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Featured researches published by Dhaval Bhandari.


Archive | 2013

Water-Gas-Shift Membrane Reactor for High-Pressure Hydrogen Production. A comprehensive project report (FY2010 - FY2012)

John R. Klaehn; Eric S. Peterson; Christopher J. Orme; Dhaval Bhandari; Scott Michael Miller; Anthony Yu-Chung Ku; Kimberly Ann Polishchuk; Kristi Jean Narang; Surinder Prabhjot Singh; Wei Wei; Roger Allen Shisler; Paul Brian Wickersham; Kevin Paul Mcevoy; William Alberts; Paul Edward Howson; Thomas Barton; Vijay Sethi

Idaho National Laboratory (INL), GE Global Research (GEGR), and Western Research Institute (WRI) have successfully produced hydrogen-selective membranes for water-gas-shift (WGS) modules that enable high-pressure hydrogen product streams. Several high performance (HP) polymer membranes were investigated for their gas separation performance under simulated (mixed gas) and actual syngas conditions. To enable optimal module performance, membranes with high hydrogen (H2) selectivity, permeance, and stability under WGS conditions are required. The team determined that the VTEC PI 80-051 and VTEC PI 1388 (polyimide from Richard Blaine International, Inc.) are prime candidates for the H2 gas separations at operating temperatures (~200°C). VTEC PI 80-051 was thoroughly analyzed for its H2 separations under syngas processing conditions using more-complex membrane configurations, such as tube modules and hollow fibers. These membrane formats have demonstrated that the selected VTEC membrane is capable of providing highly selective H2/CO2 separation (α = 7-9) and H2/CO separation (α = 40-80) in humidified syngas streams. In addition, the VTEC polymer membranes are resilient within the syngas environment (WRI coal gasification) at 200°C for over 1000 hours. The information within this report conveys current developments of VTEC PI 80-051 as an effective H2 gas separations membrane for high-temperature syngas streams.


Industrial & Engineering Chemistry Research | 2010

Hollow Fiber Sorbents for Desulfurization of Natural Gas

Dhaval Bhandari; Naoki Bessho; William J. Koros


Journal of Membrane Science | 2011

Toluene impurity effects on CO2 separation using a hollow fiber membrane for natural gas

Imona C. Omole; Dhaval Bhandari; Stephen J. Miller; William J. Koros


Separation and Purification Technology | 2013

Dual layer hollow fiber sorbents: Concept, fabrication and characterization

Dhaval Bhandari; Kayode O. Olanrewaju; Naoki Bessho; Victor Breedveld; William J. Koros


International Journal of Hydrogen Energy | 2012

Thermally moderated hollow fiber sorbent modules in rapidly cycled pressure swing adsorption mode for hydrogen purification

Ryan P. Lively; Naoki Bessho; Dhaval Bhandari; Yoshiaki Kawajiri; William J. Koros


Chemical Engineering Science | 2013

Dual layer hollow fiber sorbents for trace H2S removal from gas streams

Dhaval Bhandari; Naoki Bessho; William J. Koros


Journal of Applied Polymer Science | 2017

Effects of coating solvent and thermal treatment on transport and morphological characteristics of PDMS/Torlon composite hollow fiber membrane

Ali A. Rownaghi; Dhaval Bhandari; Steven K. Burgess; Dharmik S. Mikkilineni


Archive | 2012

METHODS AND SYSTEMS FOR AMMONIA PRODUCTION

Surinder Prabhjot Singh; Anthony Yu-Chung Ku; Scott Michael Miller; Roger Allen Shisler; Dhaval Bhandari


Archive | 2012

POLYIMIDE MEMBRANES AND METHOD OF PRODUCTION

Dhaval Bhandari; Kristi Jean Narang; Kimberly Ann Polishchuk


Archive | 2013

Hollow fiber membranes and methods for forming same

Dhaval Bhandari; Patrick Joseph Mccloskey; Paul Edward Howson; Kristi Jean Narang; William J. Koros

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William J. Koros

Georgia Institute of Technology

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Naoki Bessho

Georgia Institute of Technology

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Ali A. Rownaghi

Missouri University of Science and Technology

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Imona C. Omole

Georgia Tech Research Institute

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John R. Klaehn

Texas Christian University

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