Department of Chemical Engineering, Columbia University, New York, NY 10027, USA.
Chemistry Division, Brookhaven National Laboratory, Upton, NY 11973, USA.
Science. 2018 May 25;360(6391). doi: 10.1126/science.aar6611.
Nitrogen is fundamental to all of life and many industrial processes. The interchange of nitrogen oxidation states in the industrial production of ammonia, nitric acid, and other commodity chemicals is largely powered by fossil fuels. A key goal of contemporary research in the field of nitrogen chemistry is to minimize the use of fossil fuels by developing more efficient heterogeneous, homogeneous, photo-, and electrocatalytic processes or by adapting the enzymatic processes underlying the natural nitrogen cycle. These approaches, as well as the challenges involved, are discussed in this Review.
氮是所有生命和许多工业过程的基础。在工业生产氨、硝酸和其他商品化学品过程中,氮氧化态的相互转换主要依赖于化石燃料。氮化学领域当代研究的一个主要目标是通过开发更有效的多相、均相、光催化和电催化过程,或者通过适应自然氮循环所基于的酶促过程,来最大程度减少对化石燃料的使用。本文综述了这些方法以及所涉及的挑战。