首页> 外文期刊>Journal of soil & sediments >Sedimentological and geochemical characterization of river suspended particulate matter (SPM) sampled by time-integrated mass flux sampler (TIMS) in the Sava River (Croatia)
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Sedimentological and geochemical characterization of river suspended particulate matter (SPM) sampled by time-integrated mass flux sampler (TIMS) in the Sava River (Croatia)

机译:时间积分质量通量采样器(TIMS)在萨瓦河(克罗地亚)中采样的河流悬浮颗粒物(SPM)的沉积学和地球化学特征

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PurposeSuspended particulate matter (SPM) plays a crucial role in the transport of natural and anthropogenic substances. However, obtaining a representative sample and a substantial amount of SPM in rivers, where the flux and quantity of SPM are highly episodic, can be a challenging task. To collect a sufficient quantity of SPM for detailed sedimentological and geochemical analysis, a time-integrated mass flux sampler (TIMS) was used for the sampling in a medium size river (the Sava River, Croatia).Materials and methodsSampling was conducted in August and October 2014, and February and May 2015 under different discharge conditions. The SPM collected by TIMS was characterized with respect to its particle size distribution (PSD), mineral content, and geochemical composition.Results and discussionPSD analysis identified silt as a dominant size fraction in all samples except in May 2015 when sand prevailed; subsequent chemical dispersion of samples revealed flocculation as the main factor responsible for the resulting PSD. The mineralogical composition of the SPM was quite constant (quartz, calcite, dolomite, feldspar, illite/muscovite, kaolinite), but the contribution of particular mineral varied depending on the sampling period. In May 2015, unusually high calcite content was determined. Though the dominant source is still uncertain, a portion of calcite is likely detrital in origin. Geochemical analyses of collected material revealed significant anthropogenic input of ecotoxic elements (Ni, As, Cr, Pb, Bi, Cd, Zn, Sb) primarily associated with the fine fraction of the Sava River SPM.ConclusionsA considerable amount of the SPM was collected by TIMS, both during high and low river discharge. Sedimentological analyses of the Sava River SPM suggested the input of material from various sources during different river regimes. Geochemical composition of the SPM followed its sedimentological characteristicspreferential adsorption of trace elements to fine-grained clay mineral particles was documented. Some processes inside TIMS were observed during this investigationthe suspended material captured inside the sampler underwent additional changes. The flocculation of the colloidal material instigated by algal bloom was observed.
机译:目的悬浮颗粒物(SPM)在天然和人为物质的运输中起着至关重要的作用。但是,在河流中SPM的流量和数量极高的情况下,要获得具有代表性的样本和大量的SPM可能是一项艰巨的任务。为了收集足够的SPM以进行详细的沉积学和地球化学分析,在中等大小的河流(克罗地亚的萨瓦河)中使用了时间积分质量通量采样器(TIMS)进行采样。材料和方法2014年10月,2015年2月和2015年5月在不同的放电条件下。通过TIMS收集的SPM的粒度分布(PSD),矿物质含量和地球化学组成进行了表征。结果和讨论PSD分析确定,除2015年5月沙土盛行以外,粉尘是所有样品中的主要粒度部分。随后样品的化学分散表明絮凝是造成PSD的主要因素。 SPM的矿物学成分相当恒定(石英,方解石,白云石,长石,伊利石/白云母,高岭石),但是特定矿物的成分随采样周期而变化。 2015年5月,方解石含量异常高。尽管主要来源仍不确定,但方解石的一部分可能在来源上是有害的。对收集到的物质进行地球化学分析后发现,大量人为输入的生态毒性元素(Ni,As,Cr,Pb,Bi,Cd,Zn,Sb)主要与萨瓦河SPM的细小部分有关。在高流量和低流量时都进行TIMS。萨瓦河SPM的沉积学分析表明,在不同的河流状况下,来自各种来源的物质输入量很大。 SPM的地球化学组成遵循其沉积学特征,微量元素优先吸附到细粒粘土矿物颗粒上。在此调查过程中观察到了TIMS内部的一些过程,采样器内部捕获的悬浮物质进行了其他更改。观察到由藻华引起的胶体材料的絮凝。

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