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庄燕培

发布日期:2024-05-11    作者:     来源:     点击:

个人基本信息:

姓名:庄燕培

国籍:中国

性别:男

职称:教授

最高学历:博士

所属专业:海洋化学

毕业院校:同济大学

研究方向:北冰洋生物碳泵过程及其对海冰融化的响应机制

办公地点:集诚楼B 极地与海洋研究院408

邮箱:zhuangyp@jmu.edu.cn

主讲课程:极地海洋学、海洋生物地球化学

主要研究领域:极地与近海海洋生态系统及碳循环过程对气候变化和人类活动的响应

个人简介:

“闽江学者”特聘教授,福建省杰出青年基金获得者,金砖国家“海洋与极地科学”专家组成员,入选福建省/厦门市高层次人才、厦门市第五批杰出青年等人才计划,2016至今任政府间海洋学委员会“Trends PO”工作组成员,主要从事海洋生态与碳循环研究。先后主持国家自然科学基金3项、国家重点研发计划课题1项等10余项课题。先后九次参加南北极科学考察,是国内参加北极科考最多的人员之一。在ScienceGlobal Biogeochemical Cycles等国内外主流期刊发表论文58篇,其中第一/通讯作者论文17篇,编写专著3部,获海洋科学技术一等奖、厦门市科学技术进步一等奖各1项

教育背景:

2017.09-2020.11 同济大学 海洋科学专业 博士

2009.09-2012.07 国家海洋局第二海洋研究所 海洋化学专业 硕士

2005.09-2009.07 厦门大学 海洋化学专业 学士

工作经历:

集美大学,教授2021-至今

自然资源部第二海洋研究所,副研究员2019-2021

国家海洋局第二海洋研究所,助理研究员2014-2019

国家海洋局第二海洋研究所,研究实习员2012-2014

法国巴黎第六大学,访问学者2015/01-2015/02

德国海岸带研究所,访问学者2019/04-2019/05

荣誉获奖:

1.“闽江学者”特聘教授

2. 福建省杰出青年基金获得者

3. 福建省/厦门市高层次人才

4. 厦门市第五批杰出青年等人才计划

5. 海洋科学技术一等奖

6. 厦门市科学技术进步一等奖

近期主要论著(按年份排列):

2024

54. Luo, Z., Hii, K. S., Zhuang, Y., & Mohamed, H. F. (2024). The response of microalgae and plankton to climate change and human activities. Frontiers in Marine Science, 11, 1366749.

53. Liu, J., Chen, L., Ling, M., Zhuang, Y., Zhang, J., Ye, W., ... & Zhan, L. (2024). Potential contributions of ammonia‐oxidizing microorganisms to the distributions of nitrous oxide in the northern Bering Sea. Journal of Geophysical Research: Oceans, 129(2), e2023JC020677.

52. Bu, D., Zhu, Q., Li, J., Huang, J., Zhuang, Y*., Yang, W., & Qi, D. (2024). Mariculture may intensify eutrophication but lower N/P ratios: a case study based on nutrients and dual nitrate isotope measurements in Sansha Bay, southeastern China. Frontiers in Marine Science, 11, 1351657.

51. Schmidt, K., Graeve, M., Hoppe, C. J., Torres‐Valdes, S., Welteke, N., Whitmore, L. M., … & Zhuang, Y. (2024). Essential omega‐3 fatty acids are depleted in sea ice and pelagic algae of the Central Arctic Ocean. Global Change Biology, 30(1), e17090.

50. Zhang, Y., Wu, Y., Cai, W. J., Yi, X., Gao, X., Bi, H., ... & Qi, D. (2024). Sea‐ice loss accelerates carbon cycling and enhances seasonal extremes of acidification in the Arctic Chukchi Sea. Limnology and Oceanography Letters.

