碩導(dǎo)信息
冉祥濱 研究員
冉祥濱 研究員
資        格 碩士生導(dǎo)師
所在部門 海洋生態(tài)研究中心
郵        箱 rxb@fio.org.cn
招生專業(yè) 海洋化學(xué)
研究方向 區(qū)域硅循環(huán)、低氧現(xiàn)象與磷循環(huán)、營養(yǎng)鹽由陸到海輸送、陸海統(tǒng)籌
個(gè)人簡(jiǎn)介

冉祥濱,博士/研究員,海洋化學(xué),主要關(guān)注人類活動(dòng)影響下河流與近海生源要素生物地球化學(xué)過程等方面的研究,形成了從河流到河口與近海有關(guān)生源要素生物地球化學(xué)過程較為系統(tǒng)的認(rèn)識(shí)。主要成果發(fā)表在Nature Sustainability、Water ResearchLimnology and Oceanography、Journal of Hydrology、Environmental PollutionBiogeochemistry、Science China: Earth Sciences和中國環(huán)境科學(xué)等主流學(xué)術(shù)刊物上;為共享航次計(jì)劃2019年度東??茖W(xué)考察實(shí)驗(yàn)研究和共享航次計(jì)劃2021年度東??茖W(xué)考察實(shí)驗(yàn)研究暨東??珀懠芴驾斔瓦^程研究首席科學(xué)家;Nature Communications等地學(xué)和環(huán)境學(xué)期刊審稿人,海洋科學(xué)進(jìn)展編委、海洋科學(xué)特邀編輯(第八屆)與青年編委(第一屆)、Marine Environmental Research、Journal of Sea ResearchContinental Shelf Research等期刊客座/專刊編輯、海洋與湖沼學(xué)會(huì)海洋化學(xué)分會(huì)副理事長等。

 


發(fā)表論文

[1] Xiaosong Zhong, Xiangbin Ran. Deciphering and quantifying nitrate sources and processes in the central Yellow Sea using dual isotopes of nitrate. Water Research, 2024, 264, 121995. https://doi.org/10.1016/j.watres.2024.121995 (通訊作者)

[2] Xiaochen Liu, Arthur H. W. Beusen, Hans J. M. van Grinsven, Junjie Wang, Wim Joost van Hoek, Xiangbin Ran, José M. Mogollón & Alexander F. Bouwman. Impact of groundwater nitrogen legacy on water quality. Nat Sustain 7, 891–900 (2024). https://doi.org/10.1038/s41893-024-01369-9 

[3] Menglu Li, Jun Liu, Junjie Wang, Zhaoliang Song, Alexander F. Bouwman, Xiangbin Ran. Phosphorus depletion is exacerbated by increasing nitrogen loading in the Bohai sea. Environmental Pollution, 2024, 352, 124119. https://doi.org/10.1016/j.envpol.2024.124119 (通訊作者)

[4] Xiangwei Zhao, Xiaodong Zhang, Zhaoliang Song, Lukas Van Zwieten, Xiangbin Ran, Yulin Pu, Jun Sun, Qiang Li, Lele Wu, Xiaomin Yang, Yuqiu Wei, Zimin Li, Shuyan Liu, Alin Song, Xiaole Sun, Cong-Qiang Liu, Hailong Wang. The accumulation and carbon sequestration potential of biogenic silica in coastal salt marshes: Implications for relative sea-level rise. CATENA, 2024, 235,107683. https://doi.org/10.1016/j.catena.2023.107683 

[5] Zongqing Lv, Xiangbin Ran, Jun Liu, Yao Feng, Xiaosong Zhong, Nianzhi Jiao. Effectiveness of Chemical Oxygen Demand as an Indicator of Organic Pollution in Aquatic Environments. Ocean-Land-Atmos Res. 2024;3:0050. DOI:10.34133/olar.0050 (通訊作者)

[6] Cece Sun, Zhaoliang Song, Xiangbin Ran. Composition and transport of silicon in rivers of the Bohai rim with implications for the coastal environment. Science of The Total Environment, 2024, 947, 174544. https://doi.org/10.1016/j.scitotenv.2024.174544 (通訊作者)

