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首页> 外文期刊>Journal of environmental sciences >Flux characteristics of total dissolved iron and its species during extreme rainfall event in the midstream of the Heilongjiang River
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Flux characteristics of total dissolved iron and its species during extreme rainfall event in the midstream of the Heilongjiang River

机译:黑龙江中游极端降雨事件中总溶解铁及其种类的通量特征

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摘要

The occurrence of extreme rainfall events and associated flooding has been enhanced due to climate changes, and is thought to influence the flux of total dissolved iron (TDI) in rivers considerably. Since TDI is a controlling factor in primary productivity in marine ecosystems, alteration of riverine TDI input to the ocean may lead to climate change via its effect on biological productivity. During an extreme rainfall event that arose in northeastern China in 2013, water samples were collected in the midstream of the Heilongjiang River to analyze the concentration and species of TDI as well as other basic parameters. The speciation of TDI was surveyed by filtration and ultrafiltration methods. Compared with data monitored from 2007 to 2012, the concentration of TDI increased significantly during this event, with an average concentration of 1.11 mg/L, and the estimated TDI flux reached 1.2 x 10(5) tons, equaling the average annual TDI flux level. Species analysis revealed that low-molecular-weight complexed iron was the dominant species, and the impulse of TDI flux could probably be attributed to the hydrological connection to riparian wetlands and iron-rich terrestrial runoff. Moreover, dissolved organic matter played a key role in the flux, species and bioavailability of TDI. In addition, there is a possibility that the rising TDI flux could further influence the transport and cycling of nutrients and related ecological processes in the river, estuary coupled with the coastal ecosystems, which merits closer attention in the future. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:由于气候变化,极端降雨事件和相关洪灾的发生已经增加,并且据认为会极大地影响河流中总溶解铁(TDI)的通量。由于TDI是海洋生态系统初级生产力的控制因素,河流TDI输入海洋的变化可能通过其对生物生产力的影响而导致气候变化。在2013年东北发生的一次极端降雨事件中,在黑龙江中游采集了水样,以分析TDI的浓度和种类以及其他基本参数。通过过滤和超滤方法研究了TDI的形态。与2007年至2012年监测的数据相比,在此事件中TDI的浓度显着增加,平均浓度为1.11 mg / L,估计的TDI流量达到1.2 x 10(5)吨,等于年均TDI流量水平。种类分析表明,低分子量复合铁是主要种类,TDI通量的冲动很可能归因于与河岸湿地的水文联系和富含铁的地面径流。此外,溶解的有机物在TDI的通量,种类和生物利用度中起关键作用。此外,TDI通量的上升可能会进一步影响河口,河口以及沿海生态系统中养分的运输和循环以及相关的生态过程,这在未来值得进一步关注。 (C)2015年中国科学院生态环境研究中心。由Elsevier B.V.发布

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