Michalsky Ronald, Pfromm Peter H, Steinfeld Aldo
Department of Mechanical and Process Engineering , ETH Zürich , 8092 Zürich , Switzerland.
Department of Chemical Engineering , Kansas State University , 1005 Durland Hall, Manhattan, KS 66506 , USA.
Interface Focus. 2015 Jun 6;5(3):20140084. doi: 10.1098/rsfs.2014.0084.
Fixed nitrogen is an essential chemical building block for plant and animal protein, which makes ammonia (NH3) a central component of synthetic fertilizer for the global production of food and biofuels. A global project on artificial photosynthesis may foster the development of production technologies for renewable NH3 fertilizer, hydrogen carrier and combustion fuel. This article presents an alternative path for the production of NH3 from nitrogen, water and solar energy. The process is based on a thermochemical redox cycle driven by concentrated solar process heat at 700-1200°C that yields NH3 via the oxidation of a metal nitride with water. The metal nitride is recycled via solar-driven reduction of the oxidized redox material with nitrogen at atmospheric pressure. We employ electronic structure theory for the rational high-throughput design of novel metal nitride redox materials and to show how transition-metal doping controls the formation and consumption of nitrogen vacancies in metal nitrides. We confirm experimentally that iron doping of manganese nitride increases the concentration of nitrogen vacancies compared with no doping. The experiments are rationalized through the average energy of the dopant d-states, a descriptor for the theory-based design of advanced metal nitride redox materials to produce sustainable solar thermochemical ammonia.
固定氮是植物和动物蛋白质的重要化学组成部分,这使得氨(NH₃)成为全球粮食和生物燃料生产中合成肥料的核心成分。一个关于人工光合作用的全球项目可能会促进可再生氨肥料、氢载体和燃烧燃料生产技术的发展。本文提出了一种利用氮气、水和太阳能生产氨的替代途径。该过程基于一个由700-1200°C的聚光太阳能过程热驱动的热化学氧化还原循环,通过金属氮化物与水的氧化反应生成氨。金属氮化物通过在大气压下用氮气对氧化的氧化还原材料进行太阳能驱动还原而循环利用。我们运用电子结构理论对新型金属氮化物氧化还原材料进行合理的高通量设计,并展示过渡金属掺杂如何控制金属氮化物中氮空位的形成和消耗。我们通过实验证实,与未掺杂相比,氮化锰的铁掺杂增加了氮空位的浓度。通过掺杂剂d态的平均能量对实验进行了合理化解释,这是基于理论设计先进金属氮化物氧化还原材料以生产可持续太阳能热化学氨的一个描述符。