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Assessment of nitrogen and phosphorus loading by atmospheric dry deposition to the Lagos Lagoon, Nigeria

机译:通过大气干沉降法评估尼日利亚拉各斯泻湖中氮和磷的含量

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Surface water pollution has been found to be considerably driven by the contributions of airborne particles, open-air waste burning and fossil fuel combustion, ammonia volatilization from excreta, fertilizer and derivatives from explosive factories. Atmospheric deposition into the Lagos Lagoon is suspected to be a major contributor to the nutrient levels of the lagoon. Atmospheric dry nutrient deposition was monitored at six stations around the Lagos Lagoon from January to June 2012 in order to estimate the contribution of atmospheric deposits into the lagoon's nutrient cycles. Species of phosphorus (P) and nitrogen (N) in the lagoon water were analyzed by colorimetric methods. Mean [NO3- + NO2-] - N was 3.08 + 2.10 mg m(-2) day(-1) (0.55-8.73 mg m(-2) day(-1)), The (NO3-+NO2-)-N was only about 2 % of total N but [NH4+ + organic]-N was approximately 38 % of total N. Particulate N was about 60 % of total N. Average total N was 144 +/- 94.9 mg m(-2) day(-1) (48.0-285 mg m(-2) day(-1)). Average soluble reactive P was significantly lower than [NO3- + NO2-]-N averaging about 0.12 +/- 0.12 mg m(-2) day(-1). Soluble reactive P (SRP) was less than 2 % of total P but soluble organic P was about 86 % of total P. Particulate P accounted for about 12 % of total P. Average total P was 4.56 +/- 10.1 mg m(-2) day(-1) (0.48-31.6 mg m(-2) day(-1)). This study shows that atmospheric deposition of nutrients into the Lagos Lagoon is taking place and this may represent a considerable proportion of the total nutrient loading of the lagoon.
机译:已经发现,空气中的颗粒,露天废物燃烧和化石燃料燃烧,排泄物中的氨挥发,炸药工厂的化肥和衍生物的贡献极大地驱动了地表水污染。大气沉积到拉各斯泻湖中被怀疑是泻湖营养水平的主要贡献者。 2012年1月至2012年6月,在拉各斯泻湖周围的六个站点对大气干养分沉积进行了监测,以估算大气沉积物对泻湖养分循环的贡献。用比色法分析了泻湖水中磷(P)和氮(N)的种类。平均值[NO3- + NO2-]-N为3.08 + 2.10 mg m(-2)天(-1)(0.55-8.73 mg m(-2)天(-1)),(NO3- + NO2-) -N仅占总N的2%,但[NH4 + +有机] -N约占总N的38%。微粒N约占总N的60%。平均总N为144 +/- 94.9 mg m(-2 )天(-1)(48.0-285 mg m(-2)天(-1))。平均可溶性反应性P显着低于[NO3- + NO2-]-N,平均约为0.12 +/- 0.12 mg m(-2)天(-1)。可溶性反应性P(SRP)少于总P的2%,但可溶性有机P约占总P的86%。微粒P约占总P的12%。平均总P为4.56 +/- 10.1 mg m(- 2)天(-1)(0.48-31.6 mg m(-2)天(-1))。这项研究表明,正在向拉各斯泻湖进行养分的大气沉积,这可能占泻湖总养分负荷的很大一部分。

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