[7] Hao Wang, Alexander F. Bouwman, Junjie Wang, Zhigang Yu, Xiangbin Ran. Competitive advantages of HAB species under changing environmental conditions in the coastal waters of the Bohai Sea, Yellow Sea and East China Sea. Continental Shelf Research, 2023, 259, 104991. https://doi.org/10.1016/j.csr.2023.104991 (通訊作者)

[8] Xiangwei Zhao, Xiaodong Zhang, Zimin Li, Lukas Van Zwieten, Yidong Wang, Qian Hao, Yuqiu Wei, Xiangbin Ran, Xiaomin Yang, Zhaoliang Song, Hailong Wang. Silicon fractionations at the margin of a coastal wetland and its response to sea level rise. Geoderma, 2023, 437, 116602. https://doi.org/10.1016/j.geoderma.2023.116602 

[9] Xiangwei Zhao, Zhaoliang Song*, Yuntao Wu*, Lukas Van Zwieten, Laodong Guo, Changxun Yu, Zimin Li, Lele Wu1, Xiaomin Yang, Xiangbin Ran, Jun Sun, Yuqiu Wei, Yidong Wang, Peng Yuan, Jianping Zhang, Xiaole Sun, Xinxin Zuo, Tony Vancov, Cong-Qiang Liu & Hailong Wang. Biogenic silica dynamics in coastal wetland sediments: A key driver of silicon and carbon biogeochemical cycling. Limnology and Oceanography. 2024. https://doi.org/10.1002/lno.12717.

[10] Wei, Qinsheng & Yao, Peng & Xu, Bochao & Zhao, Bin & Ran, Xiangbin & Zhao, Yuhang & Sun, Junchuan & Wang, Baodong & Yu, Zhigang. (2021). Coastal Upwelling Combined With the River Plume Regulates Hypoxia in the Changjiang Estuary and Adjacent Inner East China Sea Shelf. Journal of Geophysical Research: Oceans. 126. 10.1029/2021JC017740.

[11] Lian, Ergang & Wang, Shuo & Artigue, Lise & Wu, Hui & Ran, Xiangbin & Zhou, Peng & Lin, Lei & Jin, Xiaobo & Li, Chao & Yang, Shouye. (2022). Unraveling the Synoptic‐Scale Penetration of the Yellow Sea Coastal Water Into the Changjiang River Estuary. Journal of Geophysical Research: Oceans. 127. 10.1029/2022JC018773.

[12] Hao, Jiajia & Yuan, Dongliang & He, Lei & Yuan, Huamao & Su, Jian & Pohlmann, Thomas & Ran, Xiangbin. (2024). Cross‐Shelf Carbon Transport in the East China Sea and Its Future Trend Under Global Warming. Journal of Geophysical Research: Oceans. 129. 10.1029/2022JC019403.

[13] Hao Wang, Alexander F. Bouwman, Jos Van Gils, Lauriane Vilmin, Arthur H.W. Beusen, Junjie Wang, Xiaochen Liu, Zhigang Yu, Xiangbin Ran. Hindcasting harmful algal bloom risk due to land-based nutrient pollution in the Eastern Chinese coastal seas, Water Research, 2023, 231:119669. (通訊作者)

[14] Wentao Wu, Junjie Wang, Hao Wang, Jun Liu, Qingzhen Yao, Zhigang Yu, Xiangbin Ran. Trends in nutrients in the Changjiang River, Science of The Total Environment, 2023, 872:162268. (通訊作者)

[15] Xiangbin Ran, Wentao Wu, Zhaoliang Song, Hao Wang, Hongtao Chen, Qingzhen Yao, Ming Xin, Pengxia Liu, Zhigang Yu. Decadal change in dissolved silicate concentration and flux in the Changjiang (Yangtze) River, Science of The Total Environment, 2022, 839: 156266-156266.

[16] Hao Wang, Ran Xiangbin, Bouwman Alexander F, Wang Junjie, Xu Bochao, Song Zhaoliang, Sun Shaobo, Yao Qingzhen, Yu Zhigang. Damming alters the particulate organic carbon sources, burial, export and estuarine biogeochemistry of rivers, Journal of Hydrology, 2022, 607: 127525. (通訊作者)

[17] Sun C, Liu J, Li M, Zang J, Wang L, Wu W, Zhang A, Wang J, Ran X. Inventory of riverine dissolved organic carbon in the Bohai Rim. Environmental Pollution, 2022, 293, 118601.

