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Process debottlenecking of small scale liquefied natural gas (LNG) plant

机译:小型液化天然气(LNG)厂的工艺去瓶颈

摘要

Process debottlenecking is one of a process improvement and particularly important when the current conditions of a plant reaches maximum production rate without satisfying market demands. In the case of liquefied natural gas (LNG), transcontinental demands always show steady increment. Since LNG is a source of clean energy and a feedstock to chemical productions, process debottlenecking of existing LNG plants offers economic benefits. In this research, the first objective was to perform process debottlenecking of a published flow sheet of a small scale LNG plant by using Aspen HYSYS. “Bottlenecks” or unit operations which reach bottlenecked conditions were identified by increasing the inlet flow rate. Simulation results showed that, LNG heat exchanger 2 was the single bottlenecked unit operations identified due to the occurrence of temperature cross. The bottlenecks removal was then performed by transferring duty of this active bottleneck to an additional cooler installed. Five different modifications were designed which installation of a cooler at different stream in the flow sheet and applied. Modification 5 showed the highest percentage of LNG production with 5298.68% increment from the existing plant. Production revenue for this modification is RM 2552098.60 after takes into consideration the highest cost of its additional cooling duty which is RM 400000.00. General economic benefits for this work need to be further analyzed so that the importance of process debottlenecking of LNG plant become more comprehensive.
机译:流程消除瓶颈是流程改进之一,当工厂的当前条件达到最大生产率而不满足市场需求时,这一点尤其重要。在液化天然气(LNG)的情况下,跨洲需求始终显示稳定增长。由于液化天然气是清洁能源的来源,也是化工产品的原料,因此现有液化天然气工厂的工艺瓶颈消除带来了经济利益。在这项研究中,第一个目标是使用Aspen HYSYS对小型LNG工厂的已发布工艺流程进行瓶颈处理。通过增加入口流速,可以确定达到瓶颈条件的“瓶颈”或单元操作。仿真结果表明,LNG换热器2是由于温度交叉的出现而确定的单瓶颈单元运行。然后通过将活动瓶颈的职责转移到安装的其他冷却器中来执行瓶颈清除。设计了五种不同的修改形式,分别在流程图中的不同流处安装了冷却器并加以应用。修改5显示最高的LNG生产百分比,与现有工厂相比增加5298.68%。考虑到其附加冷却税的最高成本为RM 400000.00,此修改的生产收入为RM 2552098.60。这项工作的总体经济利益需要进一步分析,以便使液化天然气工厂的工艺消除瓶颈的重要性变得更加全面。

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    Nurul Ain Ramli;

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  • 年度 2009
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