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    学术骨干

    王贺丽

    个人信息

    学历:博士研究生           专业: 环境科学

    办公电话:15626240370       E-mail:  wangheli22@163.com

    专业经历

    1.2024.01–至今,球王会官网,土壤环境研究所

    2.2019.06–2023.12,中国科学院广州地球化学研究所,获理学博士

    研究领域

    新污染物的环境行为和生态效应研究,包括:1.土壤-水环境中新污染物的生物-非生物降解研究;2. 微塑料对湿地土壤元素循环的影响

    主要参与项目

    国家自然科学基金(面上) 六溴环十二烷在活性矿物表面的非生物转化过程及腐殖质的影响研究  2015-2018     主要参与人员

    国家自然科学基金(面上) 典型污染区域河流底泥中氯代有机磷阻燃剂的厌氧微生物降解        2018-2021     主要参与人员

    国家自然科学基金(面上) 近海沉积物微塑料附着微生物对卤代阻燃剂的降解及其机制研究      2021-至今     主要参与人员

    发表文章

    1.Wang Heli; Yang Qian; Li Dan; Wu Junhong; Yang Sen; Luo Chunling; Jia Wanglu; Zhong Yin; Peng Ping’an. Stable isotopic and metagenomic analyses reveal microbial-mediated effects of microplastics on sulfur cycling in coastal sediments. Environmental Science & Technology, 2023, 57, 1167-1176. (TOP I区,IF: 11.4)

    2.Wang Heli; Zhong Yin; Zhu Xifen; Li Dan; Huang Weilin; Peng Ping'an, Enhanced tetrabromobisphenol A debromination by nanoscale zero valent iron particles sulfidated with S0 dissolved in ethanol. Environmental Science-Processes & Impacts, 2021, 23(1). (封面文章,IF: 5.5)

    3.Zhong Yin; Wang Heli; Yu Zhiqiang; et al., Diastereoisomer-Specific Biotransformation of Hexabromocyclododecanes by a Mixed Culture Containing Dehalococcoides mccartyi Strain 195. Frontiers in Microbiology, 2018, 9. (IF: 5.2) (导师一作)

    4.Lian Jianjun; Wang Heli; He Hongping; et al., The reaction of amorphous iron sulfide with Mo(VI) under different pH conditions. Chemosphere, 2021, 266. (IF: 8.8) (非第一作者)

    5.Yang Sen; Wu Junhong; Wang Heli; et al., New dechlorination products and mechanisms of tris(2-chloroethyl) phosphate by an anaerobic enrichment culture from a vehicle dismantling site. Environmental Pollution, 2023, 338, 122704. (IF: 8.9) (非第一作者)

    6.Fluctuating redox conditions accelerate the electron storage and transfer in magnetite and production of dark hydroxyl radicals. Water Research, 2024, 248, 120884. (IF: 12.8) (非第一作者)

    7.Dehalococcoides-Containing Enrichment Cultures Transform Two Chlorinated Organophosphate Esters. Environmental Science & Technology, 2022(3): 56. (IF: 11.4) (非第一作者)

    8.A comprehensive evalsuation of factors affecting the reactivity of FeS towards hexabromocyclododecane diastereoisomers. Science of the Total Environment, 2022, 151595. (IF: 9.8) (非第一作者)

    9.Reductive degradation of chlorinated organophosphate esters by nanoscale zerovalent iron/cetyltrimethylammonium bromide composites: Reactivity, mechanism and new pathways. Water Research, 2021, 188. (IF: 12.8) (非第一作者)

    10.Enhanced molybdenum(VI) removal using sulfide-modified nanoscale zerovalent iron: kinetics and influencing factors. Water Science and Technology 2021, 83(2), 297-308. (IF: 2.7) (非第一作者)

    11.Enhanced reactivity of iron monosulfide towards reductive transformation of tris(2-chloroethyl) phosphate in the presence of cetyltrimethylammonium bromide. Environmental Pollution, 2020, 262. (IF: 8.9) (非第一作者)

    12.Compound-specific carbon isotope analysis for mechanistic characterization of debromination of decabrominated diphenyl ether. Rapid Communications in Mass Spectrometry 2020, 34, (11). (IF: 2) (非第一作者)

    13.New insights into the anaerobic microbial degradation of decabrominated diphenyl ether (BDE-209) in coastal marine sediments. Environmental Pollution, 2019, 255. (IF: 8.9) (非第一作者)

    14.钟音; 王贺丽; 朱锡芬; 李丹. 一种硫化纳米零价铁颗粒及其制备方法和应用:中国发明专利(已授权), ZL 2019 1 0393183.0[P]. 2021-07-27.

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