[18] Liu J, Krom MD, Ran X, Zang J, Liu J, Yao Q, Yu Z. Sedimentary phosphorus cycling and budget in the seasonally hypoxic coastal area of Changjiang Estuary. Science of The Total Environment, 2020,136389. https://doi.org/10.1016/j.scitotenv.2019.136389 (通訊作者)

[19] Wentao Wu, Jun Liu, Alexander F Bouwman, Junjie Wang, Xunqiang Yin, Jiaye Zang, Xiangbin Ran. Exploring oxygen dynamics and depletion in an intensive bivalve production area in the coastal sea off Rushan Bay, China. 2020, Marine Ecology Progress Series, 649: 53-65. https://doi.org/10.3354/meps13442(通訊作者)

[20] Junjie Wang, Alexander F. Bouwman, Arthur H.W. Beusen, Xiaochen Liu, Xiangbin Ran, and Lauriane Vilmin. Comment on “Multi-Scale Modeling of Nutrient Pollution in the Rivers of China”. Environmental Science & Technology 2020 54 (3), 2043-2045. DOI: 10.1021/acs.est.9b06534

[21] Hao, Q., Yang, S., Song, Z., Ran, X., Yu, C., Chen, C., Van Zwieten, L., Quine, T.A., Liu, H., Wang, Z., Wang, H. Holocene carbon accumulation in lakes of the current east Asian monsoonal margin: Implications under a changing climate. Science of The Total Environment, 2020, 737: 139723.

[22] Ran Xiangbin, Bouwman A.F., Yu Zhigang, Liu Jun. Implications of eutrophication for biogeochemical processes in the Three Gorges Reservoir, China. Regional Environmental Change, 2019, 19, 55-63. DOI: 10.1007/s10113-018-1382-y

[23] Wang, H., Ran, X., Li, J., Liu, J., Wu, W., Li, M., Zang, J. Response of the sediment geochemistry of the Changjiang River (Yangtze River) to the impoundment of the Three Gorges Dam. Journal of Environmental Sciences, 2019, 83, 161-173. https://doi.org/10.1016/j.jes.2019.04.003 (通訊作者)

[24] Liu, J., Song, Z., Wang, J., Bouwman, A.F., Li, M., Liu, S., Cao, L., Zang, J., Ran, X. (2019) Biogenic Silica Composition and Storage in the Yellow River Delta Wetland with Implications for the Carbon Preservation. Wetlands. 2019, 10.1007/s13157-019-01233-z (通訊作者)

[25] Ran Xiangbin, Liu Jun, Zang Jiaye, Xu Bochao, Zhao, Shibin, Wu Wentao, Wang Hao, Liu Sen. Export and dissolution of biogenic silica in the Yellow River (Huanghe) and implications for the estuarine ecosystem. Marine Chemistry, 2018, 200: 14-21. https://doi.org/10.1016/j.marchem.2018.02.001 

[26] Ran Xiangbin, Liu Jun, Liu Sen, Zang Jiaye, Wang Bodong, Zhao Jun. The biogenic silica composition, behavior and budget in the Changjiang Estuary. Acta Oceanologica Sinica, 2018, 37: 60-72. https://doi.org/10.1007/s13131-018-1159-7 

[27] Liu, X., Beusen, A.H.W., Van Beek, L.P.H., Mogollón, J.M., Ran, X., Bouwman, A.F. Exploring spatiotemporal changes of the Yangtze River nitrogen and phosphorus sources, retention and export to the East China Sea and Yellow Sea. Water Research, 2018, 142: 246-255. https://doi.org/10.1016/j.watres.2018.06.006

[28] Xiaodan Wang, Shouye Yang, Xiangbin Ran, Xiao-Ming Liu, Clément P. Bataille, Ni Su. Response of the Changjiang (Yangtze River) water chemistry to the impoundment of Three Gorges Dam during 2010–2011. Chemical Geology, 2018, 487: 1-11. https://doi.org/10.1016/j.chemgeo.2018.04.006

[29] Bochao Xu, Disong Yang, Peng Yao, William C. Burnett, Xiangbin Ran, Matthew Charette, Xinying Huang, Sumei Liu, Zhigang Yu*. A new perspective for assessing water transport and associated retention effects in a large reservoir. Geophysical Research Letters.2018, DOI:10.1029/2018GL079687.

