Zhao Xue, Li Xue, Zhang Haibo, Chen Xiao, Xu Jian, Yang Jun, Zhang Hucai, Hu Guangzhi
Institute for Ecological Research and Pollution Control of Plateau Lakes, School of Ecology and Environmental Science, Yunnan University, Kunming 650504, China; College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, China.
Institute for Ecological Research and Pollution Control of Plateau Lakes, School of Ecology and Environmental Science, Yunnan University, Kunming 650504, China.
J Hazard Mater. 2022 Feb 15;424(Pt A):127319. doi: 10.1016/j.jhazmat.2021.127319. Epub 2021 Sep 22.
Environmentally friendly electrochemical reduction pathways from NO to NH or N have provided feasible strategy into the green production of ammonia or the treatment of nitrate wastewater. Here, we anchored single-atom Cu with boron carbon nitride on carbon nanotube (BCN@Cu/CNT), and achieved the efficient operation of electrochemical nitrate reduction reaction (NIRR). BCN@Cu/CNT can efficiently catalyze the selective conversion of high-concentration nitrate into high-value-added ammonia, where the ammonia yield rate and Faradaic efficiency are as high as 172,226.5 μg h mg and 95.32% (at -0.6 V), respectively. BCN@Cu/CNT also shows the ability to efficiently remove low-concentration nitrates in sewage. Specifically, here only takes 5 h to nearly 100% (99.32%) eliminate NO (50 mg L) in sewage without any residual NO. The excellent catalytic activity and physicochemical stability of BCN@Cu/CNT for NIRR suggest the promising industrial application prospects, including the green production of ammonia and the purification of nitrate wastewater.
从NO到NH或N的环境友好型电化学还原途径为氨的绿色生产或硝酸盐废水处理提供了可行策略。在此,我们将单原子铜与硼碳氮化物锚定在碳纳米管上(BCN@Cu/CNT),并实现了电化学硝酸盐还原反应(NIRR)的高效运行。BCN@Cu/CNT能够高效催化高浓度硝酸盐选择性转化为高附加值氨,其中氨产率和法拉第效率分别高达172,226.5 μg h mg和95.32%(在-0.6 V时)。BCN@Cu/CNT还显示出有效去除污水中低浓度硝酸盐的能力。具体而言,在此仅需5小时就能将污水中的NO(50 mg L)近乎100%(99.32%)去除,且无任何NO残留。BCN@Cu/CNT对NIRR的优异催化活性和物理化学稳定性表明其具有广阔的工业应用前景,包括氨的绿色生产和硝酸盐废水净化。