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Fast biodegradation of toxic bisphenol a by Pseudomonas aeruginosa NR.22 (Ps.NR.22) isolated from Malaysian local lake

机译:从马来西亚本地湖中分离的铜绿假单胞菌NR.22(PS.NR.22)快速生物降解。

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The paper focused on microbial degradation of Bisphenol A (BPA) as a safe and fast method to reduce BPA contamination in water. BPA is found in waste water, sea water and home water pipeline and it is nondegradable pollutant. Biodegradation is suggested to be practical solution for large volume of BPA. Biodegradation plays an important role and the effect of low concentration significantly decreased the degradation rate. Pseudomonas aeruginosa NR.22 (Ps.NR.22) which has been isolated from a lake at Seksyen 2, Shah Alam, was used. In Malaysia, Ps.NR.22 isolation agar is used for the BPA degradation process. It was stained with Gram negative-rod shaped bacteria that confirmed to carry a 16S rRNA gene. BPA as a sole carbon has been tested at various concentrations. The research showed that BPA was degraded at 10, 20, 30, 40 and 50 ppm and the bacteria growth rate was excellent in 20 ppm BPA. Degradation of BPA was carried out for 9 hours to 18 hours and the maximum degradation was recorded at 9 hours. The value of the highest peak of growth at 540 nm was 2.0617 using 20 ppm BPA. This novel Pseudomonas aeruginosa NR.22 has great potential to be used in waste water treatment.
机译:本文集中于双酚A(BPA)的微生物降解作为减少水中BPA污染的安全和快速方法。 BPA在废水,海水和家用水管道中发现,它是不良污染物。建议生物降解是大量BPA的实际解决方案。生物降解起到重要作用,低浓度的效果显着降低了降解率。使用了从Seksyen 2,Shah Alam的湖中分离出来的铜绿假单胞菌NR.22(PS.NR.22)。在马来西亚,PS.NR.22分离琼脂用于BPA劣化过程。它用革兰氏阴性棒状细菌染色,证实携带16S rRNA基因。 BPA作为唯一的碳,已在各种浓度下进行测试。该研究表明,BPA在10,20,30,40和50ppm下降解,并且细菌生长速率在20ppm BPA中优异。将BPA的降解进行9小时至18小时,并在9小时内记录最大降解。使用20ppm BPA,540nm的最高生长峰的最高峰值的值为2.0617。这种新型铜绿酸妥锡NR.22具有巨大的潜力可用于废水处理。

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