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Effects of hydrogen content on nitrogen expansion liquefaction process of coke oven gas

机译:氢含量对焦炉煤气氮膨胀液化过程的影响

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摘要

Coke oven gas (COG) is a by-product when producing coke from coal. Producing liquefied natural gas (LNG) is an efficient way of utilizing COG. The amount of hydrogen in COG affects liquefaction process significantly, because its thermal properties are quite different from the other compositions (methane, carbon monoxide, etc.) of COG. Based on nitrogen expansion liquefaction process, a series of liquefaction processes of COG containing different amount of hydrogen are simulated in this paper. It turns out that the hydrogen content exerts a great influence on the unit power consumption and the liquefaction rate of the processes. In order to ensure very low concentration of hydrogen in LNG product, distillation is added to the process. The processes with or without distillation are compared. Furthermore, for the processes with distillation, the liquefaction process is integrated with distillation separation of hydrogen to upgrade the quality of LNG. Simulations indicate that LNG can be produced by improved nitrogen expansion processes with acceptable energy consumption. The unit power consumption increases with the increase of hydrogen content of COG and the increase of the methane recovery rate. And the unit power consumption of the process with distillation is about 10% lower than that of process without distillation, when the methane recovery rate is fixed.
机译:用煤生产焦炭时,焦炉气(COG)是副产品。生产液化天然气(LNG)是利用COG的有效方法。 COG中的氢含量会显着影响液化过程,因为其热性质与COG的其他成分(甲烷,一氧化碳等)完全不同。本文基于氮膨胀液化过程,模拟了一系列含氢量不同的COG的液化过程。结果表明,氢含量对工艺的单位能耗和液化速率有很大的影响。为了确保LNG产品中氢气的浓度非常低,将蒸馏添加到该过程中。比较有或没有蒸馏的过程。此外,对于带有蒸馏的过程,液化过程与氢气的蒸馏分离结合在一起以提高LNG的质量。模拟表明,可以通过以可接受的能量消耗改进氮膨胀工艺来生产LNG。单位能耗随COG氢含量的增加和甲烷回收率的提高而增加。当甲烷的回收率固定时,采用蒸馏的方法的单位能耗比不采用蒸馏的方法的单位能耗低约10%。

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