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Determination of thorium and light rare-earth elements in soil water and its high molecular mass organic fractions by inductively coupled plasma mass spectrometry and on-line-coupled size-exclusion chromatography

机译:电感耦合等离子体质谱和在线耦合排阻色谱法测定土壤水中的and和轻稀土元素及其高分子有机组分

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Inductively coupled plasma mass spectrometry (ICP-MS) has been used for the determination of thorium and light rare-earth elements (LREEs) in soil and soil water samples from a mineral deposit (Morro do Ferro, Minas Gerais, Brazil). Size-exclusion chromatography (SEC) on-line coupled to ICP-MS and UV-detection was applied to verify possible association/complexation of these elements with organic matter in soil water separated by a centrifugation technique. Coincentrations of DOC in soil waters are in the range of 10 to 500 mg L~(-1) and correlate with the organic carbon content of the soil (r=0.950; P<0.001). Concentrations of 30 to 40 μg L~(-1) for the LREEs (La, Ce, Nd) and up to 14 μg L~(-1) for Th were measured in soil waters of highest DOC content. SEC chromatograpms of these waters showed the association of elements with different nominal high-molecular-mass ranges, characteristic of soil humic and fulvic acids: >10, 000 Da, with a retention time of about 10 min; 7000 to 8000 Da with retention times of 13 to 15 min; and 2000 to 4000 Da with retention times around 23 min. Elemental peaks associated with dissolved organic matter below 1000 Da were not observed, suggesting that complexation with simple plant organic acids or inorganic ligands is of minor importance in the environment studied in this work.
机译:电感耦合等离子体质谱法(ICP-MS)已用于测定矿床(巴西米纳斯吉拉斯州的Morro do Ferro)的土壤和土壤水样品中的and和轻稀土元素(LREE)。在线耦合至ICP-MS和UV检测的尺寸排阻色谱(SEC)用于验证通过离心技术分离的土壤水中这些元素与有机物的可能缔合/络合。土壤水中DOC的浓度范围为10〜500 mg L〜(-1),与土壤有机碳含量相关(r = 0.950; P <0.001)。在DOC含量最高的土壤水中,LREE(La,Ce,Nd)的浓度为30至40μgL〜(-1),Th的浓度高达14μgL〜(-1)。这些水的SEC色谱图显示出具有不同标称高分子质量范围的元素的关联,土壤腐殖酸和黄腐酸的特征:> 10,000 Da,保留时间约为10分钟; 7000至8000 Da,保留时间为13至15分钟;和2000至4000 Da,保留时间约23分钟。未观察到低于1000 Da的与溶解有机物相关的元素峰,这表明与简单植物有机酸或无机配体的络合在此研究的环境中重要性不大。

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