Harnessing the therapeutic myco-potential for concrete-crack healing: Prospects and snags

Rocktotpal Konwarh, S. Palanisamy, Pavan Kumar Jogi
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引用次数: 3

Abstract

There has been a continual upsurge on research pertaining to bio-based/ microbial healing of cracks in concrete (a pre-requisite component when it comes to construction design). Albeit, the application of bacteria in this realm has been documented widely over the years, howbeit, delving into fungus based self-healing under the deleterious ambience of concrete with oxygen and nutrient limitation, moisture deficit and high alkalinity has captured recent research impetus. In this context, we have tried to mine the current contextual information to gauge whether research on fungal-based self-healing concrete could be worthwhile. Recent systematic screening encompassing the application of genetically engineered strains, attests the profound untapped potential of specific fungal species in assisting sustainable self-healing to ensure resilient infrastructure. Known for their adaptability under a plethora of environmental stress-conditions and architecturally endowed with large surface-active biomass, fungi can display both biomineralization and organomineralization, leading to rapid and profuse precipitation of CaCO3 (a befitting concrete-filler) for prospective sealing of cracks, even of large width, plausibly without any negative trade-off with respect to concrete’s strength. This article is thus compiled to mirror the various prospects, practical hitches and future direction of research in using fungi for concrete crack healing.
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利用治疗性菌群潜力进行混凝土裂缝愈合:前景与障碍
关于混凝土裂缝的生物基/微生物愈合的研究一直在不断高涨(这是建筑设计的先决条件)。尽管多年来,细菌在这一领域的应用已被广泛记录,然而,在氧气和营养限制、水分不足和高碱度的混凝土有害环境下,深入研究基于真菌的自愈已经获得了最近的研究动力。在这种情况下,我们试图挖掘当前的背景信息,以衡量基于真菌的自愈混凝土的研究是否值得。最近的系统筛选包括基因工程菌株的应用,证明了特定真菌物种在协助可持续自我修复以确保弹性基础设施方面的巨大未开发潜力。真菌以其在过多的环境应力条件下的适应性而闻名,并且在建筑上具有大量的表面活性生物量,真菌可以显示生物矿化和有机矿化,导致CaCO3(一种合适的混凝土填料)的快速和大量沉淀,用于潜在的裂缝密封,即使是大宽度,似乎对混凝土的强度没有任何负面的权衡。因此,本文的编写反映了利用真菌修复混凝土裂缝的各种前景、实际问题和未来的研究方向。
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