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Dive into the research topics where Xiaofei Huang is active.

Publication


Featured researches published by Xiaofei Huang.


Journal of Colloid and Interface Science | 2009

Direct observation of bacterial deposition onto clean and organic-fouled polyamide membranes.

Arun Subramani; Xiaofei Huang; Eric M.V. Hoek

Nanofiltration (NF) and reverse osmosis (RO) membranes are commonly applied to produce highly purified water from municipal wastewater effluents. In these applications, biofouling limits overall process performance and increases the cost of operation. Initial bacteria adhesion onto a membrane surface is a critical early step in the overall process of membrane biofouling. However, adsorption of effluent organic matter onto the membrane may precede bacterial deposition and change membrane surface properties. Herein we employed direct microscopic observation to elucidate mechanisms governing bacterial cell deposition onto clean and organic-fouled NF and RO membranes. Bovine serum albumin (BSA) and alginic acid (AA) were used as models for protein and polysaccharide rich organic matter in secondary wastewater effluents. In all experiments, organic fouling increased membrane hydraulic resistance and salt rejection, in addition to interfacial hydrophilicity and roughness. Even though surface hydrophilicity increased, the rougher surfaces presented by organic-fouled membranes produced nano-scale features that promoted localized bacterial deposition. An extended DLVO analysis of bacterial cells and membrane surface properties suggested that bacterial deposition correlated most strongly with the Lewis acid-base free energy of adhesion and root mean square (RMS) roughness, whereas van der Waals and electrostatic free energies were weakly correlated. This was true for both clean and organic-fouled membranes. Bacterial deposition rates were clearly influenced by an antagonistic interplay between macroscopic surface hydrophilicity and nano-scale surface roughness.


Journal of Membrane Science | 2007

Interfacial polymerization of thin film nanocomposites: A new concept for reverse osmosis membranes

Byeong-Heon Jeong; Eric M.V. Hoek; Yushan Yan; Arun Subramani; Xiaofei Huang; Gil Hurwitz; Anna Jawor


Journal of Membrane Science | 2008

Impacts of reaction and curing conditions on polyamide composite reverse osmosis membrane properties

Byeong-Heon Jeong; Xiaofei Huang; Eric M.V. Hoek


Langmuir | 2009

Influence of Zeolite Crystal Size on Zeolite-Polyamide Thin Film Nanocomposite Membranes

Mary Laura Lind; Anna Jawor; Xiaofei Huang; William W. Hou; Yang Yang; Eric M.V. Hoek


Environmental Science & Technology | 2010

High-throughput screening of silver nanoparticle stability and bacterial inactivation in aquatic media: influence of specific ions.

Xue Jin; Minghua Li; Jinwen Wang; Catalina Marambio-Jones; Fubing Peng; Xiaofei Huang; Robert Damoiseaux; Eric M.V. Hoek


Environmental Science & Technology | 2009

Role of specific ion interactions in seawater RO membrane fouling by alginic acid.

Xue Jin; Xiaofei Huang; Eric M.V. Hoek


Desalination | 2011

Physical–chemical properties, separation performance, and fouling resistance of mixed-matrix ultrafiltration membranes

Eric M.V. Hoek; Xiaofei Huang; Monty Liong; Jeffrey I. Zink


Journal of Materials Research | 2009

Effect of mobile cation on zeolite-polyamide thin film nanocomposite membranes

Mary Laura Lind; Byeong Heon Jeong; Arun Subramani; Xiaofei Huang; Eric M.V. Hoek


Langmuir | 2010

Is surface roughness a "scapegoat" or a primary factor when defining particle-substrate interactions?

Xiaofei Huang; Subir Bhattacharjee; Eric M.V. Hoek


Journal of Membrane Science | 2010

Transport, structural, and interfacial properties of poly(vinyl alcohol)–polysulfone composite nanofiltration membranes

Fubing Peng; Xiaofei Huang; Anna Jawor; Eric M.V. Hoek

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Eric M.V. Hoek

University of California

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Anna Jawor

University of California

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Arun Subramani

University of California

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Fubing Peng

University of California

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Xue Jin

University of Glasgow

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Gil Hurwitz

University of California

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