首页> 外文会议>The 2nd International Conference on Bioinformatics and Biomedical Engineering(iCBBE 2008)(第二届生物信息与生物医学工程国际会议)论文集 >Effect of Surfactant SDS, Tween 80, Triton X-100 and Rhamnolipid on Biodegradation of Hydrophobic Organic Pollutants
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Effect of Surfactant SDS, Tween 80, Triton X-100 and Rhamnolipid on Biodegradation of Hydrophobic Organic Pollutants

机译:表面活性剂SDS,Tween 80,Triton X-100和鼠李糖脂对疏水性有机污染物的生物降解作用

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The effects of synthetic surfactants SDS, Tween 80, Triton X-100 on bacteria Flauobacteriurn sp. Q14 capable of degrading gasoline were studied. Biosurfactant rhamnolipid was used to analyze the effect on the biodegradation of n-hexadecane and the cell surface hydrophobicity for Bacillus sp. DQ02. The results showed that all the three chemical surfactants could delay the logarithmic phase of Flauobacteriurn sp. Q14. The anionic surfactant SDS did not significantly increase the degradation rate of diesel both at day 2 and 4. The maximum degradation value was 42.2% and 44.5% at 100mg/L in the presence of Triton X-100 and Tween 80, respectively. The removal efficiency declined with the increase of concentration of surfactants over 100mg/L. At day 4, the maximum degradation value reached 44.7% and 46.3% at 200mg/L. The degradation of n-hexadecane by Bacillus sp.DQ02 was increased 11.6% within 48h in the presence of the rhamnolipid than that of in the absence of the rhamnolipid. The growth of the strain and BATH (bacterial adherence to hydrocarbon) increased with obviously in the presence of the rhamnolipid. And the BATH reached 44% in the presence of rhamnolipid. Moreover, the interfacial tension decreased almost half with the addition of rhamnolipid.
机译:合成表面活性剂SDS,Tween 80,Triton X-100对细菌Flauobacteriurn sp。的影响。研究了能够降解汽油的Q14。使用生物表面活性剂鼠李糖脂分析了芽孢杆菌对正十六烷的生物降解和细胞表面疏水性的影响。 DQ02。结果表明,三种化学表面活性剂均能延迟Fluobacteriurn sp。的对数期。 Q14。阴离子表面活性剂SDS在第2天和第4天都没有显着提高柴油的降解率。在存在Triton X-100和Tween 80的情况下,在100mg / L时,最大降解值分别为42.2%和44.5%。随着表面活性剂浓度增加超过100mg / L,去除效率下降。在第4天,在200mg / L时,最大降解值达到44.7%和46.3%。鼠李糖脂存在下,芽孢杆菌DQ02对正十六烷的降解在48h内比不存在鼠李糖脂的情况下增加了11.6%。在鼠李糖脂存在下,菌株和BATH(细菌对碳氢化合物的粘附)的生长明显增加。在鼠李糖脂存在下,BATH达到44%。此外,随着鼠李糖脂的添加,界面张力几乎降低了一半。

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