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Bacillus cereus KLUVAA Mediated Biocement Production Using Hard Water and Urea

机译:芽孢杆菌康沃瓦州使用硬水和尿素介导的生物派生物生产

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In the present study, a potential bacterial strain with maximum urease activity was isolated from urea-rich paddy field soil for biocement production. The bacterial isolate was screened using Christensen selective agar media and named as KLUVAA. This isolate was found to be tolerant up to 10 % urea. 16S rRNA sequencing analysis identified the isolate KLUVAA as Bacillus cereus. Biocement production was carried out using tap water with 431.7 mg L-1 of hardness as a natural source of calcium. Functional groups present in biocement were analysed using FT-IR spectrum. The morphology and elemental composition of the biocement was studied using SEM with EDS mapping and XRD analyses. Thermogravimetric analysis was used to study the thermal stability of the microbial biocement. Further, process parameters were optimized for enhancing the yield of biocement.
机译:在本研究中,从富含尿素的稻田土壤土壤中分离出具有最大脲酶活性的潜在细菌菌株以进行生物源产生。 使用基督徒选择性琼脂介质筛选细菌分离物并命名为kluvaa。 发现这种分离物可耐受高达10%的尿素。 16S rRNA测序分析确定了孤立的Kluvaa作为芽孢杆菌。 使用自来水进行生物沉积产量,其中431.7mg L-1作为天然钙的天然来源。 使用FT-IR光谱分析生物密级中存在的官能团。 使用SEM使用EDS测绘和XRD分析研究了生物派的形态和元素组成。 热重分析用于研究微生物生物源的热稳定性。 此外,优化工艺参数以提高生物派的产量。

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