郭香会
博士
教授
厦门大学周隆泉楼A2-413室,厦门市翔安区翔安南路4221号
Dr.
Xianghui Guo
Professor
A2-413 Zhou-Long-Quan Building (Xiamen University)
Tel:
86-592-2182811
Fax:
86-592-2184101
Email:
xhguo@xmu.edu.cn
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个人履历
Brief CV
- 2022年8月-,教授,近海海洋环境科学国家重点实验室/厦门大学海洋与地球学院
- 2012年2月-2022年7月,副教授,近海海洋环境科学国家重点实验室/厦门大学海洋与地球学院
- 2010年3月-2012年3月,博士后,台湾“中央”研究院环境变迁研究中心
- 2006年3月-2007年2月, 研究助理,佐治亚大学海洋系
- 2009年3月,理学博士,厦门大学海洋与环境学院
- 2022 (Aug.)-, Professor, State Key Laboratory of Marine Environmental Science/College of Ocean and Earth Sciences
- 2012 (Feb.)-2022 (Jul.), Associate professor, State Key Laboratory of Marine Environmental Science/College of Ocean and Earth Sciences
- 2010 (Mar.)-2012 (Mar.), Post Doctoral Fellow, Research Center for Environmental Changes, Academia Sinica
- 2006 (Mar.)-2007 (Feb.), Research assistant, Department of Oceanography, The University of Geogia
- 2009 (Mar.), Ph.D. in Oceanography, Xiamen University
研究方向
Research Interests
- 海洋CO2通量及其调控机制
- 上层海洋碳、氮的生物地球化学循环
- Air-sea CO2 fluxes and controls in the ocean
- Carbon and nitrogen cycles in the upper ocean
代表性论文
Selected Publications
- Xianghui Guo*, Jianzhng Su, Liguo Guo, Zhiqiang Liu, Wei Yang, Yan Li, Zhentong Yao, Lifang Wang and Minhan Dai, 2023. Coupling of carbon and oxygen in the Pearl River plume in summer: Upwelling, hypoxia, reoxygenation and enhanced acidification, Journal of Geophysical Research: Oceans, 128, e2022JC019326.
- Yingxu Wu, Minhan Dai, Xianghui Guo*, Jinshun Chen, Yi Xu, Xu Dong, Junwei Dai and Zhirong Zhang, 2021. High-frequency time-series autonomous observations of sea surface pCO2 and pH, Limnology and Oceanography, 66, 588-606.
- Qian Li, Xianghui Guo*, Weiding Zhai, Yi Xu and Minhan Dai, 2020. Partial pressure of CO2 and air-sea CO2 fluxes in the South China Sea: synthesis of an 18-year dataset, Progress in Oceanography, 182, 102272.
- Xianghui Guo*, Xue Song, Ying Gao, Yaohua Luo, Yi Xu, Tao Huang, Lifang Wang, 2020. Inter-annual variability of the carbonate system in the hypoxic upper Pearl River estuary in winter, Frontiers in Marine Sciences, 7, 594725. doi: 10.3389/fmars.2020.594725.
- Xianghui Guo, Weidong Zhai, Minhan Dai*, Chao Zhang, Yan Bai, Yi Xu, Qian Li and Guizhi Wang, 2015, Air–sea CO2 fluxes in the East China Sea based on multiple-year underway observations, Biogeosciences, 12(18), 5495-5514.
学术任职
Affiliations/Service
- Member of Session Carbon and Climate (S-CC), North Pacific Marine Science Organization (PICES, 2020- )
- 全国海洋标准化委员会海洋调查观测监测分技术委员会(SAC/TC283/SC2)委员 (2019- )
- Associate Editor, Frontiers in Marine Science (2019- )
- Journal reviewer: Continental Shelf Research; Deep-Sea Research; Geophysical Research Letters, Global Environmental Change; Journal of Geophysical Research; Journal of Marine Systems; Limnology and Oceanography; Marine Chemistry; Marine Pollution Bulletin; Scientific Report; Water Resources Research, etc.
