首页> 外文期刊>Minerals >Formation of Carbonate Nanoglobules by a Mixed Natural Culture under Hypersaline Conditions
【24h】

Formation of Carbonate Nanoglobules by a Mixed Natural Culture under Hypersaline Conditions

机译:高盐条件下混合自然培养物形成碳酸盐纳米球

获取原文
           

摘要

The present study demonstrated formation of Ca and P rich nanoglobules by a mixed natural halophilic population enriched from hypersaline lake sediments in laboratory culture experiments. Nanoglobules consisting of complex mixture of Ca, P, O, and C with minor amount of Mg occurred in the external envelop of bacterial cell in the first week of incubation at various Mg +2 /Ca +2 ratios and salinity at 30 ???°C. Unlike the control experiments (e.g., non-viable cells and without cells), later aggregation and transformation of nanoglobules caused the precipitation of calcium and/or magnesium carbonates in variable amount depending on the Mg +2 /Ca +2 ratios of the medium after 37 days of incubation. By showing the nucleation of carbonates on bacterial nanoglobules closely associated with the cell surfaces of mixed natural population this study emphasis that formation of nanoglobules may not be specific to a microbial strain or to activity of a particular microbial group. Formation of carbonate nanoglobules under various conditions (e.g., Mg +2 /Ca +2 ratios, salinity) with the same halophilic culture suggest that the although metabolic activity of bacteria have an influence on formation of nanoglobules the mineralogy of nanoglobules may be controlled by the physicochemical conditions of the precipitation solution and the rate of mineral precipitation.
机译:本研究表明,在实验室培养实验中,由高盐湖沉积物中富集的混合天然嗜盐菌种群形成了富含Ca和P的纳米球。在培养的第一周,以各种Mg + 2 / Ca + 2的比例和30的盐度,在细菌细胞的外部包膜中出现了由Ca,P,O和C与少量Mg的复杂混合物组成的纳米球。 ℃。与对照实验(例如,无活力的细胞和无细胞的实验)不同,纳米球的后来聚集和转化导致碳酸钙和/或碳酸镁的沉淀量有所变化,具体取决于培养基中Mg + 2 / Ca + 2的比例。孵育37天。通过显示碳酸盐在与混合自然种群细胞表面紧密相关的细菌纳米球上的成核作用,这项研究强调纳米球的形成可能并非特定于微生物菌株或特定微生物群的活性。相同嗜盐性培养在各种条件下(例如,Mg +2 / Ca +2比,盐度)形成碳酸盐纳米球表明,尽管细菌的代谢活性会影响纳米球的形成,但纳米球的矿物学可能受其控制。沉淀溶液的理化条件和矿物沉淀的速率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号