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在北极野外条件下,冷冻水溶液中艾氏剂和狄氏剂的光化学处理。

Photochemical processing of aldrin and dieldrin in frozen aqueous solutions under arctic field conditions.

机构信息

Department of Chemistry, Villanova University, Villanova, PA 19085, USA.

出版信息

Environ Pollut. 2011 May;159(5):1076-84. doi: 10.1016/j.envpol.2011.02.026. Epub 2011 Mar 10.

Abstract

Organochlorine (OC) contaminants are transported to the Polar Regions, where they have the potential to bioaccumulate, presenting a threat to the health of wildlife and indigenous communities. They deposit onto snowpack during winter, and accumulate until spring, when they experience prolonged solar irradiation until snowmelt occurs. Photochemical degradation rates for aldrin and dieldrin, in frozen aqueous solution made from MilliQ water, 500 μM hydrogen peroxide solution or locally-collected melted snow were measured in a field campaign near Barrow, AK, during spring-summer 2008. Significant photoprocessing of both pesticides occurs; the reactions depend on temperature, depth within the snowpack and whether the predominant phase is ice or liquid water. The effect of species present in natural snowpack is comparable to 500 μM hydrogen peroxide, pointing to the potential significance of snowpack-mediated reactions. Aldrin samples frozen at near 0 °C were more reactive than comparable liquid samples, implying that the microenvironments experienced on frozen ice surfaces are an important consideration.

摘要

有机氯污染物被运送到极地地区,在那里它们有可能生物积累,对野生动物和土著社区的健康构成威胁。它们在冬季沉积在积雪上,并在春季积累,直到积雪融化,此时它们会经历长时间的太阳辐射。2008 年春季至夏季,在阿拉斯加巴罗附近的一次野外考察中,测量了从 MilliQ 水、500μM 过氧化氢溶液或当地收集的融化雪制成的冷冻水相中 aldrin 和 dieldrin 的光化学降解速率。这两种农药都发生了显著的光处理;反应取决于温度、积雪层内的深度以及主要相是冰还是液态水。自然雪层中存在的物质的影响可与 500μM 过氧化氢相媲美,这表明雪层介导的反应具有潜在的重要性。在接近 0°C 时冷冻的 aldrin 样品比可比的液态样品更具反应性,这意味着在冰冻冰面上经历的微环境是一个重要的考虑因素。

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