González-Herrero Sergi, Lemus-Canovas Marc, Pereira Paulo
WSL Institute for Snow and Avalanche Research SLF, Switzerland.
Andorra Research + Innovation, Sant Julià De Lòria, Andorra; CRETUS Institute, Nonlinear Physics Group, Faculty of Physics, Universidade de Santiago de Compostela, Galicia, Spain.
Sci Total Environ. 2024 Jul 10;933:173127. doi: 10.1016/j.scitotenv.2024.173127. Epub 2024 May 10.
Cold regions around the world include Arctic, Antarctic and High Mountain regions featuring low temperatures, ice-covered landscapes, permafrost, and unique ecologic interrelations. These environments are among the most sensitive to climate change and are changing rapidly as the global climate gets warmer. This editorial explores the complexity of the impacts of climate change on cold regions, highlighting recent changes across Earth system. The Special Issue here presented compiles studies that explore the climate change in different cold regions from various perspectives, including paleoclimatic reconstructions, isotherm shifts and climate projections. Despite progress, significant questions remain, demanding interdisciplinary approaches to better understand the interconnected factors shaping cold regions.
世界各地的寒冷地区包括北极、南极和高山地区,其特点是气温低、冰雪覆盖的地貌、永久冻土以及独特的生态相互关系。这些环境是对气候变化最为敏感的地区之一,并且随着全球气候变暖正在迅速发生变化。这篇社论探讨了气候变化对寒冷地区影响的复杂性,突出了地球系统近期的变化。此处呈现的特刊汇集了从各种角度探索不同寒冷地区气候变化的研究,包括古气候重建、等温线移动和气候预测。尽管取得了进展,但重大问题依然存在,需要采用跨学科方法来更好地理解塑造寒冷地区的相互关联因素。