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Optimization of a Binary Concrete Crack Self-Healing System Containing Bacteria and Oxygen

机译:含细菌和氧气的二元混凝土裂缝自愈系统的优化

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摘要

An optimized strategy for the enhancement of microbially induced calcium precipitation including spore viability ensurance, nutrient selection and O2 supply was developed. Firstly, an optimal yeast extract concentration of 5 g/L in sporulation medium was determined based on viable spore yield and spore viability. Furthermore, the effects of certain influential factors on microbial calcium precipitation process of H4 in the presence of oxygen releasing tablet (ORT) were evaluated. The results showed that CaO2 is preferable to other peroxides in improving the calcium precipitation by H4. H4 strain is able to precipitate a highly insoluble calcium at the CaO2 dosage range of 7.5–12.5 g/L, and the most suitable spore concentration is 6 × 108 spores/ml when the spore viability (viable spore ratio) is approximately 50%. Lactate is the best carbon source and nitrate is the best nitrogen source for aerobic incubation. This work has laid a foundation of ternary self-healing system containing bacteria, ORT, and nutrients, which will be promising for the self-healing of cracks deep inside the concrete structure.
机译:提出了一种增强微生物诱导的钙沉淀的优化策略,包括确保孢子生存力,营养选择和氧气供应。首先,基于活孢子产量和孢子生存力,确定了孢子培养基中酵母提取物的最佳浓度为5 g / L。此外,评估了在氧气释放片(ORT)存在下某些影响因素对H4微生物钙沉淀过程的影响。结果表明,CaO2在改善H4引起的钙沉淀方面优于其他过氧化物。 H4菌株能够在7.5–12.5 g / L的CaO2剂量范围内沉淀出高度不溶的钙,并且当孢子存活率可行时,最合适的孢子浓度为6×10 8 孢子/ ml。孢子比率)约为50%。乳酸是有氧培养的最佳碳源,硝酸盐是最好的氮源。这项工作为包含细菌,ORT和养分的三元自我修复系统奠定了基础,这对于混凝土结构内部深处的裂缝的自我修复将很有希望。

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