实用新型专利. 2009. 5. 专利号:ZL0.5,已授权


已获奖项
畜禽养殖废水中有机物厌氧生物降解机理的分子生物学解析.湖北省人民政府学位委员会,湖北省优秀博士学位论文,2010年




Curriculum Vitae

Dr. Ping Li

State Key Laboratory of Biogeology and EnvironmentalGeology

China University of Geosciences

Wuhan, P. R. China 430074

Email: plicug@gmail.com

Telephone: +86-

Fax: +86-


Education and professional background
1994- 1998: Wuhan Universityof Technology, Major in Mineral Process Engineering; Bachelor Degree receivedin June, 1998

2003- 2006: Central China Normal University, Major in Biochemistryand Molecular Biology; Master Degree received in June, 2006

2006- 2009: China University of Geosciences,Major in Environmental Sciences and Environmental Engineering; PhD Degreereceived in June, 2009.

1998- 2000: Faculty in Wuhan Public transport Service.

2000-2001: Faculty in Hubei Ecology Vocational College

2002-2003: Faculty in Instituteof Hydrobiology, Chinese Academy of Sciences

2009- : Faculty in State Key Laboratory of Biogeologyand Environmental Geology, China University of Geosciences


Research Interests
Microbial molecular ecology

Biogeochemical processes andtheir environmental effects

Biological remediation ofwastewater, soil and groundwater pollution


Reasearch Experience
As a researcher, I have taken part in these projects:

National Natural Science Foundation of China(Grant No. **) “Keynitrogen cycle processes mediated by microorganisms and their environmentaleffects ingroundwater systems”, 2019.1-2021.12

National Natural Science Foundation of China(Grant No. **) “Biogeochemistryof arsenic and sulfer and micorbially-mediated arsenic transformation and mobilizationfrom geothermal fluids”, 2018.1-2021.12

National Natural Science Foundation of China(Grant No. **) “Microbialmolecular ecology in high arsenic aquifers”, 2014.1-2017.12

Specialized Research Fund for the Doctoral Program ofHigher Education (Grant No. 010) “Functional microbial communities in high arsenic groundwatersystem”; 2013.6-2014.9

National Natural Science Foundation of China:International Cooperation and Exchange Project (Grant No. NO) “Environmental biogeochemistry of arsenic fromgeothermal fluids” 2012.1-2016.12

National Natural Science Foundation of China(Grant for Young Scholars No: **),“Microbialgeochemistry of arsenic transformation in strongly reducing groundwater”; 2011.1-2013.12


Selected Publications
Helin Wang,Ping Li*,Han Liu,et al. Microorganisms for ammonia/ammonium-oxidization andanammox detected in Holocene-Pleistocene aquifers with high arsenic concentrations.International Biodeterioration & Biodegradation. 2020,DOI:10.1016/j.ibiod.2020.105136

ChunleiHuang, Helin Wang, Xinyan Shi,Ping Li*, et al.Two newselenite reducing bacterial isolates from paddy soil and the potential Sebiofortification of paddy rice. Ecotoxicology, 2020, 27: 1047-1057

HanLiu,Ping Li*,Helin Wang, et al..Arsenicmobilization affected by extracellular polymeric substances (eps) of thedissimilatory iron reducing bacteria isolated from high arsenic groundwater.ScienceoftheTotalEnvironment,2020,735,139501.

YanhongWang, Dazhun Wei,Ping Li*,et al..Diversity andarsenic-metabolizing gene clusters of indigenous arsenate-reducing bacteria inhigh arsenic groundwater of the Hetao Plain, Inner Mongolia. Ecotoxicology,2020, DOI: 10.1007/s10646-020-02305-1

ZhouJiang,Ping Li*,Yanhong Wang, et al. Arsenicmoblization in a high arsenic groundwater revealed by metagenomic and geochipanalyses.Scientific Reports, 2019.9(1):12972.

ZhangX, Liu K,Li P, et al. Molecular Existence and Diversityof Nitrite-Dependent Anaerobic Methane Oxidizing (n-Damo) Bacteria in the Lakesof Badain of the Gobi Desert. 2019. Geomicrobiology36(7):1-11.

Wang YH, Li P*, Jiang Z, et al.. Diversity and abundance of arsenicmethylating microorganisms in high arsenic groundwater from Hetao Plain ofInner Mongolia, China. Ecotoxicology, 2018, 27: 1047-1057

Dai X, LiP*, Tu J, et al. Evidence of arsenic mobilization mediated by an indigenousiron reducing bacterium from high arsenic groundwater aquifer in Hetao Basin ofInner Mongolia, China. International Biodeterioration & Biodegradation,2018, 128: 22-27

Jiang Z, Li P*, Tu J, etal. Arsenic in geothermal systems of Tengchong, China: Potential contaminationon freshwater resources. International Biodeterioration & Biodegradation,2018, 128: 28-35

Yanxin Wang*, PingLi, Guo Q, et al. Environmentalbiogeochemistry of high arsenic geothermal fluids. Applied Geochemistry, 2018. 97:81-92.

