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首页> 外文期刊>Clays and clay minerals >CHARACTERIZATION OF MICROBIALLY Fe(III)-REDUCED NONTRONITE: ENVIRONMENTAL CELL-TRANSMISSION ELECTRON MICROSCOPY STUDY
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CHARACTERIZATION OF MICROBIALLY Fe(III)-REDUCED NONTRONITE: ENVIRONMENTAL CELL-TRANSMISSION ELECTRON MICROSCOPY STUDY

机译:微生物还原Fe(III)的诺诺石的表征:环境细胞透射电子显微镜研究

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Microstructural changes induced by the microbial reduction of Fe(Ⅲ) in nontronite by Shewanella oneidensis were studied using environmental cell (EC)-transmission electron microscopy (TEM), conventional TEM, and X-ray powder diffraction (XRD). Direct observations of clays by EC-TEM in their hydrated state allowed for the first time an accurate and unambiguous TEM measurement of basal layer spacings and the contraction of layer spacing caused by microbial effects, most likely those of Fe(Ⅲ) reduction. Non-reduced and Fe(Ⅲ)-reduced nontronite, observed by EC-TEM, exhibited fringes with mean d_(001) spacings of 1.50 nm (standard deviation, σ = 0.08 nm) and 1.26 nm (σ = 0.10 nm), respectively. In comparison, the same samples embedded with Nanoplast resin, sectioned by microtome, and observed using conventional TEM, displayed layer spacings of 1.0-1.1 nm (non-reduced) and 1.0 nm (reduced). The results from Nanoplast-embedded samples are typical of conventional TEM studies, which have measured nearly identical layer spacings regardless of Fe oxidation state. Following Fe(Ⅲ) reduction, both EC- and conventional TEM showed an increase in the order of nontronite selected area electron diffraction patterns while the images exhibited fewer wavy fringes and fewer layer terminations. An increase in stacking order in reduced nontronite was also suggested by XRD measurements. In particular, the ratio of the valley to peak intensity (v/p) of the 1.7 nm basal 001 peak of ethylene glycolated nontronite was measured at 0.65 (non-reduced) and 0.85 (microbially reduced).
机译:利用环境细胞(EC)-透射电镜(TEM),常规透射电镜和X射线粉末衍射(XRD)研究了猴头假单胞菌(Shewanella oneidensis)还原绿铁矿中的Fe(Ⅲ)引起的微观结构变化。通过EC-TEM对黏合剂处于水合状态的直接观察,首次首次对由微生物作用(最可能是Fe(Ⅲ)还原)引起的基础层间距和层间距的收缩进行了准确而明确的TEM测量。 EC-TEM观察到未还原和Fe(Ⅲ)还原的绿脱石显示出条纹,其平均d_(001)间距分别为1.50 nm(标准偏差,σ= 0.08 nm)和1.26 nm(σ= 0.10 nm)。 。相比之下,用纳米切片机切片并用常规TEM观察的用Nanoplast树脂包埋的相同样品显示的层间距为1.0-1.1 nm(未还原)和1.0 nm(已还原)。纳米塑料包埋样品的结果是常规TEM研究的典型结果,无论Fe的氧化态如何,其测量的层间距几乎相同。 Fe(Ⅲ)还原后,EC-和常规TEM都显示出绿脱石选择区域电子衍射图的顺序增加,而图像显示出更少的波纹和更少的层终止。 XRD测量还表明,还原性绿脱石中堆积顺序的增加。尤其是,测得的乙二醇化的绿脱石的1.7 nm基础001峰的峰强度与峰强度之比(v / p)为0.65(未还原)和0.85(微生物还原)。

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