Light-driven nitrogen fixation routes for green ammonia production

被引:31
作者
Collado, Laura [1 ]
Pizarro, Alejandro H. [1 ]
Barawi, Mariam [1 ]
Garcia-Tecedor, Miguel [1 ]
Liras, Marta [1 ]
O'Shea, Victor A. de la Pena [1 ]
机构
[1] IMDEA Energy Inst, Photoactivated Proc Unit, Mostoles 28935, Madrid, Spain
基金
欧洲研究理事会;
关键词
HYDROGEN-PRODUCTION; CARBON-NITRIDE; N-2; REDUCTION; ELECTROCHEMICAL SYNTHESIS; PHOTOCATALYTIC REDUCTION; TECHNOECONOMIC ANALYSIS; AMBIENT-TEMPERATURE; BISMUTH OXYCHLORIDE; CATALYTIC SYNTHESIS; CADMIUM REDUCTION;
D O I
10.1039/d3cs01075a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The global goal for decarbonization of the energy sector and the chemical industry could become a reality by a massive increase in renewable-based technologies. For this clean energy transition, the versatile green ammonia may play a key role in the future as a fossil-free fertilizer, long-term energy storage medium, chemical feedstock, and clean burning fuel for transportation and decentralized power generation. The high energy-intensive industrial ammonia production has triggered researchers to look for a step change in new synthetic approaches powered by renewable energies. This review provides a comprehensive comparison of light-mediated N2 fixation technologies for green ammonia production, including photocatalytic, photoelectrocatalytic, PV-electrocatalytic and photothermocatalytic routes. Since these approaches are still at laboratory scale, we examine the most recent developments and discuss the open challenges for future improvements. Last, we offer a technoeconomic comparison of current and emerging ammonia production technologies, highlighting costs, barriers, recommendations, and potential opportunities for the real development of the next generation of green ammonia solutions. The global goal for decarbonization of the energy sector and the chemical industry could become a reality by a massive increase in renewable-based technologies.
引用
收藏
页码:11334 / 11389
页数:57
相关论文
共 453 条
[21]  
Association A. E., AMMONIA FUELED SPORT
[22]  
Baares-Alcntara R., 2015, ANAL ISLANDED AMMONI
[23]   Highly efficient visible-light photocatalytic nitrogen fixation via single-atom iron catalyst site and synergistic effect of Zr-cluster in zirconium-based porphyrinic metal-organic frameworks (PCN-222) [J].
Bagherpour, Bahareh ;
Dehghanpour, Saeed .
JOURNAL OF SOLID STATE CHEMISTRY, 2023, 324
[24]   Understanding the Z-scheme heterojunction of BiVO4/PANI for photoelectrochemical nitrogen reduction [J].
Bai, Yajie ;
Bai, Hongye ;
Fang, Zhenyuan ;
Li, Xia ;
Fan, Weiqiang ;
Shi, Weidong .
CHEMICAL COMMUNICATIONS, 2021, 57 (81) :10568-10571
[25]   Understanding the key role of vanadium in p-type BiVO4 for photoelectrochemical N2 fixation [J].
Bai, Yajie ;
Lu, Jianmin ;
Bai, Hongye ;
Fang, Zhenyuan ;
Wang, Fagen ;
Liu, Ying ;
Sun, Dongtian ;
Luo, Bifu ;
Fan, Weiqiang ;
Shi, Weidong .
CHEMICAL ENGINEERING JOURNAL, 2021, 414
[26]   In-situ approach to fabricate BiOI photocathode with oxygen vacancies: Understanding the N2 reduced behavior in photoelectrochemical system [J].
Bai, Yajie ;
Bai, Hongye ;
Qu, Konggang ;
Wang, Fagen ;
Guan, Peng ;
Xu, Dongbo ;
Fan, Weiqiang ;
Shi, Weidong .
CHEMICAL ENGINEERING JOURNAL, 2019, 362 :349-356
[27]   Facet-Dependent Photocatalytic N2 Fixation of Bismuth-Rich Bi5O7I Nanosheets [J].
Bai, Yang ;
Ye, Liqun ;
Chen, Ting ;
Wang, Li ;
Shi, Xian ;
Zhang, Xu ;
Chen, Dan .
ACS APPLIED MATERIALS & INTERFACES, 2016, 8 (41) :27661-27668
[28]   Sustainable Ammonia Production [J].
Baltrusaitis, Jonas .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2017, 5 (11) :9527-9527
[29]   PHOTOELECTROCHEMISTRY [J].
BARD, AJ .
SCIENCE, 1980, 207 (4427) :139-144
[30]   Hierarchical UiO-66(-NH2)/CuInS2 S-Scheme Photocatalyst with Controlled Topology for Enhanced Photocatalytic N2 Fixation and H2O2 Production [J].
Bariki, Ranjit ;
Pradhan, Sibun Kumar ;
Panda, Saumyaranjan ;
Nayak, Swagat Kumar ;
Pati, Aditya Ranjan ;
Mishra, B. G. .
LANGMUIR, 2023, 39 (22) :7707-7722