首页> 美国卫生研究院文献>Biotechnology Reports >Kinetics of petroleum oil biodegradation by a consortium of three protozoan isolates (Aspidisca sp. Trachelophyllum sp. and Peranema sp.)
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Kinetics of petroleum oil biodegradation by a consortium of three protozoan isolates (Aspidisca sp. Trachelophyllum sp. and Peranema sp.)

机译:三种原生动物分离体(Aspidisca sp。Trachelophyllum sp。和Peranema sp。)组成的财团对石油进行生物降解的动力学。

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摘要

Petroleum oil is a complex mixture of substances, the majority of which are hydrocarbons; the latter represent an extremely important and heterogeneous group of compounds that find their way into water resources by anthropogenic or natural ways. The majority of toxic hydrocarbon components of petroleum are biodegradable, where bioremediation using microbial species has become an integral process for the restoration of oil-polluted areas. In this study, three bioremediation processes, namely natural attenuation, nutrient supplementation by adding glucose and biostimulation by adding Tween® 80, were carried out in various petroleum hydrocarbon concentrations in polluted water media using a consortium of three protozoan isolates (Aspidisca sp., Trachelophyllum sp. and Peranema sp.). A first-order kinetics model was fitted to the biodegradation data to evaluate the biodegradation rate and to determine the corresponding half-life time. First-order kinetics satisfactorily described the biodegradation of the petroleum-based contaminants under abiotic conditions. The results showed an increase in the percentage removal of petroleum oil at the lower petroleum concentrations and a gradual percentage decrease in removing petroleum oil residues occurred when there was an increase in the initial concentrations of the petroleum oil: 39%, 27%, 22%, 12%, 10% for various petroleum oil concentrations of 50, 100, 150, 200, 250 mg/L, respectively. A similar trend was also observed in the glucose-supplemented culture media where the reduction was 45% and 78% for petroleum concentrations of 250 mg/L and 50 mg/L, respectively. Biodegradation of between 33 and 90% was achieved at a Tween® 80 concentration of between 50 mg/L and 250 mg/L. The degradation rate constants for the natural attenuation process ranged between ≥0 to ≤0.50, ≥0 to ≤0.35, ≥0 to ≤0.25, ≥0 to ≤ 0.14 and ≥ 0 to ≤0.11 for petroleum oil concentrations varying from 50, 100, 150, 200 and 250 mg/L, respectively, during the study after 30 days. In the presence of glucose as a nutrient supplement, the degradation rate constants increased from 0 day−1 to 0.8 day−1 when exposed to the lowest oil concentration of 50 mg/L, while the lowest rate constants (from 0 day−1 to 0.25 day−1) were observed at the highest petroleum oil concentration of 250 mg/L for the same period. Overall enhancement of the degradation rates was achieved when adding the Tween® 80 surfactant compared to the first two biodegradation processes. The longest half-life was achieved after 217 days during the natural attenuation process for samples with an oil concentration of 250 mg/L and this was reduced to 85 days using the glucose-supplemented process. There was a further decrease to 45 days when Tween® 80 surfactant was added during the biostimulation process. The highest efficiency of ≥20% of Tween® 80 was observed between 6 and 18 days and thereafter it decreased slightly to ≤20%.
机译:石油是物质的复杂混合物,其中大多数是碳氢化合物。后者代表了极其重要且种类繁多的化合物,它们通过人为或自然方式进入水资源。石油中的大多数有毒碳氢化合物都是可生物降解的,使用微生物进行生物修复已成为恢复油污染地区的必不可少的过程。在这项研究中,使用三种原生动物的联合体,在污水介质中各种石油烃浓度下,进行了三种生物修复过程,即自然衰减,通过添加葡萄糖补充营养和通过添加Tween 80进行生物刺激。分离株(Aspidisca sp。,Trachelophyllum sp。和Peranema sp。)。将一级动力学模型拟合至生物降解数据,以评估生物降解速率并确定相应的半衰期。一级动力学令人满意地描述了非生物条件下石油基污染物的生物降解。结果表明,当石油的初始浓度升高时,在较低的石油浓度下,石油的去除百分比会增加,而在去除石油残留物中的百分比会逐渐减少:39%,27%,22% ,分别为50、100、150、200、250 mg / L的各种石油浓度分别为12%,10%。在补充了葡萄糖的培养基中也观察到了类似的趋势,其中石油浓度为250 mg / L和50 mg / L时分别降低了45%和78%。在浓度介于50 mg / L和250 mg / L之间的Tween ® 80浓度下,可实现33%至90%的生物降解。对于石油浓度在50、100、100和100之间变化的自然衰减过程,其降解速率常数范围在≥0至≤0.50,≥0至≤0.35,≥0至≤0.25,≥0至≤0.14和≥0至≤0.11之间。 30天后的研究期间分别为150、200和250 mg / L。在存在葡萄糖作为营养补充剂的情况下,当暴露于最低油浓度为50 mg / s时,降解速率常数从0天 -1 增加到0.8天 -1 L,而在同一时期,最高石油浓度为250 mg / L时,观测到的速率常数最低(从0天 -1 到0.25天 -1 ) 。与前两个生物降解过程相比,加入Tween ® 80表面活性剂可实现整体降解速率的提高。对于油浓度为250 mg / L的样品,自然衰减过程中的217天后达到了最长的半衰期,而使用葡萄糖补充过程将其减少到85天。在生物刺激过程中加入Tween ® 80表面活性剂后,进一步减少到45天。在6到18天之间观察到最高效率,Tween ® 80≥20%,此后略有下降,但降至≤20%。

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