This work presents numerical modeling results and flux experiments for a novel membrane distillation configuration called conductive gap membrane distillation (CGMD), as well as permeate gap membrane distillation (PGMD). CGMD has a conductive spacer in the gap between the membrane and condensing surface rather than more commonly used insulating materials. Flux measurements with two experimental systems are used to validate the numerical models for PGMD and CGMD. PGMD has 20% higher GOR (energy efficiency) than an air gap membrane distillation (AGMD) system of the same size, whereas CGMD can have two times higher GOR than even PGMD. Increasing gap effective thermal conductivity in CGMD has negligible benefits beyond View the MathML source un...
Air Gap Membrane distillation (AGMD) is a prominent technology in the field of water treatment and ...
The energy efficiency of membrane distillation (MD) systems is low when compared to other thermal de...
Membrane Distillation (MD) is a membrane-based, temperature-driven water reclamation process. While ...
A novel single-stage membrane distillation (MD) configuration, known as conductive gap membrane dist...
The thermal performance of air gap membrane distillation (AGMD) desalination is dominated by heat an...
The water crisis is increasing with every passing day due to climate change and increase in demand. ...
Improving the energy efficiency of membrane distillation (MD) is essential for its widespread adopti...
A one dimensional (1-D) air gap membrane distillation (AGMD) model for flat sheet type modules has b...
Air-Gap Membrane Distillation (AGMD) promises to reduce heat loss in membrane distillation. Most AGM...
Membrane distillation (MD) as a thermally driven process with moderate operating temperatures is a k...
This work advances the state of the art by presenting a transport analysis of air gap membrane disti...
Membrane distillation (MD) as a novel thermally-driven process with moderate operating temperatures,...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Ca...
Membrane distillation (MD), a thermally driven membrane technology which runs at a relatively low pr...
Low energy consumption processes are of high demand for sustainable fresh water production in our cu...
Air Gap Membrane distillation (AGMD) is a prominent technology in the field of water treatment and ...
The energy efficiency of membrane distillation (MD) systems is low when compared to other thermal de...
Membrane Distillation (MD) is a membrane-based, temperature-driven water reclamation process. While ...
A novel single-stage membrane distillation (MD) configuration, known as conductive gap membrane dist...
The thermal performance of air gap membrane distillation (AGMD) desalination is dominated by heat an...
The water crisis is increasing with every passing day due to climate change and increase in demand. ...
Improving the energy efficiency of membrane distillation (MD) is essential for its widespread adopti...
A one dimensional (1-D) air gap membrane distillation (AGMD) model for flat sheet type modules has b...
Air-Gap Membrane Distillation (AGMD) promises to reduce heat loss in membrane distillation. Most AGM...
Membrane distillation (MD) as a thermally driven process with moderate operating temperatures is a k...
This work advances the state of the art by presenting a transport analysis of air gap membrane disti...
Membrane distillation (MD) as a novel thermally-driven process with moderate operating temperatures,...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Ca...
Membrane distillation (MD), a thermally driven membrane technology which runs at a relatively low pr...
Low energy consumption processes are of high demand for sustainable fresh water production in our cu...
Air Gap Membrane distillation (AGMD) is a prominent technology in the field of water treatment and ...
The energy efficiency of membrane distillation (MD) systems is low when compared to other thermal de...
Membrane Distillation (MD) is a membrane-based, temperature-driven water reclamation process. While ...