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复苏促进因子策略分离得到的固定化芽孢杆菌JF4 对蒽醌染料活性艳蓝 19 的有效脱色作用。

Effective decolorization of anthraquinone dye reactive blue 19 using immobilized Bacillus sp. JF4 isolated by resuscitation-promoting factor strategy.

机构信息

College of Geography and Environmental Science, Zhejiang Normal University, Jinhua 321004, China E-mail:

Juhua Group Corporation, Quzhou 32400, China.

出版信息

Water Sci Technol. 2020 Mar;81(6):1159-1169. doi: 10.2166/wst.2020.201.

Abstract

Given the highly complex recalcitrant nature of synthetic dyes, biological treatment of textile wastewater using efficient bacterial species is still considered as an environmentally friendly manner. In this study, a reactive blue 19 (RB19)-degrading strain, Bacillus sp. JF4, which was isolated by resuscitation-promoting factor (Rpf) strategy, was immobilized into polyvinyl alcohol-calcium alginate-activated carbon beads (JF4-immobilized beads) for RB19 decolorization. Results suggest that the JF4-immobilized beads, which were capable of simultaneous adsorption and biodegradation, showed a high decolorization activity, while they exhibited better tolerability towards high RB19 concentrations. The JF4-immobilized beads could almost completely decolorize 100 mg/L RB19 within 10 d, while only 92.1% was decolorized by free bacteria within 12 d. Further investigation on the equilibrium and kinetics of the adsorption process suggests that the pseudo-second-order model best fit the adsorption kinetics data, and the Freundlich isotherm was the most suitable for the description of the equilibrium data. Notably, the repeated batch cycles indicated that complete decolorization of 100 mg/L RB19 by JF4-immobilized beads can be maintained for at least three cycles without much reduction in efficiency. These findings suggest that immobilizing Rpf-resuscitated strain into beads was an effective strategy for textile wastewater treatment.

摘要

鉴于合成染料的高度复杂和顽固性,使用高效细菌物种对纺织废水进行生物处理仍然被认为是一种环保的方式。在这项研究中,通过复苏促进因子(Rpf)策略分离得到了一种能够降解活性蓝 19(RB19)的菌株,芽孢杆菌 sp. JF4,并将其固定在聚乙烯醇-海藻酸钠-活性炭珠(JF4-固定珠)中用于 RB19 的脱色。结果表明,JF4-固定珠具有同时吸附和生物降解的能力,表现出较高的脱色活性,同时对高 RB19 浓度具有更好的耐受性。JF4-固定珠可以在 10 d 内几乎完全脱色 100 mg/L 的 RB19,而游离菌在 12 d 内仅脱色 92.1%。对吸附过程的平衡和动力学的进一步研究表明,伪二级模型最适合吸附动力学数据,而 Freundlich 等温线最适合描述平衡数据。值得注意的是,重复批处理循环表明,JF4-固定珠可以在至少三个循环内保持 100 mg/L RB19 的完全脱色,而效率没有明显降低。这些发现表明,将 Rpf 复苏的菌株固定在珠中是处理纺织废水的一种有效策略。

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