PROFILE:
Norine Chang
Norine Chang applies expertise in surface engineering and analytical chemistry to a variety of cleantech areas -- including water purification applications.
Norine began her career at PARC working on a biodefense-related government contract before branching into industrial printing and other areas. She has presented her work at American Vacuum Society and Materials Research Society conferences, and has co-authored over 20 publications.
Norine earned her M.S. and B.S. degrees in Materials Science and Engineering from Stanford University.
PARC publications
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2012
A novel hydrodynamic separation technology for algae dewatering
The 2nd International Conference on Algal Biomass, Biofuels and Bioproducts
13 June 2012
CO2 extraction from seawater using bipolar membrane electrodialysis
Energy & Environmental Science
February 2012
2011
Developments in MEMS scale printable alkaline and Li-ion technology
SPIE DSS - Micro- and Nanotechnology Sensors, Systems, and Applications III Conference
25 April 2011
2009
Accelerated aggregation kinetics and hydrodynamic floc separation for municipal water treatment
AWWA Annual Conference and Exposition 2009
14 June 2009
Innovative hydrodynamic clarification as pre-treatment for RO
13th Annual Water Reuse & Desalination Research Conference
18 May 2009
2008
High throughput membrane-less water purification
Singapore International Water Week Conference
23 June 2008
Curved fluidic structures to improve aggregation kinetics in municipal water treatment
AWWA Water Quality Technology Conference 2008
1 January 2008
2006
Materials Research Society Fall 2006 Meeting
29 November 2006
Antifouling surface treatments for microfluidic applications
American Vacuum Society 53rd International Symposium and Exhibition
14 November 2006
contact
related focus areas
related competencies
- fluid dynamics
news releases
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PARC Awarded California Energy Commission Grant to Treat Wastewater in California
17 October 2012
events
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WEFTEC 2013 -- visit PARC's booth
5 October 2013 - 9 October 2013 | Chicago, IL
Experimental Study of Rock–Fluid Interactions using Automated Multi-Channel System Operated under Conditions of CO2-Based Geothermal Systems
11 February 2013 | Palo Alto, CA
Experimental Study of Rock–Fluid Interactions using Automated Multi-Channel System Operated under Conditions of CO2-Based Geothermal Systems
11 February 2013 | Palo Alto, CA
