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The Biogeophysical Effects of Revegetation around Mining Areas: A Case Study of Dongsheng Mining Areas in Inner Mongolia

机译:矿区周围植被的生物地球物理效应-以内蒙古东升矿区为例

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The biogeophysical effects of land cover change (LCC) on land surface temperature are largely understood, especially in tropical and boreal zones, but fewer studies have reported the biogeophysical consequences of ecological restoration of mining areas located in arid and semi-arid temperate zones. In this study, we employed 2000–2015 satellite-based net radiation (Rn) and latent heat flux (LE) data from mining areas (taking Dongsheng in Inner Mongolia as an example) and adjacent ecological restoration areas to understand the biogeophysical effect of revegetation around mining areas. The results showed that revegetation increased Rn (0.25 ± 0.17 W/m 2 ) and LE (0.43 ± 0.26 W/m 2 ). The warming effect of increased Rn (?Rn), however, was completely offset by the cooling effect of increased LE (?LE), thus revegetation caused an overall cooling effect of ?0.18 ± 0.17 W/m 2 . Land surface temperature (LST) from mining areas and adjacent ecological restoration areas also showed that revegetation decreased LST (?LST being ?0.2 ± 0.1 K). The difference of ?Rn and ?LE explained 27% of the ?LST variations. These findings reinforce our understanding for the potential climatic benefits of the ecological restoration around mining areas in arid and semi-arid temperate zones.
机译:人们普遍了解土地覆被变化(LCC)对地表温度的生物地球物理效应,特别是在热带和北方地区,但是很少有研究报道干旱和半干旱温带地区矿区生态恢复的生物地球物理后果。在这项研究中,我们采用了来自采矿区(以内蒙古东胜为例)和邻近生态恢复区的2000-2015年基于卫星的净辐射(Rn)和潜热通量(LE)数据来了解植被的生物地球物理效应。矿区附近。结果表明,植被恢复增加了Rn(0.25±0.17 W / m 2)和LE(0.43±0.26 W / m 2)。但是,增加的Rn(ΔRn)的加温效果完全被增加的LE(ΔLE)的冷却效果所抵消,因此,重新植被造成的整体冷却效果为0.18±0.17 W / m 2。采矿区和邻近的生态恢复区的地表温度(LST)也表明,植被减少了LST(ΔLST为±0.2±0.1 K)。 ΔRn和ΔLE的差异解释了ΔLST变化的27%。这些发现加强了我们对干旱和半干旱温带矿区周围生态恢复的潜在气候效益的理解。

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