首页> 外文会议> >OXYGEN LIQUEFIER USING A MIXED GAS REFRIGERATION CYCLE
【24h】

OXYGEN LIQUEFIER USING A MIXED GAS REFRIGERATION CYCLE

机译:使用混合气体制冷循环的氧气液化器

获取原文

摘要

This paper presents the design, selection of equipment, testing, and analysis of a 2 TPD (76 kg/hr) prototype oxygen liquefier that employs a mixed gas refrigeration cycle. Small scale oxygen plants (30-60 TPD) based on VPSA systems (Vapor Pressure Swing Adsorption) periodically require liquid back-up to provide uninterrupted supply of O_2 gas to customers during planned plant maintenance. Supply of liquid for back-up, especially to customers in remote locations, is expensive and difficult. Economically designed MGR liquefiers will fulfill this market need. The 2 TPD prototype O_2 liquefier is based on the dual loop MGR Rankine cycle (see Figure 1). The forecooler loop provides refrigeration at the warm end (233K). R507 is used as a refrigerant for the forecooler in the warm end loop. The main refrigeration loop uses a mixture of R218, R14 and N_2. The main advantage of separating the refrigerants into two different loops is to avoid freezing of high boiling point refrigerants at liquid O_2 temperatures in the main refrigeration loop. The process and mixture composition were optimized using the HYSYS process simulation package. Very useful insights were gained in terms of reducing the irreversibilities in the heat exchanger. Low cost innovative designs were adopted for the heat exchangers. For example: (ⅰ) plate-and-frame heat exchangers were successfully used for multiple gas streams, (ⅱ) a spirally wound coiled heat exchanger was used to liquefy oxygen. Similarly, the compressors used in the forecooler and main cycle were low cost, off-the-shelf items used in conventional refrigeration systems. The liquefier unit was initially demonstrated and a liquid making capacity of 1.5 TPD at a unit power of 44 kW/TPD was achieved. Subsequent modifications to the heat exchangers resulted in meeting the design expectations at a unit power of 37 kW/TPD.
机译:本文介绍了采用混合气体制冷循环的2 TPD(76 kg / hr)原型氧气液化器的设计,设备选择,测试和分析。基于VPSA系统(蒸气压摆动吸附)的小型制氧厂(30-60 TPD)定期需要备用液体,以在计划的工厂维护期间为客户提供不间断的O_2气体供应。特别是向偏远地区的客户供应用于备份的液体是昂贵且困难的。经济设计的MGR液化器将满足这一市场需求。 2 TPD原型O_2液化剂基于双循环MGR朗肯循环(见图1)。前冷器回路在热端(233K)处提供制冷。 R507用作热端回路中预冷器的制冷剂。主制冷回路使用R218,R14和N_2的混合物。将制冷剂分成两个不同的回路的主要优点是避免了主制冷回路中液态O_2温度下高沸点制冷剂的冻结。使用HYSYS过程模拟软件包对过程和混合物组成进行了优化。在减少热交换器的不可逆性方面获得了非常有用的见解。热交换器采用了低成本的创新设计。例如:(ⅰ)板框式换热器已成功用于多种气流,(a)螺旋缠绕的盘绕式换热器用于液化氧气。同样,在预冷器和主循环中使用的压缩机是常规制冷系统中使用的低成本现成产品。最初展示了液化装置,在44 kW / TPD的单位功率下,制液能力达到1.5 TPD。对换热器的后续修改导致以37 kW / TPD的单位功率达到设计预期。

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