In this study, we explored why urine recycling systems have failed to gain wide-scale expansion despite their high potential for food and fertilizer security. Additionally, we examined the future perception of urine recycling in Sweden and Switzerland, as these two countries are at the forefront of technological advancement. Along with identifying barriers, we also proposed pathways for overcoming those barriers and achieving the upscale. The analysis was conducted using the technological innovation (TIS) approach, which is technology-focused, i.e., revolves around emerging technologies. Additionally, the study provides a methodological contribution to the innovation systems research by employing the Delphi method in conjunction with urine ...
Alkaline dehydration can treat human urine to produce a dry and nutrient-rich fertilizer. To evaluat...
Population growth, climatic changes and over-exploitation of natural resources are at the basis of t...
Diverting urine from faeces or mixed wastewater and reusing it to fertilize crops, is a traditional ...
In this study, we explored why urine recycling systems have failed to gain wide-scale expansion desp...
In this study, we explored why urine recycling systems have failed to gain wide-scale expansion desp...
There is a growing trend for nutrient recovery from wastewater as part of the transition to a circul...
Adopting urine-recycling technologies can support a transition to circular nutrient management syste...
AbstractThe present study argues that the issue of sanitation and the solutions to it extends far be...
Source separation of urine for recycling has been applied in small-scale and decentralized wastewate...
Urine diversion (UD) has great potential to contribute to sustainably managing wastewater by separat...
Abstract The technology of urine separation and the recycling of anthropogenic nutrients as fertiliz...
In recent years, a large number of urine-diverting dehydration toilets (UDDTs) have been installed i...
Alkaline dehydration can treat human urine to produce a dry and nutrient-rich fertilizer. To evaluat...
Population growth, climatic changes and over-exploitation of natural resources are at the basis of t...
Diverting urine from faeces or mixed wastewater and reusing it to fertilize crops, is a traditional ...
In this study, we explored why urine recycling systems have failed to gain wide-scale expansion desp...
In this study, we explored why urine recycling systems have failed to gain wide-scale expansion desp...
There is a growing trend for nutrient recovery from wastewater as part of the transition to a circul...
Adopting urine-recycling technologies can support a transition to circular nutrient management syste...
AbstractThe present study argues that the issue of sanitation and the solutions to it extends far be...
Source separation of urine for recycling has been applied in small-scale and decentralized wastewate...
Urine diversion (UD) has great potential to contribute to sustainably managing wastewater by separat...
Abstract The technology of urine separation and the recycling of anthropogenic nutrients as fertiliz...
In recent years, a large number of urine-diverting dehydration toilets (UDDTs) have been installed i...
Alkaline dehydration can treat human urine to produce a dry and nutrient-rich fertilizer. To evaluat...
Population growth, climatic changes and over-exploitation of natural resources are at the basis of t...
Diverting urine from faeces or mixed wastewater and reusing it to fertilize crops, is a traditional ...