生物表面活性剂微短单胞菌和香茅假单胞菌溶液中石油采油动力学研究

B. Yudono, S. Estuningsih, Muhammad Tri Handoko, M. Said
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摘要

采用微分积分相结合的方法研究了原油在生物表面活性剂中的溶解动力学。用微分法和积分法分别确定了原油溶解度的反应顺序和反应速率常数。观察10 d,每2 d进行一次积分法观察,共10 d。污泥的初始TPH(总石油烃)依次为1.64;3.28;4.91;6.11%和7.57% (w/w)。小芽胞杆菌处理10 d后,TPH浓度降至1.24;2.43;3.61;4.32;5.07% (w/w),使用香茅茅后TPH浓度降至1.07;2.10;3.13;3.79;4.40% (w / w)。用微分法测定的反应阶数分别为1.81和1.1。将一级反应代入积分方程,得到了原油溶解度的反应速率常数方程,其中小黄菌为0.018 day-1,香茅为0.033 day-1。气相色谱定性分析表明,该生物表面活性剂能溶解低碳原子链C22馏分原油中的烃类化合物。香茅生物表面活性剂能够溶解具有C10 - C14原子链的烃类化合物。
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Kinetics of Petroleum Oil Recovery in Bio Surfactant of Brevundimonas diminuta and Pseudomonas citronellolis Bacteria Solutions
Kinetics of crude oil solubility in bio surfactant of Brevundimonas diminuta and Pseudomonas citronellolis bacterias was studied by using a combination of differential and integral methods. The order of reaction and reaction rate constants of crude oil solubility was determined by using differential and integral methods respectively. The observation was carried out for 10 days, and integral method observation was carried out every 2 days, for 10 days. The initial TPH concentration (Total Petroleum Hydrocarbon) of sludge sequently were 1.64; 3.28; 4.91; 6.11 and 7.57 % (w/w). After 10 days’ treatment by using B. diminuta bacteria, the TPH concentrations were decreased to 1.24; 2.43; 3.61; 4.32; 5.07% (w/w) and the TPH concentration using P. citronellolis decreased to 1.07; 2.10; 3.13; 3.79; 4.40% (w/w). The order reaction which determined by using differential method were 1.81 for B. diminuta and 1.1 for P. citronellolis. Furthermore, the order reaction was put in the integral equation thus forming reaction rate constants equation of crude oil solubility which are 0.018 day-1 for B. diminuta and 0.033 day-1 for P. citronellolis. Qualitative analysis which were carried out by using GC showed that bio surfactant from B. diminuta was able to dissolve hydrocarbon compounds of crude at fraction with lower C atomic chain C22. Bio surfactant from P. citronellolis was able to dissolve hydrocarbon compound with atomic chain C10 – C14.
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