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首页> 外文期刊>RSC Advances >Molecular fractionation of a soil fulvic acid (FA) and competitive sorption of trace metals (Cu, Zn, Cd, Pb) in hematite–solution systems: effect of the FA-to-mineral ratio
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Molecular fractionation of a soil fulvic acid (FA) and competitive sorption of trace metals (Cu, Zn, Cd, Pb) in hematite–solution systems: effect of the FA-to-mineral ratio

机译:赤铁矿-溶液系统中土壤黄腐酸(FA)的分子分离和微量金属(铜,锌,镉,铅)的竞争性吸附:FA与矿物质比例的影响

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Understanding of the interactions occurring between fulvic acids (FAs) and trace metals in mineral–solution systems is a major issue for cycles of organic matter and micro-pollutants in surface media. Batch experiments and molecular-scale investigations were conducted to address the mechanisms regulating the molecular fractionation of a terrestrial FA and the competition between Cu, Zn, Cd and Pb during sorption onto hematite, a mineral ubiquitous in soils, with a focus on effects of FA-to-mineral ratio (r). A main result is that r controlled both the identity of the FA molecules preferentially sorbed on hematite and the sequence of the FA-promoted sorption of metals, at acidic pH. Data at moderate r evidenced that the sorption degree of a FA molecule increased with molecular acidity, supporting surface complex formation at hematite sites involving preferentially the most acidic and oxygenated FA molecules. FA-promoted sorption of strong Lewis acids such as Pb and Cu was favored (relative to Cd or Zn) by sorbed FA bearing multiple oxygenated functionalities. In contrast, preferential uptake of condensed aromatics and low oxygenated aliphaticsot-condensed aromatics prevailed at high r. A reduced FA-promoted sorption of Cu, which contrasted with an increased FA-promoted sorption of Cd, was observed too. Complex interactions must be invoked (competitive effects, hydrophobic forces, hydrogen bonding) to explain the striking results obtained in highly-competitive FA-concentrated systems. Our data highlight that (coupled) retention/mobilization of reactive organic molecules and of toxic metals like Cd and Pb is a function of the FA-to-metal oxide ratio of soils.
机译:矿物溶液系统中富里酸(FAs)与微量金属之间相互作用的理解是表面介质中有机物和微量污染物循环的主要问题。进行了批处理实验和分子规模研究,以研究调节陆生FA的分子分级以及在土壤中普遍存在的矿物质赤铁矿上吸附过程中Cu,Zn,Cd和Pb之间的竞争的机制。与矿物质的比率( r )。主要结果是 r 在酸性pH值下控制着优先吸附在赤铁矿上的FA分子的身份以及FA促进的金属吸附的顺序。中度 r 的数据表明,FA分子的吸附程度随分子酸度的增加而增加,从而支持在赤铁矿位点形成表面复合物,其中最优先选择酸性和氧化性最强的FA分子。 FA促进了强路易斯酸(如Pb和Cu)的吸附(相对于Cd或Zn),是因为FA吸附了多种氧化官能团。相反,在高 r 下,优先吸收了稠合芳烃和低含氧脂肪族/非稠合芳烃。还观察到FA促进的Cu吸附减少,而FA促进的Cd吸附增加。必须调用复杂的相互作用(竞争作用,疏水力,氢键)来解释在高度竞争的FA​​浓缩系统中获得的惊人结果。我们的数据突出表明,反应性有机分子以及有毒金属(例如Cd和Pb)的(耦合)保留/迁移是土壤中FA与金属氧化物比率的函数。

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