Prof. C. P. Huang
Department of Civil and Environmental Engineering
University of Delaware, USA
Professor
Email: huang@udel.edu
Qualifications
1971 Ph.D., Harvard University, Environmental Engineering and Science
1966 M.S., Harvard University, Environmental Engineering and Science
1964 B.S., National Taiwan University, Civil Engineering
Publications (Selected)
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Lin, H., A.K. Rumaiz, M. Schulz, C. P. Huang, and S. I.Shah (2010). Hydrogen generation under visible light using nitrogen doped titania anodes.J. Applied Physics,107, 124305. (4)
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Weng, Y. H., H. J. Wei, T. Y. Tsai, T. H. Lin, T. Y.Wei, G. L. Guo, and C. P. Huang (2010). Separation of furans and carboxylic acids from sugars in diluted acid rice straw hydrolyzates by nanofiltration.Bioresource Technology, 101(13):4889-4894.(16)
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Chiang, P. C., E.E. Chang, and C.P. Huang(2010). Evaluating and elucidating the formation of nitrogen-contained disinfection by-products during pre-ozonation and chlorination.Chemosphere,80(3):327-333.(5)
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Chang, E. E., H. C. Guo, I. S.,Li, P. C. Chiang, and C. P. Huang (2010). Modeling the formation and assessing the risk of disinfection by-products in water distribution systems.J. Environmental Science and Health, Part A-Toxic/Hazardous Substances & Environmental Engineering,45(10):1185-1194.
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Doong, R. A., T. C. Hsieh, and C. P. Huang (2010). Photoassisted reduction of metal ions and organic dye by titanium dioxide nanoparticles inaqueous solution under anoxic conditions.The Science of the Total Environment, 408: 3334-3341. (7)
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Li, M. H. and C.P. Huang(2010).Stability of oxidized single-walled carbon nanotubes in thepresence of simple electrolytes and humic acid.Carbon, 48: 4527- 4534 (16)
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Zhou, B., X. Zhao, H. J. Liu, J. H. Qu, and C.P. Huang(2010).Visible-light sensitive cobalt-doped BiVO4 (Co-BiVO4) photocatalytic compositesfor the degradation of methylene blue dye in dilute aqueous solutions.Applied Catalysis B: Environmental,99:214–221.(28)
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Mahmudov, R.and C. P. Huang(2010). Perchlorate removal by activated carbon adsorption,Separation and Purification Technology70, 329 - 337.
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Mahmudov, R.and C. P. Huang (2011). Selective adsorption of oxyanions on activated carbon exemplified by Filtrasorb 400 (F400),Separation and Purification Technology77, 294-300.(5)
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Li, M. H.and C.P. Huang (2011). The responses ofCeriodaphnia dubiatoward multi-walled
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carbon nanotubes: Effect of physical–chemical treatment,Carbon49:1672-1679.(2)
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Zhou, B., X. Zhao, H. J.Liu, J. H.Qu, and C. P. Huang(2011).Synthesis ofvisible-lightsensitiveM–BiVO4(M=Ag,Co,andNi)forthe photocatalytic degradationoforganicpollutants,Separation and PurificationTechnology,77: 275–282.(8)
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Li, M. H., K.J. Czymmek, and C.P. Huang(2011).Responses ofCeriodaphnia dubiato TiO2and Al2O3nanoparticles: A dynamicnano-toxicity assessment of energy budget distribution,Journal of Hazardous Materials187: 502–508.(9)
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Metzler, D., M. H.Li, A.Erdem, and C.P. Huang(2011). Responses of algae to photocatalytic nano-TiO2particles with an emphasis on theeffect of particle size.Chemical Engineering Journal,170 (2-3):538-546.(7)
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Li, M. H., R. Mahmudov,and C. P. Huang (2011). Hazardous Waste Treatment Technologies.Water Environment Research,83(10): 1598-1632.
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Chang, E. E., S Y. Yang, C. P. Huang, C. H. Liang, and P.C. Chiang (2011). Assessing the fouling mechanisms of high-pressure nanofiltration membrane using the modified Hermia model and the resistance-in-series model. Separation and purification Technology, 79(3): 329-336.
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Huang, C. P. and C. S.Chu,(2012).Indirect Electrochemical Oxidation of Chlorophenols in Dilute Aqueous Solutions. J. Environmental Engineering-ASCE. 138(3): 375-385.
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Chang E. E.,C. H.Liang,C. P.Huang,andP. C. Chiang (2012).A simplified method for elucidating the effect of size exclusion on nanofiltration.Separation and Purification Technology,85: 1-7.
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Huang C. P. and H.A. Elliott (2012).Technology for sustainable water environment Preface. Separation ad Pufification Technology,84(SI): 1-2.(Preface)
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Peng,Y.P.,Y.Emre, Y. T.Yeh, I.Ruzybayev, S. I.Shah, and C. P. Huang (2012).Photoelectrochemical degradation of azo dye over pulsed laser deposited nitrogen-doped TiO2thin film.Applied Catalysis, B: Environment,125, 465-472.
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Peng,Y.P., Y.T.Yeh, S. I.Shah, and C. P. Huang (2012).Concurrent photoelectrochemical reduction of CO2and oxidation of methyl orange using nitrogen-doped TiO2thin film. Applied Catalysis, B. Environment,123, 414-423.
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Weng Y. H,Y. C.Wang,Y. T.Tsai,C. J.Chuang,C. P.Huang, andK. C.Li(2012).Effect of hydrophobicity of humic substances on electro-ultrafiltration. Desalination 284, 128-134.
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Chang, M. C., C.P.Huang,H. Y.Shu,and Y. C.Chang (2012). A new photocatalytic system using steel mesh and cold cathode fluorescent light (CCFL) for the decolorization of azo dye Orange G.International Journal of Photoenergy, DOI: 10.1155/2012/303961
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Chang, E.E.,T. Y.Liu,C. P.Huang, andP.C.Chiang (2012).Degradation of mefenamic acid from aqueous solutions by the ozonatin and O3-UV process.Separation and Purification Technology, 98, 123-129.
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Chang, E. E.,Y. C.Chang,C. H.Liang,C.P.Huang, andP.C.Chiang(2012) Identifying the rejectin mechanism for nanofitraton membrane fouled by humic acid and calcium ions exemplified by acetaminophen, sulfamethoxazole and triclosan.J. Hazardous Materials, 221, 19-27.
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Li, Yangang, W.P.Hsieh, R.Mahmudov, X.M.Wei, and C.P. Huang (2012). Combined ultrasound and Fenton (US-Fenton) process for the treatment of ammunition wastewater. J. Hazardous Materials,244-245, 403-411.
Profile Details
http://www.ce.udel.edu/directories/profiles.html?huang