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Metal-organic matter interaction: Ecological roles of ligands in oceanic DOM

机译:金属与有机物的相互作用:配体在海洋DOM中的生态作用

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摘要

The ecological roles of dissolved organic matter (DOM) in seawater have not been well understood. One definite function of DOM stems from its complexation ability with trace metals under the conditions of seawater. A chemical complexation model of the marine system was introduced in order to clarify the ecological roles of strong organic ligands in DOM related to the acquisition of bioactive metals (Cu, Fe and Zn) by phytoplankton, assuming that two types of strong organic ligands coexist in oceanic DOM and complexes with bioactive metals. The results reveal that the weaker organic ligand, rather than the stronger one, plays a significant role in the reduction of Cu toxicity for phytoplankton growth. It is suggested that the presence of reactions with Cu that are competitive to the strong organic ligand causes extremely low Fe concentrations in seawater and leads to Fe deficiency for phytoplankton growth. Therefore, it is concluded that the strong ligands in DOM play a chemical role in controlling free ion concentration levels of bioactive metals in the marine environment. (c) 2007 Elsevier Ltd. All rights reserved.
机译:海水中溶解性有机物(DOM)的生态作用尚未得到很好的了解。 DOM的一项明确功能来自其在海水条件下与微量金属的络合能力。为了阐明在浮游植物中两种类型的强有机配体共存的情况下,浮游植物获得与生物活性金属(铜,铁和锌)有关的DOM中的强有机配体的生态作用,引入了海洋系统的化学络合模型。海洋DOM和具有生物活性金属的复合物。结果表明,较弱的有机配体,而不是较强的有机配体,在减少铜对浮游植物生长的毒性中起重要作用。建议与强有机配体竞争的铜反应会导致海水中的铁浓度极低,并导致浮游植物生长中的铁缺乏。因此,可以得出结论,DOM中的强配体在控制海洋环境中生物活性金属的游离离子浓度水平方面起着化学作用。 (c)2007 Elsevier Ltd.保留所有权利。

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