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风化建筑石材表面的生物修复

Bioremediation of weathered-building stone surfaces.

作者信息

Webster Alison, May Eric

机构信息

School of Biological Sciences, University of Portsmouth, Portsmouth PO1 2DY, Hampshire, UK.

出版信息

Trends Biotechnol. 2006 Jun;24(6):255-60. doi: 10.1016/j.tibtech.2006.04.005. Epub 2006 May 2.

Abstract

Atmospheric pollution and weathering of stone surfaces in urban historic buildings frequently results in disfigurement or damage by salt crust formation (often gypsum), presenting opportunities for bioremediation using microorganisms. Conventional techniques for the removal of these salt crusts from stone have several disadvantages: they can cause colour changes; adversely affect the movement of salts within the stone structure; or remove excessive amounts of the original surface. Although microorganisms are commonly associated with detrimental effects to the integrity of stone structures, there is growing evidence that they can be used to treat this type of stone deterioration in objects of historical and cultural significance. In particular, the ability and potential of different microorganisms to either remove sulfate crusts or form sacrificial layers of calcite that consolidate mineral surfaces have been demonstrated. Current research suggests that bioremediation has the potential to offer an additional technology to conservators working to restore stone surfaces in heritage buildings.

摘要

城市历史建筑中的大气污染和石材表面风化常常导致因盐壳形成(通常为石膏)而出现外观受损或破坏,这为利用微生物进行生物修复提供了契机。从石材上去除这些盐壳的传统技术存在若干缺点:它们会导致颜色变化;对盐分在石材结构内的移动产生不利影响;或去除过多的原始表面。尽管微生物通常与对石材结构完整性的有害影响相关联,但越来越多的证据表明,它们可用于处理具有历史和文化意义的物品中此类石材的劣化问题。特别是,不同微生物去除硫酸盐壳或形成方解石牺牲层以加固矿物表面的能力和潜力已得到证实。当前研究表明,生物修复有可能为致力于修复 heritage 建筑石材表面的保护人员提供一种额外的技术。

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