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Phosphorus fractions and its release in the sediments of Haihe River,China 被引量:54

Phosphorus fractions and its release in the sediments of Haihe River,China
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摘要 The amounts and forms of phosphorus (P) in surface sediments of Haihe River, Tianjin, North China, were examined using a sequential chemical extraction procedure. Five fractions of sedimentary P, including loosely sorbed P (NH4Cl-P), redox-sensitive P (BD-P), metal oxide bound P (NaOH-P), calcium bound P (HCI-P), and residual P (Res-P) (organic and refractory P), were separately quantified. The results indicated that the contents of different P fractions in the sediments varied greatly. The total P (TP) contents ranged from 968 to 2017 mg/kg. Phosphorus contents in NH4Cl-P, BD-P, NaOH-P, and HCl-P ranged from 6.7 to 26.6 mg/kg, 54.5 to 90.2 mg/kg, 185.2 to 382.5 mg/kg, and 252.3 to 425.5 mg/kg, respectively, which represented 1.2%-3.2%, 7.7%-13%, 33.3%-48.9%, and 36.2%-54.2% of the sedimentary inorganic P, respectively. For all the sediment samples, the rank order of P-fractions was Res-P 〉 HCl-P 〉 NaOH-P 〉 BD-P 〉 NH4Cl-P. The highly positive relationship between the amounts of P released from the sediments and those in the NH4Cl-P and BD-P fractions, indicated that NH4Cl-P and BD-P were the main fractions that can release P easily. The amounts and forms of phosphorus (P) in surface sediments of Haihe River, Tianjin, North China, were examined using a sequential chemical extraction procedure. Five fractions of sedimentary P, including loosely sorbed P (NH4Cl-P), redox-sensitive P (BD-P), metal oxide bound P (NaOH-P), calcium bound P (HCI-P), and residual P (Res-P) (organic and refractory P), were separately quantified. The results indicated that the contents of different P fractions in the sediments varied greatly. The total P (TP) contents ranged from 968 to 2017 mg/kg. Phosphorus contents in NH4Cl-P, BD-P, NaOH-P, and HCl-P ranged from 6.7 to 26.6 mg/kg, 54.5 to 90.2 mg/kg, 185.2 to 382.5 mg/kg, and 252.3 to 425.5 mg/kg, respectively, which represented 1.2%-3.2%, 7.7%-13%, 33.3%-48.9%, and 36.2%-54.2% of the sedimentary inorganic P, respectively. For all the sediment samples, the rank order of P-fractions was Res-P 〉 HCl-P 〉 NaOH-P 〉 BD-P 〉 NH4Cl-P. The highly positive relationship between the amounts of P released from the sediments and those in the NH4Cl-P and BD-P fractions, indicated that NH4Cl-P and BD-P were the main fractions that can release P easily.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2009年第3期291-295,共5页 环境科学学报(英文版)
基金 supported by the Natural Science Foun-dation of Tianjin (No. 09YFSZSF02100) the National Natural Science Foundation of China (No. 50479034) the Commonweal Projects of the Water Conservancy of China (No. 200801135)
关键词 phosphorus fractions sequential extraction phosphorus release SEDIMENTS Haihe River phosphorus fractions sequential extraction phosphorus release sediments Haihe River
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  • 1Abrams M M, Jarrell W M, 1995. Soil phosphorus as a potential non-point source for elevated stream phosphorus levels. Journal of Environmental Quality, 24(1): 132-138.
  • 2APHA, AWWA, WEF (American Public Health Association, American Water Works Association, Water Environment Federation), 1995. Standard methods for the examination of water and wastewater. 19th ed. Washington, DC: American Public Health Association.
  • 3Balchand A, Nair S, 1994. Fractionation of phosphorus in the sediments of a tropical estuary. Environmental Geology, 23(4): 284-294.
  • 4Barbanti A, Sighinolfi G, 1988. Sequential extraction of phosphorus and heavy metals from sediments methodological consideration. Environmental Technology Letter, 9(2): 127- 134.
  • 5Dahl M, Dunning C P, Green T, 1993. Convective-transport of chemicals across a sediment-water interface. Water Science Technology, 28(3): 209-213.
  • 6Dorich R, Nelson D, Sommers L, 1985. Estimating phosphorus in suspended sediments by chemical extraction. Journal of Environmental Quality, 14(3): 400--405.
  • 7Furumai H, Kondo T, Ohgaki S, 1989. Phosphorus exchange kinetics and exchangeable phosphorus forms in sediments. Water Research, 23: 685-691.
  • 8Fytianos A, Kotzakioti A, 2005. Sequential fracfionation of phosphorus in lake sediments of north Greece. Environmental Monitoring and Assessment, 100(1-3): 191-200.
  • 9Gonsiorezyk T,-Casper P, Koschel R, 1998. Phosphorus binding forms in the sediment of an oligotrophic and an eutrophic hardwater lake of the Baltic Lake District (Germany). Water Science and Technology, 37(3): 51-58.
  • 10House W A, Denison F H, 2002. Total phosphorus content of rivers sediments in relationship to calcium, iron and organic matter concentrations. Science of the Total Environment, 282/283(1): 341-351.

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