Soil chemical evaluation and power plant ash impact on chemical properties of Salix alba L. (Fam. Salicaceae): The impact of bioaccumulation

Demush Bajraktari, B. Petrovska, Lulzim Zeneli, A. Dimitrovska, Z. Kavrakovski
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引用次数: 5

Abstract

Plants grown under contaminated conditions exhibit differences in metal absorption, accumulation, and transportation, and these differences are seen in different plant parts. Metal content in the soil and bark samples collected next to the Sitnica river, which passes through the industrial area of thermal power plants in Kosovo, was measured by inductively coupled plasma optical emission spectrometry. The total metal concentration in willow bark collected from the polluted area of Obilic, Kosovo, ranged 5260–22,280 mg/kg for calcium (Ca), 840–1680 mg/kg for magnesium (Mg), 66.79–910.75 mg/kg for iron (Fe), 5.09–28.66 mg/kg for copper (Cu), 56.39–140.94 mg/kg for zinc (Zn), 19.68–392.75 mg/kg for manganese (Mn), 6.49–10.09 mg/kg for nickel (Ni), 0.10–4.49 mg/kg for cadmium (Cd), 0.85–1.89 mg/kg for chromium (Cr), and 67.79–94.77 mg/kg for aluminum (Al). Data analysis indicated that correlation between trace elements in the soil and willow bark samples varied with the highest observed in Ni(s)/Zn(p) and Fe(s)/Ca(p) followed by Fe(s)/Mg(p), Al(s)/Ca(p), Cr(s)/Mg(p), Cr(s)/Cu(p), Ni(s)/Ni(p), Cu(s)/Ca(p), and Cu(s)/Zn(p). Correlations among trace elements within willow bark samples varied. The correlation between Cr and Al concentration was the highest, followed by that between Ni and Al. A significantly strong correlation was observed between Al and Fe, Ni and Cr, Cr and Fe, Ni and Fe, and Ca and Mg. The highest transfer factor was established in Zn, followed by Cu > Ni > Cr > Al > Fe.
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土壤化学评价及电厂灰对白柳化学性质的影响。水杨科):生物积累的影响
在污染条件下生长的植物在金属吸收、积累和运输方面表现出差异,这些差异在植物的不同部位可见。利用电感耦合等离子体发射光谱法测量了在流经科索沃热电厂工业区的锡特尼察河附近采集的土壤和树皮样品中的金属含量。从科索沃Obilic污染地区收集的柳树皮中总金属浓度为钙(Ca) 5260 - 22280 mg/kg,镁(mg) 810 - 1680 mg/kg,铁(Fe) 66.79-910.75 mg/kg,铜(Cu) 5.09-28.66 mg/kg,锌(Zn) 56.39-140.94 mg/kg,锰(Mn) 19.68-392.75 mg/kg,镍(Ni) 6.49-10.09 mg/kg,镉(Cd) 0.10-4.49 mg/kg,铬(Cr) 0.85-1.89 mg/kg,铝(Al) 67.79-94.77 mg/kg。数据分析表明,土壤中微量元素与柳树皮样品的相关性各不相同,其中Ni(s)/Zn(p)和Fe(s)/Ca(p)相关性最高,其次是Fe(s)/Mg(p)、Al(s)/Ca(p)、Cr(s)/Mg(p)、Cr(s)/Cu(p)、Ni(s)/Ni(p)、Cu(s)/Ca(p)和Cu(s)/Zn(p)。柳树皮样品中微量元素的相关性存在差异。Cr与Al浓度的相关性最高,其次是Ni与Al浓度的相关性。Al与Fe、Ni与Cr、Cr与Fe、Ni与Fe、Ca与Mg浓度的相关性最强。传递系数最高的是Zn,其次是Cu > Ni > Cr > Al > Fe。
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