Optimization of Adsorption of Tea Polyphenols into Oat β-Glucan Using Response Surface Methodology
Citations Over TimeTop 18% of 2010 papers
Abstract
Information on interactions between oat β-glucan and tea polyphenols (TP) is not available in the published literatures. Equilibrium dialysis was applied to determine the adsorption of TP into β-glucan, and response surface methodology (RSM) was employed to optimize the absorbing variables (pH, temperature, and phosphate buffered saline (PBS) buffer concentration). The equilibrium data at constant temperature were fitted with the Langmuir, Freundlich, and Redlich-Peterson models. The results showed that the Freundlich model was the best method to describe the experimental data. Parabolic curves were obtained for pH and temperature. In terms of adsorption capacity, factors including temperature, pH/temperature, and buffer concentration/temperature had the greatest influence on the response. The highest adsorption capacity of TP into β-glucan was 134.55 μg mg(-1) at the following optimized conditions: pH 5.56, PBS buffer concentration 0.13 M, and temperature 40 °C. No significant differences (p > 0.05) between the experimental and predicted values confirmed the adequacy of the response surface equations.
Related Papers
- → Adsorption and reaction behavior for the simultaneous adsorption of NO–NO2 and SO2 on activated carbon impregnated with KOH(2003)80 cited
- → Adsorption of methylene blue and bright blue dyes on bayleaf capertree pods powder: Understanding the adsorption mechanism by a theoretical study(2021)43 cited
- The study of Zn~(2+) and Cd~(2+) adsorption on activated carbon modified with KMnO_4(2010)
- [Adsorption properties of dye compounds on the sediments in Qinghe].(2002)
- → Preparation of corn stalk adsorbent and its adsorption performance for Pb2+ in aqueous solution(2022)