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Highly efficient biodegradation of reactive blue 19 under the activation of tea residue by a newly screened mixed bacterial flora DDMY2

机译:新筛选的混合细菌菌群DDMY2在茶渣活化下对活性蓝19的高效生物降解

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In this study, a newly screened mixed bacterial flora DDMY2 had high decolorization capacity for anthraquinone dye reactive blue 19 (RB19) and the decolorization efficiency of 300 mg L ~(?1) RB19 could reach up to 98% within 48 h in the presence of tea residue. Results indicated that RB19 could be efficiently decolorized by flora DDMY2 in wide ranges of pH values (5.0–9.0), temperatures (30–40 °C) and initial dye concentrations (50–500 mg L ~(?1) ) under the activation of tea residue. Concentration of tea residue had been proved to significantly impact the decolorization performance. UV-vis spectrophotometry, Fourier transform infrared spectrometry and liquid chromatography/time-of-flight/mass spectrometry analysis showed three identified degradation products and the possible degradation pathway of RB19 was speculated. High-throughput sequencing analysis revealed the community structures of bacterial flora before and after domestication by tea residue. Based on the result, it was inferred that unclassified _ o _ Pseudomonadales , Brevibacillus , Stenotrophomonas and Bordetella activated by tea residue were responsible for the excellent decolorization performance. Results of this research deepen our understanding of the biodegradation process of anthraquinone dyes by bacterial flora and broaden the knowledge of utilizing tea residue as a bioactivator in biological treatment.
机译:在这项研究中,新筛选的混合菌群DDMY2对蒽醌染料活性蓝19(RB19)具有较高的脱色能力,在存在的情况下,在48 h内300 mg L〜(?1)RB19的脱色效率可达98%茶渣。结果表明,在活化条件下,大范围的pH值(5.0–9.0),温度(30–40°C)和初始染料浓度(50–500 mg L〜(?1))下,菌落DDMY2可以有效地使RB19脱色。茶渣。茶渣的浓度已被证明会显着影响脱色性能。紫外可见分光光度法,傅里叶变换红外光谱法和液相色谱/飞行时间/质谱法分析显示三种已鉴定的降解产物,并推测了RB19的可能降解途径。高通量测序分析揭示了茶渣驯化前后细菌菌群的群落结构。根据该结果,推断茶残渣活化的未分类的假单胞菌,短杆菌,嗜单胞菌和博德特氏菌具有优异的脱色性能。这项研究的结果加深​​了我们对细菌菌群对蒽醌染料生物降解过程的了解,并拓宽了在生物处理中利用茶渣作为生物活化剂的知识。

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