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A review of the nature, role and control of lithobionts on stone cultural heritage: weighing-up and managing biodeterioration and bioprotection

机译:浅谈石材文化遗产的岩石的性质,角色和控制:称重和管理生物意象和生物研究生

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Lithobionts (rock-dwelling organisms) have been recognized as agents of aesthetic and physico-chemical deterioration of stonework. In consequence, their removal from cultural heritage stone surfaces (CHSS) is widely considered a necessary step in conservation interventions. On the other hand, lithobiontic communities, including microbial biofilms ('biological patinas'), can help integrate CHSS with their environmental setting and enhance biodiversity. Moreover, in some cases bioprotective effects have been reported and even interpreted as potential biotechnological solutions for conservation. This paper reviews the plethora of traditional and innovative methodologies to characterize lithobionts on CHSS in terms of biodiversity, interaction with the stone substrate and impacts on durability. In order to develop the best management and conservation strategies for CHSS, such diagnosis should be acquired on a case-by-case basis, as generalized approaches are unlikely to be suitable for all lithobionts, lithologies, environmental and cultural contexts or types of stonework. Strategies to control biodeteriogenic lithobionts on CHSS should similarly be based on experimental evaluation of their efficacy, including long-term monitoring of the effects on bioreceptivity, and of their environmental safety. This review examines what is known about the efficacy of control methods based on traditional-commercial biocides, as well as those based on innovative application of substances of plant and microbial origin, and physical techniques. A framework for providing a balanced scientific assessment of the role of lithobionts on CHSS and integrating this knowledge into management and conservation decision-making is presented.
机译:Lithobionts(岩石住宿的生物)被认为是石化的美学和物理化学劣化的药剂。结果,他们从文化遗产石表面(CHSS)的移除被广泛地认为保护干预措施的必要步骤。另一方面,钢管型社区,包括微生物生物膜(“生物patinas”),可以帮助CHSS与其环境环境的整合和增强生物多样性。此外,在某些情况下,已经报告了生物保护作用,甚至被解释为保护的潜在生物技术解决方案。本文评论了在生物多样性方面表征CHSS的岩石,与石材基板的相互作用以及对耐用性的影响。为了开发CHSS的最佳管理和保护策略,应根据案例获得这种诊断,因为广义方法不太可能适用于所有钢管,岩性,环境和文化背景或石材类型。控制CHSS的生物抑制型锂电偶的策略应该类似地基于它们的疗效的实验评估,包括对生物抑制作用的长期监测,以及它们的环境安全。本综述审查了基于传统商业杀菌剂的控制方法的疗效以及基于植物和微生物来源物质的创新应用的效果,以及物理技术的疗效。提出了一种框架,为钢管对CHS的作用提供平衡的科学评估,并展示了将这种知识整合到管理和保护决策中。

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