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水微液滴中氨的氧化产生硝酸盐和分子氢。

Oxidation of Ammonia in Water Microdroplets Produces Nitrate and Molecular Hydrogen.

机构信息

Department of Chemistry, Stanford University, Stanford, California 94305, United States.

Chemistry Department, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.

出版信息

Environ Sci Technol. 2024 Sep 10;58(36):16196-16203. doi: 10.1021/acs.est.4c04568. Epub 2024 Aug 23.

Abstract

Water microdroplets containing dissolved ammonia (30-300 μM) are sprayed through a copper oxide mesh with a 200 μm average pore size, resulting in the formation of nitrate (NO) and the release of molecular hydrogen (H). The products result from a redox process that takes place at the liquid-solid interface through contact electrification, where no external potential is applied. Oxidation is initiated by superoxide radical anions (O) that originate from the oxygen in the air surrounding the microdroplets and from the hydroxyl radicals (OH) originating from the water-air interface. Two spin traps (TEMPO and DMPO) capture these radicals as well as NHOH, HNO, NO, NO, and NOOH, which are detected by mass spectrometry. We also directly observed NO by the same means. We found that the hydrogen atom from the ammonia molecule can be set free not only in the form of H but also as H, which is detected using a residue gas analyzer. The oxidation process can be significantly enhanced by a factor of 3 when the sprayed microdroplets are irradiated with ultraviolet light (265 nm, 5 W). 35% of 300 μM ammonia can be degraded within 20 μs, and the nitrate conversion rate is estimated to be 15 nmol·mg·h.

摘要

含有溶解氨(30-300 μM)的水微滴通过平均孔径为 200 μm 的氧化铜网喷雾,形成硝酸盐(NO)并释放分子氢(H)。该产物是通过接触带电在固-液界面上发生的氧化还原过程产生的,过程中没有施加外部电势。氧化是由超氧自由基阴离子(O)引发的,这些自由基来自周围空气中的氧气以及来自水-空气界面的羟基自由基(OH)。两种自旋捕集剂(TEMPO 和 DMPO)捕获这些自由基以及 NHOH、HNO、NO、NO 和 NOOH,这些自由基通过质谱检测到。我们还通过相同的方法直接观察到了 NO。我们发现,氨分子中的氢原子不仅可以以 H 的形式释放,还可以以 H 的形式释放,这是使用残余气体分析仪检测到的。当喷雾微滴受到 265nm、5W 的紫外光照射时,氧化过程可以增强 3 倍。在 20μs 内可降解 300μM 氨的 35%,硝酸盐转化率估计为 15nmol·mg·h。

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