Biosorption of nonylphenol on dead biomass of Rhizopus arrhizus encapsulated in chitosan beads
スポンサーリンク
概要
- 論文の詳細を見る
The nonylphenol (NP) biosorption and desorption potential for fungal biomass used under batch conditions was investigated using kinetics and isotherm models. Fungal biomass of Rhizopus arrhizus TISTR 3610 exhibited preferential uptake of NP, an endocrine disrupting chemicals. Sporangiospores, asexual spores, were immobilisation in chitosan beads. The biosorption data of NP on the moist heat inactivated R. arrhizus-chitosan beads were analyzed using four popular adsorption isotherms and, by using non-linear least-regression with the solver add-in in Microsoft Excel, correlated in order with the Fritz-Schlüender > Redlich-Peterson > Freundlich > Langmuir isotherms. The pseudo first-order kinetics was found to have the best fit with the experimental data. The diffusivity of NP in the R. arrhizus-chitosan beads was calculated using the shrinking core model, and the diffusivity values were in the ranges of 2.3736 x 10^[-4] to 1.8950 x 10^[-4] cm^[2]s^[-1]. Desorption to recover the adsorbed NP from the beads was performed in methanol and was best described using a pseudo second-order kinetic model.
論文 | ランダム
- 家畜の種および品種資源の評価とその保存-1- (畜産におけるバイオテクノロジ-)
- 21世紀における家畜遺伝資源の開発と利用 (日本畜産21世紀への生存の途) -- (科学と技術)
- インドの畜産事情 (海外の畜産)
- 家畜の生化学-20-
- 家畜の生化学-21-