海洋化学专门化实验 本科生
分析化学 本科生
海洋生物地球化学循环 研究生
高级化学海洋学 研究生
Marine Chemistry Experiments for undergraduate students
Analytical Chemistry for undergraduate students
Ocean Biogeochemical Cycles for graduate students
Advanced Chemical Oceanography for gratuate students
博士研究生
2023级博士生 卜德志
2022级博士生 杨 毅
硕士研究生
2024级硕士生 郝文韬
2023级硕士生 庞金堰
2022级硕士生 雷诗萍
2021级硕士生 安书奇 《大风事件的综合效应对南海北部春夏季表层CO2分压的影响》,2024年
2020级硕士生 孙上云 《南海海盆中深层水碳酸盐空间分布特征及生物地球化学过程影响研究》,2023年
2019级硕士生 杨 毅 《西北太平洋碳酸盐系统及海表pCO2时空变化初探》,2022年
2018级硕士生 高 瑛 《北太平洋碳汇的年代际变化及主要调控机制研究》,2021年
2016级硕士生 宋 雪 《珠江口碳酸盐系统的年际变化》,2019年
2015级硕士生 苏锡宝 《南海海盆溶解氧和碳酸盐系统的空间分布及主要调控机制》,2019年
2014级硕士生 姚振童 《长江口和东海陆架碳和营养盐动力学及其对海洋酸化的影响》,2019年
2012级硕士生 胡 玲 《河口沉积物的厌氧反应及其对碳酸盐系统的影响》,2015年
本科生
2019级本科生 陈佳萱《基于室内培养实验的镁橄榄石在海水中的溶解动力学研究》,2023年
2015级本科生 罗遥华《秋季东海碳酸盐和营养盐参数的空间分布和主要调控机制》,2019年
2013级本科生 张立洁《小型人工湖泊富营养化评价与成因分析——以厦门大学翔安校区人工湖为例》,2017年
2010级本科生 计雪婷《湖泊碳酸盐系统的周日变化》,2014年
2010级本科生 张海舟《大气沉降对南边缘海上层海洋营养盐和碳的生物地球化学的影响》,2014年
主持的项目
国家自然科学基金专项项目,42141001,中国海碳源汇格局、清单及不确定性,298万元,2022/01-2025/12
中国科学院战略性先导科技专项(B类)子课题,XDB42030401,浅海高生物多样性形成的地化过程与机制,110万元,2020/01-2024/12
国家自然科学基金面上项目,41876080,珠江口水体酸化与缺氧的耦合机制,62万元,2019/01-2022/12
国家海洋局全球变化与海-气相互作用专项,GASI-03-01-02-02,热带海洋生物泵及其对海-气CO2通量的调控作用,260万元,2013/01-2016/12
国家自然科学基金青年科学基金项目,41206061,南海北部上升流中碳酸钙饱和度及其影响因素研究,24万元,2013/01-2015/12
台湾“中央”研究院博士后基金,南海北部的碳酸盐系统及碳收支,2010/07-2012/06
Air-sea carbon fluxes, budget and uncertainties in China Seas, National Science Foundation of China (42141001), 2022-2025
Geochemical process and mechanism of formation of high biodiversity in shallow sea, Strategic Priority Research Program of Chinese Academy of Sciences (XDB42030401), 2020-2024
The coupling mechanism of ocean acidification and hypoxia in the Pearl River estuary, National Science Foundation of China (41876080), 2019-2022
Biological pump and its control on the air-sea CO2 fluxes in tropical oceans, National Programme on Global Change and Air-Sea Interaction, State Oceanic Administration People’s Republic of China (GASI-03-01-02-02), 2013-2016
Saturation state of calcium and major controls in the upwelling in the northern South China Sea, National Science Foundation of China (41206061), 2013-2015
Carbonate System and Carbon budget of the Northern South China Sea shelf, Academia Sinica Postdoc Fellowship, 2010-2012.
参与的项目
国家重点研发计划课题,2022YFF0801402,精细化海气界面观测技术与通量过程认知,2022/10-2027/09
国家自然科学基金重点项目,41730533,中尺度气旋式涡旋作用下有机碳与生源硅输出通量的动态变化与耦合:涡旋演化与亚中尺度过程的重要性,2018/01-2022/12
香港研究资助局,21-602/16-R,香港及邻近海域富营养化、缺氧及生态后果的诊断和预测:物理-生物地球化学-污染耦合研究,2017/01-2021/12
科技部国家重大科学研究计划,2015CB954001,南海CO2源汇格局及其主要生物地球化学调控,2015/01-2019/12
国家海洋局海洋公益性科研经费项目子任务,201505003-3,卫星遥感观测与现场观测的相互评价技术,2015/01-2018/12
国家自然科学基金重大研究计划,91328202,南海深部生物地球化学-物理耦合过程对海-气CO2通量的调控,2014/01-2017/12
国家海洋局海洋公益性科研经费项目子任务,200905012-5,中国近海CO2浮标监测技术及不同时空尺度CO2通量评估方法与标准建立,2009/10-2013/10
Refined Air-Sea Interface Observation Technology and Flux Process Cognition, National Key Research and Development Project (2022YFF0801402), 2022-2027
Transient enhancement and decoupling of carbon export vs. opal in cyclonic eddies: overprints of submesoscale interactions and eddy evolution, National Science Foundation of China Key project (41730553), 2018-2022
Diagnosis and prognosis of intensifying eutrophication, hypoxia and the ecosystem consequences around Hong Kong waters: coupled physical-biogeochemical pollution studies, Hong Kong Research Grants Council (T21-602/16-R), 2017-2021
CO2 fluxes in South China Sea and major biogeochemical controls, National Basic Research Program, Ministry of Science and Technology of People’s Republic of China (2015CB954001), 2015-2019
Inter-verification Technology of Satellite Remote Sensing and Field Observation, Marine Public Welfare Research Fund Project, State Oceanic Administration (201505003-3), 2015-2018
Deep ocean biogeochemical processes and its coupled physical dynamics control the sea-air-CO2 fluxes in the basin area of the South China Sea, National Science Foundation of China Key project (91328202), 2014-2017
Buoy monitoring technology of oceanic CO2 and evaluation of multi-scale air-sea CO2 fluxes in China Sea, Marine Public Welfare Research Fund Project, State Oceanic Administration (200905012-5), 2009-2013
2020年浙江省科学技术进步奖一等奖(2019-J-1-006-R04,排名第四)
2009年教育部高等学院科学研究优秀成果奖自然科学类一等奖(2009-028,排名第四)
2009, Outstanding Achievements of Natural Science Research (Ministry of Education of China) (1st Award, 4th author)
2019, Zhejiang Science and Technology Progress Award (1st award, 4th author)
郭香会教授是戴民汉院士领衔的海洋碳循环研究组(Ocean Carbon Group, OCG, http://ocg.xmu.edu.cn/)成员,主要研究方向为海洋碳酸盐系统、海-气相互作用、海洋CO2源汇、海洋酸化等。 每年招收博士生、硕士生和博士后。欢迎有有兴趣的年轻人加盟!
