[HTML][HTML] Silver nanoparticles biosynthesis using an airborne fungal isolate, Aspergillus flavus: optimization, characterization and antibacterial activity
A Al-Soub, K Khleifat, A Al-Tarawneh… - Iranian Journal of …, 2022 - ncbi.nlm.nih.gov
Materials and Methods: The confirmation of AgNPs synthesis and the characterization of
their properties were done using UV-Vis spectrophotometer, Zeta potential, Zeta sizer, FT-IR …
their properties were done using UV-Vis spectrophotometer, Zeta potential, Zeta sizer, FT-IR …
Synergistic effects of AgNPs and biochar: a potential combination for combating lung cancer and pathogenic bacteria
The synthesis of reliable biological nanomaterials is a crucial area of study in
nanotechnology. In this study, Emericella dentata was employed for the biosynthesis of …
nanotechnology. In this study, Emericella dentata was employed for the biosynthesis of …
Antibacterial and synergistic effect of biosynthesized silver nanoparticles using the fungi Tritirachium oryzae W5H with essential oil of Centaurea damascena to …
The aims of this study are to synthesis silver nanoparticles (AgNPs) using the culture
supernatant of the fungal strain Tritirachium oryzae W5H and to investigate the antibacterial …
supernatant of the fungal strain Tritirachium oryzae W5H and to investigate the antibacterial …
Biodegradation of bis(2‐hydroxyethyl) terephthalate by a newly isolated Enterobacter sp. HY1 and characterization of its esterase properties
L Qiu, X Yin, T Liu, H Zhang, G Chen… - Journal of basic …, 2020 - Wiley Online Library
Abstract Bis (2‐hydroxyethyl) terephthalate (BHET) is an important compound produced
from poly (ethylene terephthalate)(PET) cleavage. It was selected as the representative …
from poly (ethylene terephthalate)(PET) cleavage. It was selected as the representative …
Degradation of 2, 4-dichlorophenoxyacetic acid (2, 4-D) and 2, 4, 5-trichlorophenoxyacetic acid (2, 4, 5-T) by fungi originating from Vietnam
TLA Nguyen, ATN Dao, HTC Dang, J Koekkoek… - Biodegradation, 2022 - Springer
Three different fungi were tested for their ability to degrade 2, 4-dichlorophenoxyacetic acid
and 2, 4, 5-trichlorophenoxyacetic acid and for the role of laccases and cytochromes P450 …
and 2, 4, 5-trichlorophenoxyacetic acid and for the role of laccases and cytochromes P450 …
Culture media composition and reduction potential optimization of mycelia-free filtrate for the biosynthesis of silver nanoparticles using the fungus Tritirachium oryzae …
Background: A major focus of nanotechnology concerns is the expansion of the optimization
of nanomaterials in purity, size and dispersity. Methods: In the current work, a two-step AgNP …
of nanomaterials in purity, size and dispersity. Methods: In the current work, a two-step AgNP …
Biodegradation modeling of phenol using Curtobacterium flaccumfaciens as plant-growth-promoting bacteria
Phenol is a major worry pollutant resulting from industrialized manufacturing and chemical
reactions. The growth kinetics and biodegradation of phenol were initially investigated using …
reactions. The growth kinetics and biodegradation of phenol were initially investigated using …
Phenol biodegradation by plant growth promoting bacterium, S. odorifera: kinetic modeling and process optimization
One of the main organic pollutants that could result from industrial products and chemical
transformations is phenol. In the current study, the kinetics of Serratia odorifera, which was …
transformations is phenol. In the current study, the kinetics of Serratia odorifera, which was …
Efficient and low-energy degradation of chlorobenzene via catA-mediated cleavage and bedC1 docking in a novel Burkholderia stabilis TF-2
Z Xing, F Gou, X Zhang, Y Gao, X Ke, D Ran, P Wang… - Chemosphere, 2024 - Elsevier
In this study, a novel strain Burkholderia stabilis TF-2 capable of assimilatory and co-
metabolic degradation of chlorobenzenes was obtained. The interaction between …
metabolic degradation of chlorobenzenes was obtained. The interaction between …
Bioengineered Graphene Oxide Microcomposites Containing Metabolically Versatile Paracoccus sp. MKU1 for Enhanced Catechol Degradation
Paracoccus sp. MKU1, a metabolically versatile bacterium that encompasses diverse
metabolic pathways in its genome for the degradation of aromatic compounds, was …
metabolic pathways in its genome for the degradation of aromatic compounds, was …