Greenhouse Gas Emission Analysis by LNG Fuel Tank Size through Life Cycle

Eunyoung Park, J. Choi
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引用次数: 1

Abstract

: As greenhouse gas emissions from maritime transport are increasing, the International Maritime Organization is continuously working to strengthen emission regulations. Liquefied natural gas (LNG) fuel is less advantageous as a point of CO 2 reduction due to the methane leakage that occurs during the bunkering and operation of marine engines. In this study, greenhouse gas emissions from an LNG-fueled ship were analyzed from the perspective of the life cycle. The amount ofmethane emission during the bunkering and operation procedures with various boil-off gas (BOG) treatment methods and gas engine specifications was analyzed by dynamic simulation. The results were also compared with those of other liquid fuel engines. As a result, small LNG-fueled ships without a BOG treatment facility emitted 32% more greenhouse gas than ships utilizing marine gas oil or heavy fuel oil. To achieve a greenhouse gas reduction via a BOG treatmen t method, a gas combustion unit or re-liquefaction system must be mounted, which results in a greenhouse gas reduction effect of about 25% and 30%. As a result of comparing the amount of greenhouse gas generated according to the BOG treatment method used with each tank size from the perspective of the operating cycle with the amounts from using existing marine fuels, the BOG treatment method showed superior effects of greenhouse gas reduction.
LNG燃料箱尺寸全生命周期温室气体排放分析
由于海上运输产生的温室气体排放量不断增加,国际海事组织正在不断努力加强排放法规。液化天然气(LNG)燃料作为二氧化碳减排点的优势较小,因为在船用发动机加油和运行过程中会发生甲烷泄漏。本研究从lng燃料船舶生命周期的角度对其温室气体排放进行了分析。通过动态仿真,分析了不同汽化气处理方式和燃气发动机规格下加注和运行过程中的甲烷排放量。结果还与其他液体燃料发动机进行了比较。因此,没有BOG处理设施的小型lng燃料船舶比使用船用燃料油或重质燃料油的船舶排放的温室气体多32%。通过BOG处理方法实现温室气体减排,必须安装气体燃烧装置或再液化系统,其温室气体减排效果约为25%和30%。从运行周期的角度将各罐尺寸采用BOG处理方式产生的温室气体量与使用现有船用燃料产生的温室气体量进行比较,BOG处理方式的温室气体减排效果更优。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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