OCG隶属于厦门大学近海海洋环境科学国家重点实验室。她是于1999年戴民汉教授回国启动国家杰出青年基金课题(“珠江三角洲及其邻近的南海北部海域中碳的生物地球化学循环研究”)以后逐步发展起来的。 研究组以海洋生源要素生物地球化学为主要研究方向,研究海洋碳循环及其与氮、磷、硅、铁等生源要素的耦合与非耦合关系,揭示海洋生物地球化学与气候变化、生态环境的相互作用关系,为海洋的可持续发展和利用提供科技支撑。
20余年来,OCG围绕河口、边缘海海-气界面二氧化碳的交换、海洋无机碳/有机碳生物地球化学、海洋颗粒物动力学及其对元素生物地球化学循环的作用、痕量金属和放射性核素(Th, Ra, Pu等)地球化学及其环境效应等内容,先后承担了多项国家自然科学基金委(NSFC)面上项目、NSFC重点项目、NSFC重大项目、创新研究群体科学基金,科技部“973”、“863”项目及课题的研究。OCG研究组已建立了国际标准的海洋化学分析测试方法,在应用同位素(含放射性和稳定同位素)示踪定量海洋生物地球化学过程、物理海洋-生物地球化学耦合研究等方面形成特色,相关研究在国内外均享有嘉誉。研究组成员已Science, Nature Geoscience, Nature Communications, Geochimica et Cosmochimica Acta, Earth and Planetary Science Letters, Limnology and Oceanography, Journal of Geophysical Research, Global Biogeochemical Cycles, Geophysical Research Letters, Environmental Science & Technology, Marine Chemistry, Biogeosciences等国际主流期刊发表文章200多篇。
OCG奉行“追求卓越、超越梦想”的人生目标、“鼓励个性、崇尚协作”的团队精神及“享受生活、忘情工作”的生活和工作方式,并倾力打造平等、宽松、和谐、卓越的科研和学习环境。OCG还是一个高度国际化的研究课题组,课题组的所有老师均有海外学习和研究经历,并具备卓越的国际合作与交流能力;课题组的学生和博士后组成多样性高,外籍生占比高,在学期间均有参加国际会议和出访学习的机会,更具有常态化的与海内外学术名师面对面的接触与交流的机会。OCG研究组亦竭力为学生提供较为优厚的生活、学习和科研环境。
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Abed El Rahman Hassoun*, Adrienne Sutton, Sam Dupont, Xianghui Guo and Jose Martin Hernandez-Ayon, 2025. Editorial: Time-series observations of ocean acidification: a key tool for documenting impacts on a changing planet, Frontiers in Marine Sciences, 12: 1581134. doi: 10.3389/fmars.2025.1581134
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Weidong Zhai*, Xianghui Guo, Yan Bai, Xianqiang He, Kai Tang and Minhan Dai, 2025. Surface CO2 partial pressure and air-sea CO2 flux on the China side of the South Yellow Sea based on multiple-year underway measurements during 2005-2011 and comparison with results for 2011-2018, Progress in Oceanography, 234, 103466, h ttps://doi.org/10.1016/j.pocean.2025.103466
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Qingquan Liang, Chao Wang*, Yan Li, Xufeng Xie, Xianghui Guo, Xin Liu, Weilei Wang, Zhisheng Zhang, Weidong Guo*, 2025, Kuroshio-derived anticyclonic eddies drive lateral transport and transformation of oceanic dissolved organic matter along the continental slope of South China Sea, Journal of Geophysical Research: Oceans, 130, e2024JC021718, https://doi.org/10.1029/2024JC021718.
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Yueting Deng, Xianghui Guo, Xiaosong Zhao, Haitao Zhou, Lichun Li, Yougan Chen and Xudong Zhu*, 2025, Coastal macroalgae aquaculture reduces carbon dioxide emission in a subtropical enclosed bay: Insight from eddy covariance measurements, Agriculture, Ecosystem and Environment, 385, 109576, https://doi.org/10.1016/j.agee.2025.109576
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Axiang Cao, Qian Liu*, Jing Zhang, Zhengsong Liu, Jingling Ren, Yihua Cai, Kuanbo Zhou, Xianghui Guo and Xin Liu, 2025. Spatiotemporal variation of dissolved rare earth elements in the North Pacific Subtropical Gyre: Influence of biogeochemical cycling and application in tracing deep water, Global and Planetary Change, 246, 104719, https://doi.org/10.1016/j.gloplacha.2025.104719
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Yanmin Wang, Xianghui Guo, Guizhi Wang, Lifang Wang, Tao Huang, Yan Li, Zhe Wang and Minhan Dai*, 2024, Assessment of nutrient cycling in an intensive mariculture system, Marine Pollution Bulletin, 209, 117085, https://doi.org/10.1016/j.marpolbul.2024.117085.
