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个人简介

潘依雯,女,浙江大学教授/博导,海洋科学系副主任。浙江省“万人计划”青年拔尖人才;现任中国海洋湖沼学会深海科学分会常务委员、中国海洋学会海洋化学分会委员、广西北部湾海洋资源环境与可持续发展重点实验室的学术委员会委员、全球XPRIZE二氧化碳移除大赛评委(亚洲唯一代表,奖金总额1亿美金)。担任国际期刊Frontier in Climate副主编,Acta Oceanologica Sinica、Journal of Marine Science and Technology、Water等期刊编委。 研究方向:海洋碳增汇和传感器研发。在海洋碳增汇方向,致力于解析藻类的生物固碳和碳酸钙固碳的耦合作用,通过明晰人工系统对局部海洋碳循环过程的影响作用,提出人工系统促进海域碳增汇的途径与机制。参与的人工上升流促进大藻碳增汇方案已被联合国国际间气候组织(IPCC)纳入海洋碳增汇方案,向全球推广,并作为重要章节收入美国能源部出版的《低碳路线报告》,并以排名第3获得2022年度浙江省技术发明奖一等奖。在传感器方向,成功研制了耐腐蚀、稳定性强的多参数传感器系统,多次成功应用于生态监测,深海热液、冷泉、天然气水合物等资源调查中,并以排名2、3获得2个省部级二等奖。 学习经历 2008/09 – 2012/12,浙江大学 地球科学系,博士 2004/09 – 2007/03,美国明尼苏达大学 地质与地球物理学院,硕士 1999/09 – 2004/06,浙江大学生物医学与仪器科学学院,学士 科研与学术工作经历 2024/01 – 至今,浙江大学,海洋学院海洋化学与环境研究所,教授 2016/12 – 2023.12,浙江大学,海洋学院海洋化学与环境研究所,副教授 2018/12 - 2019/01, 中科院深海所,“探索一号”科考船,船上科学家,西南印度洋下潜到2768.8米 2017/09 – 2017/09,台湾中山大学海洋科学系,访问学者 2013/06 – 2016/12,浙江大学,海洋学院海洋化学所,讲师 2013/09 – 2013/11,台湾中山大学海洋科学系,访问学者 奖励荣誉 1. 海洋人工上升流技术及应用,2022年度浙江省科学技术发明一等奖;2023(3/6),证书号: 2022-F--006-R01 2.海底沉积物静水压力驱动取样技术及应用,浙江省科学技术二等奖公益类项目; 2013 (2/6) ,证书号:1302012-2 3. 天然气水合物原位地球化学探测系统,中国地质调查成果奖二等奖,中国地质调查局; 2015(2/10),证书号:DC-2014-2-F03-RO2 4. 天然气水合物原位地球化学探测系统,中国国土资源部科学技术二等奖,中国地质调查局; 2015(2/10),证书号:KJ-2015-2-44-R2 5. 中国海岸带蓝碳战略、资源监测及环境效益评估,浙江省海洋科学技术进步奖一等奖; 2020(4/9),证书号:ZPSO2020-01-01-D04

