 |
|

|
柳欣 博士
教授
厦门大学 环境与生态学院
|
Xin Liu
Professor
College of the Environment & Ecology, Xiamen University
|
Tel: 86-592-2181151 Email: liuxin1983@xmu.edu.cn
|
|
|
 |
|
|
|
|
|
 |
论文著作 Publications
|
|
|
|
|
 |
https://orcid.org/my-orcid?orcid=0000-0002-7925-9618 |
|
|
 |
Li, W., Shang, Y., Li, C., Xu, C., Laws, E. A., Liu, X.*, & Huang, B. (2025). A stronger Kuroshio intrusion leads to higher chlorophyll a concentration in the northern South China Sea. Journal of Geophysical Research: Oceans, 130(2) e2024JC021389 https://doi.org/10.1029/2024JC021389 |
|
|
 |
Zhang, Y., Huang, Y., Xu, F., Cai, S., Liu, Y., Xu, C., Lin, L., Chen, J., Laws, E. A., Liu, X.*, & Huang, B.* (2024). Decoupling of bacterial production and respiration in the surface water of the North Pacific Subtropical Gyre. Marine Life Science and Technology https://doi.org/10.1007/s42995-025-00279-9 |
|
|
 |
An, L., Liu, X.*, Xu, F., Fan, X., Wang, P., Yin, W., & Huang, B. (2024). Different responses of plankton community to mesoscale eddies in the western equatorial Pacific Ocean. Deep Sea Research Part I: Oceanographic Research Papers, 203. https://doi.org/10.1016/j.dsr.2023.104219 |
|
|
 |
Lian, D., Liu, X.*, Laws, E. A., Liu, T., Wang, J., Shang, S., & Lee, Z.* (2024). A “trapezoidal” relationship between solar radiation and chlorophyll concentrations at the center of the South Pacific Gyre. Progress in Oceanography, 225. https://doi.org/10.1016/j.pocean.2024.103281 |
|
|
 |
Liu, H., Browning, T. J., Laws, E. A., Huang, Y., Wang, L., Shang, Y., Xing, X., Zhou, K., Jiang, Z. P., Liu, X.*, Huang, B., & Dai, M. (2024). Stimulation of small phytoplankton drives enhanced sinking particle formation in a subtropical ocean eddy. Limnology and Oceanography. https://doi.org/10.1002/lno.12529 |
|
|
 |
Zhong, Y., Bai, X., Laws, E. A., Lu, W., Huang, Z., Xiao, W., Chen, J., Ma, L., Liu, X.*, & Huang, B. (2024). Phytoplankton community responses to the combined effects of internal waves and anticyclonic eddies shed from the Kuroshio intrusion. Ocean Dynamics, 74(6), 539-554. https://doi.org/10.1007/s10236-024-01618-7 |
|
|
 |
Zhong, Y., Wang, P., Chen, J., Liu, X.*, Laws, E. A., & Huang, B. (2024). Dynamic of phytoplankton community during varying intensities of the northeast monsoon in the Taiwan Strait. Acta Oceanologica Sinica 2024, 43(11): 88-98. https://doi.org/10.1007/s13131-024-2381-0 |
|
|
 |
Wang, P., Laws, E. A., Liu, X.*, Chen, J., Zhong, Y., Xu, C., & Huang, B. (2023). Proportion of dead cells in phytoplankton modulates community structure. Progress in Oceanography, 219. https://doi.org/10.1016/j.pocean.2023.103142 |
|
|
 |
Wu, J., Kong, J., Laws, E. A., Liu, X.*, Wang, C., Chen, J., Chen, M., Yao, Q., Wang, Y., Zhen, Y., Li, C., & Huang, B. (2023). The link between marine thermal discharges and Nemopilema nomurai blooms around nuclear power plants. Ecosystem Health and Sustainability, 9. https://doi.org/10.34133/ehs.0009 |
|
|
 |
Xing, X.*, Xiu, P., Laws, E. A., Yang, G., Liu, X.*, & Chai, F. (2023). Light‐driven and nutrient‐driven displacements of subsurface chlorophyll maximum depth in subtropical gyres. Geophysical Research Letters, 50(22). https://doi.org/10.1029/2023gl104510 |
|
|
 |
Wang, P., Laws, E., Wang, Y., Chen, J., Song, X., Huang, R., Wang, T., Yi, X., Sun, J., Guo, X., Liu, X.*, Gao, K., & Huang, B. (2022). Elevated pCO2 changes community structure and function by affecting phytoplankton group-specific mortality. Marine Pollution Bulletin, 175, 113362. https://doi.org/10.1016/j.marpolbul.2022.113362 |
|
|
 |
Zhong, Y., Laws, E. A., Zhuang, J., Wang, J., Wang, P., Zhang, C., Liu, X.*, & Huang, B. (2022). Responses of phytoplankton communities driven by differences of source water intrusions in the El Niño and La Niña events in the Taiwan Strait during the early spring. Frontiers in Marine Science. https://doi.org/10.3389/fmars.2022.997591 |
|
|
 |
