M Mitrakas
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    Explore the profile of M Mitrakas including associated specialties, affiliations and a list of published articles.
           
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          Snapshot
              Articles
              14
            
            
              Citations
              60
            
            
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  Recent Articles
          1.
        
    
    Pagona E, Tzamos E, Grieco G, Zouboulis A, Mitrakas M
  
  
    Sci Total Environ
    . 2020 May;
          732:139279.
    
    PMID: 32438189
  
  
          The qualitative and quantitative characterization of several mining by-product samples, were collected from the magnesite mine of "Grecian Magnesite SA" company (Gerakini, Chalkidiki, North Greece), was aiming to evaluate the...
      
2.
        
    
    Kazakis N, Kantiranis N, Kalaitzidou K, Kaprara E, Mitrakas M, Frei R, et al.
  
  
    Sci Total Environ
    . 2017 Apr;
          593-594:552-566.
    
    PMID: 28360005
  
  
          Hexavalent chromium constitutes a serious deterioration factor for the groundwater quality of several regions around the world. High concentrations of this contaminant have been also reported in the groundwater of...
      
3.
        
    
    Pantazopoulou E, Zebiliadou O, Mitrakas M, Zouboulis A
  
  
    Waste Manag
    . 2017 Jan;
          61:327-336.
    
    PMID: 28094157
  
  
          A global demand for efficient re-utilization of produced solid wastes, which is based on the principles of re-use and recycling, results to a circular economy, where one industry's waste becomes...
      
4.
        
    
    Kokkinos E, Simeonidis K, Pinakidou F, Katsikini M, Mitrakas M
  
  
    Sci Total Environ
    . 2016 Sep;
          574:482-489.
    
    PMID: 27644026
  
  
          This study demonstrates an optimization procedure for the development of an Hg-specified adsorbent able to comply with the regulation limit for drinking water of 1μg/L. On this purpose, the synthesis...
      
5.
        
    
    Pinakidou F, Katsikini M, Paloura E, Simeonidis K, Mitraka E, Mitrakas M
  
  
    J Colloid Interface Sci
    . 2016 Jun;
          477:148-55.
    
    PMID: 27254257
  
  
          The implementation of amorphous tetravalent manganese feroxyhyte (TMFx) nanoparticles, prepared via co-precipitation synthesis, as an efficient As(V)-removal material is investigated using X-ray absorption fine structure (XAFS) spectroscopy at the Fe-,...
      
6.
        
    
    Tresintsi S, Mitrakas M, Simeonidis K, Kostoglou M
  
  
    J Colloid Interface Sci
    . 2015 Aug;
          460:1-7.
    
    PMID: 26310951
  
  
          Hypothesis: The purpose of the present work is the development of a kinetic model for the adsorption of As(III) and As(V) onto tetravalent manganese feroxyhyte (δ-Fe0.75Mn0.25OOH), which have been recently...
      
7.
        
    
    Pinakidou F, Katsikini M, Simeonidis K, Paloura E, Mitrakas M
  
  
    J Hazard Mater
    . 2015 Jun;
          298:203-9.
    
    PMID: 26057444
  
  
          Synthetic adsorbents based on Fe oxy-hydroxides (FeOOH) prepared under a wide range of pH-values via intense oxidation conditions of FeSO4 as well as the As(III) and As(V) adsorption mechanism are...
      
8.
        
    
    Simeonidis K, Kaprara E, Samaras T, Angelakeris M, Pliatsikas N, Vourlias G, et al.
  
  
    Sci Total Environ
    . 2015 Apr;
          535:61-8.
    
    PMID: 25891685
  
  
          The potential of magnetite nanoparticles to be applied in drinking water treatment for the removal of hexavalent chromium is discussed. In this study, a method for their preparation which combines...
      
9.
        
    
    Kazakis N, Kantiranis N, Voudouris K, Mitrakas M, Kaprara E, Pavlou A
  
  
    Sci Total Environ
    . 2015 Feb;
          514:224-38.
    
    PMID: 25666283
  
  
          This study aims to specify the source minerals of geogenic chromium in soils and sediments and groundwater and to determine the favorable hydrogeological environment for high concentrations of Cr(VI) in...
      
10.
        
    
    Kavouras P, Pantazopoulou E, Varitis S, Vourlias G, Chrissafis K, Dimitrakopulos G, et al.
  
  
    J Hazard Mater
    . 2014 Dec;
          283:672-9.
    
    PMID: 25464309
  
  
          A tannery sludge, produced from physico-chemical treatment of tannery wastewaters, was incinerated without any pre-treatment process under oxic and anoxic conditions, by controlling the abundance of oxygen. Incineration in oxic...