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基于航空摄影的阿德利企鹅普查及其在南极维多利亚地 CH 和 NO 预算估计中的应用。

Aerial photography based census of Adélie Penguin and its application in CH and NO budget estimation in Victoria Land, Antarctic.

机构信息

State Key Laboratory of Remote Sensing Science, and College of Global Change and Earth System Science, Beijing Normal University, Beijing, 100875, P. R. China.

Joint Center for Global Change and China Green Development, Beijing Normal University, Beijing, 100875, P. R. China.

出版信息

Sci Rep. 2017 Oct 11;7(1):12942. doi: 10.1038/s41598-017-13380-6.

Abstract

Penguin guano provides favorable conditions for production and emission of greenhouse gases (GHGs). Many studies have been conducted to determine the GHG fluxes from penguin colonies, however, at regional scale, there is still no accurate estimation of total GHG emissions. We used object-based image analysis (OBIA) method to estimate the Adélie penguin (Pygoscelis adeliae) population based on aerial photography data. A model was developed to estimate total GHG emission potential from Adélie penguin colonies during breeding seasons in 1983 and 2012, respectively. Results indicated that OBIA method was effective for extracting penguin information from aerial photographs. There were 17,120 and 21,183 Adélie penguin breeding pairs on Inexpressible Island in 1983 and 2012, respectively, with overall accuracy of the estimation of 76.8%. The main reasons for the increase in Adélie penguin populations were attributed to increase in temperature, sea ice and phytoplankton. The average estimated CH and NO emissions tended to be increasing during the period from 1983 to 2012 and CH was the main GHG emitted from penguin colonies. Total global warming potential (GWP) of CH and NO emissions was 5303 kg CO-eq in 1983 and 6561 kg CO-eq in 2012, respectively.

摘要

企鹅粪便为温室气体(GHGs)的产生和排放提供了有利条件。许多研究已经确定了企鹅栖息地的温室气体通量,但在区域尺度上,仍没有对温室气体总排放量的准确估计。我们使用基于对象的图像分析(OBIA)方法,根据航空摄影数据估算阿德利企鹅(Pygoscelis adeliae)的种群数量。分别建立了模型,以估算 1983 年和 2012 年繁殖季节阿德利企鹅栖息地的总温室气体排放潜力。结果表明,OBIA 方法可有效从航空照片中提取企鹅信息。1983 年和 2012 年,因克斯比岛的阿德利企鹅繁殖对分别为 17120 对和 21183 对,估计的总体精度为 76.8%。阿德利企鹅数量增加的主要原因是温度、海冰和浮游植物的增加。1983 年至 2012 年期间,CH 和 NO 排放的平均估算值呈上升趋势,CH 是企鹅栖息地排放的主要温室气体。CH 和 NO 排放的总全球变暖潜势(GWP)分别为 1983 年的 5303 千克 CO-eq 和 2012 年的 6561 千克 CO-eq。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24fb/5636812/c8209c4f2de1/41598_2017_13380_Fig1_HTML.jpg

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