Self-supporting carbon nanotube (CNT) Bucky-Papers have unique structural and surface properties which can be utilised in many applications. In this work we characterised pure self-supporting CNT membranes, where CNTs were held together only by Van der Waals forces, and evaluated their potential and performance in direct contact membrane distillation. The membranes were found to be highly hydrophobic (contact angle of 113°), highly porous (90%), and to exhibit a thermal conductivity of 2.7 kW/m2 h. We demonstrate, as a proof of concept, that self-supporting CNT Bucky-Paper membranes can be used for desalination in a direct contact membrane distillation setup with 99% salt rejection and a flux rate of 12 kg/m2 h at a water vapour partial pre...
In this work, novel polysulphone (PS) porous membranes for water desalination, incorporated with com...
Several different series of novel, self-supporting carbon nanotube (CNT) membranes, known as buckypa...
As water molecules permeate ultrafast through carbon nanotubes (CNTs), many studies have prepared CN...
Self-supporting carbon nanotube (CNT) Bucky-Papers have unique structural and surface properties whi...
New technologies are required to improve desalination efficiency and increase water treatment capaci...
New technologies are required to improve desalination efficiency and increase water treatment capaci...
New technologies are required to improve desalination efficiency and increase water treatment capaci...
Carbon nanotubes (CNTs) are very stable structures. Their chemistry is still little known. For healt...
Self-supporting bucky-papers membranes were processed from chemical vapour deposition grown carbon n...
This work investigates ways to fabricate composite macro-structures\ud made of carbon nanotubes in c...
This work investigates ways to fabricate composite macro-structures made of carbon nanotubes in com...
© 2016 Elsevier B.V. Developing a high flux and selective membrane is required to make membrane dist...
PTFE coated carbon nanotube BPs were processed and tested as potential membranes in DCMD. They exhi...
Membranes based on carbon nanotubes (CNTs) have been highlighted as an emerging technology for water...
Membrane distillation (MD) is a promising process for the treatment of highly saline wastewaters. Th...
In this work, novel polysulphone (PS) porous membranes for water desalination, incorporated with com...
Several different series of novel, self-supporting carbon nanotube (CNT) membranes, known as buckypa...
As water molecules permeate ultrafast through carbon nanotubes (CNTs), many studies have prepared CN...
Self-supporting carbon nanotube (CNT) Bucky-Papers have unique structural and surface properties whi...
New technologies are required to improve desalination efficiency and increase water treatment capaci...
New technologies are required to improve desalination efficiency and increase water treatment capaci...
New technologies are required to improve desalination efficiency and increase water treatment capaci...
Carbon nanotubes (CNTs) are very stable structures. Their chemistry is still little known. For healt...
Self-supporting bucky-papers membranes were processed from chemical vapour deposition grown carbon n...
This work investigates ways to fabricate composite macro-structures\ud made of carbon nanotubes in c...
This work investigates ways to fabricate composite macro-structures made of carbon nanotubes in com...
© 2016 Elsevier B.V. Developing a high flux and selective membrane is required to make membrane dist...
PTFE coated carbon nanotube BPs were processed and tested as potential membranes in DCMD. They exhi...
Membranes based on carbon nanotubes (CNTs) have been highlighted as an emerging technology for water...
Membrane distillation (MD) is a promising process for the treatment of highly saline wastewaters. Th...
In this work, novel polysulphone (PS) porous membranes for water desalination, incorporated with com...
Several different series of novel, self-supporting carbon nanotube (CNT) membranes, known as buckypa...
As water molecules permeate ultrafast through carbon nanotubes (CNTs), many studies have prepared CN...