MIME-Version: 1.0 Content-Type: multipart/related; boundary="----=_NextPart_01C616A5.2DF28040" 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_01C616A5.2DF28040 Content-Location: file:///C:/09099145/DianPage.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" Student Name

Dian Tanu= widjaja

 

Hometown: Los Angeles, CA

B.S. Ci= vil & Environ. Eng., <= st1:placetype w:st=3D"on">University of California, Los Angeles (2001)=

M.S. Ci= vil & Environ. Eng., <= st1:placetype w:st=3D"on">University of California, Los Angeles (2002)=

&= nbsp;

E-mail: dian@seas.ucla.edu

 

Advisor: Prof. Eric M.V. Hoek

Department of Civil & Environmental Engineering, UCLA



=


Research Overview

 

My research interest is in the areas of membrane technology for desalination and water reuse.  As I have just begun my Ph.D. studi= es my research is just beginning, but I plan to work with the Long Beach Water Department (LBWD) on = their Two Pass Nanofiltration Process Prototype.  They have developed a two-pass nanofiltration process called NF/NF, to desalt seawater to drinking water quality.  Over the last several years, the LBWD has been testing the hybrid desalination process in the 9,0= 00 GPD bench scale unit at its Groundwater Treatment Plant.  A standard seawater membrane desali= nation process consists of a single pass or two pass, but without a recycle 2= nd pass concentrate recycle loop.  The hybrid desalination process consists of a two-pass multistage nanofiltration system that can achieve treated water quality better than or at least as go= od as a conventional reverse osmosis seawater desalination process utilizing cellulose acetate or thin-film composite membranes, at lower operation pres= sure and energy cost.  My research = contributions to this project include characterizing and modeling the performance of the = two-pass NF and a standard single-pass RO pilot system to develop information about scaling up this novel NF/NF process to a full scale design.  The research will involve a combin= ation of bench scale studies, theoretical model development, and analysis of oper= ating data from the Long Beach pilot.

 


 

Other Information

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