Ping Li*, Zhou Jiang,Yanhong Wang, et al. Analysis of the functional gene structure and metabolicpotential of microbial community in high arsenic groundwater. Water Research,2017. 123: 268-276

Wang YH, Li P*, Jiang Z, et al. Microbial community of high arsenicgroundwater in agricultural irrigation area of Hetao Plain, Inner Mongolia. Frontiersin Microbilogy, 2016, 7: 1917

Jiang Z, Li P*, Nostrand J, et al. Microbialcommunities and arsenic biogeochemistry at the outflow of an alkalinesulfide-rich hot spring. Scientific Reports,2016, 6: 25262.

Zhou Jiang, Ping Li*, Dawei Jiang et al. Microbial Community Structure and ArsenicBiogeochemistry in an Acid Vapor-Formed Spring in Tengchong Geothermal Area,China. PLOS one. 2016, DOI: 10.1371/journal.pone.**

Ping Li, Yanhong Wang,Zhou Jiang etal. MicrobialCommunity in High Arsenic Shallow Groundwater Aquifers in Hetao Basin of InnerMongolia, China. PLOS one. 2015, 10(5): e**. doi:10.1371/journal.pone.**

Dawei Jiang, PingLi*, Zhou Jiang et al. Chemolithoautotrophic arsenite oxidation by athermophilic Anoxybacillus flavithermusstrain TCC9-4 from a hot spring in Tengchong of Yunnan, China. Frontiers in Microbilogy. 2015, DOI: 10.3389/fmicb.2015.00360

Wang YH, Li P*, X Dai et al. Abundanceand diversity of methanogens: Potential role in high arsenic groundwater inHetao Plain of Inner Mongolia, China. Science of the Total Environment 515–516(2015) 153-161

Li P, Jiang D, Li B, etal. Comparativesurvey of bacterial and archaeal communities in high arsenic shallow aquifersusing 454 Pyrosequencing and traditional methods. Ecotoxicology, 2014, 23(10):1878-1889

Ping Li, Bing Li, GordonWebster et al. Abundance anddiversity of sulfate-reducing bacteria in the high arsenic shallow aquifers ofthe Hetao Basin, Inner Mongolia. Geomicrobiology Journal, 2014 31: 802-812

Zhou Jiang, Ping Li*, Dawei Jiang, et al. Diversity and abundance of the arsenite oxidase gene aioA in geothermalareas of Tengchong, Yunnan, China. Extremophiles 2014, 18:161-170

Zhou Jiang, Ping Li*, Yanhong Wang et al.. Vertical distribution of bacterial populations associated with arsenicmobilization in aquifer sediments from the Hetao plain, Inner Mongolia. EnvironmentalEarth Sciences. 2014 71:311-318

Yanhong Wang, Ping Li*, Zhou Jiang, et al. Bacterial Diversity and Community Structurein High Arsenic Aquifers in Hetao Plain of Inner Mongolia. Geomicrobiology Journal2014 31:338–349

Wang YH Li P * , Jiang Z, et al. Vertical Distribution of Bacterial Community in High Arsenic Sedimentof Hetao Basin, Inner Mongolia. Ecotoxicology, 2014, 23(10): 1890-1899

QiongWuHuiLiu Li-ShengYeLi P,et al. Biodegradation of Di-n-butylphthalate esters by Bacillus sp. SASHJ under simulated shallow aquifercondition. 2013. International Biodeterioration &Biodegradation76:102-107.

Li M D, Wang YX, Li P, et al. δ34S andδ18O of dissolved sulfate as biotic tracer of biogeochemicalinfluences on arsenic mobilization in groundwater in the Hetao Plain, InnerMongolia, China. Ecotoxicology, 2014, 23(10): 1958-1968.

Zhang F, WangY, Wang Z,Li P. et al. Karst development and sulfur depositformation in the Ordos Basin: The role of bacterial sulfate reduction. 2013.International Biodeterioration & Biodegradation76: 92-97.

Ping Li,Zhou Jiang, YanhongWang et al. MicrobialDiversityin High Arsenic Groundwater in Hetao Basin of Inner Mongolia, China,Geomicrobiology Journal 2013 30: 897-909

Jiang Z, PingLi*, Wang YH, et al. Effects of roxarsone on soil microbial community functional diversity.International Biodeterioration & Biodegradation, 2013, 76: 32-35

Li P, Wang YH, Wang YX, et al. Bioaugmentation of cellulose degradation in swinewastewater treatment with a composite microbial consortium. Fresenius EnvironBull 2010, 19(12): 3107-3112.

LiP, Wang YX, Wang YH, et al. Bacterial community structure and diversity during establishment of ananaerobic bioreactor to treat swine wastewater. Water Sci Technol 2010,61(1): 243-252.

