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EXPERIMENTAL AND MODELING INVESTIGATION OF METAL RELEASE FROM METAL-SPIKED SEDIMENTS

机译:掺金属沉积物中金属释放的实验与模型研究

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In sediments that contain iron monosulfide, cadmium, nickel, lead, zinc, and silver(Ⅰ) form insoluble metal sulfides that lower the metal ion activity in the sediment—pore water system, thereby reducing toxicity. However, metal sulfides are susceptible to oxidation by molecular oxygen resulting in metal solubilization. To better understand the sources and sinks of metal sulfides in sediments, iron monsulfide-rich freshwater sediments were spiked with cadmium, nickel, lead, zinc, or silver(Ⅰ) and placed into cylindrical cores with an overlying layer of oxygen-saturated water. Measurements of the dissolved metal concentration in the overlying water were made as a function of time and the vertical profiles of acid-volatile sulfide (AVS) and simultaneously extracted metal (SEM) were measured after 150 d. A one-dimensional reactive and transport model has been employed to help elucidate processes controlling the fate of metals in sediments. The model incorporates metal-sulfide formation, metal-sulfide oxidation, and metal partitioning onto sediment organic carbon and iron oxyhydroxide to simulate the vertical transport of metals throughout the sediment core.
机译:在含有一硫化铁的沉积物中,镉,镍,铅,锌和银(Ⅰ)形成不溶性金属硫化物,从而降低了沉积物-孔隙水系统中的金属离子活性,从而降低了毒性。然而,金属硫化物易于被分子氧氧化而导致金属溶解。为了更好地了解沉积物中金属硫化物的来源和汇流,将富含一硫化二铁的淡水沉积物掺入镉,镍,铅,锌或银(Ⅰ),并放入上覆有氧饱和水的圆柱形核中。测量上层水中溶解的金属浓度随时间的变化,并在150天后测量酸挥发性硫化物(AVS)和同时提取的金属(SEM)的垂直剖面。一维反应和运输模型已被用来帮助阐明控制沉积物中金属命运的过程。该模型结合了金属硫化物的形成,金属硫化物的氧化以及金属在沉积物有机碳和羟基氧化铁上的分配,以模拟整个沉积物核心中金属的垂直传输。

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