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邴海健

时间:2017-05-24  来源: 文本大小:【 |  | 】  【打印

邴海健

青年研究员,硕导 

个人简介:

1984生,博士,山东威海人;中国科学院“青年创新促进会”会员、中国科学院“西部之光”青年学者、四川省学术和技术带头人后备人才入选者;主要从事生物地球化学研究。

招生专业:

自然地理学、生物地球化学、土壤学

学习与工作经历:

2021.03至今   国科学院、水利部成都山地灾害与环境研究所,青年研究员

2015.11~2021.03 国科学院、水利部成都山地灾害与环境研究所,副研究员

2013.10~2014.11 香港理工大学,博士后、研究助理

2012.07~2015.10 国科学院、水利部成都山地灾害与环境研究所,助理研究员

2007.09~2012.06 国科学院南京地理与湖泊研究所,理学博士

研究方向及科研工作:

    从事生物地球化学研究,关注山地关键元素生物地球化学循环过程及其环境效应,针对受损/退化生态系统开展生态恢复研究。主持国家重点研发计划项目子课题、国家自然科学基金项目、西藏自治区科技计划项目、中央引导地方科技发展项目、四川省自然科学基金面上项目10余项。

社会任职、荣誉称号:

2023.01-,Journal of Environmental Quality副主编

2023.10-,《土壤》(青年编委)

2024.07-,《应用与环境生物学报》(青年编委)

2023.05-Forests客座编辑);

2021.01-10,Adsorption Science and Technology客座编辑

2021.09-,中国土壤学会青年工作委员会委员;

2013~20172023.10-,中国第四纪委员会应用第四纪专业委员会委员

2021.01-青年创新促进会”成都分会第五届委员会委员

担任Communications Earth & EnvironmentEarth’s FutureEnvironmental Science & TechnologyWater ResearchSoil Biology & BiochemistryJournal of Hazardous MaterialsFundamental ResearchCatenaSoil & Tillage ResearchBiology and Fertility of Soils《湖泊科学》、《应用生态学报》、《生态环境学报》等生态环境和土壤学领域70多个国内外主流期刊审稿人2022-2024年度获《湖泊科学》期刊优秀审稿人称号

培养研究生10余人,其中3人获国家奖学金。

代表性论文论著:

参与编写专著2发表学术论文1438Nature Index期刊,7ESI1%高被引论文),其中以第一/通讯作者发表论文57篇,包括SCI论文56篇(TOP论文40篇),论文引用4800余次;授权国家专利6项。

1. 专著

1邴海健,钟志淋,祝贺,吴艳宏,2021: 沉积物重金属淤积特征(第5章),于:吴艳宏 等著. 三峡库区沉积物磷及主要重金属淤积特征及其生态环境效应.科学出版社,北京,pp,99-143.

2邴海健,罗辑,李睿,吴艳宏,2019: 贡嘎山微量金属元素表生地球化学特征(第6章),于:吴艳宏 等著. 贡嘎山磷及微量金属元素生物地球化学循环与生态效应. 科学出版社,北京,pp,242-372.

2. 主要学术论文

(1)Wu YY, Wang YH, Ochoa-Hueso R, Hou EQ, Li J, Zhu H, Sardans J, Fang LC, Wu YH, Zhang G, Peñuelas J, Bing HJ*, 2025. From bedrock to life activity and atmospheric deposition: Drivers of soil element coupling across horizons. Environmental Research, 271, 121070.

(2)

Wu YY, Bol R, Yang WZ, Zhao DY, Wang YH, Zhu H, Wu YH,Bing HJ*, 2025. Plant species determine elementome differentiation and element coupling during deadwood decay. Science of the Total Environment, 959, 178282.

(3)Wang YH, Bing HJ*, Moorhead DL, Hou EQ, Wu YH, Wang JP, Duan CJ, Cui QL, Zhang ZQ, Zhu H, Qiu TY, Dai ZM, Tan WF, Huang M, LambersH, Reich PB, Fang LC*, 2024. Bacterial community structure modulates soil phosphorus turnover at early stages of primary succession. Global Biogeochemical Cycles, 38, e2024GB008174.

