首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >Mitigation capacity of an eco-friendly locally sourced surfactant for gas hydrate inhibition in an offshore environment
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Mitigation capacity of an eco-friendly locally sourced surfactant for gas hydrate inhibition in an offshore environment

机译:近海环境中天然气水合物抑制的环保局部局部采集表面活性剂的减轻能力

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Gas hydrate inhibition is very key and has become more sensitive as oil and gas exploration goes into deeper terrains especially deep offshore as a result of technological advancement. Use of chemicals has been the most efficient and cost effective in these areas. These chemicals add to the cost of doing oil and gas business and also cause harm to the environment; hence, research has been going on for more eco-friendly and cost-efficient inhibitors. This study takes a look at a locally sourced surfactant as one of such inhibitors. Varying weight percentages of the LSS were screened in a locally fabricated laboratory mini flow loop of 39.4?m with an internal diameter of 0.5 inch mounted on an external frame work. The various pressure plots (pressure vs. time, change in pressure vs. time, initial and final pressures vs. time) show that the LSS used in very small percentages performed better than the synthetic inhibitor methanol (MeOH) used in higher weight percentage than the LSS. The final pressures for MeOH for 1–5 wt% were 104, 111, 123, 120 and 123 psi while those of the LSS were 115, 128, 125, 127 and 131 psi, respectively, for 0.01–0.05 wt%, respectively. This means that the system with LSS had more stable pressure values than those of MeOH. Similarly, the change in pressure at the end of 120?min for MeOH was 46, 39, 27, 30 and 27 psi against 35, 22, 25, 23 and 19 psi for LSS. This was an indication that more gas was used up in the system with MeOH than in the system with LSS. The mitigation capacity of the LSS in percentage was calculated to be 69.30, 80.71, 78.07, 79.82 and 83.3% for 0.01–0.05 wt% while MeOH had values of 59.65, 65.79, 76.32, 73.68 and 76.32% for 1–5 wt%, respectively. This showed that the LSS inhibited hydrates better than MeOH in all the weight percentages considered. There is need to harness and develop the LSS for gas hydrate mitigation because it performed better than MeOH which is a known toxicant to man, terrestrial and aquatic habitat.
机译:天然气水合物抑制是非常关键的,随着技术进步,石油和天然气勘探尤其深入近海,变得更加敏感。使用化学品在这些领域是最有效和成本的效益。这些化学品增加了开展石油和天然气业务的成本,并对环境造成危害;因此,对更环保和成本效益的抑制剂进行了研究。本研究看看局部源的表面活性剂作为这种抑制剂之一。将LSS的不同重量百分比筛选在局部制造的实验室迷你流量回路中,为39.4μm,内径为0.5英寸,安装在外部框架上。各种压力图(压力与时间,压力变化与时间,初始和最终压力与时间)表明,在非常小的百分比中使用的LSS比以更高的重量百分比所使用的合成抑制剂甲醇(MeOH)更好地进行LSS。 MeOH的最终压力为1-5wt%,分别为104,111,123,120和123psi,而LSS的那些分别为115,128,125,127和131psi,分别为0.01-0.05重量%。这意味着具有LSS的系统的压力值比MeOH更稳定。类似地,对MeOH的120℃的压力的变化为46,39,27,30和27psi,用于LSS的35,22,25,23和19psi。这表明,用MeOH在系统中使用更多的气体比LSS的系统在系统中使用。百分比下降的减缓能力为0.01-0.05wt%的69.30,80.71,78.07,79.82和83.3%,而MeOH的值为59.65,65.79,76.32,73.68和76.32%,1-5wt%,分别。这表明LSS在考虑的所有重量百分比中抑制了比MeOH更好的水合物。需要利用和开发LSS用于天然气水合物缓解,因为它比MeOH更好,这是对人,陆地和水生栖息地的已知毒物。

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