[30] Liu J, Zang J, Wang H, Liu J, Bouwman L, Ran X. Changes in the distribution and preservation of silica in the Bohai Sea due to changing terrestrial inputs. Continental Shelf Research. 2018, 166:1-9.  https://doi.org/10.1016/j.csr.2018.06.015 (通訊作者)

[31] Ran Xiangbin, Bouwman Lex, Yu Zhigang, Beusen Arthur, Chen Hongtao, Yao Qingzhen. Nitrogen transport, transformation and retention in the Three Gorges Reservoir: a mass balance approach. Limnology and Oceanography, 2017, 62(5): 2323-2337. https://doi.org/10.1002/lno.10568 

[32] Xiangbin Ran, Bochao Xu, Jun Liu, Chenying Zhao, Sen Liu, Jiaye Zang. Biogenic silica composition and δ13C abundance in the Changjiang (Yangtze) and Huanghe (Yellow) Rivers with implications for the silicon cycle. Science of The Total Environment, 2017, 579: 1541-1549.  https://doi.org/10.1016/j.scitotenv.2016.11.161 

[33] Ran Xiangbin, Liu Sen, Liu Jun, Zang Jiaye, Che Hong, Ma Yongxing, Wang Yibin. Composition and variability in the export of biogenic silica in the Changjiang River and the effect of Three Gorges Reservoir. Science of The Total Environment, 2016, 571: 1191-1199. https://doi.org/10.1016/j.scitotenv.2016.07.125 

[34] Zang Jiaye, Liu Sen, Liu Yanguang, Ma Yongxing, Ran Xiangbin. Contribution of phytoliths to total biogenic silica volumes in the tropical rivers of Malaysiaand associated implications for the marine biogeochemical cycle. Chinese Journal of Oceanology and Limnology, 2016, 34: 1076-1084.(通訊作者)

[35] Liu Jun, Zang Jiaye, Bouwman Lex, Liu Sen, Yu Zhigang, Ran Xiangbin. Distribution and budget of dissolved and biogenic silica in the Bohai Sea and Yellow Sea. Biogeochemistry, 2016,130: 85–101.  https://doi.org/10.1007/s10533-016-0244-2  (通訊作者)

[36] Liu Jun, Zang Jiaye, Zhao Chenying, Yu Zhigang, Xu Bochao, Li Jingxi, Ran Xiangbin. Phosphorus speciation, transformation, and preservation in the coastal area of Rushan Bay. Science of The Total Environment, 2016, 565: 258-270.  https://doi.org/10.1016/j.scitotenv.2016.04.177  (通訊作者)

[37] Ran Xiangbin, Che Hong, Zang Jiaye, Yu Yonggui, Liu Sen, Zheng Lili. Variability in the composition and export of silica in the Huanghe River Basin. Science China: Earth Sciences, 2015, 58: 2078-2089. https://doi.org/10.1007/s1143-015-5064-z 

[38] Ran Xiangbin, Chen Hongtao, Wei Junfeng, Yao Qingzheng, Mi Tiezhu, and Yu Zhigang. Phosphorus speciation, transformation and retention in the Three Gorges Reservoir, China. Marine and Freshwater Research, 2015, 67(2): 173-186. https://doi.org/10.1071/MF14344

[39] Ran Xiangbin, Yu Zhigang, Yao Qingzhen, Chen Hongtao, Guo Hongbo. Silica retention in the Three Gorges Reservoir. Biogeochemistry, 2013, 112(1-3): 209-228.

[40] Ran Xiangbin, Yu Zhigang, Yao Qingzheng, Chen Hongtao, Mi Tiezhu. Major ion geochemistry and nutrient behaviour in the mixing zone of the Changjiang (Yangtze) River and its tributaries in the Three Gorges Reservoir. Hydrological Processes, 2010, 24(17): 2481-2495.

