Publications. All rights reserved.Utilisation of solar ponds in the operation of membrane distillation (MD) could improve the cost-effectiveness of water production from inland brackish water sources. Similarly, capacitive deionisation with renewable energy would also provide cost-effective water production. While, solar ponds could help to run either MD alone or MD coupled with reverse osmosis (RO), capacitive de-ionisation will be cheaper to operate when brackish water to be treated. This study discusses details of (i) Optimal footprint of a solar pond for the operation of MD or RO/MD system, and (ii) Appropriate configuration of capacitive de-ionisation system
The application of membrane distillation (MD) technology is increasing, but is still not adopted com...
This paper presents results from a successful trial of membrane distillation (MD) to recover water f...
[[abstract]]The objective of this research is to combine renewable solar thermal energy and seawater...
Fraunhofer ISE develops solar thermally driven compact desalination systems based on membrane distil...
As the water demand increases continuously, large capacities of desalination plant are added every y...
Being a basic element for the every existence of any form of life on earth, water is one of the most...
Water scarcity is especially impactful in remote and impoverished communities without access to cent...
In this study we provide a comprehensive evaluation of the economic performance and viability of sol...
[[abstract]]Membrane distillation (MD), which can utilize low-grade thermal energy, has been extensi...
Solar-driven membrane distillation (SDMD) for desalination is a feasible method to solve water and e...
With rising human populations, the demand for freshwater is an ever-growing problem. One emerging te...
[[abstract]]Membrane distillation (MD), which can utilize low-grade thermal energy, has been extensi...
A hybrid system of mini solar pond combined with single-slope still was used to increase the product...
Membrane distillation (MD), which can utilize low-grade thermal energy, has been extensively studie...
Terminal lakes are water bodies that are located in closed watersheds with the only output of water...
The application of membrane distillation (MD) technology is increasing, but is still not adopted com...
This paper presents results from a successful trial of membrane distillation (MD) to recover water f...
[[abstract]]The objective of this research is to combine renewable solar thermal energy and seawater...
Fraunhofer ISE develops solar thermally driven compact desalination systems based on membrane distil...
As the water demand increases continuously, large capacities of desalination plant are added every y...
Being a basic element for the every existence of any form of life on earth, water is one of the most...
Water scarcity is especially impactful in remote and impoverished communities without access to cent...
In this study we provide a comprehensive evaluation of the economic performance and viability of sol...
[[abstract]]Membrane distillation (MD), which can utilize low-grade thermal energy, has been extensi...
Solar-driven membrane distillation (SDMD) for desalination is a feasible method to solve water and e...
With rising human populations, the demand for freshwater is an ever-growing problem. One emerging te...
[[abstract]]Membrane distillation (MD), which can utilize low-grade thermal energy, has been extensi...
A hybrid system of mini solar pond combined with single-slope still was used to increase the product...
Membrane distillation (MD), which can utilize low-grade thermal energy, has been extensively studie...
Terminal lakes are water bodies that are located in closed watersheds with the only output of water...
The application of membrane distillation (MD) technology is increasing, but is still not adopted com...
This paper presents results from a successful trial of membrane distillation (MD) to recover water f...
[[abstract]]The objective of this research is to combine renewable solar thermal energy and seawater...