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Shiping Lei, Dezhi Bu, Xianghui Guo*, Yi Xu, Yi Yang, Shuqi An, Yan Li, Jinyan Pang and Kuanbo Zhou, Mitigation of hypoxia and ocean acidification on the inner East China Sea shelf impacted by the 2023 summer drought, Marine Pollution Bulletin,207, 116830. https://doi.org/10.1016/j.marpolbul.2024.116830
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Hangqian Li, Shu Wang, Shulu Zheng, Tengyue Fang, Huilin Shu, Yi Xu, Xianghui Guo, Eric P. Achterberg, Liyang Zhan and Jian Ma*, 2024, Underway mapping of coastal seawater pH using an automated shipboard analyzer with spectrophotometric detection, Talanta, 278, 126532, https://doi.org/10.1016/j.talanta.2024.126532
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Axiang Cao, Qian Liu, Jing Zhang, Alan M. Shiller, Yihua Cai, Ruifeng Zhang, Melissa Gibert, Xianghui Guo and Zhiyu Liu, 2024. Dissolved rare earth elements in the North Pacific Subtropical Gyre: Lithogenic sources and water mass mixing, Geochimica et Cosmochimica Acta, 372, 42-61. https://doi.org/10.1016/j.gca.2024.02.018
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Youchang Zheng, Jingwen Huang, Yang Feng, Huijie Xue, Xiaohui Xie, Hanqin Tian, Yuanzhi Yao, Lin Luo, Xianghui Guo and Yonglin Liu, 2024, The effect of seasonal wind regimes on the evolution of hypoxia in Chesapeake Bay: Results from a terrestrial-estuarine-ocean biogeochemical modelling system. Progress in Oceanography, 222, 103207, https://doi.org/10.1016/j.pocean.2024.103207.
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Canru Li, Xiangdong Liu, Yan Li, Yuan Jiang, Xianghui Guo, David A. Hutchins, Jia Ma, Xin Lin* and Minhan Dai, 2024, The interactions between olivine dissolution and phytoplankton in seawater: Potential implications for ocean alkalization, Science of the Total Environment, 912, 168571, https://doi.org/10.1016/j.scitotenv.2023.168571.
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Zigeng Song, Shujie Yu, Yan Bai*, Xianghui Guo, Xianqiang He, Weidong Zhai and Minhan Dai, 2023. Construction of a high spatiotemporal resolution dataset of satellite-derived pCO2 and air-sea CO2 flux in the South China Sea (2003–2019), IEEE Transaction on Geoscience and Remote Sensing, DOI 10.1109/TGRS.2023.3306389. Obline published at Early access area on IEEE Xplore at August 19, 2023.
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Shujie Yu, Zigeng Song, Yan Bai*, Xianghui Guo, Xianqiang He, Weidong Zhai, Huade Zhao and Minhan Dai, 2023. Satellite-estimated air-sea CO2 fluxes in the Bohai Sea, Yellow Sea, and East China Sea: Patterns and variations during 2003–2019, Science of the Total Environment, 904, 166804, https://doi.org/10.1016/j.scitotenv.2023.
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Xianghui Guo*, Jianzhng Su, Liguo Guo, Yan Li, Zhentong Yao, Lifang Wang and Minhan Dai, Coupling of carbon and oxygen in the Pearl River plume in summer: Upwelling, hypoxia, reoxygenation and enhanced acidification, Journal of Geophysical Research: Oceans, 128, e2022JC019326. https://doi.org/10.1029/2022JC019326.
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Minhan Dai*, Yawei Luo*, Eric P. Achterberg, Thomas J. Browning, Yihua Cai, Zhimian Cao, Fei Chai, Bingzhang Chen, Matthew J. Church, Dongjian Ci, Chuanjun Du, Kunshan Gao, Xianghui Guo, Zhendong Hu, Shuh-Ji Kao, Edward A. Laws, Zhongping Lee, Hongyang Lin, Qian Liu, Xin Lin, Weicheng Luo, Feifei Meng, Shaoling Shang, Dalin Shi, Hiroaki Saito, Luping Song, Xianhui Sean Wan, Yuntao Wang, Wei-Lei Wang, Zuozhu Wen, Peng Xiu, Jing Zhang, Ruifeng Zhang, and Kuanbo Zhou, 2023. Upper ocean biogeochemistry of the oligotrophic North Pacific Subtropical Gyre: From nutrient source to carbon export, Review of Geophysics, 61, e2022RG000800. https://doi.org/10.1029/2022RG000800
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Zhixuan Wang, Guizhi Wang, Xianghui Guo, Yan Bai, Yi Xu, and Minhan Dai*, 2023. Spatial reconstruction of long-term (2003–2020) sea surface pCO2 in the South China Sea using a machine learning based regression method aided by empirical orthogonal function analysis, Earth System Science Data, 15 (4), 1711-1731, https://doi.org/10.5194/essd-15-1711-2023.
