Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitrant compounds including endocrine disrupting chemicals (EDCs). Efficient EDC removal on an industrial scale requires robust, stable, easy to handle and cost-effective immobilized biocatalysts. In this direction, magnetic biocatalysts are attractive due to their easy separation through an external magnetic field. Recently, a bioinspired immobilization technique that mimics the natural biomineralization reactions in diatoms has emerged as a fast and versatile tool for generating robust, cheap, and highly stable (nano) biocatalysts. In this work, bioinspired formation of a biotitania matrix is triggered on the surface of magnetic particles in the presence of...
BACKGROUND: Immobilized enzymes provide many advantages over free enzymes including repeated or cont...
Enzymatic treatment can effectively degrade recalcitrant micro-pollutants in wastewater. However, it...
In this work, the design, manufacture, and testing of three different magnetic microreactors based o...
Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitrant compounds...
Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitrant compounds...
<p>The main objective of this study is the evaluation of the capability of laccase from <i>Mycelioph...
- Background Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitr...
Over the past decades, water pollution by trace organic compounds (ng L-1) has become a major societ...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
The removal of micropollutants from wastewater, especially endocrine disrupting chemicals (EDCs), is...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
Enzymatic treatment can effectively degrade recalcitrant micro-pollutants in wastewater. However, it...
Enzymatic treatment can effectively degrade recalcitrant micro-pollutants in wastewater. However, it...
Laccase from the white rot fungus strain Coriolopsis polyzona was immobilized covalently on the diat...
Over the past decades, water pollution by trace organic compounds (ng L−1) has become one of the key...
BACKGROUND: Immobilized enzymes provide many advantages over free enzymes including repeated or cont...
Enzymatic treatment can effectively degrade recalcitrant micro-pollutants in wastewater. However, it...
In this work, the design, manufacture, and testing of three different magnetic microreactors based o...
Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitrant compounds...
Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitrant compounds...
<p>The main objective of this study is the evaluation of the capability of laccase from <i>Mycelioph...
- Background Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitr...
Over the past decades, water pollution by trace organic compounds (ng L-1) has become a major societ...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
The removal of micropollutants from wastewater, especially endocrine disrupting chemicals (EDCs), is...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
Enzymatic treatment can effectively degrade recalcitrant micro-pollutants in wastewater. However, it...
Enzymatic treatment can effectively degrade recalcitrant micro-pollutants in wastewater. However, it...
Laccase from the white rot fungus strain Coriolopsis polyzona was immobilized covalently on the diat...
Over the past decades, water pollution by trace organic compounds (ng L−1) has become one of the key...
BACKGROUND: Immobilized enzymes provide many advantages over free enzymes including repeated or cont...
Enzymatic treatment can effectively degrade recalcitrant micro-pollutants in wastewater. However, it...
In this work, the design, manufacture, and testing of three different magnetic microreactors based o...