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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Sorption and precipitation of Mn~(2+) by viable and autoclaved Shewanella putrefaciens: Effect of contact time
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Sorption and precipitation of Mn~(2+) by viable and autoclaved Shewanella putrefaciens: Effect of contact time

机译:可行的高压灭菌的希瓦氏菌吸附和沉淀Mn〜(2+):接触时间的影响

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摘要

The sorption of Mn(II) by viable and inactivated cells of Shewanella putrefaciens, a non-pathogenic, facultative anaerobic, gram-negative bacterium characterised as a Mn(IV) and Fe(III) reducer, was studied under aerobic conditions, as a function of pH, bacterial density and metal loading. During a short contact time (3-24h), the adsorptive behaviour of live and dead bacteria toward Mn(II) was sufficiently similar, an observation that was reflected in the studies on adsorption kinetics at various metal loadings, effects of pH, bacteria density, isotherms and drifting of pH during adsorption. Continuing the experiment for an additional 2-30days demonstrated that the Mn(II) sorption by suspensions of viable and autoclaved cells differed significantly from one another. The sorption to dead cells was characterised by a rapid equilibration and was described by an isotherm. In contrast, the sorption (uptake) to live bacteria exhibited a complex time-dependent uptake. This uptake began as adsorption and ion exchange processes followed by bioprecipitation, and it was accompanied by the formation of polymeric sugars (EPS) and the release of dissolved organic substances. FTIR, EXAFS/XANES and XPS demonstrated that manganese(II) phosphate was the main precipitate formed in 125ml batches, which is the first evidence of the ability of microbes to synthesise manganese phosphates. XPS and XANES spectra did not detect Mn(II) oxidation. Although the release of protein-like compounds by the viable bacteria increased in the presence of Mn2+ (and, by contrast, the release of carbohydrates did not change), electrochemical analyses did not indicate any aqueous complexation of Mn(II) by the organic ligands.
机译:在有氧条件下,研究了腐臭希瓦氏菌(Shewanella putrefaciens)(一种非病原性兼性厌氧革兰氏阴性细菌,以Mn(IV)和Fe(III)还原剂为特征)的存活和失活细胞对Mn(II)的吸附。 pH,细菌密度和金属负载的功能。在短时间内(3-24小时),活细菌和死细菌对Mn(II)的吸附行为非常相似,这一观察结果反映在各种金属负载下的吸附动力学,pH值,细菌密度的影响研究中,等温线和吸附过程中pH的漂移。继续进行另外2-30天的实验表明,活细胞和高压灭菌细胞的悬浮液对Mn(II)的吸附存在显着差异。对死细胞的吸附以快速平衡为特征,并用等温线描述。相反,对活细菌的吸附(吸收)表现出复杂的时间依赖性吸收。这种吸收开始于吸附和离子交换过程,随后发生生物沉淀,并伴随着聚合糖(EPS)的形成和溶解有机物的释放。 FTIR,EXAFS / XANES和XPS证明磷酸锰(II)是125毫升批次中形成的主要沉淀物,这是微生物合成磷酸锰能力的第一个证据。 XPS和XANES光谱未检测到Mn(II)氧化。尽管在Mn2 +的存在下活细菌释放的蛋白样化合物增加了(相反,碳水化合物的释放没有变化),但电化学分析并未表明有机配体对Mn(II)的任何水络合。

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