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郭香会,戴民汉,罗杰•兰德尔•道甘•瑞维尔——全球变暖的先知和科学大家,戴民汉,赵美训主编《化学海洋学风云人物》,神奇海洋的发现之旅系列丛书,海洋出版社,2023年3月,P19-43.
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Yiping Zhang, Xianghui Guo, Xudong Zhu*, 2023. Strong diurnal variability of carbon dioxide flux over algae-shellfish aquaculture ponds revealed by eddy covariance measurements, Agriculture, Ecosystems and Environment, 348, 108426, https://doi.org/10.1016/j.agee.2023.108426.
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刘春兰, 郭香会, 邓永智, 唐甜甜, 李春园, 杨进宇, 庄敏, 蔡毅华*, 2022,“双一流”建设背景下海洋化学专门化实验课程教学改革实践与成效, 《高教学刊教育强国专刊》, 第8卷, 第S1期, 30-33转38页.
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Zhixuan Wang, Guizhi Wang*, Xianghui Guo, Jianyu Hu and Mimhan Dai, 2022, Reconstruction of high-resolution sea surface salinity over 2003-2020 in the South China Sea using the machine learning algorithm LightGBM Model, Remote Sensing, 14(23), 6147, https://doi.org/10.3390/rs14236147.
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海洋行业标准, HY/T 0343.4-2022, 海—气二氧化碳交换通量监测与评估技术规程 第4部分:基于分压差的通量评估(编制人:郭香会, 赵化德, 郑楠, 王桂芝, 郭利果, 徐雪梅, 戴民汉), 2022年9月26日发布,2023年1月1日起实施.
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海洋行业标准, HY/T 0343.7-2022, 海—气二氧化碳交换通量监测与评估技术规程 第7部分:现场监测二氧化碳分压数据处理(编制人:王桂芝, 赵化德, 郑楠, 郭香会, 许懿, 徐雪梅, 戴民汉), 2022年9月26日发布,2023年1月1日起实施.
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Wei Yang, Xianghui Guo, Zhimian Cao, Jianzhong Su, Liguo Guo, Lifang Wang, Yi Xu, Tao Huang, Yan Li, Yanping Xu, Zhe Wang, Guizhi Wang and Minhan Dai*, 2022, Carbonate dynamics in a tropical coastal system in the South China Sea featuring upwelling, river plumes and submarine groundwater discharge, Science China-Earth Science, 65, 2267-2284, https://doi.org/10.1007/s11430-021-9963-8.
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杨威,郭香会,曹知勉,苏建钟,郭利果,王丽芳,许懿,黄韬,李岩,许艳苹,王哲,王桂芝,戴民汉*,2022,南海西北部海域夏季碳酸盐系统动态变化特征及调控机制:沿岸上升流、河流冲淡水及地下水输入的共同作用,中国科学: 地球科学,52: 2373-2390, doi: 10.1360/N072021-0115.
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Yang Feng*, Jinweng Huang, Yan Du, Karthik Balaguru , Weiwei Ma, Qingyu Feng, Xiuquan Wan, Youchang Zheng, Xianghui Guo, and Shuqun Cai, 2022, Drivers of phytoplankton variability in and near the Pearl River estuary, South China Sea during Typhoon Hato (2017): A numerical study. Journal of Geophysical Research: Biogeosciences, 127, e2022JG006924. https://doi.org/10.1029/2022JG006924.
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Guang Gao, Tifeng Wang, Jiazhen Sun, Xin Zhao, Lifang Wang, Xianghui Guo and Kunshan Gao*, 2022. Contrasting responses of phytoplankton productivity between coastal and offshore surface water in the Taiwan Strait and the South China Sea to short-term seawater acidification, Biogeosciences, 19, 2795-2804, https://doi.org/10.5194/bg-19-2795-2022.
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Xiaobo Jin*, Chuanlian Liu*, Juan Xu, Xianghui Guo, 2022, Coccolithophore abundance, degree of calcification, and their contribution to particulate inorganic carbon in the South China Sea, Journal of Geophysical Research: Biogeosciences, 127, e2021JG006657, https://doi.org/10.1029/2021JG006657
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Xianghui Guo, Hongjie Wang, Richard A. Feely, Arnaud Laurent, Nina Bednaršek, eds., 2022, Acidification and Hypoxia in Marginal Seas. Lausanne: Frontiers Media SA. doi: 10.3389/978-2-88976-253-8. https://www.frontiersin.org/research-topics/12104/acidification-and-hypoxia-in-marginal-seas
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Xianghui Guo*, Nina Bednaršek, Hongjie Wang, Richard A. Feely, Arnaud Laurent, 2022, Editorial: Acidification and hypoxia in marginal seas, Frontiers in Marine Science, 9, 861850. doi: 10.3389/fmars.2022.861850
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Peixuan Wang, Edward Laws, Yongzhi Wang, Jixin Chen, Xue Song, Ruiping Huang, Tifeng Wang, Xiangqi Yi, Jiazhen Sun, Xianghui Guo, Xin Liu*, Kunshan Gao and Bamgqin Huang, 2022, Elevated pCO2 changes community structure and function by affecting phytoplankton group-specific mortality, Marine Pollution Bulletin, 175, 113362, doi: https://doi.org/10.1016/j.marpolbul.2022.113362.
