International Scientific Publications
© 2007-2026 Science Events Ltd
Warunki użytkowania  ·  Polityka prywatności
Language English French Polish Romanian Bulgarian
Conference room
Materials, Methods & Technologies 2026, 28th International Conference
13-16 August, Burgas, Bulgaria
Call for Papers

Materials, Methods & Technologies, Volume 13, 2019

EXTRACELLULAR BIOSYNTHESIS OF SILVER NANOPARTICLES BY TRICHODERMA REESEI AND THEIR APPLICATION TO REMOVE XANTHOGENATE FROM WASTEWATER
O. Ts. Gemishev, M. I. Panayotova, V. T. Panayotov, E. S. Zaharieva
Strony: 230-240
Opublikowano: 18 Sep 2019
Wyświetlenia: 1,796
Pobrania: 202
Citations: 1 (Google Scholar)
Streszczenie: Application of fungi in the biosynthesis of silver nanoparticles is a green and feasible alternative to chemical and physical methods used for AgNPs synthesis. The fungus Trichoderma reesei is a non-pathogenic and environmentally friendly microorganism capable to produce extracellular enzymes and metabolites in high scale. An extracellular biosynthesis of silver nanoparticles (AgNPs) from AgNO3 solution by using the cell-free extract of Trichoderma reesei biomass is presented in this study. Kinetics of the biotransformation is described by a second order reaction equation. Spherical or approximately spherical AgNPs that are well-dispersed and with a size between 3-4 and 15-17 nm have been produced at transformation degree of 30 % with respect to the initial silver ions concentration. The biosynthesized AgNPs show high stability against agglomeration even after storage for 60 days. Soluble xanthates, used in some industrial applications, are found toxic to aquatic biota even at low concentrations. The synthesized AgNPs are capable to immobilize potassium amyl xanthate from model wastewater. The pollutant adsorption is described by the Langmuir adsorption isotherm and the calculated maximum adsorption capacity is 4.67 mg/mg. The pollutant immobilization by AgNPs is much faster process and requires much less adsorbent (50 fold) in comparison with the activated carbon (chemical grade of purity).
Słowa kluczowe: silver nanoparticles, biosynthesis, trichoderma reesei, potassium amyl xanthate removal
Cytowanie artykułu: O. Ts. Gemishev, M. I. Panayotova, V. T. Panayotov, E. S. Zaharieva. EXTRACELLULAR BIOSYNTHESIS OF SILVER NANOPARTICLES BY TRICHODERMA REESEI AND THEIR APPLICATION TO REMOVE XANTHOGENATE FROM WASTEWATER. Journal of International Scientific Publications: Materials, Methods & Technologies 13, 230-240 (2019). https://www.scientific-publications.net/en/article/1001897/
Powrót do spisu treści tomu

Submit Feedback

We value your input! Use this form to report any concerns or provide feedback on our published articles. All submissions will be kept confidential.