首页> 外文会议>2nd international conference on energy sustainability 2008 >CBM LIQUEFACTION PROCESSES INTEGRATED WITH ADSORPTION SEPARATION OF NITROGEN
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CBM LIQUEFACTION PROCESSES INTEGRATED WITH ADSORPTION SEPARATION OF NITROGEN

机译:结合氮吸附分离的煤层气液化工艺

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摘要

Coalbed methane (CBM) is a kind of important energy resources in the world. Liquefaction is a good option for recovery of CBM. Generally, CBM consists of a lot of nitrogen besides methane, which is usually required to be separated by adsorption before liquefaction, or by distillation after liquefaction. For the CBM adsorption-liquefaction processes, two novel processes are proposed, which integrate the two parts of adsorption and liquefaction together by utilizing the residue pressure of the waste nitrogen: the released nitrogen expanded directly to precool CBM, or further compressed and then expanded to liquefy CBM. Taking the unit product liquefaction power consumption as the major index and nitrogen content of CBM feed gas together with residue pressure of waste nitrogen as variables, the system performance of these two integrated processes is studied and compared with that of the nitrogen expansion liquefaction process without integration. By simulation and calculation with HYSYS, it is confirmed that system power consumption can be reduced by both methods to utilize the residue pressure, and for CBM with high nitrogen content, the energy conservation effect is considerable, furthermore, it is better to use waste nitrogen to precool CBM than to liquefy it.
机译:煤层气(CBM)是世界上一种重要的能源资源。液化是恢复煤层气的好选择。通常,煤层气除甲烷外还包含大量氮,通常需要在液化前通过吸附分离,或在液化后通过蒸馏分离。对于煤层气的吸附液化过程,提出了两个新颖的过程,利用废氮的残余压力将吸附和液化的两个部分结合在一起:释放的氮直接膨胀成预冷的煤层气,或进一步压缩然后膨胀成液化煤层气。以单位产品液化能耗为主要指标,以煤层气原料气含氮量和废氮残压为变量,研究了这两个集成工艺的系统性能,并与不集成的氮气膨胀液化工艺进行了比较。 。通过HYSYS的仿真和计算,证实了两种方法都可以降低系统能耗,利用残余压力,对于高氮含量的煤层气,节能效果显着,此外,最好使用废氮预冷煤层气而不是液化它。

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