研究领域

海洋碳化学与传感器研发

近期论文

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[25]Long-Term Stable Reference Electrodes with High-Pressure Tolerance and Salinity-Independence, ACS Sensors, 2025, 10(1), 488-498.(中科院一区,TOP) [24]Diatom-induced calcification in coastal marine environments: Biomineralization threshold and mechanism. Marine Chemistry, 2025, 271: 104533. [23]Cyclic aqueous carbonation of fly ash in seawater: Enhancing carbonation efficiency and CO2 removal rate. Chemical Engineering and Processing: Process Intensification, 2025, 216: 110428. [22]Unveiling the secrets of diatom-mediated calcification: Implications for the biological pump. Science China-Earth Sciences, 2024, 2024, 67.(中科院二区) [21]Development of SPEEK-Coated IrOx Sensor for High-Biomass Aquatic pH Monitoring, ACS Sensors, 2024, 9, 6, 3367–3376.(中科院一区,TOP) [20]The effects of turbulence on the growth of three different diatom species, Frontiers in Marine Science, 2024, 11:1400798.( 中科院二区) [19]Unlocking high carbonation efficiency: Direct CO2 mineralization with fly ash and seawater, Chemical Engineering Science, 282, 2023, 119349.(中科院二区) [18]New pathway of diatom-mediated calcification and its impact on the biological pump, Science Bulletin, 2023, 68(21), 2540-2543.(中科院一区,TOP) [17]High anti-interference ability induced by the SP/SiOx/ImIL composite film on IrOx pH electrodes, Analytica Chimica Acta. 2022, 1197, 339489.(中科院二区) [16]Characterization of Fine-Scale Turbulence Generated in a Laboratory Orbital Shaker and Its Influence on Skeletonema costatum, Journal of Marine Science and Engineering. 2022,10,1053. [15]A long-term stable sensor based on Fe@PCN-224 for rapid and quantitative detection of H2O2 in fishery products, Foods. 2021, 10, 419.( 中科院二区) [14]The role of Mg2+ in inhibiting CaCO3 precipitation from seawater, Marine Chemistry. 2021, 237: 104036. [13]The Effects of Suspended Particulate Matter, Nutrient, and Salinity on the Growth of Amphidinium carterae Under Estuary Environmental Conditions, Frontiers in Marine Science, 2021, 8.( 中科院二区) [12]Development of an effective flocculation method by utilizing the auto-flocculation capability of Phaeodactylum tricornutum, Algal Research-Biomass Biofuels and Bioproducts. 2021, 58:102413.( 中科院二区) [11]A high precision method for calcium determination in seawater using ion chromatography, Frontiers in Marine Science, 2020, 7.( 中科院二区) [10]A Sea Trial of Air-Lift Concept Artificial Upwelling in the East China Sea, Journal of Atmospheric and Oceanic Technology. 2019, 36: 2191-2204. [9]An improved method of preparing iridium oxide electrode based on carbonate-melt oxidation mechanism, Sensors and Actuators B- Chemical. 2018, 261: 316-324.(中科院一区) [8]Effects of Structures on the Sensing Properties of Long-Term Stable IrOx pH Electrodes, Journal of The Electrochemical Society. 2020, 167 (4): 047501. [7]Achieving highly efficient atmospheric CO2 uptake by artificial upwelling, Sustainability. 2018, 10(3): 664. [6]Experimental study on the performance of an air-lift pump for artificial upwelling, Ocean Engineering, 2016(113):191-200.(中科院二区) [5]A sea trial of enhancing carbon removal from Chinese coastal waters by stimulating seaweed cultivation through artificial upwelling, Applied Ocean Research. 2020, 101: 102260.(中科院二区) [4]A miniature all-solid-state calcium electrode applied to in situ seawater measurementt, Measurement Science and Technology,2013,24(12),125105.(中科院三区) [3]Research progress in artificial upwelling and its potential environmental effects, Science China-Earth Science, 2016, 59(2): 236-248 (中科院二区) [2]Hydrodynamic design of deep ocean water discharge for the creation of a nutrient-rich plume in the South China Sea, Ocean Engineering, 2015, 108, 356-368.(中科院二区) [1]Evaluation of the sinks and sources of atmospheric CO2 by artificial upwelling,Science of the Total Environment,2015, 511, 692-702.(中科院一区)

学术兼职

1. 担任2021-2024年全球XPRIZE 碳移除国际竞赛评审委员会成员(共12人,亚洲唯一委员); 2. 广西北部湾海域资源环境与可持续发展重点实验室学术委员会委员; 3.中国海洋学会海洋化学分会委员; 4.《海洋学报》和《海洋学报(英文版)》两刊青年编委(2024年起); 5. 国际期刊Frontiers in Climate期刊碳移除技术专刊(Carbon Dioxide Removal)副主编; 6. Research and Advances: Aquatic Sciences journal编委(2019年起); 7. 海洋科学SCI期刊Water(编委,2020年起); 8. 海洋科学与工程SCI期刊Journal of Marine Science and Technology (编委,2021年起); 9.国际期刊Journal of Asian Earth Sciences 编委(2024年起); 10. Water research,Biogeosciences,Marine Chemistry,Science of the Total Environment等10余个SCI期刊审稿人; 11. 国家自然科学基金评审专家等。

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