Mechanism analysis of fuel-N oxidation during ammonia-coal co-combustion: Influence of H2O

Author:

Chen Ping,Gong Cheng,Hua Changhao,Gu MingyanORCID,Jiang Boyu,Fan Jianren,Wang Yi

Publisher

Elsevier BV

Subject

Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference69 articles.

1. United Nations, The Paris Agreement, 2015, available at http://unfccc.int/files/ essential_background/convention/application/pdf/english_paris_agreement.pdf.

2. Li YN, Lan S, Ryberg M, Pérez-Ramírez J, Wang XN. A quantitative roadmap for China towards carbon neutrality in 2060 using methanol and ammonia as energy carriers. iScience 2021; 24(6): 102513.

3. Carbon M. Global first high spatial resolution near real time carbon map [EB/OL]. [2022 – 02-04]. https://carbonmonitor.org.cn.

4. Research and practice on development path of low-carbon, zero-carbon and negative carbon transformation of coal-fired power units under “double carbon” targets;Feng;Power Gener Technol,2022

5. Research progress and prospect of ammonia cofiring in utility coalfired boiler;Xu;J Huazhong Univ Sci Technol,2022

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