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多氯联苯在冰川中的分布。1. 阿尔卑斯山冰芯中的沉积历史。

Polychlorinated biphenyls in glaciers. 1. Deposition history from an Alpine ice core.

机构信息

Empa, Swiss Federal Laboratories for Materials Testing and Research, Überlandstrasse 129, CH-8600 Dübendorf, Switzerland.

出版信息

Environ Sci Technol. 2014 Jul 15;48(14):7842-8. doi: 10.1021/es5017922. Epub 2014 Jun 27.

Abstract

We present a highly time-resolved historical record of polychlorinated biphenyls (PCBs) from an Alpine ice core (Fiescherhorn glacier, Switzerland). Introduced in the 1940s, PCBs were widely used industrial chemicals. Because of their persistence they are still found in the environment, long after their production phase-out. The Fiescherhorn ice core record covers the entire time period of industrial use of PCBs, that is, 1940-2002. The total concentration of six PCBs varies from 0.5 to 5 ng L(-1) and reveals a temporal trend, with an 8-fold increase from the early 1940s to the peak value in the 1970s. The level in 2002 is comparable to the concentration in the 1940s, when PCBs were introduced into the market. The time trend of PCBs associated with the particulate fraction closely follows the trend found in the dissolved fraction, but the absolute values are a factor of 10 lower. In addition to changing emissions, fluctuations in the PCB record were explained by variabilty in convective transport and postdepositional processes such as surface melting. Concentrations of PCBs are in agreement with data from seasonal snow samples in the Alps, but are a factor of 100 higher than concentrations measured in the Arctic. Contrasting time trends and congener patterns between the Alpine and Arctic region indicate the importance of atmospheric transport and postdepositional effects.

摘要

我们呈现了一个来自阿尔卑斯山冰芯(瑞士菲舍尔霍恩冰川)的多氯联苯(PCBs)的高度时间分辨的历史记录。PCBs 于 20 世纪 40 年代问世,是广泛使用的工业化学品。由于其持久性,即使在它们的生产阶段结束后很久,它们仍然存在于环境中。菲舍尔霍恩冰芯记录涵盖了 PCBs 的整个工业使用时期,即 1940 年至 2002 年。六种 PCBs 的总浓度从 0.5 到 5ng/L 不等,呈现出时间趋势,从 20 世纪 40 年代初到 70 年代的峰值增加了 8 倍。2002 年的水平与 20 世纪 40 年代 PCBs 进入市场时的浓度相当。与颗粒部分相关的 PCBs 的时间趋势与溶解部分的趋势密切相关,但绝对值低 10 倍。除了不断变化的排放,PCBs 记录中的波动还可以通过对流传输和表面融化等后沉积过程的变化来解释。PCBs 的浓度与阿尔卑斯山季节性积雪样本的数据一致,但比在北极测量的浓度高 100 倍。阿尔卑斯山和北极地区之间的时间趋势和同系物模式的对比表明了大气传输和后沉积效应的重要性。

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