A probabilistic modelling approach was developed and applied to investigate the energy and environmental performance of an innovative sanitation system, the “Nano-membrane Toilet” (NMT). The system treats human excreta via an advanced energy and water recovery island with the aim of addressing current and future sanitation demands. Due to the complex design and inherent characteristics of the system’s input material, there are a number of stochastic variables which may significantly affect the system’s performance. The non-intrusive probabilistic approach adopted in this study combines a finite number of deterministic thermodynamic process simulations with an artificial neural network (ANN) approximation model and Monte Carlo simulations (M...
© 2020 The Authors Microbial fuel cell (MFC) power performance strongly depends on the biofilm growt...
This paper proposes a bottom-up method to estimate the technical capacity of solid oxide fuel cells ...
To prioritise sustainable sanitation systems in strategic sanitation planning, indicators such as lo...
A probabilistic modelling approach was developed and applied to investigate the energy and environme...
Developing countries are nowadays confronted with great challenges related to domestic sanitation se...
The demand for better hygiene has increased the need for developing more effective sanitation system...
With about 2.4 billion people worldwide without access to improved sanitation facilities, there is a...
In many developing countries, including South Africa, water scarcity has resulted in poor sanitation...
AbstractWith about 2.4 billion people worldwide without access to improved sanitation facilities, th...
In many developing countries, including South Africa, water scarcity has resulted in poor sanitation...
Non-sewered sanitary systems (NSS) are emerging as one of the solutions to poor sanitation because o...
This article describes the design and commissioning of a micro-combustor for energy recovery from hu...
Estimating wastewater treatment plants’ (WWTPs) influent parameters such as 5-day biological oxygen ...
Non-sewered sanitary systems (NSS) are emerging as one of the solutions to poor sanitation because o...
© 2020 The Authors Microbial fuel cell (MFC) power performance strongly depends on the biofilm growt...
This paper proposes a bottom-up method to estimate the technical capacity of solid oxide fuel cells ...
To prioritise sustainable sanitation systems in strategic sanitation planning, indicators such as lo...
A probabilistic modelling approach was developed and applied to investigate the energy and environme...
Developing countries are nowadays confronted with great challenges related to domestic sanitation se...
The demand for better hygiene has increased the need for developing more effective sanitation system...
With about 2.4 billion people worldwide without access to improved sanitation facilities, there is a...
In many developing countries, including South Africa, water scarcity has resulted in poor sanitation...
AbstractWith about 2.4 billion people worldwide without access to improved sanitation facilities, th...
In many developing countries, including South Africa, water scarcity has resulted in poor sanitation...
Non-sewered sanitary systems (NSS) are emerging as one of the solutions to poor sanitation because o...
This article describes the design and commissioning of a micro-combustor for energy recovery from hu...
Estimating wastewater treatment plants’ (WWTPs) influent parameters such as 5-day biological oxygen ...
Non-sewered sanitary systems (NSS) are emerging as one of the solutions to poor sanitation because o...
© 2020 The Authors Microbial fuel cell (MFC) power performance strongly depends on the biofilm growt...
This paper proposes a bottom-up method to estimate the technical capacity of solid oxide fuel cells ...
To prioritise sustainable sanitation systems in strategic sanitation planning, indicators such as lo...