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浅析低剂量辐照预处理对活性红 120 染料微生物脱色和降解的影响。

An insight into the influence of low dose irradiation pretreatment on the microbial decolouration and degradation of Reactive Red-120 dye.

机构信息

Radiation Technology Development Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400 085, India.

出版信息

Chemosphere. 2013 Jan;90(4):1348-58. doi: 10.1016/j.chemosphere.2012.07.049. Epub 2012 Sep 11.

Abstract

The influence of low dose irradiation pretreatment on the microbial decolouration and degradation of Reactive Red-120 (RR-120) dye was investigated in detail by using Pseudomonas sp. SUK1. About 27%, 56% and 66% decolouration of 150 ppm RR-120 dye solution was observed by applying 0, 0.5 and 1 kGy doses, respectively, in the first step followed by microbial treatment for 24 h under static condition. Similarly, about 70%, 88% and 90% TOC removal was observed by applying 0, 0.5 and 1 kGy doses, respectively, in the first step followed by the microbial treatment for 96 h under static condition. The radiation induced fragmented products of RR-120 at doses of 0.5 and 1 kGy were investigated by FTIR and electrospray ionization-MS analysis. The induction of the enzymes viz. laccase, tyrosinase, azoreductase and NADH-2,6-dichlorophenol indophenol reductase was studied in the decolourised solution obtained after irradiating 150 ppm RR-120 dye solution with 0 and 1 kGy doses followed by the microbial treatment for 96 h under static condition. The enzymatic degradation products were studied by FTIR, HPLC and GC-MS. The toxicity study of the treated dye solution on plants revealed the degradation of RR-120 into non-toxic products by combined radiation-microbial treatment. This study explores a reliable and promising way to use industrially viable dose (≤1 kGy) and microbial strain viz. Pseudomonas sp. SUK1 for permissible safe disposal of dye solutions from textile industries.

摘要

采用假单胞菌 SUK1 详细研究了低剂量辐照预处理对活性红 120(RR-120)染料微生物脱色和降解的影响。在第一阶段分别施加 0、0.5 和 1 kGy 剂量,然后在静态条件下进行 24 小时微生物处理,观察到 150 ppm RR-120 染料溶液的脱色率分别为 27%、56%和 66%。同样,在第一阶段分别施加 0、0.5 和 1 kGy 剂量,然后在静态条件下进行 96 小时微生物处理,观察到 TOC 去除率分别为 70%、88%和 90%。用 0.5 和 1 kGy 剂量的 RR-120 的辐射诱导的碎片化产物通过傅里叶变换红外光谱(FTIR)和电喷雾电离-MS 分析进行了研究。在 150 ppm RR-120 染料溶液用 0 和 1 kGy 剂量辐照后,在静态条件下进行 96 小时微生物处理,获得的脱色溶液中研究了酶如漆酶、酪氨酸酶、偶氮还原酶和 NADH-2,6-二氯酚靛酚还原酶的诱导。通过 FTIR、HPLC 和 GC-MS 研究了酶促降解产物。对处理后的染料溶液对植物的毒性研究表明,通过联合辐射-微生物处理,RR-120 降解为无毒产物。这项研究探索了一种可靠且有前途的方法,可使用工业可行的剂量(≤1 kGy)和微生物菌株,如假单胞菌 SUK1,对来自纺织工业的染料溶液进行允许的安全处理。

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