4.6 Article

Spatial Variations in the Abundance and Chemical Speciation of Phosphorus across the River-Sea Interface in the Northern Beibu Gulf

期刊

WATER
卷 10, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/w10081103

关键词

phosphorus; chemical speciation; nutrient; Dafengjiang River; Beibu Gulf

资金

  1. National Natural Science Foundation of China [41706083, 41576083, 41466001]
  2. Natural Science Foundation of Guangxi [2017GXNSFBA198135, 2016GXNSFBA380108]
  3. Scientific Research Fund of Guangxi Education Department [KY2016YB494]
  4. project of Qinzhou Science Research and Technology Development [20164403]
  5. Guangxi Marine Ecological Environment Academician Workstation Capacity Building [Gui Science AD17129046]
  6. Science and Technology Major Project of Guangxi [AA17204095-10]
  7. Distinguished Experts Programme of Guangxi Province
  8. project of Guangxi Key Laboratory of Marine Disaster in the Beibu Gulf [2017TS10]

向作者/读者索取更多资源

Water samples were collected to measure dissolved and particulate phosphorus species in order to examine the dynamics of phosphorus in the water column across the river-sea interface from the lower Dafengjiang River to the open Beibu Gulf. Dissolved inorganic phosphorus concentrations were as high as 0.90 +/- 0.42 M in river water but decreased dramatically to as low as 0.02 +/- 0.01 M in open coastal waters. Total dissolved phosphorus was largely measured in the form of dissolved inorganic phosphorus in river waters (58% +/- 18%), whereas dissolved organic phosphorus became the predominant species (>90% on average) in open coastal waters. Total dissolved phosphorus was the dominant species, comprising 76% +/- 16% of the total phosphorus, while total particulate phosphorus only comprised 24% +/- 16% of the total phosphorus pool. Riverine inputs, physical and biological processes, and particulate phosphorus regeneration were the dominant factors responsible for the dynamic variations of phosphorus species in the study area. Based on a two-end-member mixing model, the biological uptake resulted in a dissolved inorganic phosphorus depletion of 0.12 +/- 0.08 M in the coastal surface water, whereas the replenishment of dissolved inorganic phosphorus in the lower river from particle P regeneration and release resulted in an increase (0.19 +/- 0.22 M) of dissolved inorganic phosphorus in the estuarine mixing region. The molar ratios of dissolved inorganic nitrogen to dissolved inorganic phosphorus and dissolved silicate to dissolved inorganic phosphorus in the open surface waters were >22, suggesting that, although the lower Dafengjiang River contained elevated concentrations of dissolved inorganic phosphorus, the northern Beibu Gulf was an overall P-limited coastal ecosystem.

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