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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Influence of microbial hydroxamate siderophores on Pb(II) desorption from alpha-FeOOH
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Influence of microbial hydroxamate siderophores on Pb(II) desorption from alpha-FeOOH

机译:微生物异羟肟酸酯铁载体对α-FeO​​OH中Pb(II)解吸的影响

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Siderophores are low-molecular weight organic molecules secreted by plants and micro-organisms in response to Fe stress. With stability constants commonly exceeding 10(30), siderophores are considered to have higher affinities for Fe(III) than for any other major or trace element dissolved in soil solution. However, several siderophores have affinities for trace metals that approach those for Fe(III), and certain actinides form siderophore complexes of surprisingly high stability. The purpose of this study was to examine the role of hydroxamate siderophores in controlling Pb sorption to an Fe(III) oxide adsorbent. Goethite [alpha-FeOOH], prepared by standard methods and identified by X-ray diffraction, gave a specific surface of 36 m(2) g(-1) as determined by N-2 multipoint BET analysis. Adsorption experiments were performed aseptically using a batch method with a goethite concentration of 1.0 g l(-1) and an ionic strength of 0.01 M NaClO4. Soluble Pb and Fe were measured between pH 3 and 8 by first adding Pb (10 muM) and then siderophore (10, 20, or 40 muM) to the goethite suspension. Three hydroxamate siderophores were employed: desferrioxamine B (DFB), ferrichrome (FC), and rhodotorulic acid (RA). Following 20 h reaction, Pb and Fe in solution were measured by ICP-MS and ICP-AES, respectively. The efficacy of siderophore-mediated Pb desorption varied with siderophore type and generally increased with pH and siderophore/Pb molar ratio. Desferrioxamine B, at pH 6.5 and a DFB/Pb molar ratio of 4, solubilised nearly 25% of the total sorbed Pb. In the presence of 10 muM FC, Pb adsorption largely mimicked that for the siderophore-free system, whereas significant amounts of Pb were desorbed with 20 muM FC at pH > 5.5. The dihydroxamate siderophore, RA, was the least effective Pb chelator, requiring 20 muM to desorb detectable amounts of Pb. (C) 2003 Elsevier Ltd. All rights reserved. [References: 43]
机译:铁载体是植物和微生物响应铁胁迫而分泌的低分子量有机分子。由于稳定常数通常超过10(30),因此铁载体对Fe(III)的亲和力要高于溶解在土壤溶液中的任何其他主要或微量元素。但是,几种铁载体对痕量金属的亲和力接近于Fe(III)的金属,某些act系元素形成稳定性极高的铁载体配合物。这项研究的目的是检查异羟肟酸酯铁载体在控制Pb对Fe(III)氧化物吸附剂的吸附中的作用。通过标准方法制备并通过X射线衍射鉴定的针铁矿[α-FeO​​OH]的比表面积为36 m(2)g(-1),通过N-2多点BET分析确定。吸附实验是使用分批方法无菌进行的,针铁矿浓度为1.0 g l(-1),离子强度为0.01 M NaClO4。首先在针铁矿悬浮液中添加Pb(10μM),然后加入铁载体(10、20或40μM),测量pH在3至8之间的可溶性Pb和Fe。使用了三种异羟肟酸酯铁载体:去铁胺B(DFB),亚铁铬(FC)和杜鹃酸(RA)。反应20小时后,分别通过ICP-MS和ICP-AES测量溶液中的Pb和Fe。铁载体介导的Pb解吸的功效随铁载体类型而变化,并且通常随pH和铁载体/ Pb摩尔比而增加。 pH为6.5且DFB / Pb摩尔比为4的去铁胺B溶解了近25%的总吸附Pb。在10μMFC的存在下,Pb吸附在很大程度上模拟了无铁载体的体系,而在pH> 5.5的条件下,用20μMFC吸附了大量Pb。二氢异氰酸酯铁载体RA是最不有效的Pb螯合剂,需要20μM才能解吸可检测量的Pb。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:43]

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