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Synthesis of ammonia directly from air and water at ambient temperature and pressure

机译:在环境温度和压力下直接从空气和水中合成氨

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摘要

The N≡N bond (225 kcal mol−1) in dinitrogen is one of the strongest bonds in chemistry therefore artificial synthesis of ammonia under mild conditions is a significant challenge. Based on current knowledge, only bacteria and some plants can synthesise ammonia from air and water at ambient temperature and pressure. Here, for the first time, we report artificial ammonia synthesis bypassing N2 separation and H2 production stages. A maximum ammonia production rate of 1.14 × 10−5 mol m−2 s−1 has been achieved when a voltage of 1.6 V was applied. Potentially this can provide an alternative route for the mass production of the basic chemical ammonia under mild conditions. Considering climate change and the depletion of fossil fuels used for synthesis of ammonia by conventional methods, this is a renewable and sustainable chemical synthesis process for future.
机译:二氮中的N≡N键(225 kcal mol -1 )是化学上最强的键之一,因此在温和条件下人工合成氨是一个重大挑战。根据目前的知识,只有细菌和某些植物才能在环境温度和压力下从空气和水中合成氨。在这里,我们首次报道了人工氨合成绕过N2分离和H2生产阶段。当施加1.6 V的电压时,最大氨生产速率为1.14×10 -5 mol m -2 s -1 。这可能为在温和条件下批量生产碱性化学氨提供一条替代途径。考虑到气候变化和通过常规方法合成氨所消耗的化石燃料的消耗,这是未来的可再生且可持续的化学合成过程。

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