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An alkaliphilic bacterium BKH4 of Bakreshwar hot spring pertinent to bioconcrete technology

机译:Bakreshwar温泉的碱性细菌BKH4与生物晶体技术有关

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Aims Hot springs have always drawn attention due to their unique chemical richness and the presence of different microbial communities. The use of hot spring bacteria in concrete technology is our primary focus; isolation of an alkaliphilic bacterium from the Bakreshwar hot springs having longer survival and better efficacy towards cementitious environment was the basis of our study's design. Methods and Results A novel facultative anaerobic and highly alkaliphilic bacterial strain (BKH4; GenBank accession no. ) belonging to the family 'Bacillaceae' and homologous (99%) with Lysinibacillus fusiformis was isolated from Bakreshwar hot springs. The isolated coccoid-type Gram-positive bacterium grows well in a defined semi-synthetic medium (pH 12 center dot 0 and 65 degrees C). This bacterium survives for more than a month and shows better efficacy in enhancing compressive strengths (>50%), ultrasonic pulse velocity (>25%) and durability of the cementitious mortar when incorporated at a concentration of 10(4) cells per ml of water used. Conclusion The novel bacterium BKH4 is more effective for the enhancement of the bioconcrete properties. Significance and Impact of the Study BKH4 bacterium will add a new dimension to future concrete technology for its usefulness in strength enhancement and durability due to its alkaliphilic nature and longer survival within a cementitious environment.
机译:由于其独特的化学丰富和不同微生物群落的存在,目的热弹簧始终引起关注。在混凝土技术中使用热弹簧细菌是我们的主要焦点;从Bakreshwar温泉中分离碱性细菌,具有更长的存活率和更好地对水泥环境的疗效是我们研究设计的基础。方法和结果具有新的兼碱性厌氧和高碱性细菌菌株(BKH4; Genbank登录No.)属于家族'杆菌'和同源(99%),与Bakreshwar Hot Springs分离出来。分离的Coccoid型革兰氏阳性细菌在定义的半合成培养基中生长良好(pH12中心点0和65℃)。这种细菌存活超过一个月,并且当掺入每毫升的10(4)个细胞的浓度时,抑制压缩强度(> 50%),超声波脉冲速度(> 25%)和耐久性的效果更好用水。结论新型细菌BKH4对生物晶体性质的增强更有效。研究BKH4细菌的意义和影响将为未来的混凝土技术为未来的混凝土技术增加一个新的尺寸,因为它由于其碱性的性质和浓度在水泥环境中的生存率而耐久性而导致的强度增强和耐久性。

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