Li P, Tong L, Liu K,et al. Biodegradationof 3-methylindole by Pseudomonas putidaLPC24 under oxygen limited conditions. Fresenius Environ Bull 2010, 19(2): 238-242.

Li P, Tong L, Liu K, et al. Indole degrading ofammonia oxidizing bacteria isolated from swine wastewater treatment system. WaterSci Technol 2009(12), 59: 2405-2410.

李平 王焰新 刘琨等. 高效纤维素降解菌系的构建. 地球科学 2009, 34: 385-340.

Tong L, Li P, Wang YX, et al. Analysis of veterinary antibiotic residuesin swine wastewater and environmental water samples using optimizedSPE-LC/MS/MS. Chemosphere 2009, 74: 1090-1097.

Tong L, Wang YX, Li P, et al. HS-SPME andSPE concentration for quantification of malodorous substances in piggerywastewater. Environmental Forensics, 2010. 11(4): 355-362

LiP, Nahimana L, Chen SL et al. High nitrogen removal from wastewater with several new aerobic bacteriaisolated from diverse ecosystems. J Environ Sci-China 2006, 18: 525-529.

Li P, Zheng Yongliang, JiangYue, et al. Identification of an aerobic denitrifying bacterium and itspotential application in wastewater treatment. Chinese Journal of Applied &Environmental Biology, 2005, 11(5), 600-603


Conference Presentations

2 Li Ping, Cloning andExpression of N2O Reductase Structural Gene nosZ. Water-Rock Interaction. The12Th International Symposium on Water-Rock Interaction, 31 July - 5August 2007, Kunming, China, Poster.

2 Li Ping,Yanhong Wang, Zhou Jiang. Bacterial and archaealcommunities in high arsenic shallow aquifers of Hetao Basin, Inner Mongolia. The First International Conference on Geomicrobial Ecotoxicology, May 28-31,2011, Wuhan, China, oral presentation.

2 Li Ping, The 2ndInternational Conference of Geobiology, June 22-27 2012, Wuhan, China, oral presentation

2 Li Ping, MicrobialCommunities in High Arsenic Groundwater in Hetao Basin, Inner Mongolia, 34thInternational Geological Congress, August, 5-10, 2012, Brisbane, Australia, oralpresentation.

2 Li Ping,Vertical and Lateral Distribution of Microbial Communities in Groundwater andSediment in High Arsenic Shallow Aquifers of Hetao Basin, Inner Mongolia, The4th International Congress on Arsenic in the Environment Sebel Cairns, July 22-272012, Queensland, Australia, oral presentation.

2Li Ping, Yanhong Wang, Comprehensive Survey of Microbial Community in High Arsenic Groundwaterin Hetao Basin, Inner Mongolia,Sino-German Workshop on Geogenic Arsenic in the Environment, Sept. 21-27, 2014,Beijing, China, oral presentation.

2Li Ping, Zhou Jiang, Microbial diversity ofarsenic-related bacteria in high arsenic groundwater of Inner Mongolia, China. 6thInternational Congress Arsenic in the Environment. Jun. 19-23, 2016, Stockholm,Sweden, oral presentation.

2Li Ping, Yanhong Wang, Functional Gene Structure and Metabolic Potential of Microbial Communityin High Arsenic Groundwater. 8th International Congress Groundwater Quality Jun. 25-27, 2016, Shenzhen, China, oral presentation.

2 Li Ping, Microbialcommunity and the functional gene structure in high arsenic groundwater. InternationalWorkshop of Geomicrobiome: Subsurface Microbial Composition and Function andMicrobial Interactions with Subsurface Environment. Oct. 13-15, 2017, Wuhan, China.oral presentation.

2 Li Ping, EnvironmentalHydrobiogeochemistry of High Arsenic Hot Springs. The 11th InternationalSymposium on Geochemistry of the Earth’s Surface June 11-16, 2017,Guiyang,China, poster.

2 Li Ping, ArsenicBiogeochemistry in Hot Springs in Tengchong Geothermal Area, China. Goldschmidt2017conference. Aug. 13-18, 2017,Paris, France, poster.

2 Li Ping, Microbial community and the functional gene structure in high arsenicgroundwater, oral presentation. 7th International Congress of Arsenic in theEnvironment (As2018), July, 1-6, 2018, Beijing, China, oral presentation.

2 LiuHan, Li Ping, Roles of iron and/or arsenicreducing bacteria in controlling the mobilization of arsenic in high arsenicgroundwater aquifer. 7th International Congress of Arsenic in theEnvironment (As2018), July, 1-6, 2018, Beijing, China, oral presentation.

2 Li Ping, Microbial community structure and metabolic potential in high arsenicgroundwater, oral presentation, 45th International Association ofHydrogeologists (IAH2018), Sept. 9-14, 2018, Daejeon, Korea, oral presentation.




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