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Determination of Labile Fe(II) Species Complexed with Seawater Extractable Organic Matter Under Seawater Conditions Based on the Kinetics of Ligand-exchange Reactions with Ferrozine

机译:铁盐配体交换反应动力学确定海水中可萃取有机物络合的不稳定Fe(II)物种

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A fertilizer, comprised of a mixture of steel slag and compost, was used to restore seaweed beds in barren coastal areas. Complex Fe(II) species, supplied by steel slag, play a significant role in supplying Fe(II) to coastal areas and stimulating seaweed growth. Seawater extractable organic matter (SWEOM) from compost is generally assumed to serve as a chelator of Fe(II) in the fertilizer. It is considered that the bioavailability of Fe(II)-SWEOM complexes is higher in the dissociable (labile) species. In the present study, a method for determining labile species of Fe(II)-SWEOM complexes in seawater (pH 8.0, I = 0.7) was developed. The method is based on a ligand-exchange reaction between SWEOM and ferrozine (FZ). Because Fe(II) is readily oxidized to Fe(III) under normal seawater conditions, ascorbic acid was added as an antioxidant. The coloring for the Fe-FZ complex in the presence of SWEOM was retarded. This retarding can be attributed to a ligand-exchange reaction between FZ and labile Fe(II)-SWEOM complexes. Conditional binding constants for the labile Fe(II)-SWEOM complexes and binding capacities of labile sites in SWEOM to Fe(II) were evaluated for a variety of total Fe(II) concentrations.
机译:一种由钢渣和堆肥的混合物组成的肥料被用于在贫瘠的沿海地区修复海藻床。由钢渣供应的复杂的Fe(II)物种在向沿海地区供应Fe(II)和刺激海藻生长方面发挥着重要作用。通常认为堆肥中的海水可提取有机物(SWEOM)可作为肥料中Fe(II)的螯合剂。据认为,Fe(II)-SWEOM配合物的生物利用度在可解离(不稳定)物种中较高。在本研究中,开发了一种测定海水中pH(8.0,I = 0.7)的Fe(II)-SWEOM络合物不稳定物种的方法。该方法基于SWEOM和铁锌(FZ)之间的配体交换反应。由于在正常海水条件下,Fe(II)容易被氧化为Fe(III),因此添加了抗坏血酸作为抗氧化剂。在SWEOM存在下,Fe-FZ络合物的着色被延迟。这种阻滞可以归因于FZ和不稳定的Fe(II)-SWEOM配合物之间的配体交换反应。对于各种总Fe(II)浓度,评估了不稳定的Fe(II)-SWEOM复合物的条件结合常数以及SWEOM中不稳定的位点与Fe(II)的结合能力。

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