Collado Laura, Pizarro Alejandro H, Barawi Mariam, García-Tecedor Miguel, Liras Marta, de la Peña O'Shea Víctor A
Photoactivated Processes Unit, IMDEA Energy Institute, Móstoles, Madrid 28935, Spain.
Chem Soc Rev. 2024 Nov 25;53(23):11334-11389. doi: 10.1039/d3cs01075a.
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 N 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.
通过大幅增加基于可再生能源的技术,能源部门和化学工业脱碳的全球目标有望实现。对于这一清洁能源转型,用途广泛的绿色氨未来可能会发挥关键作用,成为无化石肥料、长期储能介质、化工原料以及用于交通运输和分散式发电的清洁燃烧燃料。高能源密集型的工业氨生产促使研究人员寻求由可再生能源驱动的新型合成方法的重大变革。本文综述了用于绿色氨生产的光介导固氮技术的全面比较,包括光催化、光电催化、光伏 - 电催化和光热催化路线。由于这些方法仍处于实验室规模,我们研究了最新进展,并讨论了未来改进面临的开放性挑战。最后,我们对当前和新兴的氨生产技术进行了技术经济比较,突出了成本、障碍、建议以及下一代绿色氨解决方案实际发展的潜在机会。