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Photoinitiated oxidation of geosmin and 2-methylisoborneol by irradiation with 254 nm and 185 nm UV light

机译:用254 nm和185 nm紫外线照射光引发的土工胺和2-甲基异冰片酚的氧化

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The degradation of geosmin and 2-methylisoborneol (2-MIE) by UV irradiation at different wavelengths was investigated under varying boundary conditions. The results showed that conventional UV radiation (254 nm) is ineffective in removing these compounds from water. In contrast to the usual UV radiation UV/VUV radiation (254 + 185 nm) was more effective in the removal of the taste and odour compounds. The degradation could be described by a simple pseudo first-order rate law with rate constants of about 1.2 × 10~(-3) m~2J~(-1) for gecsmin and 2-MIB in ultrapure water. In natural water used for drinking water abstraction the rate constants decreased to 2.7 × 10~(-4) m~2J~(-1) for geosrmn and 2.5 × 10~(-4) m~2 J~(-1) for 2-MIB due to the presence of NOM. Additionally, the formation of the by-product nitrite was studied. In the UV/VUV irradiation process up to 0.6 rngL~(-1) nitrite was formed during the complete photoinitiated oxidation of the odour compounds. However, the addition of low ozone doses could prevent the formation of nitrite in the UV/VUV irradiation experiments.
机译:在不同的边界条件下,研究了紫外线在不同波长下对土臭素和2-甲基异冰片醇(2-MIE)的降解。结果表明,常规的紫外线辐射(254 nm)不能有效地从水中去除这些化合物。与通常的UV辐射相反,UV / VUV辐射(254 + 185 nm)在去除味觉和气味化合物方面更为有效。降解可以通过简单的伪一阶速率定律描述,在超纯水中,盖奇霉素和2-MIB的速率常数约为1.2×10〜(-3)m〜2J〜(-1)。在用于取水的天然水中,速率常数对土工有机物降低到2.7×10〜(-4)m〜2J〜(-1),对2.5s降低到2.5×10〜(-4)m〜2 J〜(-1)。由于存在NOM,因此需要2-MIB。另外,研究了副产物亚硝酸盐的形成。在UV / VUV辐照过程中,在气味化合物完全光引发的氧化过程中形成了高达0.6 rngL〜(-1)的亚硝酸盐。但是,添加低剂量的臭氧可以防止在UV / VUV照射实验中形成亚硝酸盐。

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