2023

49. Zhuang, Y., Li, Y., Liu, X., Tian, S., Wang, B., Ji, Z., Jin, H., Chen, J. (2023). Application of an optical nitrate profiler to high- and low-turbidity coastal shelf waters. Acta Oceanologica Sinica. doi: 10.1007/s13131-022-2038-9

48. Zhuang, Y., Li, Y., Chen, L., Jin, H., Qi, D., & Chen, J. (2023). Biogeochemical and physical controls on ammonium accumulation on the Chukchi shelf, western Arctic Ocean. Marine Environmental Research, 106084.

47. Zhang, Y., Zhuang, Y., Ji, Z., Chen, J., Bai, Y., Wang, B., & **, H. (2023). Impacts of Atlantic water intrusion on interannual variability of the phytoplankton community structure in the summer season of Kongsfjorden, Svalbard under rapid Arctic change. Marine Environmental Research, 192, 106195.

46. Cai, X., Zhuang, Y., Wu, Y., Lin, H., & Qi, D. (2023). Concentrations and controls of dissolved inorganic carbon in Arctic summer sea ice and adjacent surface seawaters. Marine Environmental Research, 106083.

45. Yang, W., Wu, Y., Cai, W. J., Ouyang, Z., Zhuang, Y., Chen, L., & Qi, D. (2023). Rapid changes in the surface carbonate system under complex mixing schemes across the Bering Sea: a comparative study of a forward voyage in July and a return voyage in September 2018. Frontiers in Marine Science, 10, 1107646.

44. Zhang, T., Hao, Q., **, H., Bai, Y., Zhuang, Y., Qi, D., & Chen, J. (2023). Increased DIN storage and ΔDIC/ΔDIN ratio in the subsurface water of the Canada Basin, 19902015. Journal of Geophysical Research: Oceans, 128(11), e2023JC019864.

2022

43. Qi, D., Ouyang, Z., Chen, L., Wu, Y., Lei, R., Chen, B., Zhuang, Y., ... & Cai, W. J. (2022). Climate change drives rapid decadal acidification in the Arctic Ocean from 1994 to 2020. Science, 377(6614), 1544-1550.

42. Zhuang, Y., Jin, H., Cai, W. J., Li, H., Qi, D., & Chen, J. (2022). Extreme Nitrate Deficits in the Western Arctic Ocean: Origin, Decadal Changes, and Implications for Denitrification on a Polar Marginal Shelf. Global Biogeochemical Cycles, 36(7), e2022GB007304.

41. Yu X, Zhuang Y*, Cai X and Qi D (2022). Role of Marginal Seas in Deep Ocean Regeneration of Dissolved Silica: A Case Study in the Marginal Seas of the Western Pacific. Frontiers in Marine Science, 9:925919. doi: 10.3389/fmars.2022.925919.

40. Cai, X., Zhuang, Y*., Li, H., Xu, J., Jin, H., & Chen, J. (2022). Spatial Distribution of Colored Dissolved Organic Matter in the Western Arctic Ocean. Journal of Marine Science and Engineering, 10(3), 352.

39. Li, H., Chen, J., Ruiz-Pino, D., Zhang, J., Jin, H., Zhuang, Y., ... & Li, Y. (2022). Overlooked contribution of the biological pump to the Pacific Arctic nitrogen deficit. Science China Earth Sciences, 1-13.

38. Ouyang, Z., Collins, A., Li, Y., Qi, D., Arrigo, K. R., Zhuang, Y., ... & Cai, W. J. Seasonal water mass evolution and non‐Redfield dynamics enhance CO2 uptake in the Chukchi Sea. Journal of Geophysical Research: Oceans, e2021JC018326.

37. LIU Jie, LI Zhongqiao, ZHANG Anyu, REN Jian, BAI Youcheng, ZHUANG Yanpei, LI Yangjie, LI Hongliang, JIN Haiyan, CHEN Jianfang. Silicon limitation and replenishment in central Arctic Chukchi Sea Shelf region during ice melting period[J]. Earth Science Frontiers, 2022, 29(4): 103-112.

