Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Methods in Improving the Mechanical Properties and Flux of Nanofibre Membranes for Water Filtration

View through CrossRef
Nanofibres have gained increasing attention due to their advantages of having a high porous structure, narrow pore size and distribution, and a high specific surface area. One of the most efficient techniques for producing nanofibres is via electrospinning. Nanofibres are currently being used in various fields, including water filtration. Although nanofibres possess the ability to filter various components, the fibres generally have a low mechanical strength that can mitigate the performance over time. Therefore, in overcoming this issue, several studies have focused on improving the strength of the nanofibre membranes for a water filtration application. This review discusses the advantages and challenges of nanofibres for water filtration membranes and summarises the methods to increase the strength of the membranes, including solvent vapour, thermal treatment, and chemical crosslinking.
Title: Methods in Improving the Mechanical Properties and Flux of Nanofibre Membranes for Water Filtration
Description:
Nanofibres have gained increasing attention due to their advantages of having a high porous structure, narrow pore size and distribution, and a high specific surface area.
One of the most efficient techniques for producing nanofibres is via electrospinning.
Nanofibres are currently being used in various fields, including water filtration.
Although nanofibres possess the ability to filter various components, the fibres generally have a low mechanical strength that can mitigate the performance over time.
Therefore, in overcoming this issue, several studies have focused on improving the strength of the nanofibre membranes for a water filtration application.
This review discusses the advantages and challenges of nanofibres for water filtration membranes and summarises the methods to increase the strength of the membranes, including solvent vapour, thermal treatment, and chemical crosslinking.

Related Results

Use of Organic Solvent Nanofiltration (OSN) membranes for Counter-Current Chromatography (CCC) solvent recovery
Use of Organic Solvent Nanofiltration (OSN) membranes for Counter-Current Chromatography (CCC) solvent recovery
Solvent resistant membranes are a relatively new technology which has the potential to expand the possible utilities of membranes for process industries. Little is known in terms o...
Enhancing Mechanical Properties and Flux of Nanofibre Membranes for Water Filtration
Enhancing Mechanical Properties and Flux of Nanofibre Membranes for Water Filtration
Nanofibres have gained attention for their highly porous structure, narrow pore size, and high specific surface area. One of the most efficient techniques for producing nanofibres ...
Effect of Jute Nanofibre on the Properties of Waste Polypropylene/Polystyrene /Natural Rubber (wPP/PS/NR) Ter- Polymer Blend
Effect of Jute Nanofibre on the Properties of Waste Polypropylene/Polystyrene /Natural Rubber (wPP/PS/NR) Ter- Polymer Blend
Abstract In this work, the effect of jute nanofibre on ter-blend of waste polypropylene (wPP), polystyrene (PS), and natural rubber (NR) nanocomposite was studied. The nano...
Ceramic-Polymer Composite Membranes for Water and Wastewater Treatment: Bridging the Big Gap between Ceramics and Polymers
Ceramic-Polymer Composite Membranes for Water and Wastewater Treatment: Bridging the Big Gap between Ceramics and Polymers
Clean water supply is an essential element for the entire sustainable human society, and the economic and technology development. Membrane filtration for water and wastewater treat...
Sustainable Reuse of Produced Water Treatment Waste in Drilling Operations
Sustainable Reuse of Produced Water Treatment Waste in Drilling Operations
Abstract In oil and gas explorations, produced water is generated from subsurface reservoirs along with crude oil and gas. The produced water gets separated from hyd...

Back to Top