A shock tube study of fuel concentration effect on high-pressure autoignition delay of ammonia

Author:

Peng Yuzhe,Ranjan Devesh,Sun Wenting

Funder

National Energy Technology Laboratory

U.S. Department of Energy

Publisher

Elsevier BV

Subject

Fuel Technology,Energy (miscellaneous),Chemical Engineering (miscellaneous)

Reference60 articles.

1. Messerli P., Murniningtyas E., Eloundou-Enyegue P., Foli E.G., Furman E., Glassman A., et al. Global sustainable development report 2019: the future is now–science for achieving sustainable development. United Nations; 2019. https://sdgs.un.org/sites/default/files/2020-07/24797GSDR_report_2019.pdf [accessed 28 April 2023].

2. Net zero by 2050: a roadmap for the global energy sector,2021

3. Ammonia for power;Valera-Medina;Prog Energy Combust Sci,2018

4. Micro gas turbine firing kerosene and ammonia;Iki;Proc ASME Turbo,2015

5. Performances and emission characteristics of NH3–air and NH3 single bond CH4–air combustion gas-turbine power generations;Kurata;Proc Combust Inst,2017

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