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首页> 外文期刊>RSC Advances >Structural and physico-chemical characterization of a dirhamnolipid biosurfactant purified from Pseudomonas aeruginosa: application of crude biosurfactant in enhanced oil recovery
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Structural and physico-chemical characterization of a dirhamnolipid biosurfactant purified from Pseudomonas aeruginosa: application of crude biosurfactant in enhanced oil recovery

机译:富含铜绿素铜绿假单胞菌纯化的迪拉姆诺勒脂肪活性剂的结构和物理化学表征:在提高油回收中的应用粗生物活性剂

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摘要

The present study describes the structural characterization and biotechnological application of a dirhamnolipid biosurfactant produced by Pseudomonas aeruginosa strain NBTU-01 isolated from a petroleum oil-contaminated soil sample. Characterization of partially purified biosurfactant by LC-MS/MS analysis indicated predominant production (78%) of dirhamnolipids Rha-Rha-C10-C10 and Rha-RhaC12-C10 with a minor production of monorhamnolipids (22%). NMR analysis of the purified major biosurfactant produced by P. aeruginosa strain NBTU-01 identified it as dirhamnolipid and its deduced structure was L-rhamnosyl-L-rhamnosyl-b-hydroxydecanoyl-b-hydroxydecanoate. The LC-MS/MS analysis of intracellular proteins of P. aeruginosa strain NBTU-01 identified key enzymes and other proteins associated with regulation and biosynthesis of rhamnolipids. Critical micelle concentration of purified dirhamnolipid biosurfactant was determined at 72 +/- 2.25 mg l(-1) and it reduced the surface tension of water from 72.2 to 29.5 mN m(-1). The crude rhamnolipid biosurfactant effectively emulsified crude petroleum-oil, diesel, kerosene and coconut oil, and removed 70 +/- 3.5% crude petroleum oil from a saturated sand pack column. Heating the crude rhamnolipid biosurfactant at 100 degrees C for 5 h did not affect oil recovery from the sand pack column. Moreover, rhamnolipid biosurfactant showed stability at pH values between 6.0 and 10.0. The crystallization and melting temperature of purified dirhamnolipid biosurfactant was found to be 99 and 134 degrees C, respectively, suggesting it can withstand thermal denaturation and is suitable for application in high temperature wells for tertiary oil recovery.
机译:本研究中描述了结构表征和由假单胞菌假单胞菌菌株NBTU-01来自石油油污染的土壤样品中分离出来的生物表面活性剂dirhamnolipid生物技术应用。通过LC-MS / MS分析部分纯化的生物表面活性剂的表征表明dirhamnolipids RHA-RHA-C10-C10和RHA-RhaC12-C10与未成年生产monorhamnolipids的(22%)的主要生产(78%)。由铜绿假单胞菌菌株NBTU-01标识它作为dirhamnolipid及其推断的结构中产生的纯化的生物表面活性剂主要的NMR分析L-鼠李糖基-L-鼠李糖-B-hydroxydecanoyl-B-羟基癸。与调节和鼠李糖脂的生物合成相关铜绿假单胞菌菌株NBTU-01识别的关键酶的细胞内蛋白质和其它蛋白质的LC-MS / MS分析。在72 +/- 2.25毫克升确定纯化dirhamnolipid生物表面活性剂的临界胶束浓度(-1),它降低水的表面张力从72.2到29.5 MN米(-1)。将粗鼠李糖脂有效乳化原油油,柴油,煤油和椰子油,以及从饱和砂包塔中除去70 +/- 3.5%石油原油。加热在100℃下将粗鼠李糖脂5小时不影响从所述填砂柱的油回收。此外,鼠李糖脂显示6.0和10.0之间的pH值的稳定性。纯化dirhamnolipid生物表面活性剂的结晶和熔化温度被发现是99个134℃,分别,表明它可以承受热变性,并适合于在高温井三次采油应用。

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  • 来源
    《RSC Advances》 |2016年第74期|共13页
  • 作者单位

    Tezpur Univ ONGC Ctr Petr Biotechnol &

    Microbial Biotechnol Tezpur 784028 Assam India;

    Tezpur Univ ONGC Ctr Petr Biotechnol &

    Microbial Biotechnol Tezpur 784028 Assam India;

    Tezpur Univ Dept Chem Sci Tezpur 784028 Assam India;

    Tezpur Univ ONGC Ctr Petr Biotechnol &

    Microbial Biotechnol Tezpur 784028 Assam India;

    Natl Ctr Biol Sci C CAMP GKVK Campus Bellary Rd Bengaluru 560065 Karnataka India;

    Tezpur Univ Dept Chem Sci Tezpur 784028 Assam India;

    Tezpur Univ ONGC Ctr Petr Biotechnol &

    Microbial Biotechnol Tezpur 784028 Assam India;

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  • 正文语种 eng
  • 中图分类 化学;
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