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Alternative fuel for sustainable shipping across the Taiwan Strait

机译:海峡两岸可持续运输的替代燃料

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We conducted a total fuel life-cycle inventory for atmospheric emissions for two ships operating between Mainland China and Taiwan, comparing the difference that may result from operating on heavy fuel oil (HFO) and on liquefied natural gas (LNG) as fuels. In addition, we assess the global warming impact from these two fueling alternatives. We use a commercially available life-cycle assessment (LCA) software to conduct a life-cycle inventory of airborne emissions from the ship fuel use. Our findings indicate possible improvement in total fuel-life-cycle GHG emissions from the use of LNG as alternative fuel to power ships. While total GHG and CO2 emission reduced, however, methane emissions increased significantly when LNG is used as alternative fuel to power both of our case ships. Both ships exhibit great reduction in the emissions of NOx (38-39%) and CO (42-43%). The reduction is much more remarkable in SO2 (99.8%) and PM10 (97.5%). The weight of emissions from operation stage has become relatively smaller in the whole fuel life-cycle total GHG emissions, when the two ships move to operate on LNG. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们对中国大陆和台湾之间运营的两艘船舶进行了大气排放的总燃料生命周期清单,比较了使用重质燃料油(HFO)和液化天然气(LNG)作为燃料可能产生的差异。此外,我们评估了这两种替代燃料对全球变暖的影响。我们使用市售的生命周期评估(LCA)软件对船舶燃料使用产生的空气传播排放进行生命周期清单评估。我们的发现表明,将液化天然气用作动力船的替代燃料可能会改善整个生命周期的温室气体排放量。虽然减少了温室气体和二氧化碳的总排放量,但是当将液化天然气用作我们的两艘船的替代燃料时,甲烷的排放量显着增加。两艘船的NOx(38-39%)和CO(42-43%)的排放量均大大降低。 SO 2(99.8%)和PM10(97.5%)的减少量更为显着。当两艘船转为使用液化天然气时,在整个燃料生命周期的温室气体总排放量中,运营阶段的排放权重已变得相对较小。 (C)2017 Elsevier Ltd.保留所有权利。

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