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首页> 外文期刊>International Journal of Refrigeration >Design and optimization of integrated single mixed refrigerant processes for coproduction of LNG and high-purity ethane
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Design and optimization of integrated single mixed refrigerant processes for coproduction of LNG and high-purity ethane

机译:LNG和高纯度乙烷泛料集成单混合制冷剂工艺的设计与优化

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摘要

In this study, two novel integrated single mixed refrigerant (SMR) processes are proposed to coproduce liquefied natural gas (LNG) and high-purity liquid ethane, which are suitable for improving the economic benefits of high ethane-containing natural gas. In Process 1, cryogenic distillation and conventional SMR process are integrated to separate ethane while producing LNG. Since the distillation pressure is below the critical pressure of methane, heat transfer temperature difference in the low temperature section may be relatively large. Therefore, in Process 2, the pressure of natural gas is increased by adding a compressor after the distillation column. Aspen HYSYS is used to simulate the proposed processes, and the key parameters of the refrigeration cycles are optimized by genetic algorithms. Based on the comprehensive consideration of initial investment and operating cost, Process 2 is recommended for large-scale plant, while Process 1 for small-scale plant and situations with requirement of simple system, for example floating LNG production (FLNG). Furthermore, a simplified Process 1, with propane eliminated from the mixed refrigerant, is presented for better adaption to FLNG conditions. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:在该研究中,提出了两种新的集成单一混合制冷剂(SMR)工艺以共同液化天然气(LNG)和高纯度液体乙烷,其适用于改善含高乙烷天然气的经济益处。在方法1中,低温蒸馏和常规的SMR工艺集成到产生LNG的同时将乙烷分离。由于蒸馏压力低于甲烷的临界压力,因此低温部分中的传热温度差可能相对较大。因此,在方法2中,通过在蒸馏塔之后添加压缩机来增加天然气的压力。 Aspen Hysys用于模拟所提出的过程,并且通过遗传算法优化了制冷循环的关键参数。基于初始投资和运营成本的全面考虑,建议对大型工厂的过程2,而小型工厂的过程1和简单系统要求的过程1,例如浮动LNG生产(FLNG)。此外,提出了一种具有丙烷的简化过程1,以便更好地适应FLNG条件。 (c)2020 Elsevier Ltd和IIR。版权所有。

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