36. Qi, D., Wu, Y., Chen, L., Cai, W. J., Ouyang, Z., Zhang, Y., ... & Bi, H (2022). Rapid acidification of the Arctic Chukchi Sea waters driven by anthropogenic forcing and biological carbon recycling.Geophysical Research Letters, e2021GL097246.

2021

35. Li, Y., Jin, H., Chen, J., Wang, D., Yang, Z., Wang, B., Zhuang, Y., & Wang, R. (2021). Nitrogen removal through sediment denitrification in the Yangtze Estuary and its adjacent East China Sea: A nitrate limited process during summertime. Science of The Total Environment, 795, 148616.

34. Zhuang, Y., Jin, H., Cai, W. J., Li, H., Jin, M., Qi, D., & Chen, J. (2021). Freshening leads to a three-decade trend of declining nutrients in the western Arctic Ocean. Environmental Research Letters, 16(5), 054047.

33. Zhuang, Y., Jin, H., Zhang, Y., Li, H., Zhang, T., Li, Y., ... & Chen, J. (2021). Incursion of Alaska Coastal Water as a mechanism promoting small phytoplankton in the western Arctic Ocean. Progress in Oceanography, 197, 102639.

32. Ren, J., Chen, J., Li, H., Wiesner, M. G., Bai, Y., Sicre, M. A., Zhuang, Y*., & Li, Y. (2021). Siliceous micro-and nanoplankton fluxes over the Northwind Ridge and their relationship to environmental conditions in the western Arctic Ocean. Deep Sea Research Part I: Oceanographic Research Papers, 174, 103568.

2020

31. Zhuang, Y., Jin, H., Chen, J., Ren, J., Zhang, Y., Lan, M., ... & Tian, J. (2020). Phytoplankton community structure at subsurface chlorophyll maxima on the western Arctic shelf: patterns, causes, and ecological importance. Journal of Geophysical Research: Biogeosciences, 125(6), e2019JG005570.

30. Zhuang, Y., Li, H., Jin, H., Gao, S., Chen, J., Li, Y., ... & Ji, Z. (2020). Vertical distribution of nutrient tracers in the western Arctic Ocean and its relationship to water structure and biogeochemical processes. Acta Oceanologica Sinica, 39(9), 109-114.

29. Ren, J., Chen, J., Bai, Y., Sicre, M. A., Yao, Z., Lin, L., Zhuang, Y., & Li, Y. (2020). Diatom composition and fluxes over the Northwind Ridge, western Arctic Ocean: Impacts of marine surface circulation and sea ice distribution. Progress in Oceanography, 186, 102377.

28. WEI, Z., CHEN, H., LEI, R., YU, X., ZHANG, T., LIN, L., Zhuang, Y., & YUAN, Z. (2020). Overview of the 9th Chinese National Arctic Research Expedition. Atmospheric and Oceanic Science Letters, 13(1), 1-7.

2019

27. Zhuang, Y., Li, H., Jin, H., Chen, J., Gao, S., Bai, Y., … & Li, Y. (2019). Observation of nitrate deficit along transects across the Canada Basin after major sea-ice loss. Polar Science, 21, 224-227.

26. Bai, Y., Sicre, M. A., Chen, J., Klein, V., Jin, H., Ren, J., Zhuang, Y., & Zhao, M. (2019). Seasonal and spatial variability of sea ice and phytoplankton biomarker flux in the Chukchi sea (western Arctic Ocean). Progress in Oceanography, 171, 22-37.

25. Zhang, T., Zhuang, Y*., Jin, H., Li, K., Ji, Z., Li, Y., & Bai, Y. (2019). Comparison of Phytoplankton Communities Between Melt Ponds and Open Water in the Central Arctic Ocean. Journal of Ocean University of China, 18(3), 573-579.

2018

24. Zhuang, Y*., Jin, H., Chen, J., Li, H., Ji, Z., Bai, Y., & Zhang, T. (2018). Nutrient and phytoplankton dynamics driven by the Beaufort Gyre in the western Arctic Ocean during the period 2008–2014. Deep Sea Research Part I: Oceanographic Research Papers, 137, 30-37.

