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杆菌状鞘丝藻、浮丝藻和硫发菌对高铼酸根离子的有效吸附。

Effective adsorption of perrhenate ions on the filamentous sheath-forming bacteria, Sphaerotilus montanus, Sphaerotilus natans and Thiothrix fructosivorans.

机构信息

Graduate School of Engineering, Yokohama National University, Yokohama, Japan.

出版信息

J Appl Microbiol. 2022 Aug;133(2):607-618. doi: 10.1111/jam.15590. Epub 2022 Apr 30.

Abstract

AIMS

This study aimed to unveil perrhenate sorption properties of the filamentous sheaths formed by Sphaerotilus montanus, Sphaerotilus natans and Thiothrix fructosivorans.

METHODS AND RESULTS

The adsorptions of perrhenate on lyophilizates of the above-mentioned filamentous sheaths were analysed by ICP, IR, XPS and EDX. The capacity reached 82 mg per g-adsorbent, when using S. natans. The Langmuir coefficient of this adsorbent was found to be the largest of the three. The adsorption capacity was discussed with respect to the amount of nitrogen and phosphorus in the adsorbents. The occurrence of anion exchange was implied by the IR spectrum changes before and after adsorption. The adsorption data fitted well with a pseudo-second-order equation, suggesting that the rate is determined by the chemical bond formation.

CONCLUSIONS

A significant amount of perrhenate was adsorbed on the sheaths formed by S. montanus, S. natans and T. fructosivorans. The adsorption was correlated with the elemental compositions. A strong chemical bond formation was suggested from the results of the Langmuir adsorption isotherm and kinetic analysis.

SIGNIFICANCE AND IMPACT OF STUDY

The capacity obtained for S. natans is one of the largest adsorptions amongst the similar biomaterials, implying the possibility of providing economical adsorbents of rare metal oxyanions.

摘要

目的

本研究旨在揭示 Sphaerotilus montanus、Sphaerotilus natans 和 Thiothrix fructosivorans 丝状鞘形成的过铼酸盐吸附特性。

方法和结果

通过电感耦合等离子体(ICP)、红外光谱(IR)、X 射线光电子能谱(XPS)和能谱分析(EDX)分析了过铼酸盐在上述丝状鞘冻干物上的吸附。当使用 S. natans 时,达到了 82mg/g-吸附剂的吸附容量。该吸附剂的 Langmuir 系数是三种中最大的。通过对吸附剂中氮和磷含量的讨论,探讨了吸附容量。吸附前后 IR 光谱的变化表明发生了阴离子交换。吸附数据与准二级方程拟合良好,表明速率由化学键形成决定。

结论

大量的过铼酸盐被 S. montanus、S. natans 和 T. fructosivorans 形成的鞘吸附。吸附与元素组成有关。从 Langmuir 吸附等温线和动力学分析的结果来看,建议形成了强化学键。

研究的意义和影响

从 S. natans 获得的容量是类似生物材料中最大的吸附容量之一,这意味着提供稀有金属含氧阴离子的经济吸附剂是可能的。

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