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ČTVRTNÍČKOVÁ, A. DRASTÍK, M. DAVID, J. KUČERÍK, J.
Original Title
Surface and solution behavior of surfactants produced from humic acids
Type
conference paper
Language
English
Original Abstract
Several methods, such as elemental analysis (EA), FTIR, surface tension (ST) measurement, high performance size exclusion chromatography (HPSEC) and high resolution ultrasonic spectroscopy (HRUS) were combined in order to assess the surface activity of sodium humic acids salts (humates). Humates were extracted from parental and modified South Moravian lignite which were pretreated either by oxidation or by small organic acids. It was shown that unlike common surfactants, humates dissolved in water do not exhibit the critical micelle concentration and form micelle-like aggregates also in diluted solutions. As revealed by HRUS, the aggregation and/or reconformation of humic aggregates in solution takes up to ten minutes; in contrast, the ST measurements showed long-term stabilization associated with a slow decrease in ST of the solution. Correlation with results of HPSEC indicated that the surface activity of lignite humates is caused predominantly by aggregates with apparent molecular weight between 50 and75 kDa.
Keywords
humic acids, natural surfactants, ultrasonic resonator, size exclusion chromatography, surface tension
Authors
ČTVRTNÍČKOVÁ, A.; DRASTÍK, M.; DAVID, J.; KUČERÍK, J.
RIV year
2010
Released
26. 10. 2010
Publisher
USAYS
Location
Konya
ISBN
978-605-389-037-9
Book
Water and Wastewater Management
Edition
International Sustainable Water and Wastewater Management
Edition number
1
Pages from
290
Pages to
300
Pages count
11
BibTex
@inproceedings{BUT72495, author="Anna {Uhrová} and Martin {Drastík} and Jan {David} and Jiří {Kučerík}", title="Surface and solution behavior of surfactants produced from humic acids", booktitle="Water and Wastewater Management", year="2010", series="International Sustainable Water and Wastewater Management", number="1", pages="290--300", publisher="USAYS", address="Konya", isbn="978-605-389-037-9" }