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Removal of Ammonia by OH Radical in Aqueous Phase

机译:水相中OH自由基去除氨的研究

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Many advanced oxidation technologies have been developed to remove ammonia in wastewater. All these technologies have one common characteristic, that is, the removal processes involve OH radical (·OH). In this research work, H_2O_2 was selected as ·OH precursor. The removal of ammonia under 253.7 nm irradiation from low-pressure mercury lamp in the presence of H_2O_2 was studied to investigate the ammonia removal efficiency by ·OH. Results show that the ·OH, generated by H_2O_2 photolysis, could oxidize NH_3 to NO_2~- and further to NO_3~- Removal efficiencies of ammonia were low and were affected by initial pH value and ammonia concentration. Laser flash photolysis technique with transient absorption spectra of nanosecond was used to investigate the oxidation pathway and kinetics of ammonia oxidation by ·OH. Results illustrate that ·OH could oxidize NH_3 to form ·NH_2 with a second-order rate constant of (1.0 ± 0.1) × 10~8 M~(-1) s~(-1) (20 ℃). ·NH_2, the main product of ·OH with NH_3, would further react with H_2O_2 to yield ·NH0H. Since ·NHOH could not stay stable in solution, it would rapidly convert to NH_2O_2~- and consequently NO_2~- and NO_3~-. The rate constants for these elementary reactions were also given. The low removal efficiency of ammonia by ·OH was mainly due to the slow reaction rate constant.
机译:已经开发了许多先进的氧化技术来去除废水中的氨。所有这些技术都有一个共同的特征,即去除过程涉及OH自由基(·OH)。在这项研究工作中,选择H_2O_2作为·OH的前体。研究了在H_2O_2存在下,从低压汞灯在253.7 nm辐射下对氨的去除​​效果,研究了·OH对氨去除效率的影响。结果表明,H_2O_2光解产生的·OH可将NH_3氧化为NO_2〜-,进而氧化为NO_3〜-。氨的去除效率低,且受初始pH值和氨浓度的影响。利用具有纳秒瞬态吸收光谱的激光闪光光解技术研究了·OH对氨氧化的氧化途径和动力学。结果表明,·OH可以将NH_3氧化成·NH_2,其二级速率常数为(1.0±0.1)×10〜8 M〜(-1)s〜(-1)(20℃)。 ·OH与NH_3的主要产物·NH_2将进一步与H_2O_2反应生成·NH0H。由于·NHOH不能在溶液中保持稳定,因此它将迅速转化为NH_2O_2〜-,进而转化为NO_2〜-和NO_3〜-。还给出了这些基本反应的速率常数。 ·OH去除氨的效率低主要是由于反应速率常数慢。

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