(4)

Jin JY, Zhao DY, Wang JP, Wang YH, Zhu H, Wu YH, Fang LC, Bing HJ*, 2024. Fungal community determines soil multifunctionality during vegetation restoration in metallic tailing reservoir. Journal of Hazardous Materials, 478, 135438.

(5)Zhao DY, Bol R, Wang JP, Jin JY, Wang YH, Wang TX, Zhu H, Wu YH, Fang LC, Bing HJ*, 2024. Soil heavy metal pollution promotes extracellular enzyme production by mediating microbial community structure during vegetation restoration of metallic tailing reservoir. Science of the Total Environment, 948, 174783.

(6)

Wu Y, Zhao DY, Wang YH, Wang JP, Wu YY, Peng PH, Yang LY, Wu YH, Bing HJ*, Bol R, 2024. Plant species modulate wildfire effects on soil phosphorus fractions in alpine forest of eastern Tibetan Plateau. Forest Ecology and Management, 573, 122338.

(7)Liu Y, Delgado-Baquerizo M,Bing HJ*, Wang YH, Wang JJ, Chen J, Qiu SJ, Zhu H, Wu YH, Fang LC, Chang RY, 2024. Warming-induced shifts in alpine soil microbiome: an ecosystem-scale study with environmental context-dependent insights. Environmental Research, 255, 119206.

(8)

Jin JY, Bol R, Bing HJ*, Huang JC, Zhang J, Wu YY, Zhu H, Wu YH, Chang RY, 2024. Nitrogen addition reduces soil phosphorus leaching in a subtropical forest of eastern Tibetan Plateau. Applied Soil Ecology, 202, 105616.

(9)Long ZJ, Zhu H, Bing HJ*, Ma ZJ, Yu DM, Wu YH*, 2024. Bio-accessibility and mobilization dynamics of soil vanadium during a 48-year vegetation restoration in a vanadium titano-magnetite tailings reservoir. Science of the Total Environment, 906, 167507.

(10)Zhu H, Bing HJ*, Wu YH*, Sun HY, Tian X, Zhou J, 2024. Species-dependent phosphorus acquisition strategy modulates soil phosphorus cycle process in the subalpine forest of eastern Tibetan Plateau.Applied Soil Ecology, 195, 105253.

(11)Wang JP, Zhao Q, Zhong YQ, Ji SH, Chen GR, He QQ, Wu YH, Bing HJ*, 2023. Biological nitrogen fixation in barren soils of a high-vanadium region: Roles of carbon and vanadium. Soil Biology and Biochemistry, 186, 109163.

(12)

Wang JP, Chen GR, Ji SH, Zhong YQ, Zhao Q, He QQ, Wu YH, Bing HJ*, 2023. Close relationship between the gene abundance and activity of soil extracellular enzyme: Evidence from a vegetation restoration chronosequence. Soil Biology and Biochemistry, 177, 108929.

(13)

Yang WZ,Bing HJ*,Tian X, Liu Y, Zhu H, Fang LC, Wu YH, 2023.Unearthing the importance of soil development in total phosphorus distribution in Chinas mountains. Catena, 228, 107193.

(14)He QQ, Wu YH, Wang JP Bing HJ*, 2023. Community rRNA operon copy number of soil bacteria decreases with soil depth and ecosystem succession in postglacial ecosystems.Applied Soil Ecology, 186, 104817.

(15)

Long ZJ, Bing HJ*, Zhu H, Wu YH*, 2023. Soil covering measure mitigates vanadium loss during short-term simulated rainfall in the vanadium titano-magnetite tailings reservoir. Journal of Environmental Management, 330, 117201.

(16)Cui LL, Gao YN, Chen YB, Li R*, Bing HJ*, Wu YH, Wang GH*, 2023. Chemical characteristics and source apportionment of biogenic primary and secondary organic aerosols in an alpine ecosystem of Tibetan Plateau. Journal of Geophysical Research: Atmospheres, 128, e2022JD037897

(17)

Bing HJ*, Liu Y, Huang JC, Tian X, Zhu H, Wu YH,2022. Dam construction attenuates trace metal contamination in water through increased sedimentation in the Three Gorges Reservoir. Water Research, 217, 118419.(中国生态系统研究网络(CERN2022年度十佳青年优秀论文

(18)JinJY, Tian X, Liu GL, Huang JC, Zhu H, Qiu SJ, Fu X, Wu YH, Bing HJ*, 2022. Novel ecological ditch system for nutrient removal from farmland drainage in plain area: Performance and mechanism. Journal of Environmental Management, 318, 115638.

