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An Investigation of Dehydration Inefficiencies and Associated Design Challenges in a Gas Dehydration Unit: A Case Study of X Gas Plant

机译:气体脱水装置中脱水效率低下及相关设计挑战的调查:以X煤气厂为例

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The value and contribution of natural gas in both domestic and economic terrains are extensive. However, its contaminant limits direct application and hence must be treated. Water vapour existing in equilibrium with dry gas is the principal among contaminants. Most corrosion both with acid gases and carbonate salts are traceable to the presence of water. Also the formation of solid icy structures called hydrates constitutes a threat to flow assurance. Removal of water by TEG dehydration trains is not uncommon. Dehydration inefficiencies such as high water content of the outlet gas and glycol losses could impair operations and considerably reduce profit. Inefficiency in GDU was identified to be due to design factors and operational conditions/scenarios. In the case studied, laboratory analysis of TEG was combined with process simulation results to resolve inconsistencies in design and operational phases. Recommendations for further improvements were also presented.
机译:天然气在家庭和经济领域的价值和贡献是广泛的。但是,其污染物限制了直接施用,因此必须进行处理。与干气平衡存在的水蒸气是污染物中的主要成分。酸性气体和碳酸盐的大多数腐蚀都可追溯到水的存在。同样,称为水合物的固体冰冷结构的形成也对流量保证构成威胁。 TEG脱水机组除水并不罕见。脱水效率低下,例如出口气体中的高水分含量和乙二醇损失,可能会损害运营并大大降低利润。确定GDU的效率低下是由于设计因素和操作条件/场景造成的。在研究的案例中,将TEG的实验室分析与过程仿真结果相结合,以解决设计和运营阶段的不一致问题。还提出了进一步改进的建议。

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