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首页> 外文期刊>International journal of hydrogen energy >A novel hydrogen liquefaction process configuration with combined mixed refrigerant systems
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A novel hydrogen liquefaction process configuration with combined mixed refrigerant systems

机译:混合混合制冷剂系统的新型氢液化工艺配置

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A novel large-scale plant for hydrogen liquefying is proposed and analyzed. The liquid hydrogen production rate of the proposed plant is 100 tons per day to provide the required LH2 for a large urban area with 100,000-200,000 hydrogen vehicles supply. In the pre-cooling section of the process, a new mixed refrigerant (MR) refrigeration cycle, combined with a Joule-Brayton refrigeration cycle, precool gaseous hydrogen feed from 25 C to the temperature -198.2 C. A new refrigeration system with six simple Linde-Hampson cascade cycles cools low-temperature gaseous hydrogen from -198.2 C to temperature -252.2 C. The process specific energy consumption (SEC) is 7.69 kWh/kg(LH2) which minimum value is 2.89 kWh/kg(LH2) source in ideal conditions. The exergy efficiency of the system is 39.5%, which is considerably higher than the existing hydrogen liquefier plants around the world. However, assuming more efficiency values for the equipment can improve it. The energy analysis specifies that coefficient of performance (COP) of the process is 0.1710 which is a high quantity of its kind between other similar processes. Effect of various refrigerant components concentration, discharge pressure of the high pressure compressors of the pre-cooling section, and hydrogen feed pressure on the process COP, exergy efficiency, and SEC are investigated. After that, a new MR will be offered for the cryogenic section of the plant. The system improvements are considerable comparing to current hydrogen liquefying plants, therefore, the proposed conceptual system can be used for future hydrogen liquefaction plants design. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:提出并分析了一种新型的大型氢液化装置。拟建工厂的液态氢生产率为每天100吨,以为拥有100,000至200,000辆氢气汽车供应的大城市地区提供所需的LH2。在该过程的预冷段中,一个新的混合制冷剂(MR)制冷循环与焦耳-布雷顿制冷循环相结合,将气态氢气的进料温度从25 C预先冷却到-198.2C。 Linde-Hampson级联循环将低温气态氢气从-198.2 C冷却到-252.2C。过程单位能耗(SEC)为7.69 kWh / kg(LH2),最小值为2.89 kWh / kg(LH2)。理想条件。该系统的火用效率为39.5%,大大高于全球现有的氢液化厂。但是,假设设备的效率值更高可以改善它。能量分析指定该过程的性能系数(COP)为0.1710,这在其他相似过程之间是很高的数量。研究了各种制冷剂成分的浓度,预冷段高压压缩机的排出压力以及氢气进料压力对过程COP,火用效率和SEC的影响。之后,将为工厂的低温部分提供新的MR。与当前的氢液化厂相比,该系统的改进是可观的,因此,提出的概念性系统可用于未来的氢液化厂设计。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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