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Biosurfactant as a Promoter of Methane Hydrate Formation: Thermodynamic and Kinetic Studies

机译:生物活性剂作为甲烷水合物形成的启动子:热力学和动力学研究

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Natural gas hydrates (NGHs) are solid non-stoichiometric compounds often regarded as a next generation energy source. Successful commercialization of NGH is curtailed by lack of efficient and safe technology for generation, dissociation, storage and transportation. The present work studied the influence of environment compatible biosurfactant on gas hydrate formation. Biosurfactant was produced by Pseudomonas aeruginosa strain A11 and was characterized as rhamnolipids. Purified rhamnolipids reduced the surface tension of water from 72?mN/m to 36?mN/m with Critical Micelle Concentration (CMC) of 70?mg/l. Use of 1000?ppm rhamnolipids solution in C type silica gel bed system increased methane hydrate formation rate by 42.97% and reduced the induction time of hydrate formation by 22.63% as compared to water saturated C type silica gel. Presence of rhamnolipids also shifted methane hydrate formation temperature to higher values relative to the system without biosurfactant. Results from thermodynamic and kinetic studies suggest that rhamnolipids can be applied as environment friendly methane hydrate promoter.
机译:天然气水合物(NGHS)是经常被认为是下一代能源的固体非化学计量化合物。通过缺乏高效和安全的技术来说,NGH的成功商业化缺乏生成,解离,储存和运输。本作本作研究了环境相容性生物活性剂对气水合物形成的影响。生物表面活性剂是由铜绿假单胞菌菌株A11产生的,其特征在于菱诺哌啶。纯化的耳鼻脂,将水的表面张力从72〜Mn / m〜36·mn / m的表面张力降低,临界胶束浓度(CMC)为70Ωmg/升。使用1000℃的C型硅胶床系统中的甲烷水合物形成率高42.97%,与水饱和C型硅胶相比,将水合物形成的诱导时间减少22.63%。 rhamnolipids的存在还将甲烷水合物形成温度与没有生物表面活性剂的系统相对于系统转移到更高的值。热力学和动力学研究的结果表明,Rhamnolipids可作为环保甲烷水合物启动子应用。

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