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Xianghui Guo*, Zhentong Yao, Ying Gao, Yaohua Luo, Yi Xu, and Weidong Zhai, 2021. Seasonal variability and future projection of ocean acidification on the East China Sea shelf off the Changjiang estuary. Frontiers in Marine Science, 8, 770034. doi: 10.3389/fmars.2021.770034
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Chao Wang, Weidong Guo*, Yan Li, Randy A. Dahlgren, Xianghui Guo, Liyin Qu, Wei Zhuang, 2021. Temperature-regulated turnover of chromophoric dissolved organic matter in global dark marginal basins, Geophysical Research Letters, 48 (19), e2021GL094035, https://doi.org/10.1029/2021GL094035.
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王丽芳*, 黄韬, 杜川军, 郭香会,2021. 不同海水营养盐现场连续观测系统的比较研究, 热带海洋学报 , 40(3),103-113, doi:10.11978/2020087.
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Wei Yang, Xianghui Guo, Zhimian Cao, Yi Xu, Lifang Wang, Liguo Guo, Tao Huang, Yan Li, Yanping Xu, Jianping Gan and Minhan Dai*, 2021. Seasonal dynamics of the carbonate system under complex circulation schemes on a large continental shelf: the northern South China Sea, Progress in Oceanography, 197, 102630, https://doi.org/10.1016/j.pocean.2021.102630.
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杨进宇*, 汤锦铭, 郭香会, 高树基,2021. 中国边缘海氮循环过程和源汇格局—以南海为例,海洋与湖沼,52(2),14-322.
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Tengxiang Xie, Minhan Dai*, Faisal Hamzah, Zhimian Cao and Xianghui Guo, 2021, Sources and transport of plutonium in the Indo-Pacific Intersection: Implications for South China Sea freshwater transport into Indonesian Seas, Chemical Geology, 580, 120367, doi: https://doi.org/10.1016/j.chemgeo.2021.120367
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Guizhi Wang*, Shengyao Sun, Ehui Tan, Liwen Chen, Lifang Wang, Tao Huang, Kuanbo Zhou, Weifang Chen and Xianghui Guo, 2021, A strong summer intrusion of the Kuroshio and residence time in the northern South China Sea revealed by radium isotopes, Progress in Oceanography, 197, 102619, https://doi.org/10.1016/j.pocean.2021.102619.
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Guizhi Wang*, Samuel S. P. Shen*, Yao Chen, Yan Bai, Huan Qin, Zhixuan Wang, Baoshan Chen, Xianghui Guo and Minhan Dai, 2021, Feasibility of reconstructing the summer basin-scale sea surface partial pressure of carbon dioxide from sparse in situ observations over the South China Sea, Earth System Science Data, 13(3), 1403-1417, https://doi.org/10.5194/essd-13-1403-2021.
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Yingxu Wu, Minhan Dai, Xianghui Guo*, Jinshun Chen, Yi Xu, Xu Dong, Junwei Dai and Zhirong Zhang, 2021. High-frequency time-series autonomous observations of sea surface pCO2 and pH, Limnology and Oceanography, 66(3), 588-606, https://doi.org/10.1002/lno.11625.
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Zhimian Cao, Wei Yang, Yangyang Zhao, Xianghui Guo, Zhiqiang Yin, Chuanjun Du, Huade Zhao, Minhan Dai*, 2020. Diagnosis of CO2 dynamics and fluxes in global coastal oceans. National Science Review, 7(4): 786-797. doi:10.1093/nsr/nwz105.
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Ying Gao, Lifang Wang, Xianghui Guo*, Yi Xu, Li Luo, 2020, Atmospheric wet and dry deposition of dissolved inorganic nitrogen to the South China Sea, Science China-Earth Sciences, 63(9), 1339-1352. doi: 10.1007/s11430-019-9612-2.
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Xianghui Guo*, Xue Song, Ying Gao, Yaohua Luo, Yi Xu, Tao Huang, Lifang Wang, 2020. Inter-annual variability of the carbonate system in the hypoxic upper Pearl River estuary in winter, Frontiers in Marine Sciences, 7, 594725. doi: 10.3389/fmars.2020.594725.
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Qian Li, Xianghui Guo*, Weiding Zhai, Yi Xu and Minhan Dai, 2020, Partial pressure of CO2 and air-sea CO2 fluxes in the South China Sea: synthesis of an 18-year dataset, Progress in Oceanography, 182, 102272. doi: 10.1016/j.pocean.2020.102272.
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Tianqi Xiong, Pengfei Liu, Weidong Zhai*, Yan Bai, Dong Liu, Nan Zheng, Jinwen Liu, Xianghui Guo, Tianyu Cheng, Haixia Zhang, Songyin Wang, Xianqiang He, Jianfang Chen and Ru Li, 2019. Export flux, biogeochemical effects, and the fate of a terrestrial carbonate system: from Changjiang (Yangtze River) estuary to the East China Sea, Earth and Space Science, 6, 2115-2141. https://doi.org/ 10.1029/2019EA000679.
