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首页> 外文期刊>International Journal of Refrigeration >Thermodynamic analysis of a petroleum volatile organic compounds (VOCs) condensation recovery system combined with mixed-refrigerant refrigeration
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Thermodynamic analysis of a petroleum volatile organic compounds (VOCs) condensation recovery system combined with mixed-refrigerant refrigeration

机译:与混合制冷剂制冷结合的石油挥发性有机化合物(VOCS)冷凝回收系统的热力学分析

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Thermodynamic analysis of a volatile organic compounds (VOCs) condensation recovery system combined with mixed-refrigerant J-T (MRJT) refrigeration is illustrated in this paper, which provides an effective and economical choice for petroleum plants. VOCs is compressed, cooled by its recuperation process and separated in two simple rectification columns with 3-5 stages. The cooling powers for condensers at column top are provided by a high efficiency dual MRJT refrigerator at 100 K and 232 K, respectively. The cooling and separation characteristics of petroleum VOCs are also analyzed comprehensively. It is indicated that most of VOCs condensation load locates in high temperature region (>= 235 K approximately). It might be feasible to cool VOCs from 235 K to 110 K by cold purified air through recuperation. For a typical petroleum VOCs, non-methane hydrocarbon residual of 56 mg Nm(-3) is achieved with specific power consumption (SPC) of 0.1289 kWh Nm(-3), free of additional purifying units. According to the analysis on the effects of variable VOCs composition and pressure, the cooing loads of top condensers are close related to the performance of VOCs recuperation. C1 and C2 are key components to enhance recuperation at low temperatures and reduce SPC. Exceed C3 could enlarge cold stage condenser load and SPC due degraded cold stage recuperation; while exceed C4-C6 could reduce condenser loads and SPC. Higher VOCs pressure could also decrease SPC. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:本文示出了与混合制冷剂J-T(MRJT)制冷结合的挥发性有机化合物(VOCS)冷凝回收系统的热力学分析,为石油厂提供了有效且经济的选择。 VOC被压缩,通过其恢复过程冷却,并在两个简单的整流柱中分开,具有3-5个阶段。柱顶的冷凝器的冷却功率分别由高效率双MRJT冰箱提供100 k和232 k。本土化石油VOC的冷却和分离特性也综合分析。结果表明,大多数VOCS冷凝载荷位于高温区域(> = 235 k约)。通过冷净化空气通过恢复可能是可行的235 k至110 k的VOC。对于典型的石油VOC,使用0.1289 kWh nm(-3)的特定功耗(SPC)实现56mg NM(-3)的非甲烷烃残留物,不含额外的净化单元。根据可变VOCS组成和压力影响的分析,顶部冷凝器的凝固载荷与VOCS恢复的性能相关。 C1和C2是在低温下增强恢复并减少SPC的关键部件。超过C3可以放大冷级冷凝器负荷和SPC由于降低的冷阶恢复;虽然超过C4-C6可以减少冷凝器负载和SPC。更高的VOCS压力也可能降低SPC。 (c)2020 Elsevier Ltd和IIR。版权所有。

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