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首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Investigation on Bio-Mineral Precipitation- Mimicking the Natural Phenomenon
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Investigation on Bio-Mineral Precipitation- Mimicking the Natural Phenomenon

机译:生物矿物质沉淀模拟自然现象的研究

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摘要

Biomineralization is an important and ubiquitous process resulting in biominerals, produced by a range of taxa, from bacteria and to eukarya. Calcium carbonate precipitation was reported in many bacterial species, both in vivo and in vitro conditions which is influenced by various abiotic factors and could transform soluble organic nutrients into insoluble inorganic calcite crystals. Biologically controlled mineralization (BCM) of calcium carbonate involves a remarkable control in size, morphology and phase selection, resulting in complex hierarchical organic- inorganic structures with unusual physicochemical properties. The calcium carbonate thus secreted can be used in various applications and as an additive admixture in building materials. In this study calcareous bacteria were isolated from marine sediments, which were able to produce calcium carbonate crystals by utilizing organic and inorganic nitrogen source indicating the nitrogen and ureolytic cycle as their basic metabolic pathway. Characterisation studies were performed and the most efficient isolate was obtained.
机译:生物矿化是一个重要且普遍存在的过程,导致生物矿物质的产生是由一系列分类单元产生的,从细菌到杜仲。据报道,在许多细菌物种的体内和体外条件下,碳酸钙都会沉淀,受各种非生物因素的影响,碳酸钙可将可溶性有机营养物转化为不溶性无机方解石晶体。碳酸钙的生物控制矿化(BCM)涉及大小,形态和相选择的显着控制,从而导致复杂的有机无机结构分层,具有异常的物理化学性质。如此分泌的碳酸钙可用于各种应用中,并作为建筑材料中的添加剂混合物。在这项研究中,从海洋沉积物中分离出钙质细菌,这些细菌能够利用有机和无机氮源产生碳酸钙晶体,表明氮和尿素分解循环是其基本的代谢途径。进行了表征研究,并获得了最有效的分离物。

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