23. Bi, R., Chen, X., Zhang, J., Ishizaka, J., Zhuang, Y., Jin, H., ... & Zhao, M. (2018). Water mass control on phytoplankton spatiotemporal variations in the northeastern East China Sea and the western Tsushima Strait revealed by lipid biomarkers. Journal of Geophysical Research: Biogeosciences, 123(4), 1318-1332.

22. 陈建芳, 金海燕, 白有成, 庄燕培, 李宏亮, 李杨杰, & 任健. (2018). 北极快速变化的生态环境响应. 海洋学报, 40(10), 22-31.

21. 辜帆, 金海燕, 庄燕培, 张扬, 卢勇, 王斌, & 陈建芳. (2018). 2012 年夏季水团输送对挪威-格陵兰海营养盐及浮游植物群落结构的影响. 极地研究, 30(1), 22-31.

2017

20. Li, Y., Zhan, L., Zhang, J., Chen, L., Chen, J., & Zhuang, Y. (2017). A significant methane source over the Chukchi Sea shelf and its sources. Continental Shelf Research, 148, 150-158.

19. Zhuang, Y., Jin, H., Gu, F., Zhang, Y., Bai, Y., Ji, Z., ... & Chen, J. (2017). Composition of algal pigments in surface freshen layer after ice melt in the central Arctic. Acta Oceanologica Sinica, 36(8), 122-130.

18. Jin, H., Zhuang, Y., Li, H., Chen, J., Gao, S., Ji, Z., & Zhang, Y. (2017). Response of phytoplankton community to different water types in the western Arctic Ocean surface water based on pigment analysis in summer 2008. Acta Oceanologica Sinica, 36(8), 109-121.

2016

17. Zhuang, Y., Jin, H., Li, H., Chen, J., Lin, L., Bai, Y., ... & Gu, F. (2016). Pacific inflow control on phytoplankton community in the Eastern Chukchi Shelf during summer. Continental Shelf Research, 129, 23-32.

2015

16. 陈建芳, 金海燕, 李宏亮, 张海生, 季仲强, 庄燕培, & 白有成. (2015). 北极快速变化对北冰洋碳汇机制和过程的影响. 科学通报, (35), 3406-3416.

15. 王斌, 朱庆梅, 庄燕培, 金海燕, 李宏亮, 张扬, & 陈建芳. (2015). 北极楚科奇海沉积生物硅的分布及其硅质泵过程初探. 矿物岩石地球化学通报, (6), 1131-1141.

14. 张海舟, 庄燕培, 朱庆梅, 李宏亮, 刘小涯, 陈法锦, ... & 陈建芳. (2015). 西北太平洋楚科奇海沉积物-水界面营养盐输送通量估算. 海洋学报, (11), 155-164.

13. 张扬, 季仲强, 庄燕培, 陈建芳, 辜帆, & 金海燕. (2015). 绿素对西北冰洋海源有机碳埋藏的指示意义. 矿物岩石地球化学通报, (6), 1123-1130.

12. Shichao, T. I. A. N., Haiyan, J. I. N., Shengquan, G. A. O., Yanpei, Z. H. U. A. N. G., Yang, Z. H. A. N. G., Bin, W. A. N. G., & Jianfang, C. H. E. N. (2015). Sources and distribution of particulate organic carbon in Great Wall Cove and Ardley Cove, King George Island, West Antarctica. 极地研究, 26(1-English), 55-62.

11. Shengquan, G. A. O., Haiyan, J. I. N., Yanpei, Z. H. U. A. N. G., Zhongqiang, J. I., Shichao, T. I. A. N., Jingjing, Z. H. A. N. G., & Jianfang, C. H. E. N. (2015). Seawater nutrient and chlorophyll α distributions near the Great Wall Station, Antarctica. 极地研究, 26(1-English), 63.

