Journal of Biomaterials and Nanobiotechnology

Journal of Biomaterials and Nanobiotechnology

ISSN Print: 2158-7027
ISSN Online: 2158-7043
www.scirp.org/journal/jbnb
E-mail: jbnb@scirp.org
"Enzymatic Removal of Phenol from Industrial Wastewaters"
written by Artun Sukan, Sayit Sargin,
published by Journal of Biomaterials and Nanobiotechnology, Vol.4 No.3, 2013
has been cited by the following article(s):
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[1] Free and immobilized biocatalysts for removing micropollutants from water and wastewater: Recent progress and challenges
Bioresource …, 2022
[2] Recent advances in the utilization of immobilized laccase for the degradation of phenolic compounds in aqueous solutions: A review
Chemosphere, 2022
[3] Lipaz ve peroksidaz enzimlerinin ko-immobilizasyonu ve endüstriyel atıkların arıtılmasında kullanılmasının araştırılması
2021
[4] Enzymatic Remediation of Bisphenol A from Wastewaters: Effects of Biosurfactant, Anionic, Cationic, Nonionic, and Polymeric Additives
2020
[5] Determination of the activity and kinetic parameters of polyphenol oxidase enzyme in crude extracts of some Jordanian plants
2020
[6] A review on phenolic wastewater remediation using homogeneous and heterogeneous enzymatic processes: current status and potential challenges
2019
[7] Removal of phenol and Bisphenol A by immobilized Laccase on poly (Acrylonitrile-co-Styrene/Pyrrole) nanofibers
2019
[8] Multi-way Degradation and Process Optimization of Phenol from Simulated Wastewater System
Journal of Geography, Environment and Earth Science International, 2019
[9] A combined experimental and theoretical investigation of the adsorption of 4-Nitrophenol on activated biocarbon using DFT method
2019
[10] Development of an ISFET-based enzyme assay for p-diphenol oxidase from locally isolated fungus Schizophyllum commune MF-O5
2019
[11] Emergent contaminants: Endocrine disruptors and their laccase-assisted degradation–A review
Science of The Total Environment, 2018
[12] Polymer-Assisted Biocatalysis: Effects of Macromolecular Architectures on the Stability and Catalytic Activity of Immobilized Enzymes toward Water-Soluble and Water …
ACS Omega, 2018
[13] Diseño de nanopartículas de quitosano con actividad peroxidasa para la degradación de contaminantes
2017
[14] Synthesis and catalytic evaluation of Fe3O4/MWCNTs nanozyme as recyclable peroxidase mimetics: Biochemical and physicochemical characterization
Applied Organometallic Chemistry, 2017
[15] Preparation and physico-biochemical characterization of (Fe ‚Co ‚Ni) oxide nanoparticles-decorated PANI–MWCNTs as peroxidase mimetics
New Journal of Chemistry, 2017
[16] A combination of absorption and enzymatic biodegradation: phenol elimination from aqueous and organic phase
Soil Science & Plant Nutrition, 2017
[17] Structure-activity investigation on laccases by computational and site directed mutagenesis studies
2016
[18] Trametes versicolor laccase immobilized poly (glycidyl methacrylate) based cryogels for phenol degradation from aqueous media
Journal of Applied Polymer Science, 2015
[19] PHENOL DEGRADATION BY CROSSLINKED ENZYMES AGGREGATES (CLEAS) FROM BRASSICA RAPA PEROXIDASE.
2015
[20] Trametes versicolor laccase immobilized poly(glycidyl methacrylate) based cryogels for phenol degradation from aqueous media
Journal of applied polymer science, 2015
[21] Bazı endüstriyel enzimlerin immobilizasyonu için aşı kopolimerizasyonla lifsi bir destek maddesinin geliştirilmesi
2015
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