利用WorldView-3卫星以非常高的空间分辨率绘制甲烷羽流图

E. Sánchez-García, Javier Gorroño, I. Irakulis-Loitxate, D. Varon, L. Guanter
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引用次数: 27

摘要

摘要检测工业活动的甲烷排放已被确定为一项有效的减缓气候变化战略。这些工业排放,如石油和天然气(O&G)开采和煤炭开采,通常以大量高浓度气体的形式出现。最近,不同的卫星任务显示出从太空绘制甲烷羽流地图的潜力。在这项工作中,我们报告了WorldView-3 (WV-3)卫星任务在甲烷制图方面的巨大潜力。这依赖于其在短波红外部分独特的极高空间分辨率(高达3.7 m)数据,并辅以2300 nm甲烷吸收特征的良好光谱采样和高信噪比。所提出的检索方法基于WV-3 SWIR波段7 (2235-2285 nm)的甲烷透过率逐像素估计计算甲烷浓度增强,该波段位于高度敏感的甲烷吸收区。基于端到端模拟的灵敏度分析有助于理解检索错误和检测限制。结果表明,WV-3在甲烷测图中表现良好,特别是在明亮且均匀的区域。利用实测数据进一步验证了WV-3的甲烷成图潜力,在阿尔及利亚、土库曼斯坦采油区、中国山西采煤区等不同甲烷热点地区检测到26个独立的点排放。特别是,从土库曼斯坦的石油管道中检测到非常小的泄漏(< 100公斤/小时),这表明WV-3在从太空绘制工业甲烷排放地图方面具有改变游戏规则的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mapping methane plumes at very high spatial resolution with the WorldView-3 satellite
Abstract. The detection of methane emissions from industrial activities has been identified as an effective climate change mitigation strategy. These industrial emissions, such as from oil and gas (O&G) extraction and coal mining, typically occur as large plumes of highly concentrated gas. Different satellite missions have recently shown potential to map such methane plumes from space. In this work, we report on the great potential of the WorldView-3 (WV-3) satellite mission for methane mapping. This relies on its unique very high spatial resolution (up to 3.7 m) data in the shortwave infrared part of the spectrum, which is complemented by a good spectral sampling of the methane absorption feature at 2300 nm and a high signal to noise ratio. The proposed retrieval methodology is based on the calculation of methane concentration enhancements from pixel-wise estimates of methane transmittance at WV-3 SWIR band 7 (2235–2285 nm), which is positioned at a highly-sensitive methane absorption region. A sensitivity analysis based on end-to-end simulations has helped to understand retrieval errors and detection limits. The results have shown the good performance of WV-3 for methane mapping, especially over bright and homogeneous areas. The potential of WV-3 for methane mapping has been further tested with real data, which has led to the detection of 26 independent point emissions over different methane hotspot regions such as the O&G extraction fields in Algeria and Turkmenistan, and the Shanxi coal mining region in China. In particular, the detection of very small leaks (< 100 kg/h) from oil pipelines in Turkmenistan shows the game-changing potential of WV-3 to map industrial methane emissions from space.
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