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GEOCHEMISTRY OF SUSPENDED PARTICULATE MATTER IN A TROPICAL ESTUARINE SYSTEM, SOUTHEASTERN BRAZIL

机译:东南巴西热带海藻系统中悬浮颗粒物的地球化学

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The aim of this study is to assess the variation of the geochemistry of suspended particulate matter (SPM) in the tropical estuarine system composed of the adjacent Piraquê-A?u and Piraquê-Mirim (ES) rivers using SPM sampled with sediment traps (45 μm mesh) installed in the drainage channels. We collected SPM during different tidal stages and seasonal periods and analysed the metals using inductively coupled plasma mass spectrometry according to EPA 3051A, the mineralogy using X-ray diffraction, the particle size using laser ray diffraction, and organic matter (OM) using calcination. The traps collected enough SPM to perform analyses for each sampling period. The SPM consists of silt size particles, and the percentage of OM is between 20 and 40%. The particles are dominated by kaolinite and quartz, and gibbsite, haematite, goethite, and pyrite are also present. These materials are found in the Barreiras Formation, through which the drainage system cuts. The metal concentrations were higher in the summer: Al (3208.32 g kg-1), Pb (28.05 mg kg-1), Mn (676.35 mg kg-1), Cr (136.12 mg kg-1), and Cu (13.76 mg kg-1). The Piraquê-A?u River had higher metal concentrations than the Piraquê-Mirim River, and the geochemical indices of both rivers indicate that they naturally contribute to the estuarine system of the Piraquê-A?u and Piraquê-Mirim rivers (SEPAPM). However, anthropic interferences influence these indices at the confluence of the two channels.
机译:这项研究的目的是使用沉积物捕集器对SPM进行评估,以评估由相邻的Piraquê-A?u和Piraquê-Mirim(ES)河流组成的热带河口系统中悬浮颗粒物(SPM)的地球化学变化(45 μm网孔)安装在排水通道中。我们收集了处于不同潮汐阶段和季节的SPM,并根据EPA 3051A使用电感耦合等离子体质谱法对金属进行了分析,使用X射线衍射进行了矿物学分析,通过激光衍射进行了粒度分析,并使用了煅烧对有机物(OM)进行了分析。陷阱收集到的SPM足以在每个采样周期内执行分析。 SPM由粉粒大小的颗粒组成,OM的百分比在20%到40%之间。颗粒主要由高岭石和石英组成,并且也有菱铁矿​​,赤铁矿,针铁矿和黄铁矿。这些材料存在于Barreiras地层中,排水系统通过该地层进行切割。夏季的金属浓度较高:Al(3208.32 g kg-1),Pb(28.05 mg kg-1),Mn(676.35 mg kg-1),Cr(136.12 mg kg-1)和Cu(13.76 mg公斤-1)。比拉奎米奥里河的金属浓度高于比拉奎米里姆河,这两条河的地球化学指标表明它们自然地对比拉奎奥米里河和比拉奎米里姆河的河口系统做出了贡献(SEPAPM)。但是,人为干扰会在两个通道的汇合处影响这些指标。

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