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Global environmental change and the biology of heritage structures.

机译:全球环境变化与遗产结构的生物学。

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Whilst global environmental change in the 21st century will undoubtedly have direct impacts on built heritage, it will also have important indirect effects through its influence on microbial, plant and animal life on heritage sites. Environmental change will affect both the structure of biotic communities and the function of such communities. Both impacts will, in turn, influence the deterioration and conservation of heritage sites. Changes in precipitation will exert a major, but as yet poorly understood, control on heritage biotas, whilst changes in atmospheric composition may also be important. Climatic changes will cause range shifts for some taxa, further influencing community composition. Whilst there are many unknowns, making prediction difficult, some scenarios can be proposed based on ecological response to stress and disturbance. This approach indicates some 'hotspots' at risk of experiencing dramatic shifts in biotic communities and their impacts, which may switch from biodeteriogenic to bioprotective or vice versa. Such hotspots include vulnerable sandstone and limestone heritage structures in areas of the Mediterranean, Middle East, Caribbean and Southern Africa.
机译:虽然21世纪的全球环境变化无疑将对已建成的遗产产生直接影响,但也会通过其对遗产地的微生物,动植物生命的影响而产生重要的间接影响。环境变化将影响生物群落的结构和生物群落的功能。反过来,这两种影响都将影响遗产遗址的恶化和保护。降水变化将对遗留生物区系产生主要但尚不为人所知的控制,而大气成分的变化也可能很重要。气候变化将导致某些类群的范围变化,从而进一步影响社区组成。尽管存在许多未知数,但难以预测,但可以根据对压力和干扰的生态响应提出一些方案。这种方法表明某些“热点”处于生物群落及其影响发生急剧变化的风险中,这些变化可能会从生物确定性转变为生物保护性,反之亦然。这些热点包括地中海,中东,加勒比和南部非洲地区的脆弱的砂岩和石灰石遗产结构。

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