{"title":"Phosphorus Speciation and Heavy Metal Levels in Ogun River Sediments at Different Anthropogenic Locations in Abeokuta, Ogun State","authors":"Olayinka Oluwafunmilayo Olasunbo, Opatoyinbo Oluwabamise Esther, Olujimi Olarenwaju Olusoji, Azeez Jamiu Oladipupo, Oyebanji Adedayo Olamide","doi":"10.35762/aer.2023022","DOIUrl":null,"url":null,"abstract":"Phosphorus (P) is an essential nutrient for phytoplankton growth in water bodies and an important element in biochemical processes. Also, excessive P in river causes eutrophication which endangers aquatic organisms while sediment acts as sink for inorganic and organic pollutants and nutrients. To assess the availability of P and heavy metals (HMs) in Ogun River, surface sediment samples were collected at twelve anthropogenic sites for three months. The surface sediment samples were sequentially extracted to determine five phosphorus fractions [loosely-sorbed P (LS-P), iron-bound P (Fe-P), authigenic apatite, biogenic apatite and CaCO3-bound P (CFA-P), detrital apatite (Det-P) and other inorganic P (IP) as well as organic P (OP)] and levels of selected HMs (Pb, Cr and Zn). Phosphorus fractions were determined spectrophotometrically and HMs were determined using atomic absorption spectrophotometer (AAS) after wet digestion. The average percentages of fractions of P in surface sediments were Det-P (34.66±1.00%) > Fe-P (27.67± 0.02%) > OP (18.11±2.00%) > authigenic apatite, biogenic apatite and CaCO3-bound P (14.38±4.56%) > LS-P (5.18±0.78%). It was observed that IP was dominant (86.38%) of the total phosphorus (TP) compared to OP (13.62%). One of the sites, Garri processing, had highest TP (710 µg P g-1) which was above the standard values for Chinese Environmental Dredging (500 µg P g-1) and Canadian Province of Ontario (600 µg P g-1) Sediment Quality Guidelines (SQG). The mean concentrations of HMs determined in sediments were below the SQG values except Zn in some sites. The results revealed moderate pollution of P and Zn and also, accumulation of these pollutants overtime might pose threat to aquatic organisms. The results obtained would serve as baseline values for P speciation in Ogun River.","PeriodicalId":36747,"journal":{"name":"Applied Environmental Research","volume":"50 14","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-12-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Applied Environmental Research","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.35762/aer.2023022","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"Environmental Science","Score":null,"Total":0}
引用次数: 0
Abstract
Phosphorus (P) is an essential nutrient for phytoplankton growth in water bodies and an important element in biochemical processes. Also, excessive P in river causes eutrophication which endangers aquatic organisms while sediment acts as sink for inorganic and organic pollutants and nutrients. To assess the availability of P and heavy metals (HMs) in Ogun River, surface sediment samples were collected at twelve anthropogenic sites for three months. The surface sediment samples were sequentially extracted to determine five phosphorus fractions [loosely-sorbed P (LS-P), iron-bound P (Fe-P), authigenic apatite, biogenic apatite and CaCO3-bound P (CFA-P), detrital apatite (Det-P) and other inorganic P (IP) as well as organic P (OP)] and levels of selected HMs (Pb, Cr and Zn). Phosphorus fractions were determined spectrophotometrically and HMs were determined using atomic absorption spectrophotometer (AAS) after wet digestion. The average percentages of fractions of P in surface sediments were Det-P (34.66±1.00%) > Fe-P (27.67± 0.02%) > OP (18.11±2.00%) > authigenic apatite, biogenic apatite and CaCO3-bound P (14.38±4.56%) > LS-P (5.18±0.78%). It was observed that IP was dominant (86.38%) of the total phosphorus (TP) compared to OP (13.62%). One of the sites, Garri processing, had highest TP (710 µg P g-1) which was above the standard values for Chinese Environmental Dredging (500 µg P g-1) and Canadian Province of Ontario (600 µg P g-1) Sediment Quality Guidelines (SQG). The mean concentrations of HMs determined in sediments were below the SQG values except Zn in some sites. The results revealed moderate pollution of P and Zn and also, accumulation of these pollutants overtime might pose threat to aquatic organisms. The results obtained would serve as baseline values for P speciation in Ogun River.
磷是水体中浮游植物生长所必需的营养物质,也是生物化学过程中的重要元素。此外,河流中磷含量过高会导致富营养化,危及水生生物,而沉积物则是无机和有机污染物和营养物质的汇。为了评估奥根河中磷和重金属的有效性,在12个人为地点采集了3个月的表层沉积物样本。依次提取表层沉积物样品,测定5种磷组分[松散吸附磷(LS-P)、铁结合磷(Fe-P)、自生磷灰石、生物磷灰石和caco3结合磷(CFA-P)、碎屑磷灰石(dt -P)和其他无机磷(IP)和有机磷(OP)]以及选定的HMs (Pb、Cr和Zn)水平。湿消化后用原子吸收分光光度法测定磷组分,用原子吸收分光光度法测定质谱。表层沉积物中磷组分的平均百分比为:Det-P(34.66±1.00%)> Fe-P(27.67±0.02%)> OP(18.11±2.00%)>自生磷灰石、生物磷灰石和caco3结合磷(14.38±4.56%)> LS-P(5.18±0.78%)。总磷(TP)中,IP占86.38%,OP占13.62%。其中Garri加工的总磷最高(710µg P -1),高于中国环境疏浚(500µg P -1)和加拿大安大略省沉积物质量指南(600µg P -1)的标准值。除Zn外,沉积物中HMs的平均浓度均低于SQG值。结果表明,水体中磷、锌的污染程度适中,且随着时间的推移,这些污染物的积累可能对水生生物造成威胁。所得结果可作为奥根河磷形态形成的基线值。