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Simultaneous Determination of PIP and POP in Seawater
作者姓名:李宁  李学刚  宋金明
作者单位:Institute of Oceanology,Chinese Academy of Sciences,Qingdao,266071,China,Graduate School,Chinese Academy of Sciences,Beijing,100039,China,Institute of Oceanology,Chinese Academy of Sciences,Qingdao,266071,China,Institute of Oceanology,Chinese Academy of Sciences,Qingdao,266071,China
基金项目:theKnowledgeInnovationProgramofChineseAcademyofSciencesNo .KZCX1 SW 0 1 0 8,KZCX3 SW 2 14 ,andthe“10 0 TalentsProject”ofChineseAcademyofSciencesandtheNationalScienceFoundationforOutstandingYoungScientistsNo .4992 5 614
摘    要:1INTRODUCTIONInrecentyearsglobalclimatechangehasbeenanissueofbothpublicandscientificconcern.Oceanscover71 %ofearthandplayamajorroleinglobalclimatechange.Phosphorus,asacriticalelement,regulatespri maryproductioninaquaticecosystems.Therefore,thefunctionofphosphorusinoceansystemhasreceivedin creasingscientificinterest(Songetal.,2 0 0 3 ) .PP (particulatephosphorus)isanimportantforminphosphorustransferinseawater(Song,2 0 0 1 ) .Pro portionofPPintotalphosphorus(TP)inseawatervar iesfrom 1 0 …

关 键 词:PIP  POP  PP  海水    无机物  有机物  纤维素
收稿时间:5 November 2003
修稿时间:16 January 2004

Simultaneous determination of PIP and POP in seawater
Li?Ning,Li?Xuegang,Song?Jinming.Simultaneous Determination of PIP and POP in Seawater[J].Chinese Journal of Oceanology and Limnology,2004,22(2):146-149.
Authors:Li Ning  Li Xuegang  Song Jinming
Affiliation:(1) Institute of Oceanology, Chinese Academy of Sciences, 266071 Qingdao, China;(2) Graduate School, Chinese Academy of Sciences, 100039 Beijing, China
Abstract:A method for simultaneous determination of particulate inorganic phosphorus (PIP) and particulate organic phosphorus (POP) in seawater was improved. After using cellulose acetate membrane to filter the seawater samples and washing the membrane with 1mol/L hydrochloric acid, PIP was extracted into hydrochloric acid phase and POP was left on the membrane. POP was oxygenated at 120°C, 0.12MPa with potassium persulphate. Phosphomolybdate blue spectrophotometry was used in the determination. The proper volume of seawater sample for simultaneously determining PIP and POP was 100–150ml, containing PIP≥0.27μg, POP≥0.69μg. Relative Standard Deviation (RSD) of the determination of PIP and POP was 5.8% and 4.3% respectively. This method was used to determine POP and PIP in the surface water of Huiquan Bay, Qingdao, China. PIP content there averaged at 69.0μg/L and POP at 3.3 μg/L. PIP is the main form (>93%) of particulate phosphorus (PP). Maximum PIP coincided with flood tide, indicating that PIP mainly originated from disturbance of surface sediments. At the offshore area, maximum of PIP appeared at flood tide and minimum of PIP appeared at ebb-tide. The maximum of POP presented at about 10:00am, which suggests that POP is closely related to biological metabolism. The control factor of POP in seawater was concluded to be biological metabolization. This study was supported by the Knowledge Innovation Program of Chinese Academy of Sciences No. KZCX1-SW-01-08, KZCX3-SW-214, and the “100-Talents Project” of Chinese Academy of Sciences and the National Science Foundation for Outstanding Young Scientists No. 49925614.
Keywords:PP  PIP  POP  seawaters  simultaneous determination  Huiquan Bay
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