MIME-Version: 1.0 Content-Type: multipart/related; boundary="----=_NextPart_01C5B0AE.C0944DF0" This document is a Single File Web Page, also known as a Web Archive file. If you are seeing this message, your browser or editor doesn't support Web Archive files. Please download a browser that supports Web Archive, such as Microsoft Internet Explorer. ------=_NextPart_01C5B0AE.C0944DF0 Content-Location: file:///C:/2FC99145/HurwitzPage.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" Student Name

Gil Hurwitz

 

Hometown: Los Angeles, CA<= /st1:place>

B.S. Chemical Engineering, UCLA, 2006

&= nbsp;

E-mail= : ghurwitz@ucla.edu

 

Advisor – Asst. Prof. Eric M.V. Hoek

Department of Civil & Environmental Engineering, UCLA



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Research Overview

  • C= haracterization of polymeric membrane surface properties by contact angle measurements=
    • The contact angle is the tangent angle at the interface between a droplet of liquid and a solid surface and can be = used as a measure of the surface energy.
    • A pure water contact angle of 0o suggests a p= erfectly hydrophilic surface and an angle of 180o suggests a perfec= tly hydrophobic surface.  
    • Most polymeric membranes have contact angles that range between 20o and 80o
  • M= y current research includes performing contact angle titrations to determine pKa<= /i> values and surface charge densities of reverse osmosis and nanofiltrat= ion membranes.
    • C= ontact angle titration involves measuring the contact angles of a membrane o= ver a range of pH values
    • Unbuffered solutions are used to determine concentration of surface ionizable groups by measuring the amount of hyd= roxide ions required for complete ionization, which is represented by a sign= ificant change in measured contact angle.
    • B= uffered solutions are used to determine the pKa of the surface.  The use of spe= cific buffered solutions is intended to inhibit the influence of surface functional groups on the pH of the drop.
    • T= he contact angle titration can be used as a more direct method to determ= ine surface charge density compared to electrokinetic measurement techniq= ues, which give rise to a theoretical zeta potential.

=  

 


 

Person= al Webpage

Download Resume

 


 

Back to Hoek Research webpage

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