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使用 TF05 优化玫瑰红的脱色条件及脱色机制。

Optimization of the decolorization conditions of Rose Bengal by using TF05 and a decolorization mechanism.

机构信息

School of Life Sciences, Hefei Normal University, Hefei, Anhui 230601, PR China.

出版信息

Microbiology (Reading). 2022 Jan;168(1). doi: 10.1099/mic.0.001128.

Abstract

TF05 was applied to decolorize Rose Bengal dye. The effects of carbon source, nitrogen source, metal ion and spore concentration on Rose Bengal treatment with TF05 were studied. A Plackett-Burman design (PBD) and a uniform design (UD) were used to optimize the decolorization conditions of TF05 and enhance its decolorization effect. The mechanism of Rose Bengal decolorization by TF05 was examined by analysing degradation products via UV-visible light spectroscopy, IR spectroscopy and GC-MS. The best decolorization effect was achieved in the single factor test with glucose and ammonium chloride as carbon and nitrogen sources, respectively. Mg was an essential ion that could improve the mould ball state and adsorption efficiency if the spore concentration was maintained at 10 spores ml. The optimal decolorization conditions obtained using the PBD and UD methods were 11.5 g l glucose, 6.5 g l ammonium chloride, 0.4 g l magnesium sulphate, pH 5.8, 28 °C, 140 r.p.m. rotational speed, 0.18 g l dye concentration, 0.5 ml of inocula and 120 h decolorization time. Under these conditions, the maximum decolorization rate was 106%. Spectral analysis suggested that the absorption peak of the product changed clearly after decolorization; GC-MS analysis revealed that the intermediate product tetrachlorophthalic anhydride formed after decolorization. The combined use of the PBD and UD methods can optimize multi-factor experiments. TF05 decolorized Rose Bengal during intracellular enzymatic degradation after adsorption.

摘要

TF05 被应用于还原玫瑰红 B 染料。研究了碳源、氮源、金属离子和孢子浓度对 TF05 处理玫瑰红 B 的影响。采用 Plackett-Burman 设计(PBD)和均匀设计(UD)优化 TF05 的脱色条件,增强其脱色效果。通过紫外可见分光光度法、红外光谱法和 GC-MS 分析降解产物,考察了 TF05 还原玫瑰红 B 的机制。在单因素试验中,以葡萄糖和氯化铵分别作为碳源和氮源,取得了最佳的脱色效果。镁是一种必需的离子,如果保持孢子浓度为 10 个孢子/ml,则可以改善霉菌球的状态和吸附效率。利用 PBD 和 UD 方法得到的最佳脱色条件为:葡萄糖 11.5 g/L、氯化铵 6.5 g/L、硫酸镁 0.4 g/L、pH 值 5.8、28°C、转速 140 r.p.m.、染料浓度 0.18 g/L、接种量 0.5 ml 和脱色时间 120 h。在此条件下,最大脱色率为 106%。光谱分析表明,脱色后产物的吸收峰明显变化;GC-MS 分析表明,脱色后形成了中间产物四氯邻苯二甲酸酐。PBD 和 UD 方法的联合使用可以优化多因素实验。TF05 吸附后通过细胞内酶降解还原玫瑰红 B。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a73/8914245/47c42c0085d5/mic-168-1128-g001.jpg

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