首页> 外文期刊>Geomicrobiology journal >Precipitation of Carbonates and Phosphates by Bacteria in Extract Solutions from a Semi-arid Saline Soil.Influence of Ca2+ and Mg2+ Concentrations and Mg2+/Ca2+ Molar Ratio in Biomineralization
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Precipitation of Carbonates and Phosphates by Bacteria in Extract Solutions from a Semi-arid Saline Soil.Influence of Ca2+ and Mg2+ Concentrations and Mg2+/Ca2+ Molar Ratio in Biomineralization

机译:半干旱盐渍土提取溶液中细菌对碳酸盐和磷酸盐的沉淀作用.Ca2 +和Mg2 +浓度以及Mg2 + / Ca2 +摩尔比对生物矿化的影响

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We examine the ability of bacteria from a saline soil (Arenic-Gypsic-Hyposalic Solonchak) from the Santa-Pola marine saltern (Alicante, Spain) to precipitate carbonate and phosphate minerals. Solid culture media were prepared from natural soil extracts, from natural soil extracts amended with organic material in different proportions, and by modifying the Ca2+and Mg2+ concentrations and the Mg2+/Ca2+ molar ratio. A high percentage of moderately halophilic bacteria were able to form biominerals (calcite, magnesian calcite and/or struvite) in natural soil extracts with small amounts of added organic material and in ionically modified natural soil extracts. Light microscopy revealed three different types of bio-mineralization: colonies that precipitate carbonates, colonies that precipitate struvite, and colonies that precipitate both types of minerals. The precipitation of carbonates and struvite is not simultaneous, but successive. The concentration of Ca2+ and the Mg2+/Ca2+ molar ratio were more influential than the absolute amount of Mg2+ on the precipitation of minerals. The higher the calcium concentrations are, the more carbonate-forming colonies there are and the fewer struvite-forming colonies. The bioliths precipitated were analyzed by Powder X-Ray Diffraction (PXRD) and Scanning Electron Microscope (SEM). In the magnesian calcites precipitated (Ca1-nMgnCO3), “n” (amount of magnesium that replaces calcium by formula) varied from 0.058 to 0.342. Struvite crystals are polyhedral and around 500 μm, while carbonate crystals are smaller (< 100 μm), spherical and usually in aggregates. The precipitation of minerals studied shows an active role of the bacteria, but the geochemical conditions are clearly influential. It may therefore be considered “induced biomineralization.” The results point out the possibility that in some soils the C, N, P, Ca and Mg cycles are coupled due to bacterial biomineralization.
机译:我们研究了来自圣波拉海洋盐场(西班牙阿利坎特)的盐渍土(Arenic-Gypsic-Hyposalic Solonchak)中细菌沉淀碳酸盐和磷酸盐矿物质的能力。固体培养基是由天然土壤提取物,天然土壤提取物和有机材料按不同比例修改而成的,并通过改变Ca2 +和Mg2 +的浓度以及Mg2 + / Ca2 +的摩尔比来制备的。在添加少量有机物的天然土壤提取物中和经离子改性的天然土壤提取物中,高比例的中等嗜盐细菌能够形成生物矿物(方解石,镁方解石和/或鸟粪石)。光学显微镜显示出三种不同类型的生物矿化作用:沉淀碳酸盐的菌落,沉淀鸟粪石的菌落和两种矿物质的沉淀菌落。碳酸盐和鸟粪石的沉淀不是同时发生的,而是连续的。 Ca2 +的浓度和Mg2 + / Ca2 +的摩尔比比Mg2 +的绝对含量对矿物质沉淀的影响更大。钙浓度越高,形成碳酸盐的菌落越多,形成鸟粪石的菌落越少。通过粉末X射线衍射(PXRD)和扫描电子显微镜(SEM)分析沉淀的生物块。在沉淀的镁质方解石中(Ca1-nMgnCO3),“ n”(由分子式代替钙的镁含量)在0.058至0.342之间变化。鸟粪石晶体为多面体,约500μm,而碳酸盐晶体较小(<100μm),呈球形,通常为聚集体。研究的矿物质沉淀显示了细菌的活跃作用,但地球化学条件显然具有影响力。因此,可以将其视为“诱导的生物矿化”。结果指出在某些土壤中,C,N,P,Ca和Mg循环由于细菌生物矿化作用而耦合的可能性。

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