科学研究

科学研究

科学研究

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我实验室杨斌副教授在国际一流期刊《Water Research》发表学术论文
日期:2021-03-29 作者:杨斌 编辑:周姣娣、蒙柳清 点击数: 来源:广西北部湾海洋灾害研究重点实验室

作者:杨斌      编辑:周姣娣、蒙柳清     来源:广西北部湾海洋灾害研究重点实验室

近日,我实验室杨斌副教授与美国威斯康星大学密尔沃基分校郭劳动教授合作在《Water Research》线上发表了题为《Partitioning and transformation of organic and inorganic phosphorus among dissolved, colloidal and particulate phases in a hypereutrophic freshwater estuary》的科研论文。《Water Research》当前影响因子为9.130,是国际水环境生态领域的TOP期刊(中科院1区)。

论文首页截图

本研究以美国密歇根湖入湖河流Fox River和内湾Green Bay为研究区域,于2018年7月现场采集6个站位表层水样品(Fig. 1),首次探究了仲夏期间富营养化淡水河口区水体不同粒径胶体磷的来源和不同相磷形态之间的转化。

Fig. 1. Sampling stations in the lower Fox River-Green Bay, a hypereutrophic ecosystem, in northwestern Lake Michigan.


 

研究发现,河流水体以溶解无机磷(DIP)和DOP为主,而在湾内开阔水域以颗粒有机磷(POP)为主,沿着河-湾断面表层水体呈现不同磷组分的动态变化(Fig. 2),胶体相和颗粒相中无机磷与有机磷之间存在相互转化(Fig. 3),且水体不同磷组分存在强的颗粒活性和高的分配系数(Fig. 4)。河流水体中胶体有机磷(COP)以陆源易降解的小粒径胶体(1~10 kDa)为主,而湾内开阔水域以藻类分泌物的大粒径胶体(10 kDa~0.7 μm)为主,在河-湾界面存在多变、高异质的溶解有机磷(DOP)集合体(Fig. 5)。研究结果将有助于理解胶体磷对不同相磷组分动态循环的调节作用及其与河口近岸生态系统富营养化和缺氧之间的关系,并为水生系统中磷的生物地球化学循环研究提供一个新的视角。

Fig. 2. Partitioning of P among dissolved inorganic P (DIP), dissolved organic P (DOP), particulate inorganic P (PIP), and particulate organic P (POP) along the river-bay transect from the lower Fox River (Stations 12 and 16) to open Green Bay (Station 56).


Fig. 3. Variations in the abundances (or percentage) of LMW-dissolved, colloidal and particulate inorganic (LMW-DIP, CIP, and PIP) and organic P (LMW-DOP, COP, and POP) in the total inorganic P (left panel) and total organic P (right panel) pools along the river-bay transect in the Fox River - Green Bay system.


Fig. 4. Variations in the apparent distribution coefficient ( K d ) of inorganic P (IP), organic P (OP) and total P (TP) between dissolved and particulate phases along the river- bay transect from the lower Fox River (Stations 12 and 16) to open Green Bay (Station 56) (left panel, error bars are mean ±SD) and the relationship between log K d and suspended particulate matter concentration (in logSPM) (right panel) in the lower Fox River-Green Bay ecosystem.


Fig. 5. Changes in the partitioning of organic P among the < 1 kDa, 1–3 kDa, 3–10 kDa, and 10 kDa–0.7 μm molecular size-fractions in the traditional DOP pool along the river-bay transect from the lower Fox River (Stations 12 and 16) to open Green Bay (Station 56).


 

该论文第一署名单位是美国威斯康星大学密尔沃基分校淡水科学学院,第二署名单位是北部湾大学广西北部湾海洋灾害研究重点实验室,文章第一作者为杨斌副教授,通讯作者为杨斌副教授和郭劳动教授。该研究由美国威斯康星大学密尔沃基分校基金项目(DIG-101X405)、国家自然科学基金青年项目(41706083),广西自然科学基金重点项目(2018GXNSFDA281025 ),广西“海洋生态环境”院士工作站能力建设项目(桂科AD17129046)以及广西特聘专家专项基金共同资助完成。

文章详细信息:

Bin Yang*, Hui Lin, Sarah L. Bartlett, Erin M. Houghton, Dale M. Robertson, Laodong Guo*. Partitioning and transformation of organic and inorganic phosphorus among dissolved, colloidal and particulate phases in a hypereutrophic freshwater estuary. Water Research, 2021, 196, 117025.

文章链接:https://doi.org/10.1016/j.watres.2021.117025