(19)

Tian X, Bing HJ*,Wu YH*,Zhu H, Zhao W, He QQ, Xiong DH, 2022. Farmland abandonment decreases soil bioavailable phosphorus but increases organic phosphorus in the mid-hills of Nepal. Catena, 211, 106000.

(20)Long ZJ, Zhu H, Bing HJ*,Tian X, Wang XF, Ma ZJ, Yu DM, Wu YH*, 2022. Predicting soil cadmium uptake by plants in a tailings reservoir during 48-year vegetation restoration. Science of the Total Environment, 828, 151802.

(21)

Bing HJ*,Qiu SJ, Tian X, Li J, Zhu H, Wu YH*, Zhang G, 2021. Trace metal contamination in soils from mountain regions across China: spatial distribution, sources and potential drivers.Soil Ecology Letters, 3(3), 189-206.

(22)Wang JP, Wu YH, Li JJ, He QQ, Bing HJ*, 2021. Soil enzyme stoichiometry is tightly linked to microbial community composition in successional ecosystems after glacier retreat. Soil Biology and Biochemistry, 162, 108429.

(23)Wang JP, Wu YH, Li JJ, He QQ, Zhu H, Bing HJ*, 2021. Energetic supply regulates heterotrophic nitrogen fixation along a glacial chronosequence. Soil Biology and Biochemistry, 154, 108150.

(24)Long ZJ, Zhu H, BingHJ*, Tian X, Wang ZG, Wang XF, Wu YH*, 2021. Contamination, sources and health risk of heavy metals in soil and dust from different functional areas in an industrial city of Panzhihua City, Southwest China. Journal of Hazardous Materials, 420, 126638.

(25)

Zhu H, Bing HJ*, Wu YH*, Sun HY, Zhou J, 2021. Low molecular weight organic acids regulate soil phosphorus availability in the soils of subalpine forests, eastern Tibetan Plateau. Catena, 203, 105328.

(26)Zhong ZL, Bing HJ*, Xiang ZX, Wu YH*, Zhou J, Ding SM, 2021. Terrain-modulated deposition of atmospheric lead in the soils of alpine forest, central China. Science of the Total Environment, 790, 148106.

(27)Wang JP, He QQ, Wu YH*, Zhu H, Sun HY, Zhou J, Wang DP, Li JJ, Bing HJ*, 2021. Effects of pioneer N-fixing plants on the resource status and establishment of neighboring non-N-fixing plants in a newly formed glacier floodplain, eastern Tibetan Plateau. Plant and Soil, 458, 261-276.

(28)Cui YX#, Bing HJ#, Fang LC*, Jiang M, Shen GT, Yu JL, Wang X, Zhu H, Wu YH, Zhang XC, 2021. Extracellular enzyme stoichiometry reveals the carbon and phosphorus limitations of microbial metabolisms in the rhizosphere and bulk micro-regions in alpine ecosystems. Plant and Soil, 458, 7-20.

  (29)

Bing HJ*, Zhong ZL, Wang XX, Zhu H, Wu YH*, 2020. Spatiotemporal distribution of vanadium in the flooding soils mediated by entrained-sediment flow and altitude in the Three Gorges Reservoir. Science of the Total Environment, 724, 138246.

  (30)Wang JP, Huang SY, He QQ, Bing HJ*, Zhang XF, Tian X, Zhou J, Wilcke W, Wu YH*, 2020. Microplate fluorimetric assay of soil leucine aminopeptidase activity: alkalization is not needed before fluorescence reading. Biology and Fertility of Soils, 56, 281-285.

  (31)

He QQ, Wu YH*, Bing HJ*, Zhou J, Wang JP, 2020. Vegetation type rather than climate modulates the variation in soil enzyme activities and stoichiometry in subalpine forests in the eastern Tibetan Plateau. Geoderma, 374, 114424.