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Qian Liu, Xu Dong, Jinshun Chen, Xianghui Guo, Zhirong Zhang,Yi Xu, Ningli Huang, Minhan Dai*, 2019. Diurnal to interannual variability of seasurface pCO2 and its controls in a turbid tidal-driven nearshore system in the vicinity of the East China Sea based on buoy observations. Marine Chemistry, 216, 103690. https://doi.org/10.1016/j.marchem.2019.103690.
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Steve E. Lohrenz*, Wei-Jun Cai, Sumit Chakraborty, Wei-Jen Huang, Xianghui Guo, Roying He, Zuo Xue, Katja Fennel, S. Howden, and Hanqin Tian, 2018, Satellite estimation of coastal pCO2 and air-sea fluxes of carbon dioxide in the northern Gulf of Mexico, Remote Sending of Environment, 207, 71-83. https://doi.org/10.1016/j.rse.2017.12.039.
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刘茜, 郭香会, 尹志强, 周宽波, Elliott Gareth ROBERTS, 戴民汉*, 2018. 中国邻近边缘海碳通量研究现状与展望, 中国科学-地球科学, 48 (11), 1422-1443.
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Qian Liu, Xianghui Guo, Zhiqiang Yin, Kuanbo Zhou, Elliot Gareth Robert and Minhan Dai*, 2018, Carbon fluxes in China Seas: An overview and perspective, Science China -Earth Science, 161 (11), 1564-1582. https://doi.org/10.1007/s11430-017-9267-4.
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Wei Qian, Jianping Gan, Jinwen Liu, Biyan He, Zhongming Lu, Xianghui Guo, Deli Wang, Liguo Guo, Tao Huang and Minhan Dai*, 2018. Current status of emerging hypoxia in a eutrophic estuary: the lower reach of the Pearl River Estuary, China. Estuarine, Coastal and Shelf Science, 205: 58-67. https://doi.org/10.1016/j.ecss.2018.03.004.
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郭香会*,2017. 何为河口CO2源汇的主控因子,《10000个科学难题 海洋科学卷》,科学出版社,749-753页.
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Jianzhong Su, Minhan Dai*, Biyan He, Lifang Wang, Jianping Gan, Xianghui Guo, Huade Zhao and Fengling Yu, 2017. Tracing the origin of the oxygen-consuming organic matter in the hypoxic zone in a large eutrophic estuary: the lower reach of the Pearl River Estuary, China. Biogeosciences, 14, 4085-4099. https://doi.org/10.5194/bg-14-4085-2017.
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Xiaobo Jin, Chuanlian Liu*, Alex J. Poulton, Minhan Dai and Xianghui Guo, 2016. Coccolithophore responses to environmental variability in the South China Sea: species composition and calcite content, Biogeosciences, 13(16), 4843-4861. doi:10.5194/bg-13-4843-2016.
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Pinghe Cai*, Xiangming Shi, Qingquan Hong, Qing Li, Lingfeng Liu, Xianghui Guo and Minhan Dai, 2015. Using 224Ra/228Th disequilibrium to quantify benthic fluxes of dissolved inorganic carbon and nutrients into the Pearl River Estuary, Geochemica et Cosmochimica Acta, 170, 188-203. http://doi:org/10.1016/j.gca.2015.08.015.
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T. F. George Wong*, Xiaoju Pan, Kuo-Yuan Li, Fuh-Hwo Shiah, Tung-Yuan Ho and Xianghui Guo, Hydrography and nutrient dynamics in the Northern South China Sea Shelf-sea (NoSoCS), Deep-Sea Research II, 117, 23-40. http://dx.doi.org/10.1016/j.dsr2.2015.02.023.
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Xianghui Guo* and George T.F. Wong, Carbonate chemistry in the northern South China Sea shelf-sea in June 2010, 2015, Deep-Sea Research II, 117, 119-130. http://dx.doi.org/10.1016/j.dsr2.2015.02.024.
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Xianghui Guo, Weidong Zhai, Minhan Dai*, Chao Zhang, Yan Bai, Yi Xu, Qian Li and Guizhi Wang, 2015, Air–sea CO2 fluxes in the East China Sea based on multiple-year underway observations, Biogeosciences, 12(18), 5495-5514. doi: 10.5194/bg-12-5495-2015.
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Biyan He, Minhan Dai*, Weidong Zhai, Xianghui Guo and Lifang Wang, 2014. Hypoxia in the upper reaches of the Pearl River Estuary and its maintenance mechanisms: A synthesis based on multiple year observations during 2000-2008. Marine Chemistry, 167, 13-24. doi: 10.1016/j.marchem.2014.07.003.
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Minhan Dai*, Zhimian Cao, Xianghui Guo, Weidong Zhai, Zhiyu Liu, Zhiqiang, Yin, Yanping Xu, Jianping Gan, Jianyu Hu and Chuanjun Du, 2013. Why are some marginal seas sources of atmospheric CO2? Geophysical Research Letters, 40(10), 2154-2158. doi:10.1002/grl.50390.
