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Mechanism study on the reactions between biphenyl and HNO_2 initiated by 355 nm irradiation in aqueous phase

机译:355 nm水相引发的联苯与HNO_2反应机理的研究

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The reactions taking place in the mixed solution of biphenyl and nitrous acid after it was exposed to UV irradiation were studied in this research work. The transient species were identified with the nanosecond transient spectroscopic technique, and the final products were ascertained by GC-MS analysis. It was shown that the OH radical, generated by the direct photolysis of nitrous acid, would attack biphenyl molecule to form Bp-OH adduct with a rate constant of 9.5×10~9 L·mol~(-1)·s~(-1). The Bp-OH adduct could either react with H~+ or be oxidized by nitrous acid to form nitrosobiphenol. The reactions between biphenyl and nitrous acid under UV irradiation in atmospheric aqueous phase were therefore suggested to be one promising source of nitrocompounds in the environment.
机译:在这项研究工作中,研究了联苯和亚硝酸在紫外线照射下在混合溶液中发生的反应。用纳秒瞬态光谱技术鉴定了瞬态物质,并通过GC-MS分析确定了最终产物。结果表明,亚硝酸直接光解产生的OH自由基会侵蚀联苯分子,形成速率为9.5×10〜9 L·mol〜(-1)·s〜(-的Bp-OH加合物。 1)。 Bp-OH加合物可以与H +反应或被亚硝酸氧化形成亚硝基双酚。因此,建议在大气水相中紫外线辐射下联苯与亚硝酸之间的反应是环境中硝基化合物的一种有希望的来源。

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