Gliding arc discharge in combination with CuCu2O electrocatalysis for ammonia production

Xue Liu, Jiawei Zhang, Yi He, Jiamin Huang, Xiaoping Ma, Xiaoman Zhang, M. Lu, Yu Xin
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Abstract

Highly efficient and green ammonia production is an important demand for modern agriculture. In this paper, a two-step ammonia production method is developed using a gliding arc discharge in combination with Cu/Cu2O electrocatalysis. In this method, NOx is provided by the gliding arc discharge and then electrolyzed by Cu/Cu2O after alkaline absorption. The electrical characteristics, the optical characteristics and the NOx production are investigated in discharges at different input voltage and the gas flow. The dependence of ammonia production through Cu/Cu2O electrocatalysis on pH value and reduction potential are determined by colorimetric method. In our study, two discharge modes are observed. At high input voltage and low gas flow, the discharge is operated with a stable plasma channel which is called the steady arc gliding discharge mode (A-G mode). As lowering input voltage and raising gas flow, the plasma channel is destroyed and high frequency breakdown occurs instead, which is known as the breakdown gliding discharge mode (B-G mode). The optimal NOx production of 7.34 mmol/h is obtained in the transition stage of the two discharge modes. The ammonia yield reaches 0.402 mmol/h/cm2 at pH value of 12.7 and reduction potential of -1.0 V vs RHE.
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滑弧放电与 CuCu2O 电催化相结合用于合成氨生产
高效绿色的氨生产是现代农业的重要需求。本文利用滑弧放电和 Cu/Cu2O 电催化技术开发了一种两步法合成氨生产方法。在该方法中,氮氧化物由滑弧放电提供,然后在碱性吸收后由 Cu/Cu2O 电解。研究了不同输入电压和气体流量下放电的电气特性、光学特性和氮氧化物生成情况。通过比色法确定了 Cu/Cu2O 电催化产生的氨与 pH 值和还原电位的关系。在我们的研究中,观察到了两种放电模式。在高输入电压和低气体流量下,放电以稳定的等离子体通道运行,这被称为稳弧滑行放电模式(A-G 模式)。随着输入电压的降低和气体流量的增加,等离子体通道被破坏,取而代之的是高频击穿,这就是击穿滑翔放电模式(B-G 模式)。在两种放电模式的过渡阶段,氮氧化物的最佳产量为 7.34 mmol/h。在 pH 值为 12.7 和对 RHE 的还原电位为 -1.0 V 时,氨产量达到 0.402 mmol/h/cm2。
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