In recent years, human urine has been successfully used as an electrolyte and organic substrate in bioelectrochemical systems (BESs) mainly due of its unique properties. Urine contains organic compounds that can be utilised as a fuel for energy recovery in microbial fuel cells (MFCs) and it has high nutrient concentrations including nitrogen and phosphorous that can be concentrated and recovered in microbial electrosynthesis cells and microbial concentration cells. Moreover, human urine has high solution conductivity, which reduces the ohmic losses of these systems, improving BES output. This review describes the most recent advances in BESs utilising urine. Properties of neat human urine used in state‐of‐the‐art MFCs are described from bas...
Microbial fuel cell (MFC) systems have the ability to oxidize organic matter and transfer electrons ...
© 2018 Microbial fuel cell (MFC) systems have the ability to oxidize organic matter and transfer ele...
Nutrients, especially the most widely used macronutrients nitrogen, phosphorus and potassium, are es...
In recent years, human urine has been successfully used as an electrolyte and organic substrate in b...
In recent years, human urine has been successfully used as an electrolyte and organic substrate in b...
In recent years, human urine has been successfully used as an electrolyte and organic substrate in b...
Population growth increases the challenge of meeting basic human needs, such as water, a limited res...
Over the last 15 years, urine treatment technologies have developed from lab studies of a few pionee...
Book of Abstracts of CEB Annual Meeting 2017[Excerpt] Source separated urine is highly concentrated ...
This study builds on the previous work of urine utilisation and uses small-scale microbial fuel cell...
This study builds on the previous work of urine utilisation and uses small-scale microbial fuel cell...
Microbial fuel cell (MFC) technology is a promising bio-technology that utilizes the microorganism i...
Keywords: urine, urine treatment, nutrient recovery, microbial fuel cells, energy production from ur...
Nutrient recovery from source-separated human urine has been identified by many as a viable avenue t...
Microbial fuel cell (MFC) systems have the ability to oxidize organic matter and transfer electrons ...
Microbial fuel cell (MFC) systems have the ability to oxidize organic matter and transfer electrons ...
© 2018 Microbial fuel cell (MFC) systems have the ability to oxidize organic matter and transfer ele...
Nutrients, especially the most widely used macronutrients nitrogen, phosphorus and potassium, are es...
In recent years, human urine has been successfully used as an electrolyte and organic substrate in b...
In recent years, human urine has been successfully used as an electrolyte and organic substrate in b...
In recent years, human urine has been successfully used as an electrolyte and organic substrate in b...
Population growth increases the challenge of meeting basic human needs, such as water, a limited res...
Over the last 15 years, urine treatment technologies have developed from lab studies of a few pionee...
Book of Abstracts of CEB Annual Meeting 2017[Excerpt] Source separated urine is highly concentrated ...
This study builds on the previous work of urine utilisation and uses small-scale microbial fuel cell...
This study builds on the previous work of urine utilisation and uses small-scale microbial fuel cell...
Microbial fuel cell (MFC) technology is a promising bio-technology that utilizes the microorganism i...
Keywords: urine, urine treatment, nutrient recovery, microbial fuel cells, energy production from ur...
Nutrient recovery from source-separated human urine has been identified by many as a viable avenue t...
Microbial fuel cell (MFC) systems have the ability to oxidize organic matter and transfer electrons ...
Microbial fuel cell (MFC) systems have the ability to oxidize organic matter and transfer electrons ...
© 2018 Microbial fuel cell (MFC) systems have the ability to oxidize organic matter and transfer ele...
Nutrients, especially the most widely used macronutrients nitrogen, phosphorus and potassium, are es...