首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Total organic carbon and total nitrogen removal and simultaneous electricity generation for nitrogen-containing wastewater based on the catalytic reactions of hydroxyl and chlorine radicals
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Total organic carbon and total nitrogen removal and simultaneous electricity generation for nitrogen-containing wastewater based on the catalytic reactions of hydroxyl and chlorine radicals

机译:基于羟基和氯自由基的催化反应,含氮废水的总有机碳和总氮去除和同时发电

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The treatment of nitrogen-containing organic wastewater is a difficult problem because organic and nitrogen contents are hard to remove simultaneously for the common sewage disposal technologies. Here we propose a new method to efficiently remove total organic carbon and total nitrogen and generate electricity simultaneously for this wastewater. The key idea of design is that organics and ammonia nitrogen is converted into CO2 and N-2 by catalytic reacting with hydroxyl and chlorine radicals, respectively, while generating electricity concurrently in a self-biased wastewater fuel cell. Nitrate-N (including original or generated) was reduced on Pd/Cu modified Ni foam electrode with high selectivity toward N-2, realizing the completely removal of total nitrogen from the water. Moreover, self-bias voltage was generated by employing WO3 nanoplate array electrodes and silicon photovoltaic cells as a hybrid photoanode to enhance the charge separation. This system was also successful in extending the light harvest. A series of experiments were performed with nitrate-N (ammonium-N) and phenol and the results indicated the removal efficiency of nitrate-N (ammonium-N) was 98.7% (91.5%) in 90 min and total nitrogen was efficiently transformed to N-2 with extending time to 120 min. The system also showed a superior performance for phenol degradation (99.1% in 90 min). Combined with the analysis of ESR and free radical capture experiment, it was concluded that chlorine radical played an important role in the phenol and ammonia-N oxidation. In addition, maximum power density output of the system reached 1.23 mW cm(-2). This study offers a self-sustaining approach for simultaneous nitrogen-containing organic wastewater treatment and electricity production.
机译:含氮有机废水的处理是难题的难题,因为有机和氮含量很难同时去除普通污水处理技术。在这里,我们提出了一种新方法,以有效地除去总有机碳和总氮气,并同时为该废水产生电力。设计的关键概念是通过分别与羟基和氯自由基的催化反应,同时在自偏压废水燃料电池中同时产生电力而转化为CO 2和N-2的有机物和氨氮。在Pd / Cu改性的Ni泡沫电极上减少硝酸氮(包括原始或产生),其对N-2具有高选择性,实现完全除去水的总氮。此外,通过使用WO3纳米板阵列电极和硅光伏电池作为混合光磁极来产生自偏置电压,以增强电荷分离。该系统也成功地延长了光收获。用硝酸盐-N(铵-N)和苯酚进行一系列实验,结果表明,90分钟内的硝酸N(铵-N)的去除效率为98.7%(91.5%),并将总氮气有效转化为n-2,延伸时间为120分钟。该系统还表现出优异的酚类降解性能(99.1%在90分钟内)。结合ESR和自由基捕获实验的分析,得出结论是氯激活在苯酚和氨-N氧化中起重要作用。此外,系统的最大功率密度输出达到1.23mm cm(-2)。本研究提供了一种自我维持方法,可用于同时含氮的有机废水处理和电力生产。

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