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戴民汉*、郭香会和翟惟东,2013. 《中国海洋地理》第5章第3节中国河口化学,科学出版社,220-231.
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Weidong Zhai, Minhan Dai*, Baoshan Chen, Xianghui Guo, Qian Li, Shaoling Shang, Caiyun Zhang, Wei-Jun Cai and Dongxiao Wang, 2013. Seasonal variations of sea-air CO2 fluxes in the largest tropical marginal sea (South China Sea) based on multiple-year underway measurements, Biogeosciences, 10, 7775-7791. doi: 10.5194/bg-10-7775-2013.
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Xianghui Guo, Wei-Jun Cai*, Wei-Jen Huang, Yongchen Wang, Feizhou Chen, Michael C. Murrell, Steve Lohrenz, Li-Qing Jiang, Minhan Dai, Justin Hartmann and Randy Culp, 2012. CO2 dynamics and community metabolism in the Mississippi River plume, Limnology and Oceanography, 57 (1), 1-17. doi: 10.4319/lo.2012.57.1.0001.
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Wei-Jun Cai*, Xinping Hu, Wei-Jen Huang, Michale C Murrell, John C Lehrter, Steven E Lohrenz, Wen-Chen Chou, Weidong Zhai, James T. Hollibaugh, Yongchen Wang, Pingsan Zhao, Xianghui Guo, Kjell Gundersen, Minhan Dai and Gwo-Ching Gong, 2011. Acidification of subsurface coastal waters enhanced by eutrophication, Nature-Geoscience, 4 (11), 766-770. doi:10.1038/ngeo1297.
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Xinping Hu, Wei-Jun Cai*, Yong-Chen Wang, Xianghui Guo and Shangde Luo, 2011. Geochemical environments of continental shelf-upper slope sediments in the northern Gulf of Mexico. Palaeogeography, Palaeoclimatology, Palaeoecology, 312 (3-4), 265-277. doi:10.1016/j.palaeo.2011.04.010.
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郭香会*和蔡卫君,2011. 陆源物质的输入如何影响近岸海区的CO2源汇格局?《10000个科学难题》,科学出版社,919-921页.
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Li-Qing Jiang*, Wei-Jun Cai, Richard A Feely, Yongchen Wang, Xianghui Guo, Dwight K Gledhill, Xinping Hu, Felipe Arzayus, Feizhou Chen, Justin Hartmann and Long-Jun Zhang, 2010. Carbonate mineral saturation states along the U.S. southeastern coast. Limnology and Oceanography, 55 (6), 2424-2432. doi: 10.4319/lo.2010.55.6.2424.
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Xinping Hu*, Wei-Jun Cai, Yongchen Wang, Shangde Luo and Xianghui Guo, 2010. Pore-water geochemistry of two contrasting brine-charged seep sites in the northern Gulf of Mexico continental slope, Marine Chemistry, 118 (3-4), 99-107. doi:10.1016/j.marchem.2009.11.006.
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Xianghui Guo, Minhan Dai*, Weidong Zhai, Wei-Jun Cai, and Baoshan Chen, 2009. CO2 flux and seasonal variability in a large subtropical estuarine system, the Pearl River Estuary, China. Journal of Geophysical Research, 114, G03013. doi:10.1029/2008JG000905.
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Minhan Dai*, Lifang Wang, Xianghui Guo, Weidong Zhai, Qing Li, Biyan He and Shuh-Ji Kao, 2008. Nitrification and inorganic nitrogen distribution in a large perturbed river/estuarine system: the Pearl River Estuary, China. Biogeosciences, 5 (5), 1227-1244. doi:10.5194/bg-5-1227-2008.
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Wei-Jun Cai*, Xianghui Guo, Chen-Tung Arthur Chen, Minhan Dai, Longjun Zhang, Steven Lohrenz, Weidong Zhai and Yongchen Wang, 2008. A comparative overview of weathering intensity and HCO3- flux of the world’s major rivers with emphasis on the Changjiang, Huanghe, Pearl and Mississippi Rivers. Continental Shelf Research, 28 (12), 1538-1549. doi:10.1016/j.csr.2007.10.014.
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Xianghui Guo, Wei-Jun Cai*, Weidong Zhai, Minhan Dai and Yongchen Wang, 2008. Seasonal variations in the inorganic carbon system in the Pearl River (Zhujiang) estuary. Continental Shelf Research, 28 (12), 1424-1434. doi:10.1016/j.csr.2007.07.011
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Weidong Zhai, Minhan Dai* and Xianghui Guo, 2007. Carbonate system and CO2 degassing fluxes in the inner estuary of Changjiang (Yangtze) River, China. Marine Chemistry, 107 (3), 342-356. doi:10.1016/j.marchem.2007.02.011.
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Minhan Dai*, Xianghui Guo, Weidong Zhai, Liangying Yuan, Benwang Wang, Lifang Wang, Pinghe Cai, Tiantian Tang and Wei-Jun Cai, 2006. Oxygen depletion in the upper reach of the Pearl River estuary during a winter drought. Marine Chemistry, 102 (1-2), 159-169. doi:10.1016/j.marchem.2005.09.020.
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