The soaring levels of industrialization and rapid progress towards urbanization across the world have elevated the demand for energy besides generating a massive amount of waste. The latter is responsible for poisoning the ecosystem in an exponential manner, owing to the hazardous and toxic chemicals released by them. In the past few decades, there has been a paradigm shift from “waste to wealth”, keeping the value of high organic content available in the wastes of biological origin. The most practiced processes are that of anaerobic digestion, leading to the production of methane. However; such bioconversion has limited net energy yields. Industrial fermentation targeting value-added bioproducts such as—H2, butanediols; polyhydroxyalkanoat...
Conventional bioprocesses that aim to convert CO2 to fuels and chemicals do so through a supply chai...
Biocatalyzed electrolysis is a microbial fuel cell based technology for the generation of hydrogen g...
Bioelectrochemical systems (BES) can provide an energy efficient way to recover nutrients from waste...
The soaring levels of industrialization and rapid progress towards urbanization across the world hav...
Electro-fermentation (EF) merges traditional industrial fermentation with electrochemistry. An impos...
Electro-fermentation (EF) is an upcoming technology that can control the metabolism of exoelectrogen...
The market of biobased products obtainable via fermentation processes has steadily increased over th...
The conversion of electrical current into valuable compounds by electrotrophic microorganisms repres...
Electra-fermentation (EF) merges traditional industrial fermentation with electro-chemistry. An impo...
Microbial electrosynthesis is the process of supplying electrons to microorganisms to reduce CO2 and...
It has been calculated that annually 1.5 × 108 MWh are wasted as municipal, industrial, and animal w...
In recent years, the optimization of bioprocesses for the removal of pollutants from industrial biog...
Microbial electrosynthesis involves microorganisms that can convert electrical energy to chemical en...
Compared to conventional chemical technologies and other similar industrial processes, bioprocesses ...
In nature as well as in industrial microbiology, all microorganisms need to achieve redox balance. T...
Conventional bioprocesses that aim to convert CO2 to fuels and chemicals do so through a supply chai...
Biocatalyzed electrolysis is a microbial fuel cell based technology for the generation of hydrogen g...
Bioelectrochemical systems (BES) can provide an energy efficient way to recover nutrients from waste...
The soaring levels of industrialization and rapid progress towards urbanization across the world hav...
Electro-fermentation (EF) merges traditional industrial fermentation with electrochemistry. An impos...
Electro-fermentation (EF) is an upcoming technology that can control the metabolism of exoelectrogen...
The market of biobased products obtainable via fermentation processes has steadily increased over th...
The conversion of electrical current into valuable compounds by electrotrophic microorganisms repres...
Electra-fermentation (EF) merges traditional industrial fermentation with electro-chemistry. An impo...
Microbial electrosynthesis is the process of supplying electrons to microorganisms to reduce CO2 and...
It has been calculated that annually 1.5 × 108 MWh are wasted as municipal, industrial, and animal w...
In recent years, the optimization of bioprocesses for the removal of pollutants from industrial biog...
Microbial electrosynthesis involves microorganisms that can convert electrical energy to chemical en...
Compared to conventional chemical technologies and other similar industrial processes, bioprocesses ...
In nature as well as in industrial microbiology, all microorganisms need to achieve redox balance. T...
Conventional bioprocesses that aim to convert CO2 to fuels and chemicals do so through a supply chai...
Biocatalyzed electrolysis is a microbial fuel cell based technology for the generation of hydrogen g...
Bioelectrochemical systems (BES) can provide an energy efficient way to recover nutrients from waste...