首页> 外文会议>International Production and Operations Conference and Exhibition >Acid Gas Treating Facility Management by Utilizing Inherent Plant Advantages
【24h】

Acid Gas Treating Facility Management by Utilizing Inherent Plant Advantages

机译:通过利用固有的植物优势,酸性气体处理设施管理

获取原文

摘要

Combining membrane and solvent technology type of acid gas removal or ?hybrid? system, either in series or parallel, is often selected to increase the advantages of each technology and reduce the disadvantages of each technology. Specific for parallel hybrid system, independent operation in parallel does not only provide luxuries for operating the plant under specific circumstances but can also be viewed as implementation of acid gas treating management. One of the world?s unique hybrid combinations of acid gas removal units (AGRU) exists in Singa Gas Plant, located in South Sumatra, Indonesia. The plant is designed to process 93 MMSCFD of sour natural gas, reducing CO2 from 38% to 4% mole and H2S from 350 ppmv to 4 ppmv. Singa plant becomes the unique hybrid configuration for AGRU as it consists of Membrane Unit and Amine Unit operating in parallel. Each unit is designed for 45 and 48 MMscfd of feed gas, respectively, to produce 55 MMscfd sales gas of pipeline gas specification. Singa Gas Plant was firstly designed to use 100% Amine Unit for AGRU based on initial subsurface analysis. During the project construction, due to HPHT reservoir nature of Singa wells, it was lately found that there was limitation to produce the gas at the expected amount. After series of process optimization scenarios with the constraint of project completion schedule, it was found that installing 50% Membrane and 50% Amine system was the optimum solution. During gas-in period, the actual gas composition was found different from original design basis in terms of heavier feed gas composition with 0.08 % mole C5+. As a result, more condensation on membrane surface during gas permeation is observed, which eventually leads to degradation. Moreover, due to economic reason and gas availability, Membrane Unit is continuously operated with standard pre-treatment facility only that leads to higher operating vulnerability of Membrane Unit compared to Amine Unit. To manage such constraints, Membrane Unit operating configuration and performance are analyzed to define the most optimum operating scenarios. Amine Unit production load is maximized, while Membrane Unit will only be loaded for the balance of the gas. In order to meet final sales gas specification, product gas specification from Amine Unit has to be altered to compensate product gas quality from Membrane Unit. This paper emphasizes that good management of facilities operation of acid gas treating can be achieved through utilizing inherent advantages of plant configuration and capability and by managing existing design capacity to maintain on spec sales gas production without additional capital expenditure. Technical contributions which can be shared for technical knowledge base of petroleum industry are: Parallel hybrid system of sweetening technology can also be viewed as implementation of acid gas treating management besides providing flexibility for operating the plant under specific circumstances. Based on assessment of acid gas treating unit performance production scenarios can be established to achieve targeted sales gas specification and delivery. Proper facility management of acid gas treating unit is essential and can be maximized without any additional significant capital expenditure.
机译:结合膜和溶剂技术类型的酸性气体去除或杂交?通常选择系统,串联或并行,以增加每种技术的优势,并降低各技术的缺点。具体对平行混合系统,并行的独立操作不仅可以在特定情况下提供植物的奢侈品,但也可以被视为酸性气体处理管理的实施。世界上的酸性气体移除单元(Agru)的一个独特的混合组合之一存在于印度尼西亚南苏门答腊省的Singa天然气植物中。该植物设计用于处理93mmscfd的酸天然气,将CO 2从350%至4%的摩尔和H2S从350 ppmv降至4 ppmV。 Singa工厂成为AgrU的独特混合配置,因为它由膜单元和并联操作的胺单元组成。每个单元分别设计为45和48 mmSCFD的饲料气体,以产生55个MMSCFD管道气体规格的销售气体。首先设计了Singa Gas Plant,根据初始地下分析使用100%胺单元进行AgrU。在项目建设期间,由于Singa Wells的HPHT水库性质,最近发现有限制以预期的金额产生气体。在具有项目完成时间表的约束的过程优化方案之后,发现安装50%膜和50%胺系统是最佳解决方案。在气体期间,在较重的饲料气体组合物中发现实际的气体组合物与0.08%摩尔C5 +的较重进料气体组合物不同。结果,观察到在气体渗透过程中对膜表面的更稠密,最终导致降解。此外,由于经济原因和气体可用性,膜单元连续使用标准预处理设施操作,仅与胺单元相比,膜单元的更高操作脆弱性。为了管理此类约束,分析膜单元操作配置和性能以定义最佳的操作场景。胺单位生产载荷最大化,而膜单元只会为气体的平衡装载。为了满足最终的销售气体规范,必须改变来自胺单元的产品气体规格以补偿膜单元的产品气体质量。本文强调,通过利用植物配置和能力的固有优势,通过管理现有的设计能力,可以实现酸性气体处理的良好管理酸性气体处理的运作,并在没有额外资本支出的情况下维护规范销售天然气生产。可以分享石油工业技术知识库的技术贡献是:除了在特定情况下提供酸性气体处理管理的实施之外,还可以被视为酸性气体处理管理的平行混合系统。基于评估酸性气体处理单元性能生产方案,可以建立实现目标销售天然气规范和交付。适当的酸性气体处理单位的设施管理是必不可少的,可以最大化而没有任何额外的大量资本支出。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号