Greener solutions for biodeterioration of organic-media cultural heritage: where are we?

IF 2.6 1区 艺术学 Q2 CHEMISTRY, ANALYTICAL
Benedetta Paolino, Maria Cristina Sorrentino, Severina Pacifico
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引用次数: 0

Abstract

Eco-friendly decontamination treatments on works of art made from organic materials are of growing interest. The high risks to human health and the environment associated with traditional biocides (e.g. ecotoxicity, development of biotic resistance) have made it necessary to search for safer alternatives, also looking at the past but innovating it. The current state of the art is explored here, delving into the literature on the topic from 2000 to today, and outlining trends in terms of the most tested artistic supports and types of published research (in vitro/in vivo). An overview of the characteristics and mechanisms of biodegradation processes on different types of organic products and on the microorganisms mainly involved is thus provided. The main chemical-physical action techniques tested are illustrated and their practical-applicative aspects are discussed on the basis of evidence from case studies. Taking stock of the actual situation, literature consultation highlights that if on the one hand research is advancing rapidly towards the discovery of new ecological and safe solutions, on the other hand these are often biocidal treatments whose protocols have yet to be explored and validated.

Abstract Image

有机媒介文化遗产生物劣化的绿色解决方案:我们在哪里?
对有机材料制成的艺术品进行生态友好型去污处理越来越受到人们的关注。传统杀菌剂对人类健康和环境造成的高风险(如生态毒性、生物抗药性的产生)使得人们有必要寻找更安全的替代品,在回顾过去的同时加以创新。本文探讨了当前的技术发展状况,深入研究了 2000 年至今有关该主题的文献,并概述了经过最严格测试的艺术支持和已发表研究类型(体外/体内)的发展趋势。因此,对不同类型有机产品的生物降解过程的特点和机制以及主要涉及的微生物进行了概述。在案例研究证据的基础上,对测试过的主要化学物理作用技术进行了说明,并讨论了其实际应用方面的问题。在对实际情况进行评估后,文献咨询强调,一方面,研究工作正在快速推进,以发现新的生态和安全解决方案;另一方面,这些解决方案往往是生物杀灭处理方法,其方案尚有待探索和验证。
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来源期刊
Heritage Science
Heritage Science Arts and Humanities-Conservation
CiteScore
4.00
自引率
20.00%
发文量
183
审稿时长
19 weeks
期刊介绍: Heritage Science is an open access journal publishing original peer-reviewed research covering: Understanding of the manufacturing processes, provenances, and environmental contexts of material types, objects, and buildings, of cultural significance including their historical significance. Understanding and prediction of physico-chemical and biological degradation processes of cultural artefacts, including climate change, and predictive heritage studies. Development and application of analytical and imaging methods or equipments for non-invasive, non-destructive or portable analysis of artwork and objects of cultural significance to identify component materials, degradation products and deterioration markers. Development and application of invasive and destructive methods for understanding the provenance of objects of cultural significance. Development and critical assessment of treatment materials and methods for artwork and objects of cultural significance. Development and application of statistical methods and algorithms for data analysis to further understanding of culturally significant objects. Publication of reference and corpus datasets as supplementary information to the statistical and analytical studies above. Description of novel technologies that can assist in the understanding of cultural heritage.
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