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Biodegradation of trinitrotoluene by immobilized Bacillus sp. YRE1

机译:固定化芽孢杆菌属菌株对三硝基甲苯的生物降解YRE1

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The present study focus on the biodegradation of trinitrotoluene (TNT) by Bacillus sp. YRE1 isolated from red effluent in free state and also cells immobilized on charcoal and polystyrene. TNT degradation was monitored weekly for 168 hours, at 262 nm. Immobilized Bacillus sp. YRE1 was checked for its ability to degrade TNT by exposing it to different temperatures. It was found that both charcoal and polystyrene immobilized bacteria degraded TNT more efficiently at 37oC. Maximum percentage reduction in case of charcoal immobilized Bacillus sp. YRE1 at 37oC was calculated as 73.35%. Whereas, polystyrene immobilized bacteria showed 70.58% reduction. Bacillus sp. YRE1 immobilized on charcoal, showed maximum degradation at pH 7 with 93.81% reduction in TNT. Similarly, pH 5 was found to be optimum for the degradation of TNT by polystyrene immobilized bacteria, with percentage reduction as 94%. Charcoal immobilized cells showed increased transformation with 96% reduction in the presence of Tween 20, whereas, polystyrene immobilized cultures showed 87.77% reduction in TNT.
机译:本研究的重点是芽孢杆菌对三硝基甲苯(TNT)的生物降解作用。从游离状态的红色流出物中分离出YRE1,并将细胞固定在木炭和聚苯乙烯上。每周在262 nm处监测TNT降解168小时。固定芽孢杆菌通过将YRE1暴露于不同温度来检查其降解TNT的能力。发现木炭和聚苯乙烯固定的细菌都可以在37oC下更有效地降解TNT。如果固定有木炭芽孢杆菌,则最大降低百分比。 37°C时的YRE1计算为73.35%。而固定化聚苯乙烯的细菌减少了70.58%。芽孢杆菌固定在木炭上的YRE1在pH值为7时显示出最大的降解,TNT降低了93.81%。类似地,发现pH 5对于固定聚苯乙烯的细菌降解TNT而言是最佳的,百分比降低为94%。固定有木炭的细胞在Tween 20存在下显示出增加的转化,降低了96%,而固定有聚苯乙烯的培养物显示出TNT降低了87.77%。

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