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            <idno type="halRefHtml">&lt;i&gt;12th World Filtration Congress - WFC 12&lt;/i&gt;, Apr 2016, Taipei, Taiwan</idno>
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                <title xml:lang="en">State of the Art and Advances in Perm-Porometry</title>
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                <term xml:lang="en"> Porometry</term>
                <term xml:lang="en"> Pore Size Distribution</term>
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              <p>Amongst  the  different  techniques  of  characterization,  porometry  is  probably  one  of  the most important as directly related to the sieving effect of a porous media. This is a non-destructivemethod able to be performed on relatively large samples. Microscopic  methods  have  been  used  with  the  disadvantage  of  giving  information  only on the surface observed. This is why several methods have been developed for getting access  to  the  whole  structure  of  the  porous  media.  Capillary  porometry,  thermos-porometry are examples of these methods extensively developed.One  of  the  main  advantages  of  capillary  porometry  method  is  that  the  information obtained is directly related to the permeability of the porous media. Gas liquid porometry is well known but its application is limited by the high pressure needed for pores smaller than  100  nm.  This  is  why,  more  recently,  Liquid/liquid  porometry  has  been  developed based on the use of two immiscible fluids having small surface tension.By this way the measurement can be extended down to smaller pores (down to 2 nm).Capillary  condensation  method  is  an  alternative  way  for  extending  the  range  of porometry to smaller pores.The  advantages  and  disadvantages  of  these  methods  will  be  discussed  and  some typical  results  will  be  presented.  Pore  Size  Distribution  should  become  in  the  future  a standard characteristic of membranes in place of average of nominal pore size.</p>
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