10. 季仲强, 金海燕, 白有成, 庄燕培, 张扬, 李宏亮, & 陈建芳. (2015). 北极楚科奇海-北白令海表层沉积物陆源有机质示踪与埋藏效应 (Doctoral dissertation).

2014

9. Zhuang, Y., Jin, H., Li, H., Chen, J., Wang, B., Chen, F., ... & Tian, S. (2014). Phytoplankton composition and its ecological effect in subsurface cold pool of the northern Bering Sea in summer as revealed by HPLC derived pigment signatures. Acta Oceanologica Sinica, 33(6), 103-111.

8. 乐凤凤, 郝锵, 金海燕, 李涛, 庄燕培, 翟红昌, ... & 陈建芳. (2014). 2012 年楚科奇海及其邻近海域浮游植物现存量和初级生产力粒级结构研究. 海洋学报, 36(10), 103-115.

7. 朱庆梅, 庄燕培, 李宏亮, 徐燕青, 刘希真, 张静静, ... & 金海燕. (2014). 赤道太平洋上层水体颗粒态生物硅分布及与营养盐的关系. 海洋学研究, 32(3), 65-71.

2013

6. Chen, F., Chen, J., Jia, G., Jin, H., Xu, J., Yang, Z., Zhuang, Y., & Zhang, H. (2013). Nitrate δ 15N and δ 18O evidence for active biological transformation in the Changjiang Estuary and the adjacent East China Sea. Acta Oceanologica Sinica, 32(4), 11-17.

2012

5. 庄燕培, 金海燕, 陈建芳, 王奎, 徐燕青, & 王斌. (2012). 西赤道太平洋暖池区光合色素分布及其对浮游植物群落的指示作用. 海洋学报, 34(2), 143-152.

2011

4. 庄燕培, 金海燕, 陈建芳, 王斌, 李宏亮, 陈法锦, ... & 徐杰. (2011). 北冰洋中心区表层海水营养盐及浮游植物群落对快速融冰的响应. 极地研究, 24(2), 151-158.

3. 余小青, 金海燕, 陈建芳, 李宏亮, 王奎, 高生泉, ... & 庄燕培. (2011). 2009 年初夏长江口及毗邻海区表层浮游植物群落结构的色素表征. 海洋学研究, 29(3), 145-154.

2. 刘希真, 李宏亮, 陈建芳, 金海燕, 王文亮, 刘际弟, ... & 庄燕培. (2011). 长江口跨越锋面颗粒磷季节分布变化特征及影响因素. 海洋学研究, 29(3), 88-98.

1. 王斌, 陈建芳, 金海燕, 李宏亮, 刘希真, 庄燕培, ... & 张海生. (2011). 长江口及邻近海域夏季溶解无机碳体系及其响应机制初探. 海洋学研究, 29(3), 63-70.

近期科研项目:

1. 国家自然科学基金面上项目,北冰洋中央区海冰生物碳泵过程及其变化机理研究,2024/01-2027/12,在研,主持

2. 国家自然科学基金面上项目,北冰洋冰下颗粒物沉降通量及生物标志物指征研究,2020/01-2023/12结题,主持

3. 国家自然科学基金青年项目,北冰洋中心区融冰季节生物泵组成结构的时间序列演变研究,2016/01-2018/12,结题,主持

4. 福建省杰出青年基金项目北冰洋生物碳泵对海冰融化的响应机制研究2023/08-2026/8在研,主持

5. 浙江省自然科学基金面上项目,浙江近海硝酸盐跃层的高分辨率观测及其影响因素初探,2019/01-2021/12,结题,主持

6. 国家重点研发计划,楚科奇海台底栖生物食物来源与生物泵的耦合/非耦2020/01-2022/12,在研,课题负责人

7. 国家重点研发计划,极地科技与国际治理支撑体系研究,2019/11-2021/12,结题,子课题负责人

8. 国家自然科学基金两化基金,基于水下移动平台的近海海洋环境观测技术研究,2018/01-2021/12,结题,参与


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