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1.
Data Brief ; 33: 106403, 2020 Dec.
Article in English | MEDLINE | ID: mdl-33117864

ABSTRACT

Hyperthermophile bacteria were seldom investigated in bioelectrochemical systems although they allow more effective control of the inoculum in comparison with mesophilic bacteria. Biofilm formed in hyperthermophilic conditions (>60 °C) also rarely was documented (d'Ippolito et al., 2020; Belkin et al., 1986, Pysz et al., 2004). Scanning Electron Microscopy (SEM) micrographs documenting biofilms formed by the Hyperthermophile bacterium Thermotoga neapolitana on different solid materials (ceramic carrier, stainless steel mesh, carbon felt, carbon paper, expanse graphite, and carbon cloth) are shown in this report. Also, micrographs of the biofilm formed on electrodes of carbon cloth under a dynamic polarization oscillating around ±1 V (±0.8 V and ±1.2 V) are reported. Two procedures of sample preparation for SEM analyses are described and used: 1) a fast drying of samples, which is enough to underline the biofilm shape that covers solids, and 2) a chemical treating of the samples with glutaraldehyde, which better preserves the shape of bacterial cell components in the biofilm, although this treatment might cause the detachment of pieces of the biofilm. The different effect of potentiostatic and potentiodynamic polarizations on the glucose metabolism of T. neapolitana has been screened and discussed in the associated article [1]. Here, data of Optical Densities (O.D.) of culture media are provided, indicating the presence or absence of bacteria growth in the bulk of the media. Data have been collected every 24 h from the differently polarized bioreactors. The electrodes set-up of small bioreactors is also illustrated. Chemical data, optical data and SEM images, accordingly, document a retard in the glucose fermentation process due to a settlement of T. Neapolitana in a stationary phase. The polarization of electrodes can modify the stationary condition, inducing a possible change of the bacteria metabolism.

2.
Appl Opt ; 55(25): 7142-8, 2016 Sep 01.
Article in English | MEDLINE | ID: mdl-27607294

ABSTRACT

Electrochemical methods such as voltammetry and electrochemical impedance spectroscopy are effective for quantifying solid oxide fuel cell (SOFC) operational performance, but not for identifying and monitoring the chemical processes that occur on the electrodes' surface, which are thought to be strictly related to the SOFCs' efficiency. Because of their high operating temperature, mechanical failure or cathode delamination is a common shortcoming of SOFCs that severely affects their reliability. Infrared thermography may provide a powerful tool for probing in situ SOFC electrode processes and the materials' structural integrity, but, due to the typical design of pellet-type cells, a complete optical access to the electrode surface is usually prevented. In this paper, a specially designed SOFC is introduced, which allows temperature distribution to be measured over all the cathode area while still preserving the electrochemical performance of the device. Infrared images recorded under different working conditions are then processed by means of a dedicated image processing algorithm for quantitative data analysis. Results reported in the paper highlight the effectiveness of infrared thermal imaging in detecting the onset of cell failure during normal operation and in monitoring cathode activity when the cell is fed with different types of fuels.

4.
Rays ; 30(3): 251-5, 2005.
Article in English | MEDLINE | ID: mdl-16512072

ABSTRACT

The case of a patient with dysphonia and ingravescent dysphagia, associated with crises of lipothymia "ab ingestis" is discussed. ENT examination with videolaryngoscopy evidenced a swelling of the posterior hypopharyngeal wall. X-ray study of the upper digestive tract was discontinued for inhalation. The scintigraphic study of swalling documented marked alteration of the oropharyngeal phase with phenomena of post-deglutitory aspiration. CT of the cervical vertebral column documented anterior diffuse vertebral hyperostosis of C3-C6: this finding was suggestive of Forestier disease.


Subject(s)
Cervical Vertebrae/diagnostic imaging , Deglutition Disorders/etiology , Hyperostosis, Diffuse Idiopathic Skeletal/diagnostic imaging , Aged , Deglutition , Deglutition Disorders/diagnostic imaging , Esophagus/diagnostic imaging , Humans , Hyperostosis, Diffuse Idiopathic Skeletal/complications , Laryngoscopy , Male , Pharynx/diagnostic imaging , Radionuclide Imaging , Tomography, X-Ray Computed , Video Recording , Voice Disorders/etiology
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