Hydrate-based technique for natural gas processing: Experimental study of pressure-dropping and continuous modes

IF 5.5 Q1 ENGINEERING, CHEMICAL Chemical Engineering Journal Advances Pub Date : 2024-02-10 DOI:10.1016/j.ceja.2024.100596
Anton N. Petukhov , Artem A. Atlaskin , Maria S. Kudryavtseva , Dmitry N. Shablykin , Ekaterina A. Stepanova , Ivan D. Zanozin , Dmitry M. Zarubin , Olga V. Kazarina , Maria E. Atlaskina , Artyom N. Markov , Anna N. Stepakova , Hao Lin , Anton N. Lukoyanov , Andrey V. Vorotyntsev , Gan-Ji Zhong , Ilya V. Vorotynstev
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Abstract

Gas hydrate crystallization is perspective and energy-efficient technology for gas mixtures processing, including natural gas. There were compared pressure-dropping and continuous gas hydrate crystallization methods for separation of gas mixture closed to natural gas. The studied mixture has been chosen similar to the natural gas composition: CH4 (75.68 mol.%) - С2H6 (7.41 mol.%) - C3H8 (4.53 mol.%) - н-C4H10 (2.47 mol.%) - CO2 (5.40 mol.%) - H2S (1.39 mol.%) - N2 (3.01 mol.%) - Xe (0.11 mol.%). Experiments were provided in the 4 L high pressure reactor, using water solution of SDS (0.20 wt.%). The experiment conditions were 280.15 K and pressure of 4.25 MPa. The components separation factors and recovery for two modes have been researched and compared for choosing more effective options. After comparing these characteristics, it was concluded that continuous process is more productive than pressure-dropping mode. At the stage cut (θ) of 0.9, the gas components total recovery (R) for the continuous mode have exceeded the total recovery for the pressure-dropping mode by 8.15 %, and at θ = 0.8, exceeded by 6.11 %. The recovery and separation factors have the highest values for H2S, C3H8, Xe in the continuous mode: 97.62 %, 94.90 %, 84.98 % and 8.7, 10.53, 6.36, respectively. Thus, the choosing of the more effective stage cut depends on the aim of the process: the highest purity or the largest recovery.

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基于水合物的天然气处理技术:压力下降和连续模式的实验研究
天然气水合物结晶是天然气等气体混合物处理的一种高效节能技术。比较了用于分离天然气混合物的降压法和连续气体水合物结晶法。所研究的混合物成分与天然气成分相似:CH4 (75.68 mol.%) - С2H6 (7.41 mol.%) - C3H8 (4.53 mol.%) - н-C4H10 (2.47 mol.%) - CO2 (5.40 mol.%) - H2S (1.39 mol.%) - N2 (3.01 mol.%) - Xe (0.11 mol.%)。实验在 4 L 高压反应器中进行,使用的是 SDS 水溶液(0.20 wt.%)。实验条件为 280.15 K 和 4.25 MPa 的压力。研究并比较了两种模式的组分分离系数和回收率,以选择更有效的方案。在对这些特性进行比较后,得出的结论是连续工艺比压降模式更有效。在阶段切割(θ)为 0.9 时,连续模式的气体组分总回收率(R)比压降模式的总回收率高出 8.15%,而在θ = 0.8 时则高出 6.11%。在连续模式下,H2S、C3H8 和 Xe 的回收率和分离率最高:分别为 97.62 %、94.90 %、84.98 % 和 8.7、10.53、6.36。因此,选择更有效的阶段切割取决于工艺的目标:最高纯度或最大回收率。
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来源期刊
Chemical Engineering Journal Advances
Chemical Engineering Journal Advances Engineering-Industrial and Manufacturing Engineering
CiteScore
8.30
自引率
0.00%
发文量
213
审稿时长
26 days
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