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首页> 外文期刊>Atmospheric environment >Effect of vegetation removal and water table drawdown on the non-methane biogenic volatile organic compound emissions in boreal peatland microcosms
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Effect of vegetation removal and water table drawdown on the non-methane biogenic volatile organic compound emissions in boreal peatland microcosms

机译:植被去除和地下水位下降对北方泥炭地小尺度非甲烷生物源性挥发性有机化合物排放的影响

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摘要

Biogenic volatile organic compound (BVOC) emissions are important in the global atmospheric chemistry and their feedbacks to global warming are uncertain. Global warming is expected to trigger vegetation changes and water table drawdown in boreal peatlands, such changes have only been investigated on isoprene emission but never on other BVOCs. We aimed at distinguishing the BVOCs released from vascular plants, mosses and peat in hummocks (dry microsites) and hollows (wet microsites) of boreal peatland microcosms maintained in growth chambers. We also assessed the effect of water table drawdown (-20 cm) on the BVOC emissions in hollow microcosms. BVOC emissions were measured from peat samples underneath the moss surface after the 7-week-long experiment to investigate whether the potential effects of vegetation and water table drawdown were shown. BVOCs were sampled using a conventional chamber method, collected on adsorbent and analyzed with GC-MS. In hummock microcosms, vascular plants increased the monoterpene emissions compared with the treatment where all above-ground vegetation was removed while no effect was detected on the sesquiterpenes, other reactive VOCs (ORVOCs) and other VOCs. Peat layer from underneath the surface with intact vegetation had the highest sesquiterpene emissions. In hollow microcosms, intact vegetation had the highest sesquiterpene emissions. Water table drawdown decreased monoterpene and other VOC emissions. Specific compounds could be closely associated to the natural/lowered water tables. Peat layer from underneath the surface of hollows with intact vegetation had the highest emissions of monoterpenes, sesquiterpenes and ORVOCs whereas water table drawdown decreased those emissions. The results suggest that global warming would change the BVOC emission mixtures from boreal peatlands following changes in vegetation composition and water table drawdown.
机译:生物挥发性有机化合物(BVOC)的排放在全球大气化学中非常重要,并且它们对全球变暖的反馈尚不确定。预计全球变暖会触发北方泥炭地的植被变化和地下水位下降,此类变化仅在异戊二烯排放方面进行了研究,而从未在其他BVOC上进行过调查。我们的目的是区分从维管植物,苔藓和泥炭释放出来的BVOC,这些植物是在生长室中维持的北方泥炭地小丘的吊床上(干燥的微场所)和空心(湿的微场所)释放的。我们还评估了中空缩影中地下水位下降(-20厘米)对BVOC排放的影响。经过7周的实验后,从苔藓表面下的泥炭样品中测量了BVOC排放量,以调查是否显示了植被和地下水位下降的潜在影响。使用常规腔室方法对BVOC进行采样,在吸附剂上收集并通过GC-MS进行分析。与去除所有地上植被的处理相比,在山岗缩影的维管植物中,维管束植物增加了单萜的排放,而对倍半萜,其他活性VOC(ORVOC)和其他VOC均未发现影响。具有完整植被的地表下的泥炭层的倍半萜排放量最高。在中空的微观世界中,完整的植被具有最高的倍半萜排放。地下水位下降减少了单萜和其他VOC的排放。特定化合物可能与自然/降低水位密切相关。具有完整植被的凹陷表面下的泥炭层排放的单萜,倍半萜和ORVOC最高,而地下水位下降则减少了这些排放。结果表明,随着植被组成和地下水位下降,全球变暖将改变北方泥炭地的BVOC排放混合物。

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  • 来源
    《Atmospheric environment》 |2010年第35期|p.4432-4439|共8页
  • 作者单位

    Department of Environmental Science, University of Eastern Finland, PO Box 1627, F1-702U Kuopio, Finland;

    Department of Environmental Science, University of Eastern Finland, PO Box 1627, F1-702U Kuopio, Finland;

    Quality & Technology, Department of Food Science, Faculty of Life Sciences, University of Copenhagen, Rolighedsvej 30, DK-1958 Frederiksberg C, Denmark;

    Department of Environmental Science, University of Eastern Finland, PO Box 1627, F1-702U Kuopio, Finland;

    Department of Environmental Science, University of Eastern Finland, PO Box 1627, F1-702U Kuopio, Finland;

    Department of Environmental Science, University of Eastern Finland, PO Box 1627, F1-702U Kuopio, Finland;

    Department of Environmental Science, University of Eastern Finland, PO Box 1627, F1-702U Kuopio, Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    monoterpene; sesquiterpene; mire; peat; climate change; sphagnum;

    机译:单萜倍半萜;泥泞泥炭;气候变化;泥炭藓;

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