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Monitoring biocalcification potential of Lysinibacillus sp isolated from alluvial soils for improved compressive strength of concrete

机译:监测溶酶体SP的生物抗原潜力从挤压土中分离出来的混凝土抗压强度

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摘要

The present study reports the potential of newly isolated calcite precipitating bacteria isolated from alluvial soil to improve the strength and durability of concrete. A total of sixteen samples of alluvial soil and sewage were collected from the different locations of province Solan (India). For isolation, enrichment culture technique was used to enrich calcite precipitating strains in Urea broth. After enrichment, fourteen distinct bacterial strains were obtained on Urea agar. Based on qualitative and quantitative screening for urease activity, five isolates were obtained possessing higher calcite formation and urease activities (38-77 mhos/cm) as compared with standard strain of Bacillus megaterium MTCC 1684 (77 mhos/cm). An isolate 113 identified as LysinibacilIns sp. was selected for self healing property in the concrete mix of M20. An improved compressive strength of 1.5 fold was observed in concrete samples amended with Lysinibacillus sp. over the concrete amended with B. megaterium MTCC 1684 after 28 days of curing. The higher calcite precipitation activity was indicated in Lysinibacillus sp. by FE-SEM micrographs and EDX analysis.
机译:本研究报告了新分离的方解石沉淀细菌的潜力从冲积土中分离,提高了混凝土的强度和耐久性。从省Solan(印度)的不同地点收集了11种全部冲积土壤和污水样本。为了分离,使用富集培养技术在脲肉汤中富含方解石沉淀菌株。在富集后,在尿素琼脂上获得14个不同的细菌菌株。基于对脲酶活性的定性和定量筛选,与标准菌株MTCC 1684(77MHOS / cm)的标准菌株相比,获得具有更高的方解石形成和脲酶活性(38-77MHOS / cm)的五个分离物。将其鉴定为Lysinibacilins SP的分离物113。在M20的混凝土组合中被选择用于自愈性。在用Lysinibacillus SP修正的混凝土样品中观察到改善1.5倍的抗压强度。在固化后28天后用B. MegaTium MTCC 1684进行混凝土。 Lysinibacillus SP中表明了更高的方解石沉淀活性。通过FE-SEM显微照片和EDX分析。

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