[41] Xu, B., Yang, D., Burnett, W.C., Ran, X., Yu, Z., Gao, M., Diao, S. and Jiang, X. Artificial water sediment regulation scheme influences morphology, hydrodynamics and nutrient behavior in the Yellow River estuary. Journal of Hydrology, 2016, 539: 102-112.

[42] Yu, Y., Wang, H., Shi, X., Ran, X., Cui, T., Qiao, S. and Liu, Y. New discharge regime of the Huanghe (Yellow River): Causes and implications. Continental Shelf Research, 2013, 69, 62-72.

[43] 冉祥濱, 徐騰飛, 趙彬, 郭景松,喬淑卿,魏澤勛,冷疏影.東海區(qū)域海洋學(xué)調(diào)查研究回顧[J]. 海洋科學(xué)進(jìn)展, 2024,42(1): 1-20. Doi: 10.12362/j.issn.1671-6647.20231222001

[44] 冉祥濱,韋欽勝,于志剛.中國近海營養(yǎng)鹽結(jié)構(gòu)失衡與磷消耗問題及其生態(tài)環(huán)境效應(yīng)的研究進(jìn)展[J].海洋科學(xué),2023,47(8):75-89. http://qdhys.ijournal.cn/hykx/ch/reader/view_abstract.aspx?file_no=20230809&flag=1

[45] 冉祥濱, 王永吉. 植硅體在河流硅輸送中的作用. 第四紀(jì)研究, 2019, 39(1): 67-75.

[46] 李夢(mèng)露, 冉祥濱, 劉軍, 吳文濤, 王昊, 劉曉瑜, 臧家業(yè). 黃海麻坑群沉積物磷的保存與轉(zhuǎn)化及環(huán)境效應(yīng). 中國環(huán)境科學(xué), 2020, 40(4): 1757-1770. (EI, 通訊作者)

[47] 吳文濤, 冉祥濱, 李景喜, 王昊, 李夢(mèng)露, 劉軍, 臧家業(yè). 長江水體常量和微量元素的來源、分布與向海輸送[J]. 環(huán)境科學(xué), 2019, 40(11): 4900-4913. (EI, 通訊作者)

[48] 王昊,冉祥濱,臧家業(yè),劉軍,曹磊,劉森,馬永星.長江與黃河入?;钚怨栎斔鸵?guī)律及變化趨勢(shì).湖泊科學(xué),2018,30(5):1246-1259. DOI:10.18307/2018.0508 (EI, 通訊作者)

[49] 劉軍,臧家業(yè),冉祥濱,趙晨英,劉季花,王小靜.長江口低氧區(qū)沉積物中磷的形態(tài)及其環(huán)境意義. 環(huán)境科學(xué), 2017, 38(8): 3243-3253. (EI, 通訊作者)

[50] 冉祥濱, 車宏, 臧家業(yè), 于永貴, 劉森, 鄭莉莉. 2015. 黃河流域硅的組成與輸出. 中國科學(xué): 地球科學(xué), 45: 982–993.

[51] 冉祥濱, 劉軍, 于志剛, 姚慶禎, 郭鴻博, 陳洪濤. 2016. 典型枯水年長江干流硅的分布、輸送與滯留. 湖泊科學(xué), 2017,29 (3): 740-752.EI

[52] 臧家業(yè), 趙晨英, 劉軍, 謝琳萍, 王以斌, 張愛軍, 冉祥濱. 2016. 乳山灣鄰近海域有機(jī)碳的分布與底界面過程研究.中國環(huán)境科學(xué),2017, 37 (3): 1089- 1102. (EI, 通訊作者)

[53] 趙晨英, 臧家業(yè), 劉軍, 孫濤, 冉祥濱.黃渤海氮磷營養(yǎng)鹽的分布、收支與生態(tài)環(huán)境效應(yīng). 中國環(huán)境科學(xué), 2016, 36(7): 2115-2127. (EI, 通訊作者)

[54] 劉軍, 于志剛, 臧家業(yè), 孫濤, 趙晨英, 冉祥濱. 黃渤海有機(jī)碳的分布特征及收支評(píng)估研究. 地球科學(xué)進(jìn)展, 2015, 30(5): 564-578. (通訊作者)

[55] 劉軍, 臧家業(yè), 張麗君, 孫濤, 于志剛, 冉祥濱.黃海硅的分布與收支研究. 中國環(huán)境科學(xué), 2016, 36(1): 157-166. (EI, 通訊作者)

[56] 馬永星, 臧家業(yè), 車宏, 鄭莉莉, & 張波濤等.黃河干流營養(yǎng)鹽分布與變化趨勢(shì). 海洋與湖沼, 2015, 46(1): 140-147.

