Centralised and Localised Hydrogen Generation by Ammonia Decomposition A technical review of the ammonia cracking process

被引:10
|
作者
Ashcroft, Julie [1 ]
Goddin, Helen [1 ]
机构
[1] Johnson Matthey, Orchard Rd, Royston SG8 5HE, Herts, England
来源
JOHNSON MATTHEY TECHNOLOGY REVIEW | 2022年 / 66卷 / 04期
关键词
SEPARATION; MEMBRANES; PURIFICATION; TRANSPORT; CATALYSTS; SUPPORTS;
D O I
10.1595/205651322X16554704236047
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Ammonia is a strong candidate as a hydrogen vector and has the flexibility to be used directly as a fuel or decomposed to form pure hydrogen. The format of an ammonia decomposition plant is only starting to emerge, with two types becoming significant: centralised locations feeding into the national gas network and decentralised units to supply fuelling stations, the chemical industry or remote applications. In this paper, we review the aspects critical to decompose ammonia in both cases. While the centralised cracking flowsheet can use equipment standard to current hydrogen production methods, the localised cracking unit requires a more innovative design. Energy and safety considerations may favour low temperature operation for decentralised applications, requiring high activity catalysts, while centralised industrial sites may operate at higher temperatures and use a base metal catalyst. Purification to deliver hydrogen suitable for fuel cells is one of the biggest challenges in developing the flowsheet.
引用
收藏
页码:375 / 385
页数:11
相关论文
共 50 条
  • [1] Review of the Decomposition of Ammonia to Generate Hydrogen
    Lucentini, Ilaria
    Garcia, Xenia
    Vendrell, Xavier
    Llorca, Jordi
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2021, 60 (51) : 18560 - 18611
  • [2] Ammonia for hydrogen storage; A review of catalytic ammonia decomposition and hydrogen separation and purification
    Lamb, Krystina E.
    Dolan, Michael D.
    Kennedy, Danielle F.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44 (07) : 3580 - 3593
  • [3] Novel carbon-free innovation in centralised ammonia cracking for a sustainable hydrogen economy: the hybrid air-volt ammonia cracker (HAVAC) process
    Eluwah, Chidozie
    Fennell, Paul S.
    ENERGY ADVANCES, 2024, 3 (10): : 2627 - 2647
  • [4] Reactor technology options for distributed hydrogen generation via ammonia decomposition: A review
    Chiuta, Steven
    Everson, Raymond C.
    Neomagus, Hein W. J. P.
    van der Gryp, Percy
    Bessarabov, Dmitri G.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2013, 38 (35) : 14968 - 14991
  • [5] Research Progress of Ammonia Decomposition Catalysts for Hydrogen Generation
    Gong, Shaofeng
    Du, Zexue
    Mu, Xuhong
    Shiyou Xuebao, Shiyou Jiagong/Acta Petrolei Sinica (Petroleum Processing Section), 2022, 38 (06): : 1506 - 1519
  • [6] Mixed metal oxides in catalytic ammonia cracking process for green hydrogen production: A review
    Salehabadi, Ali
    Zanganeh, Jafar
    Moghtaderi, Behdad
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 63 : 828 - 843
  • [7] Ammonia Decomposition in the Process Chain for a Renewable Hydrogen Supply
    Ristig, Simon
    Poschmann, Michael
    Folke, Jan
    Gomez-Capiro, Oscar
    Chen, Zongkun
    Sanchez-Bastardo, Nuria
    Schloegl, Robert
    Heumann, Saskia
    Ruland, Holger
    CHEMIE INGENIEUR TECHNIK, 2022, 94 (10) : 1413 - 1425
  • [8] Low-temperature ammonia decomposition catalysts for hydrogen generation
    Mukherjee, Shreya
    Devaguptapu, Surya V.
    Sviripa, Anna
    Lund, Carl R. F.
    Wu, Gang
    APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 226 : 162 - 181
  • [9] Ammonia as hydrogen carrier: Advances in ammonia decomposition catalysts for promising hydrogen production
    Sun, Shangcong
    Jiang, Qiuqiao
    Zhao, Dongyue
    Cao, Tiantian
    Sha, Hao
    Zhang, Chuankun
    Song, Haitao
    Da, Zhijian
    RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2022, 169
  • [10] A Review on Numerical Simulation of Hydrogen Production from Ammonia Decomposition
    Ao, Rui
    Lu, Ruihua
    Leng, Guanghui
    Zhu, Youran
    Yan, Fuwu
    Yu, Qinghua
    ENERGIES, 2023, 16 (02)