Adsorption of copper ions on Magnolia officinalis residues after solid-phase fermentation with Phanerochaete chrysosporium

Author:

Tao Fengyun12,Liu Yangping1,Chen Junliang1,Wang Peng1,Huo Qing12

Affiliation:

1. Biochemical Engineering College of Beijing Union University, 100023, Beijing, China

2. Beijing Key Laboratory of Biomass Waste Resource Utilization, 100023, Beijing, China

Abstract

AbstractThe disposal of residues while manufacturing Chinese medicine has always been an issue that concerns pharmaceutical factories. Phanerochaete chrysosporium was inoculated into the residues of Magnolia officinalis for solid-phase fermentation to enzymatically hydrolyze the lignin in the residues and thus to improve the efficiency of removal of the copper ions from residues for the utilization of residues from Chinese medicine. With the increase in activities of lignin-degrading enzymes, especially during the fermentation days 6 to 9, the removal rate of copper ions using M. officinalis residues increased dramatically. The rate of removal reached the maximum on the 14th day and was 3.15 times higher than the initial value. The rate of adsorption of copper ions on the fermentation-modified M. officinalis residues followed the pseudo-second-order kinetics. The adsorption isotherms were consistent with the Freundlich models. The adsorption enthalpy was positive, indicating that it was endothermic and elevation in temperature was favorable to this adsorption process. The adsorption free energy was negative, implying the spontaneity of the process. The copper ions adsorbed could be effectively recovered using 0.2 M hydrochloric acid solution. After five successive cycles of adsorption-regeneration, the fermentation-modified M. officinalis residues exhibited a stable adsorption capacity and greater reusability. The M. officinalis residues fermented with P. chrysosporium are low-cost and environmentally friendly copper ions adsorbent, and this preparation technique realizes the optimum utilization of Chinese medicine residues.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

Reference42 articles.

1. Research progress in removal of heavy metal ions by biosorption;Journal of Environmental Science,2010

2. Evaluation of Screened Lignin-degrading Fungi for the Biological Pretreatment of Corn Stover;Sci. Rep,2018

3. Research progress on comprehensive utilization of traditional Chinese medicine slag;Journal of Chengdu University (Natural Science Edition),2015

4. Immobilizing Arsenic and Copper Ions in Manure Using a Nanocomposite;J. Agric. Food. Chem,2017

5. Poly(dopamine) grafted bio-silica composite with tetraethylenepentamine ligands for enhanced adsorption of pollutants;Chem. Eng. Res. Des.: Trans. Inst. Chem. Eng,2019

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