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Helping the climate by replacing liquefied natural gas with liquefied hydrogen or ammonia

Dados Bibliográficos

ID15545657
AutoresPaul Wolfram (0000-0002-8470-427X, Joint Global Change Research Institute, autor correspondente), Patrick O’Rourke (0000-0002-7549-491X, Joint Global Change Research Institute), Haewon McJeon (0000-0003-0348-5704, Korea Advanced Institute of Science and Technology), Page Kyle (0000-0002-1257-8358, Joint Global Change Research Institute)
Ano2024
Volume19
Fascículo5
Páginas054005-054005
Data de publicação2024-03-25
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoEnvironmental Research Letters (JOURNAL)
Identificadores do periódicoISSN: 1748-9326 • E-ISSN: 1748-9326
EditoraIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/ad376f
OpenAlexW4393143313
IdiomaEN
Citações recebidas1
Referências citadas19

The war in Ukraine caused Europe to more than double its imports of liquefied natural gas (LNG) in only one year. In addition, imported LNG remains a crucial source of energy for resource-poor countries, such as Japan, where LNG imports satisfy about a quarter of the country’s primary energy demand. However, an increasing number of countries are formulating stringent decarbonization plans. Liquefied hydrogen and liquefied ammonia coupled with carbon capture and storage (LH 2 -CCS, LNH 3 -CCS) are emerging as the front runners in the search for low-carbon alternatives to LNG. Yet, little is currently known about the full environmental profile of LH 2 -CCS and LNH 3 -CCS because several characteristics of the two alternatives have only been analyzed in isolation in previous work. Here we show that the potential of these fuels to reduce greenhouse gas (GHG) emissions throughout the supply chain is highly uncertain. Our best estimate is that LH 2 -CCS and LNH 3 -CCS can reduce GHG emissions by 25%–61% relative to LNG assuming a 100 year global warming potential. However, directly coupling LNG with CCS would lead to substantial GHG reductions on the order of 74%. Further, under certain conditions, emissions from LH 2 -CCS and LNH 3 -CCS could exceed those of LNG, by up to 44%. These results question the suitability of LH 2 -CCS and LNH 3 -CCS for stringent decarbonization purposes

Ammonia · Liquefied natural gas · Natural (archaeology · Natural gas · Waste management · Chemistry · Engineering · Environmental Science · Hybrid Renewable Energy Systems · Integrated Energy Systems Optimization · Spacecraft and Cryogenic Technologies · Geology · Organic Chemistry

  • The hydrogen economy can reduce costs of climate change mitigation by up to 22

    Open Access•Paul Wolfram, Page Kyle et al.•One Earth•2024

Obras citantes distintas1
Citações por ano0,5
Intervalo de citações2024 - 2024 (1)
Velocidade de citaçãorecent
Altamente citadoNão
Tipos de citaçãoNeutras: 1
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