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The photoconversion of gamma-hexachlorocyclohexane under UV irradiation in water, snow and ice

机译:γ-六氯环己烷在水,雪和冰中紫外线照射下的光转化

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The photochemistry of organic pollutants has received increasing attention in ice and snow. In this work, the photoconversion of gamma-hexachlorocyclohexane (γ-HCH) under UV irradiation was investigated in water, snow and ice. The photoconversion rate, products and mechanisms were inspected, and the effect of inorganic ions (NO_2~-, NO_3~-, HCO_3~- and Fe~(2+)) was discussed. The results showed that γ-HCH could be photoconverted in water, snow and ice, with the photoconversion rate being fastest in snow, and slowest in ice. All photoconversion could be described by the first-order kinetics model. In water, snow and ice, the common photoproducts of γ-HCH were alphahexachlorocyclohexane(α-HCH) and pentachlorocyclohexene. α-HCH was generated by a change in the bonding of a chlorine atom in γ-HCH; pentachlorocyclohexene was generated by the removal of a molecule of chlorine hydride from a molecule of γ-HCH. Different concentrations of NO_2~-, NO_3~- and HCO_3~- all inhibited the photoconversion of γ-HCH, and the inhibition effect decreased with increasing concentrations of NO_2~- and NO_3~-, but increased with the increasing concentrations of HCO_3~-. Different concentrations of Fe~(2+) promoted the photoconversion of γ-HCH in water and ice, but had little effect in snow.
机译:在冰雪中,有机污染物的光化学受到越来越多的关注。在这项工作中,研究了在水,雪和冰中,γ-六氯环己烷(γ-HCH)在紫外线照射下的光转化。考察了光转化率,产物和机理,探讨了无机离子(NO_2〜-,NO_3〜-,HCO_3〜-和Fe〜(2+))的作用。结果表明,γ-六氯环己烷可以在水,雪和冰中进行光转化,在雪中光转化速率最快,在冰中光转化速率最低。所有的光转化都可以由一阶动力学模型描述。在水,雪和冰中,γ-六氯环己烷的常见光产物是α六氯环己烷(α-HCH)和五氯环己烯。 α-HCH是通过改变γ-HCH中氯原子的键合而产生的;五氯环己烯是通过从γ-HCH分子中除去氢化氯分子而生成的。不同浓度的NO_2〜-,NO_3〜-和HCO_3〜-均抑制了γ-HCH的光转化,其抑制作用随NO_2〜-和NO_3〜-浓度的增加而降低,但随HCO_3〜-浓度的增加而增加。 。不同浓度的Fe〜(2+)促进水和冰中γ-六氯环己烷的光转化,但对雪的影响很小。

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