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Steam Methane Reforming(SMR)Combined with Ship Based Carbon Capture(SBCC)for an Efficient Blue Hydrogen Production on Board Liquefied Natural Gas(LNG)Carriers
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作者 Ikram Belmehdi Boumedienne Beladjine +2 位作者 Mohamed Djermouni Amina Sabeur Mohammed El Ganaoui 《Fluid Dynamics & Materials Processing》 2025年第1期71-85,共15页
The objective of this study is to propose an optimal plant design for blue hydrogen production aboard a liquefiednatural gas(LNG)carrier.This investigation focuses on integrating two distinct processes—steam methaner... The objective of this study is to propose an optimal plant design for blue hydrogen production aboard a liquefiednatural gas(LNG)carrier.This investigation focuses on integrating two distinct processes—steam methanereforming(SMR)and ship-based carbon capture(SBCC).The first refers to the common practice used to obtainhydrogen from methane(often derived from natural gas),where steam reacts with methane to produce hydrogenand carbon dioxide(CO_(2)).The second refers to capturing the CO_(2) generated during the SMR process on boardships.By capturing and storing the carbon emissions,the process significantly reduces its environmental impact,making the hydrogen production“blue,”as opposed to“grey”(which involves CO_(2) emissions without capture).For the SMR process,the analysis reveals that increasing the reformer temperature enhances both the processperformance and CO_(2) emissions.Conversely,a higher steam-to-carbon(s/c)ratio reduces hydrogen yield,therebydecreasing thermal efficiency.The study also shows that preheating the air and boil-off gas(BOG)before theyenter the combustion chamber boosts overall efficiency and curtails CO_(2) emissions.In the SBCC process,puremonoethanolamine(MEA)is employed to capture the CO_(2) generated by the exhaust gases from the SMR process.The results indicate that with a 90%CO_(2) capture rate,the associated heat consumption amounts to 4.6 MJ perkilogram of CO_(2) captured.This combined approach offers a viable pathway to produce blue hydrogen on LNGcarriers while significantly reducing the carbon footprint. 展开更多
关键词 Carbon dioxide(CO_(2))emissions blue hydrogen boil-off gas(BOG) steam methane reforming(SMR) ship-based carbon capture(sbcc)
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虎门悬索桥工程中的CAE技术应用
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作者 吕建鸣 《工程设计CAD与智能建筑》 1999年第8期28-32,共5页
虎门悬索桥工程项目实施综合运用计算机技术和非线性有限元法,辅助大跨度悬索桥工程,并编制了用于悬索桥施工过程结构行为模拟的Windows 环境SBCC 应用软件。
关键词 悬索桥工程 CAE 结构 sbcc
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FDA批准咪喹莫特乳膏治疗浅表型基底细胞癌
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《世界临床药物》 CAS 2004年第9期513-514,共2页
关键词 -FDA 咪喹莫特乳膏 浅表型基底细胞癌 肿瘤 sbcc 不良反应 皮肤癌
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