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Propane and iso-butane pre-cooled mixed refrigerant liquefaction process for small-scale skid-mounted natural gas liquefaction

机译:丙烷和异丁烷预冷混合制冷剂液化工艺,用于小型滑动安装天然气液化

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摘要

The development of a small skid-mounted natural gas liquefaction plant can economically, environmentallyfriendly, and efficiently collect natural gas in mountainous areas where are not easy to lay pipelines. A propane and iso-butane pre-cooled mixed refrigerant liquefaction process (C-3&C-4-MR) is proposed in this paper. Compared with the propane pre-cooled mixed refrigerant liquefaction process, the improved liquefaction process can reduce system energy consumption and increase exergy efficiency greatly. Genetic algorithm is applied to optimize energy consumption of C-3&C-4-MR process. The optimized specific energy consumption S-Total is 0.301 kW.h/kg, which is 18.0% lower than the optimized C-3-MR process. And compared with the optimized R410a pre-cooled mixed refrigerant liquefaction process, S-Total of C-3&C-4-MR process is 5.64% lower than that of R410a-MR process. Besides, mixed propane and isobutane as pre-coolant is easier to obtain from the feed gas. By analyzing the temperature sensitivity of mixed refrigerant and calculating the unit compression power consumption of a single refrigerant, the guidance and recommendations for mixed refrigerant ratio are summarized. Due to the property of iso-butane, the optimal percentage of iso-butane in the pre-coolant was analyzed. In conclusion, C-3&C-4-MR process is energy-saving and advanced in terms of system operating costs to recycle scattered natural gas in remote areas. Superscript/Subscript Available
机译:小型滑动式天然气液化厂的发展可以在经济上,环境友好和有效地收集在山区的天然气,在山区并不容易铺设管道。本文提出了一种丙烷和异丁烷预冷的混合制冷剂液化过程(C-3和C-4-MR)。与丙烷预冷却混合制冷剂液化过程相比,改善的液化过程可以降低系统能源消耗并大大提高高度效率。应用遗传算法以优化C-3和C-4-MR过程的能耗。优化的特定能量消耗S-总量为0.301 kW.h / kg,比优化的C-3-MR工艺低18.0%。并与优化的R410A预冷却混合制冷剂液化过程相比,C-3和C-4-MR工艺的S-总量低于R410A-MR工艺的5.64%。此外,混合丙烷和异丁烷作为预冷剂更容易从进料气体获得。通过分析混合制冷剂的温度敏感性并计算单个制冷剂的单元压缩功耗,总结了混合制冷剂比的引导和推荐。由于异丁烷的性质,分析了预冷却剂中的异丁烷的最佳百分比。总之,C-3&C-4-MR工艺在系统运营成本方面是节能和先进,以回收偏远地区的疏散天然气。上标/下标可用

著录项

  • 来源
    《Applied Energy》 |2020年第1期|115333.1-115333.12|共12页
  • 作者单位

    Xi An Jiao Tong Univ Sch Chem Engn & Technol Xianning West Rd 28 Xian 710049 Peoples R China;

    CNPC East China Design Inst Co Ltd Huayan Rd 2 Qingdao 266071 Peoples R China;

    Xi An Jiao Tong Univ Sch Chem Engn & Technol Xianning West Rd 28 Xian 710049 Peoples R China;

    Xi An Jiao Tong Univ Sch Chem Engn & Technol Xianning West Rd 28 Xian 710049 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Natural gas liquefaction process; Pre-cooling cycle; Mixed refrigerant; Genetic algorithm; Energy consumption;

    机译:天然气液化过程;预冷却循环;混合制冷剂;遗传算法;能量消耗;

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