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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Oxidation of α-methylphenylglycine under Fenton and electro-Fenton conditions in the dark and in the presence of solar light
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Oxidation of α-methylphenylglycine under Fenton and electro-Fenton conditions in the dark and in the presence of solar light

机译:在Fenton和Fenton条件下在黑暗和太阳光下氧化α-甲基苯基甘氨酸

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摘要

The oxidation of α-methylphenylglycine (α-MPG, S-2-amino-2-phenylpropionic acid) amino acid in aqueous solution by means of Fenton, solar photo-Fenton (SPF), electro-Fenton (EF), and solar photoelectro-Fenton (SPEF) reactions is studied. Several H2O2 initial concentrations were used in the chemical systems, while different currents were tested in the electrochemical ones where H2O2 was electrogenerated from O2 reduction at a gas diffusion cathode. α-MPG concentration and total organic carbon (TOC) removals along time were ascertained, and the electrochemical reactions turned out to be faster than the chemical ones. The presence of light was beneficial for both configurations. Reaction intermediates were detected using high-performance liquid chromatography, gas chromatography-mass spectrometry, and liquid chromatography-mass spectrometry analysis. A special attention was paid to the nature and time course of the carboxylic acids generated, being oxalic and oxamic acids those detected at higher concentrations. Apart from oxamic acid, NH_4~+ and NO_3~- ions were the nitrogen containing species detected and the nitrogen mass balance was not closed, probably due to the generation of NO_x or other volatile nitrogen species. Taking into account all the collected information about the reaction intermediates, a comprehensive reaction mechanism for α-MPG oxidation to aromatic intermediates is proposed.
机译:通过Fenton,太阳光Fenton(SPF),电Fenton(EF)和太阳光电子对水溶液中的α-甲基苯基甘氨酸(α-MPG,S-2-氨基-2-苯基丙酸)氨基酸进行氧化研究了芬顿(SPEF)反应。在化学系统中使用了几种H2O2初始浓度,而在电化学电流中测试了不同的电流,在电化学电流中,H2O2是由气体扩散阴极上的O2还原产生的。确定了α-MPG浓度和总有机碳(TOC)随时间的去除,并且电化学反应比化学反应更快。光的存在对于两种配置都是有益的。使用高效液相色谱,气相色谱-质谱和液相色谱-质谱分析法检测反应中间体。特别注意生成的羧酸的性质和时间过程,这些是草酸和草酰胺酸,它们的浓度较高。除草酰胺酸外,还检测到了NH_4〜+和NO_3〜-离子,并且未关闭氮的质量平衡,这可能是由于NO_x或​​其他挥发性氮的产生。考虑到所有收集到的有关反应中间体的信息,提出了一种由α-MPG氧化为芳族中间体的综合反应机理。

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