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Dive into the research topics where Danny M. T. Nguyen is active.

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Featured researches published by Danny M. T. Nguyen.


Journal of Agricultural and Food Chemistry | 2015

Degradation of Hydroxycinnamic Acid Mixtures in Aqueous Sucrose Solutions by the Fenton Process

Danny M. T. Nguyen; Zhanying Zhang; William O.S. Doherty

The degradation efficiencies and behaviors of caffeic acid (CaA), p-coumaric acid (pCoA), and ferulic acid (FeA) in aqueous sucrose solutions containing the mixture of these hydroxycinnamic acids (HCAs) were studied by the Fenton oxidation process. Central composite design and multiresponse surface methodology were used to evaluate and optimize the interactive effects of process parameters. Four quadratic polynomial models were developed for the degradation of each individual acid in the mixture and the total HCAs degraded. Sucrose was the most influential parameter that significantly affected the total amount of HCA degraded. Under the conditions studied there was a <0.01% loss of sucrose in all reactions. The optimal values of the process parameters for a 200 mg/L HCA mixture in water (pH 4.73, 25.15 °C) and sucrose solution (13 mass %, pH 5.39, 35.98 °C) were 77% and 57%, respectively. Regression analysis showed goodness of fit between the experimental results and the predicted values. The degradation behavior of CaA differed from those of pCoA and FeA, where further CaA degradation is observed at increasing sucrose and decreasing solution pH. The differences (established using UV/vis and ATR-FTIR spectroscopy) were because, unlike the other acids, CaA formed a complex with Fe(III) or with Fe(III) hydrogen-bonded to sucrose and coprecipitated with lepidocrocite, an iron oxyhydroxide.


International Sugar Journal | 2012

Phenolics in sugar cane juice: Potential degradation by hydrogen peroxide and Fenton's reagent

Danny M. T. Nguyen; William O.S. Doherty


Industrial & Engineering Chemistry Research | 2017

Combined Fenton Oxidation and Chemical Coagulation for the Treatment of Melanoidin/Phenolic Acid Mixtures and Sugar Juice

Danny M. T. Nguyen; John P. Bartley; William O.S. Doherty


Centre for Tropical Crops and Biocommodities; Science & Engineering Faculty | 2011

Phenolics in sugar cane juice : potential degradation by hydrogen peroxide and Fenton's reagent

Danny M. T. Nguyen; William O.S. Doherty


Centre for Tropical Crops and Biocommodities | 2013

Optimisation of process parameters for the removal of hydroxycinnamic acids in sugar solutions

Danny M. T. Nguyen; William O.S. Doherty


School of Chemistry, Physics & Mechanical Engineering; Centre for Tropical Crops and Biocommodities; Faculty of Science and Technology; Institute for Future Environments | 2017

Fenton oxidation products derived from hydroxycinnamic acids increases phenolic-based compounds and organic acid formation in sugar processing

Danny M. T. Nguyen; John P. Bartley; Lalehvash Moghaddam; William O.S. Doherty


Centre for Tropical Crops and Biocommodities; Faculty of Science and Technology; Institute for Future Environments; Science & Engineering Faculty | 2017

Combined fenton oxidation and chemical coagulation for the treatment of melanoidin/phenolic acid mixtures and sugar juice

Danny M. T. Nguyen; John P. Bartley; William O.S. Doherty


School of Chemistry, Physics & Mechanical Engineering; Science & Engineering Faculty | 2014

Colour removal from sugar cane juice

Danny M. T. Nguyen


Centre for Tropical Crops and Biocommodities; Science & Engineering Faculty | 2012

Preparation and characterisation of composites from starch and sugar cane fibre

William N. Gilfillan; Danny M. T. Nguyen; P. A. Sopade; William O.S. Doherty


Centre for Tropical Crops and Biocommodities | 2012

Optimisation of process parameters for the degradation of caffeic acid in sugar solutions

Danny M. T. Nguyen; William O.S. Doherty

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William O.S. Doherty

Queensland University of Technology

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John P. Bartley

Queensland University of Technology

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Lalehvash Moghaddam

Queensland University of Technology

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P. A. Sopade

University of Queensland

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William N. Gilfillan

Queensland University of Technology

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Zhanying Zhang

Queensland University of Technology

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