Predicted Dynamic of Biodeterioration in Cultural Heritage Stones Due to Climate Changes in Humid Tropical Regions—A Case Study on the Rhodotorula sp. Yeast

IF 2 0 HUMANITIES, MULTIDISCIPLINARY Heritage Pub Date : 2023-12-15 DOI:10.3390/heritage6120406
F. Sitzia, C. Lisci, Vera Pires, Luís Dias, José Mirão, Ana Teresa Caldeira
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Abstract

The recent global warming started at the end of the 19th century, causing an increase in the average temperature of Earth and posing environmental, social, economic, and cultural repercussions. Much tangible cultural heritage is composed of natural stones, which decay due to the combination of chemical, physical, and biological factors. Biodeterioration leads to a loss of the performance requirements and socio-economic value of stone building materials. In the future, the dynamics of biodeterioration will hypothetically vary. This study aims to shed light on this variation by comparing biodeterioration under historical climatic conditions (1995–2014) with a future scenario defined by the IPCC SSP5-8.5 for the reference period 2080–2099. The material tested is Pedra de Ançã (PA), a candidate for World Heritage Stone. Climatic chambers were used to simulate the historical and predicted environmental conditions. The scope of this investigation is to understand the growth dynamic of the biodeteriogen Rhodotorula sp. and to study the morphological and aesthetic variations of stone surfaces. Biochemical and micro-topographic analyses highlighted the metabolic activity of the population proliferating under distinct environmental conditions, revealing better adaptability of Rhodotorula sp. and higher biocorrosion in the historical climate status with respect to the future.
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潮湿热带地区气候变化导致文化遗产石材生物退化的动态预测--以Rhodotorula sp.酵母为例
最近的全球变暖始于 19 世纪末,导致地球平均气温上升,并对环境、社会、经济和 文化产生了影响。许多物质文化遗产都是由天然石材构成的,这些石材在化学、物理和生物因素的共同作用下会发生衰变。生物劣化导致石材建筑材料的性能要求和社会经济价值丧失。未来,生物劣化的动态可能会有所不同。本研究旨在通过比较历史气候条件下(1995-2014 年)的生物劣化与 IPCC SSP5-8.5 为 2080-2099 年设定的未来情景,来揭示这种变化。所测试的材料是世界遗产候选石材 Pedra de Ançã (PA)。气候室用于模拟历史和预测的环境条件。这项调查的目的是了解生物食腐菌 Rhodotorula sp.的生长动态,并研究石材表面的形态和美学变化。生化和微地形分析突出了在不同环境条件下增殖的种群的新陈代谢活动,揭示了 Rhodotorula sp.在历史气候条件下与未来相比更好的适应性和更高的生物腐蚀性。
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来源期刊
Heritage
Heritage Multiple-
CiteScore
2.90
自引率
17.60%
发文量
165
审稿时长
10 weeks
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