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Mapping The Impact Of Climate Change On Surface Recession Of Carbonate Buildings In Europe

机译:绘制气候变化对欧洲碳酸盐建筑表面衰退的影响的地图

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Climate change is currently attracting interest at both research and policy levels. However, it is usually explored in terms of its effect on agriculture, water, industry, energy, transport and health and as yet has been insufficiently addressed as a factor threatening cultural heritage. Among the climate parameters critical to heritage conservation and expected to change in the future, precipitation plays an important role in surface recession of stone. The Lipfert function has been taken under consideration to quantify the annual surface recession of carbonate stone, due to the effects of clean rain, acid rain and dry deposition of pollutants. The present paper provides Europe-wide maps showing quantitative predictions of surface recession on carbonate stones for the 21st century, combining a modified Lipfert function with output from the Hadley global climate model. Chemical dissolution of carbonate stones, via the karst effect, will increase with future CO_2 concentrations, and will come to dominate over sulfur deposition and acid rain effects on monuments and buildings in both urban and rural areas. During the present century the rainfall contribution to surface recession is likely to have a small effect, while the increase in atmospheric CO_2 concentration is shown to be the main factor in increasing weathering via the karst effect.
机译:气候变化目前在研究和政策层面都引起了人们的兴趣。但是,通常从对农业,水,工业,能源,运输和健康的影响方面对其进行探讨,但至今尚未充分解决它是威胁文化遗产的因素。在对遗产保护至关重要且有望在未来发生变化的气候参数中,降水在石材表面退缩中起着重要作用。由于清洁降雨,酸雨和污染物的干沉降的影响,已经考虑使用Lipfert函数来量化碳酸盐石材的年度表面衰退。本文提供了欧洲范围内的地图,这些地图结合了改良的Lipfert函数和Hadley全球气候模型的输出,显示了21世纪碳酸盐岩表面衰退的定量预测。碳酸盐石的化学溶解,通过喀斯特效应,将随着未来CO_2浓度的增加而增加,并将超过硫沉积和酸雨对城市和农村地区古迹和建筑物的影响。在本世纪,降雨对地表衰退的影响可能很小,而大气CO_2浓度的增加是通过喀斯特效应增加风化的主要因素。

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