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7Experimental study on weathering of seafloor volcanic glass by bacteria (Pseudomonas fluorescens) - Implications for the contribution of bacteria to the water-rock reaction at the Mid-Oceanic Ridge setting

机译:7细菌(荧光假单胞菌)对海底火山玻璃的风化作用的实验研究-细菌对大洋中脊环境中水岩反应的影响

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摘要

The biologically mediated weathering of the ocean crust has received increasing attention in recent decades, but the rates and the possible mechanism of elemental release during microbe-basalt interactions occurring below the seafloor have not been studied in detail. In this study, we established an experimental weathering study of seafloor natural basaltic glass comparing the effect of microbial activity {Pseudomonas fluorescens) in P-rich and P-poor media with parallel controls containing either nonviable cells or organic acid. The changes in the chemical parameters, including pH, bacterial densities, and ion concentrations (Ca, Mg, Si, Mn, Al, Fe, and P) in the solution, were examined during the different batch experiments. The results showed that the pH decreased from 7.0 to 3.5 and the bacterial density increased from 10~5 to 10~8 cells/ml during the first 120 h, and the cell numbers remained constant at 10~8 cells/ml and the pH increased from 3.5 to 6 between 120 h and 864 h in the P-bearing reactors containing bacteria. In contrast, during all the experimental time, the pH remained close to neutral condition in the abiotic control systems and the dissolution rates increased markedly with a decrease in pH and became minimal at near-neutral pH in P-bearing reactors containing bacteria, where Ca, Si, and Mg release rates were 2- to 4-fold higher than those obtained in chemical systems and biotic P-Iimited systems. Furthermore, the surfaces of the natural volcanic glass from the biotic systems were colonized by bacteria. Simultaneously, the etch pits were observed by Scanning Electron Microscope, which further indicate that the bacteria may promote the mineral dissolution for energy gain. Some elements (e.g., Fe, Mn, and Al) releasing from natural volcanic glass are likely an important source of the elemental budget in the ocean, and thus the element release and its possible mechanism conducted in this experimental study have potential implications on the biogeochemical cycling process in the Mid-Oceanic Ridge setting.
机译:近几十年来,生物介导的地壳风化受到越来越多的关注,但是尚未对海底以下发生的微生物-玄武岩相互作用过程中元素释放的速率和可能的机理进行详细研究。在这项研究中,我们建立了一个海底天然玄武玻璃风化实验,比较了富含P和P缺乏培养基中微生物活性(荧光假单胞菌)的影响,并与包含无活细胞或有机酸的平行对照进行了对比。在不同的批次实验中,检查了溶液中化学参数的变化,包括pH,细菌密度和离子浓度(Ca,Mg,Si,Mn,Al,Fe和P)。结果表明,在最初的120h内,pH从7.0降低到3.5,细菌密度从10〜5增加到10〜8个细胞/ ml,细胞数保持在10〜8个细胞/ ml,pH增加。在含细菌的含磷反应器中,从120小时到864小时从3.5到6。相反,在所有实验时间内,在非生物控制系统中,pH值均保持接近中性状态,且溶出速率随pH值的降低而显着增加,而在含细菌的含磷反应器中,在接近中性pH值时,溶出速率变得最小。 ,Si和Mg的释放速率比化学系统和生物P仿制系统中的释放速率高2至4倍。此外,来自生物系统的天然火山玻璃的表面被细菌定殖。同时,通过扫描电子显微镜观察到腐蚀坑,进一步表明细菌可以促进矿物质的溶解以获取能量。从天然火山玻璃中释放出的某些元素(例如,Fe,Mn和Al)可能是海洋中元素预算的重要来源,因此,本实验研究中进行的元素释放及其可能的机理对生物地球化学具有潜在的影响。大洋中脊环境中的循环过程。

著录项

  • 来源
    《Journal of Asian earth sciences》 |2014年第15期|15-25|共11页
  • 作者单位

    Sanya Institute of Deep-sea Science and Engineering, Chinese Academy of Sciences, Sanyo 572000, China,State Key Laboratory of Marine Geology, Tongji University, Shanghai 200092, China;

    State Key Laboratory of Marine Geology, Tongji University, Shanghai 200092, China;

    Sanya Institute of Deep-sea Science and Engineering, Chinese Academy of Sciences, Sanyo 572000, China,State Key Laboratory of Marine Geology, Tongji University, Shanghai 200092, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Volcanic glass; Pseudomonas fluorescens; Batch experiments; Element release; Mid-Oceanic Ridge;

    机译:火山玻璃;荧光假单胞菌;批处理实验;元素释放;中洋脊;

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