首页> 外文会议>SPE/CERI gas technology symposium >Benefits of using deliquescing deciccants for gas dehydration
【24h】

Benefits of using deliquescing deciccants for gas dehydration

机译:利用垫片破灭液体脱水的益处

获取原文

摘要

Deliquescing desiccants have been used for gas dehydration for over 40 years. Historically this technology had limited applications due to poor desiccant quality and integrity, equipment design problems, operational difficulty, and limited drying ability. Recent advances in dry material blending and tableting, formulation, and equipment design have greatly expanded the application range of deliquescing deciccants. Deliquescing desiccants are now used to dry sales gas, fuel gas, sour gas, excess or "peak" gas, and for hydrate control. Operating and capital costs compare favorably to traditional TEG systems. Field data verifies the drying ability and performance of deliquescing desiccant systems. Because of the operational simplicity and closed system design deliquescing desiccants offer many advantages over traditional drying methods such as triethylene glycol, including: no VOC or BTEX emissions, no ground contamination, no fire hazard, low capital expense, low maintenance, no "turn down" concerns, and simple operation. Used for hydrate control in gathering sysems, desiccants offer a simple and inexpensive method to dry below pipeline dewpoint thereby allowing trouble free gas flow from wellhead to processing plant. At the plant, gas is further dehydrated to meet pipeline requirements. Desiccants have substantial advantages for drying sour gas both for hydrate control and pipeline sales. There are no emissions, odors, or glycol contamination, and vessels can be over-sized to extend the service interval to only several times per year, greatly reducing employee exposure to hydrogen sulfide. Because of it's simplicity and small footprint, desiccant drying of fuel gas yields increased revenues by using suction gas, not sales gas, for compressor fuel. The entire compressor throughput capacity can be sold, instead of a portion being used for fuel. Desiccant dehydration is well suited for remote, unmanned locations,which are not visited daily. Because operation is simple and service intervals long, operators can schedule maintenance and service weekly or even monthly. This reduces total operating costs and labor requirements.
机译:脱水剂的干燥剂已被用于气体脱水超过40年。从历史上看,由于干燥剂质量和完整性差,设备设计问题,操作难度和有限的干燥能力,这项技术的应用有限。最近的干燥材料混合和压片,配方和设备设计的进展极大地扩展了垫片破灭的应用范围。现在用于干燥销售气体,燃料气体,酸气体,过量或“峰值”气体,以及水合物对照。经营和资本成本对传统TEG系统相比有利。现场数据验证脱垫干燥剂系统的干燥能力和性能。由于操作简单性和封闭式系统设计垫片干燥剂提供了与三甘醇等传统干燥方法相比的许多优点,包括:无VOC或BTEX排放,无接地污染,没有火灾危险,低资本费用,低维护,不透明“顾虑,操作简单。用于在收集SYSEMS时用于水合物对照,干燥剂提供一种简单且廉价的方法来干燥管道露点,从而允许从井口到加工厂的空气流动流动。在植物,进一步脱水以满足管道要求的气体。干燥剂对酸性气体进行水性控制和管道销售具有实质性优势。没有排放,气味或乙二醇污染,并且可以过度尺寸为每年几次延长服务间隔,大大减少驻留对硫化氢的员工。由于它的简单性和小的占地面积小,因此燃料气体干燥的干燥产生了通过使用吸气气体而不是销售气体进行压缩机燃料的收入增加。可以销售整个压缩机吞吐量容量,而不是用于燃料的部分。干燥剂脱水非常适用于每天没有访问过的远程,无人居机。由于操作简单且服务间隔长,因此运营商可以每周甚至每月安排维护和服务。这降低了总运营成本和劳动力要求。

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