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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Dissociation kinetics of Fe(III)-and Al(III)-natural organic matter complexes at pH 6.0 and 8.0 and 25 C
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Dissociation kinetics of Fe(III)-and Al(III)-natural organic matter complexes at pH 6.0 and 8.0 and 25 C

机译:Fe(III)和Al(III)-天然有机物在pH 6.0和8.0以及25 C下的离解动力学

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摘要

The rate at which ironand aluminium-natural organic matter (NOM) complexes dissociate plays a critical role in the transport of these elements given the readiness with which they hydrolyse and precipitate. Despite this, there have only been a few reliable studies on the dissociation kinetics of these complexes suggesting half-times of some hours for the dissociation of Fe(III) and Al(III) from a strongly binding component of NOM. First-order dissociation rate constants are re-evaluated here at pH 6.0 and 8.0 and 25 C using both cation exchange resin and competing ligand methods for Fe(III) and a cation exchange resin method only for Al(III) complexes. Both methods provide similar results at a particular pH with a two-ligand model accounting satisfactorily for the dissociation kinetics results obtained. For Fe(III), half-times on the order of 6–7 h were obtained for dissociation of the strong component and 4-5 min for dissociation of the weak component. For aluminium, the half-times were on the order of 1.5 h and 1-2 min for the strong and weak components, respectively. Overall, Fe(III) complexes with NOM are more stable than analogous complexes with Al(III), implying Fe(III) may be transported further from its source upon dilution and dispersion.
机译:铁和铝-天然有机物(NOM)络合物的解离速率在这些元素的运输中起着至关重要的作用,因为它们易于水解和沉淀。尽管如此,关于这些络合物的解离动力学只有很少的可靠研究表明,Fe(III)和Al(III)从NOM的强结合组分中解离需要几个小时。一阶解离速率常数在pH 6.0和8.0以及25°C下使用阳离子交换树脂和竞争配体方法对Fe(III)以及仅对Al(III)配合物使用阳离子交换树脂方法进行了重新评估。两种方法在特定pH值下均提供了相似的结果,并且使用双配体模型令人满意地说明了所获得的离解动力学结果。对于Fe(III),强组分的离解时间为6-7 h,弱组分的离解时间为4-5分钟。对于铝,强和弱组分的半衰期分别为1.5小时和1-2分钟。总体而言,具有NOM的Fe(III)配合物比具有Al(III)的类似配合物更稳定,这意味着经过稀释和分散后,Fe(III)可能从其来源进一步转运。

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