Huang, X., Liu, B., Guo, D., Zhong, Y., Li, S., Liu, X.*, Laws, E. A., & Huang, B. (2021). Blackfordia virginica blooms shift the trophic structure to smaller size plankton in subtropical shallow waters. Marine Pollution Bulletin, 163. https://doi.org/10.1016/j.marpolbul.2021.111990 |
|
|
 |
Liu, H., Liu, X.*, Xiao, W., Laws, E. A., & Huang, B. (2021). Spatial and temporal variations of satellite-derived phytoplankton size classes using a three-component model bridged with temperature in marginal seas of the Western Pacific Ocean. Progress in Oceanography, 191, 102511. https://doi.org/10.1016/j.pocean.2021.102511 |
|
|
 |
Liu, X., Laws, E. A., Xie, Y. Y., Wang, L., Lin, L. Z., & Huang, B.* (2019). Uncoupling of seasonal variations between phytoplankton chlorophyll a and production in the East China Sea. Journal of Geophysical Research: Biogeosciences, 124(7), 2400-2415. https://doi.org/10.1029/2018jg004924 |
|
|
 |
Xiao, W., Laws, E. A., Xie, Y., Wang, L., Liu, X.*, Chen, J., Chen, B., & Huang, B.* (2019). Responses of marine phytoplankton communities to environmental changes: New insights from a niche classification scheme. Water Research, 166, 115070. https://doi.org/10.1016/j.watres.2019.115070 |
|
|
 |
Xiao, W., Zeng, Y., Liu, X.*, Huang, X., Chiang, K. P., Mi, T., Zhang, F., Li, C. L., Wei, H., Yao, Q., & Huang, B. (2019). The impact of giant jellyfish Nemopilema nomurai blooms on plankton communities in a temperate marginal sea. Marine Pollution Bulletin, 149. https://doi.org/10.1016/j.marpolbul.2019.110507 |
|
|
 |
Zhong, Y. P., Hu, J., Laws, E. A., Liu, X.*, Chen, J. X., & Huang, B. Q. (2019). Plankton community responses to pulsed upwelling events in the southern Taiwan Strait. ICES Journal of Marine Science, 76(7), 2374-2388. https://doi.org/10.1093/icesjms/fsz142 |
|
|
 |
Qiu, Y., Laws, E. A., Wang, L., Wang, D., Liu, X.*, & Huang, B. (2018). The potential contributions of phytoplankton cells and zooplankton fecal pellets to POC export fluxes during a spring bloom in the East China Sea. Continental Shelf Research, 167, 32-45. https://doi.org/10.1016/j.csr.2018.08.001 |
|
|
 |
Xiao, W., Liu, X., Irwin, A. J., Laws, E. A., Wang, L., Chen, B., Zeng, Y., & Huang, B.* (2018). Warming and eutrophication combine to restructure diatoms and dinoflagellates. Water Research, 128, 206-216. https://doi.org/10.1016/j.watres.2017.10.051 |
|
|
 |
Liu, X., Li, Y., Wu, Y., Huang, B.*, Dai, M.*, Fu, F., Hutchins, D. A., & Gao, K.* (2017). Effects of elevated CO2 on phytoplankton during a mesocosm experiment in the southern eutrophicated coastal water of China. Scientific Reports, 7(1), 6868. https://doi.org/10.1038/s41598-017-07195-8 |
|
|
 |
Liu, X., Xiao, W., Landry, M. R., Chiang, K., Wang, L., & Huang, B.* (2016). Responses of phytoplankton communities to environmental variability in the East China Sea. Ecosystems, 19(5), 832-849. https://doi.org/10.1007/s10021-016-9970-5 |
|
|
 |
Liu, X., Chiang, K.., Liu, S., Wei, H., Zhao, Y., & Huang, B.*(2015). Influence of the Yellow Sea Warm Current on phytoplankton community in the central Yellow Sea. Deep-Sea Research Part I: Oceanographic Research Papers, 106, 17-29. https://doi.org/10.1016/j.dsr.2015.09.008 |
|
|
 |
Liu, X., Huang, B.*, Huang, Q., Wang, L., Ni, X., Tang, Q., Sun, S., Wei, H., Liu, S., Li, C., & Sun, J. (2015). Seasonal phytoplankton response to physical processes in the southern Yellow Sea. Journal of Sea Research, 95, 45-55. https://doi.org/10.1016/j.seares.2014.10.017 |
|
|
 |
Liu, X., Furuya, K.*, Shiozaki, T., Masuda, T., Kodama, T., Sato, M., Kaneko, H., Nagasawa, M., & Yasuda, I. (2013). Variability in nitrogen sources for new production in the vicinity of the shelf edge of the East China Sea in summer. Continental Shelf Research, 61-62, 23-30. https://doi.org/10.1016/j.csr.2013.04.014 |
|
|
 |
Liu, X., Huang, B.*, Liu, Z., Wang, L., Wei, H., Li, C., & Huang, Q. (2012). High-resolution phytoplankton diel variations in the summer stratified central Yellow Sea. Journal of Oceanography, 68(6), 913-927. https://doi.org/10.1007/s10872-012-0144-6 |
|
|
|
|
|
|
|