论文标题

COVID-19锁定对城市光排放的影响:地面和卫星比较

Effects of the COVID-19 lockdown on urban light emissions: ground and satellite comparison

论文作者

Bustamante-Calabria, Máximo, de Miguel, Alejandro Sánchez, Martín-Ruiz, Susana, Ortiz, Jose-Luis, Vílchez, J. M., Pelegrina, Alicia, García, Antonio, Zamorano, Jaime, Bennie, Jonathan, Gaston, Kevin J.

论文摘要

对Covid-19的响应时期的“锁定”期为研究经济活动对环境污染的影响提供了独特的机会(例如,没有$ _2 $,气溶胶,噪声,光)。对NO $ _2 $和气溶胶的影响非常明显,很容易证明,但是在光污染上证明了确定的挑战。造成这种困难的主要原因是地球的夜间卫星图像的主要来源是SNPP-VIIRS/DNB仪器,在大多数人类的夜间活动已经发生后,在深夜获取数据,并且已经关闭了许多相关的照明。在这里,为了分析封锁对城市灯光排放的影响,我们在共同199年3月14日至2020年5月31日在COVID-19期间使用地面和卫星数据诱发了该市人口的限制。我们发现,由于在城市中的光芒和少量竞争中,由于在光线中的光芒下,光污染都显着降低,这两者都在众多势力范围内散发出来。观察到了丰富的PM10颗粒和天空亮度之间的明显相关性,因此,污染的气氛越大,城市夜空的越来越亮。确定了在三个不同的波长带上将PM10颗粒丰度和天空亮度相关联的经验表达。

'Lockdown' periods in response to COVID-19 have provided a unique opportunity to study the impacts of economic activity on environmental pollution (e.g. NO$_2$, aerosols, noise, light). The effects on NO$_2$ and aerosols have been very noticeable and readily demonstrated, but that on light pollution has proven challenging to determine. The main reason for this difficulty is that the primary source of nighttime satellite imagery of the earth is the SNPP-VIIRS/DNB instrument, which acquires data late at night after most human nocturnal activity has already occurred and much associated lighting has been turned off. Here, to analyze the effect of lockdown on urban light emissions, we use ground and satellite data for Granada, Spain, during the COVID-19 induced confinement of the city's population from March 14 until May 31, 2020. We find a clear decrease in light pollution due both to a decrease in light emissions from the city and to a decrease in anthropogenic aerosol content in the atmosphere which resulted in less light being scattered. A clear correlation between the abundance of PM10 particles and sky brightness is observed, such that the more polluted the atmosphere the brighter the urban night sky. An empirical expression is determined that relates PM10 particle abundance and sky brightness at three different wavelength bands.

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