  (32)Meng Y, Li R, Zhao YL, Cheng HY, Fu HB*, Yan Z, Bing HJ*, 2020. Chemical characterization and sources of PM2.5 at a high-alpine ecosystem in the Southeast Tibetan Plateau, China. Atmospheric Environment, 235, 117645.

  (33)

Bing HJ*, Wu YH*, Li J, Xiang ZX, Luo XS, Zhou J, Sun HY, Zhang G, 2019. Biomonitoring trace element contamination impacted by atmospheric deposition in China’s remote mountains. Atmospheric Research, 224, 30-41.

 (34)Bing HJ, Wu YH*, Zhou J, Sun HY, Wang XX, Zhu H, 2019. Spatial variation of heavy metal contamination in the riparian sediments after two-year flow regulation in the Three Gorges Reservoir, China. Science of the Total Environment, 649, 1004-1016.

  (35)

Luo XS*, Bing HJ*, Luo ZX, Wang YJ, Jin L, 2019. Impacts of atmospheric particulate matter pollution on environmental biogeochemistry of trace metals in soil-plant system: a review. Environmental Pollution, 255, 113138.

  (36)Zhu H, Bing HJ*, Wu YH*, Zhou J, Sun HY, Wang JP, Wang XX, 2019. The spatial and vertical distribution of heavy metal contamination in sediments of the Three Gorges Reservoir determined by anti-seasonal flow regulation. Science of the Total Environment, 664, 79-88.

  (37)

Cui YX#, Bing HJ#, Fang LC*, Wu YH, Yu JL, Jiang M, Shen GT, Wang X, Zhang XC, 2019. Diversity patterns of the rhizospheric and bulk soil microbial communities along an altitudinal gradient in an alpine ecosystem of the eastern Tibetan Plateau. Geoderma, 338, 118-127.

(38)Bing HJ, Zhou J, Wu YH*, Wang XX, Sun HY, Li R, 2016. Current state, sources, and potential risk of heavy metals in sediments of Three Gorges Reservoir, China. Environmental Pollution, 214, 485-496.

  (39)

Bing HJ*, Zhou J, Wu YH*, Luo XS, Xiang ZX, Sun HY, Wang JP, Zhu H, 2018. Barrier effects of remote high mountain on atmospheric metal transport in the eastern Tibetan Plateau. Science of the Total Environment, 628-629, 687-696.

  (40)Bing HJ*, Wu YH, Zhou J, Sun HY, 2016. Biomonitoring trace metal contamination by seven sympatric alpine species in eastern Tibetan Plateau. Chemosphere, 165, 388-398.

  (41)

Bing HJ, Wu YH*, Zhou J, Li R, Wang JP, 2016. Historical trends of anthropogenic metals in eastern Tibetan Plateau as reconstructed from alpine lake sediments over the last century. Chemosphere, 148, 211-219.

  (42)Bing HJ, Wu YH*, Zhou J, Li R, Luo J, Yu D, 2016. Vegetation and cold trapping modulating elevation-dependent distribution of trace metals in soils of a high mountain in eastern Tibetan Plateau. Scientific Reports, 6, srep24081.(Scientific Reports’best papers in the fields of biogeochemistry, hydrogeochemistry, and geology).

  (43)

Bing HJ, Wu YH*, Zhou J, Sun SQ, Luo J, Wang JP, Yu D, 2016. Stoichiometric variation of carbon, nitrogen and phosphorus in soils and its implication for nutrient limitation in alpine ecosystem of Eastern Tibetan Plateau. Journal of Soils and Sediments, 16, 405-416.

  (44)Bing HJ, Wu YH*, Zhou J, Ming LL, Sun SQ, Li XD, 2014. Atmospheric deposition of lead in remote high mountain of eastern Tibetan Plateau, China. Atmospheric Environment, 99, 425-435.

  (45)

Bing HJ, Wu YH*, Sun ZB, Yao SC, 2011. Historical trends of heavy metal contamination and their sources in lacustrine sediment from Xijiu Lake, Taihu Lake Catchment, China. Journal of Environment Sciences, 23(10), 1671-1678.

联系方式:

成都市天府新区群贤南街189号,中国科学院、水利部成都山地灾害与环境研究所610299Email: hjbing@imde.ac.cn

    

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