[57] 冉祥濱,車宏,孫濤,等.渤海顆粒有機(jī)碳與生物硅的分布及來源.海洋學(xué)報(bào), 2014, 36(10): 12-24.

[58] 冉祥濱,臧家業(yè),韋欽勝,劉瑋,郭景松.乳山灣口及其鄰近海域溶解氧分布特征及影響因素研究. 海洋學(xué)報(bào), 2011, 33(4): 173-180.

[59] 冉祥濱,于志剛,姚慶禎,陳洪濤,米鐵柱,姚鵬.水庫對(duì)河流營養(yǎng)鹽滯留效應(yīng)研究進(jìn)展. 湖泊科學(xué), 2009, 21(5): 614-622.

[60] 冉祥濱,于志剛,陳洪濤,姚慶禎,米鐵柱.峽水庫蓄水至135 m后壩前及香溪河水域溶解無機(jī)汞分布特征研究. 環(huán)境科學(xué), 2008, 29(7): 1775-1779.


獲獎(jiǎng)與榮譽(yù)

     束星北青年學(xué)者


主持項(xiàng)目

1) 國家重點(diǎn)研發(fā)計(jì)劃課題,關(guān)鍵環(huán)境因素對(duì)河口海灣水生態(tài)系統(tǒng)健康影響與調(diào)控機(jī)理,課題編號(hào):SQ2024YFF050007603, 起止年月:2024.12-2029.11, 400萬元,課題負(fù)責(zé)人。

2) 國家自然科學(xué)基金專項(xiàng)項(xiàng)目,共享航次計(jì)劃2021年度東??茖W(xué)考察實(shí)驗(yàn)研究暨東??珀懠芴驾斔瓦^程研究(航次編號(hào):NORC2022-02+NORC2022-301, 項(xiàng)目編號(hào):42149902, 起止年月:2022-2024, 460萬元,首席科學(xué)家。

3) 國家自然科學(xué)基金面上項(xiàng)目,長江口硅與碳耦合循環(huán)及其碳匯效應(yīng),項(xiàng)目編號(hào):42176048,起止年月:2022.01~2025.12,經(jīng)費(fèi)59萬元。

4) 國家自然科學(xué)基金面上項(xiàng)目,陸源生物硅在長江口硅生物地球化學(xué)循環(huán)中的作用研究,項(xiàng)目編號(hào):41776089,起止年月:2018.01~2021.12,經(jīng)費(fèi)66萬元。

5) 國家自然科學(xué)基金重點(diǎn)項(xiàng)目,環(huán)渤海濱海濕地硅生物地球化學(xué)循環(huán)及其碳匯效應(yīng),項(xiàng)目編號(hào):41930862,起止年月:2020~2024,經(jīng)費(fèi)298 萬元,骨干。

6) 國家自然科學(xué)基金專項(xiàng)項(xiàng)目,共享航次計(jì)劃2019年度東??茖W(xué)考察實(shí)驗(yàn)研究,項(xiàng)目編號(hào):41949902,起止年月:2020~2021,經(jīng)費(fèi)280萬元,首席科學(xué)家。

 

科技貢獻(xiàn)

為《Nature Communications》、Environmental Science & Technology》、Earth-Science Reviews》、《Journal of Geophysical Research - Oceans》《Biogeosciences》、《Science of The Total Environment》、《Estuarine, Coastal and Shelf Science》、《海洋學(xué)報(bào)》、《湖泊科學(xué)》、《海洋與湖沼》和《地學(xué)前緣》等國內(nèi)外近40期刊審稿。

 


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