Performance polybenzoxazine membrane and mixed matrix membrane for ethanol purification via pervaporation applications
Autor: | Santi Kulprathipanja, Panupong Chuntanalerg, K. Hemra, Thanyalak Chaisuwan, Sujitra Wongkasemjit, Pavadee Aungkavattana |
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Rok vydání: | 2015 |
Předmět: |
General Chemical Engineering
02 engineering and technology Inorganic Chemistry chemistry.chemical_compound 020401 chemical engineering medicine Thermal stability 0204 chemical engineering Zeolite Waste Management and Disposal Chemical resistance Chromatography Ethanol Renewable Energy Sustainability and the Environment Chemistry Organic Chemistry Permeation 021001 nanoscience & nanotechnology Pollution Fuel Technology Membrane Chemical engineering Pervaporation Swelling medicine.symptom 0210 nano-technology Biotechnology |
Zdroj: | Journal of Chemical Technology & Biotechnology. 91:1173-1182 |
ISSN: | 0268-2575 |
DOI: | 10.1002/jctb.4704 |
Popis: | BACKGROUND Polybenzoxazine (PBZ) membranes have received increasing attention for serving as a high performance membrane for pervaporation processes owing to their good mechanical properties, high chemical resistance, high thermal stability, and low synthesis cost. This study aims to develop PBZ membrane and NaA-PBZ mixed matrix membrane (MMM) for purification of ethanol/water mixtures using a pervaporation process and to investigate the effects of preparation parameters on the membrane performance, including precursor concentrations, number of dippings, amount of NaA zeolite loading, temperature, and ethanol concentration. RESULTS It was found that PBZ membrane and NaA-PBZ MMM exhibited excellent stability in all feed ethanol concentrations tested, with a low degree of swelling. The highest separation factor of the pure PBZ membrane was more than 10 000 while the NaA-PBZ MMM was even higher, up to and, in some cases, higher than 100 000 with the highest permeation flux of 1071 g m−2 h−1 when using 25 wt% PBZ precursor with 15 wt% NaA zeolite loading. The permeation flux of MMM increased with increase in temperature or a decrease in the feed ethanol concentration. Swelling increased when the ethanol concentration was increased, revealing the hydrophobic behavior of NaA-PBZ MMM. CONCLUSION The membranes are capable of purifying ethanol over a wide feed ethanol concentration range with excellent performance and properties that promise great potential for use in bioethanol purifying applications. © 2015 Society of Chemical Industry |
Databáze: | OpenAIRE |
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