首页> 外文期刊>Environmental Science and Pollution Research >Simultaneous determination of inorganic and organic ions in plant parts of Betula pendula from two different types of ecosystems (Wielkopolski National Park and Chemical Plant in LuboA', Poland)
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Simultaneous determination of inorganic and organic ions in plant parts of Betula pendula from two different types of ecosystems (Wielkopolski National Park and Chemical Plant in LuboA', Poland)

机译:同时测定来自两种不同类型生态系统(波兰的Wielkopolski国家公园和化工厂的LuboA的化工厂)的桦木植物部分中的无机和有机离子

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The results of inorganic and organic anion concentrations in samples of soils and plant parts of Betula pendula (tap roots, lateral roots, stem, twigs, leaves), in the bioavailable fraction, are presented in this study. An ion chromatography method was applied for the first time in the simultaneous determination of inorganic and organic anions, as an effective tool for qualitative and quantitative analysis of samples with different matrix. A linear gradient elution with potassium hydroxide allowed for the separation of both inorganic and organic ions such as: F-, CH3COO-, HCOO-, Cl-, NO2 (-), Br- and NO3 (-), SO4 (2-), CH2(COO)(2) (2-), C2O4 (2-), PO4 (3-) and C3H5O(COO)(3) (3-). The samples of soils and plant parts of B. pendula from the area of the Wielkopolski National Park (WNP) and the Chemical Plant in LuboA" (LU; protected vs. contaminated area) were selected for the study. The obtained results indicated that such inorganic ions as: F-, Cl-, NO3 (-) and PO4 (3-) are quite easily transported from soil to leaves. In contrast, the mechanism of migration could not be clearly defined for SO4 (2-) because the ion was retained in roots of many of the analysed samples. Significantly higher bioavailability of inorganic ions was observed for samples collected from the area of the WNP. Phosphates were the only ions which showed no variation in their concentrations between the two sampling sites, both for soils and plant parts of B. pendula. None of the organic anions was detected in soil samples. The acetate, formate, malonate, oxalate and citrate ions were detected in all leaf samples. The statistical analysis allowed the author to determine the mechanism of ion migration and accumulation in leaves and, additionally, determine the variation in the occurrence of inorganic and organic ions depending on the sampling site (WNP vs. LU). The results of the statistical analysis were confirmed by the bioacumulation (BF) and translocation (TF) factors.
机译:这项研究显示了Betula pendula的土壤和植物部分(水龙头根,侧根,茎,枝,叶)样品中无机和有机阴离子浓度的生物可利用分数。首次将离子色谱法用于无机和有机阴离子的同时测定,作为有效定性和定量分析具有不同基质的样品的有效工具。用氢氧化钾线性梯度洗脱可分离无机和有机离子,例如:F-,CH3COO-,HCOO-,Cl-,NO2(-),Br-和NO3(-),SO4(2-) ,CH2(COO)(2)(2-),C2O4(2-),PO4(3-)和C3H5O(COO)(3)(3-)。选择了Wielkopolski国家公园(WNP)和LuboA“化工厂(LU;受保护区与受污染区)的B. pendula土壤和植物部分的样品进行研究。获得的结果表明, F-,Cl-,NO3(-)和PO4(3-)等无机离子很容易从土壤转运到叶片,而SO4(2-)的迁移机理尚不清楚,因为该离子残留在许多分析样品的根中,从WNP区域收集的样品中观察到无机离子的生物利用度显着提高,磷酸盐是唯一两个在两个采样点之间浓度均无变化的离子在土壤样品中均未检出有机阴离子,在所有叶片样品中均检出了乙酸根,甲酸根,丙二酸根,草酸根和柠檬酸根离子,经统计分析,可确定离子的机理。叶片中的迁移和积累,此外,还取决于采样点(WNP与LU)确定无机和有机离子的发生变化。统计分析的结果由生物累积(BF)和易位(TF)因子证实。

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