Subscribe free to our newsletters via your
. 24/7 Space News .




WATER WORLD
Cotton with special coating collects water from fogs in desert
by Staff Writers
Eindhoven, Netherlands (SPX) Jan 23, 2013


At low temperatures the structure of PNIPAAm-cotton is open. Credit: Eindhoven University of Technology.

Researchers at Eindhoven University of Technology (TU/e) together with researchers at the Hong Kong Polytechnic University (PolyU), have developed a special treatment for cotton fabric that allows the cotton to absorb exceptional amounts of water from misty air: 340 % of its own weight.

What makes this 'coated cotton' so interesting is that the cotton releases the collected water by itself, as it gets warmer. This property makes of the coated cotton materials a potential solution to provide water to the desert regions, for example for agricultural purposes. The results of this research will be published next month in the scientific journal Advanced Materials.

The researchers applied a coating of PNIPAAm, a polymer, to the cotton fabric. At lower temperatures, this cotton has a sponge-like structure at microscopic level.

Up to a temperature of 34C it is highly hydrophilic, in other words it absorbs water strongly. Through this property the cotton can absorb 340 % of its own weight of water from misty air - compared with only 18% without the PNIPAAm coating.

In contrast, once the temperature raises the material becomes hydrophobic or water-repellant, and above 34C the structure of the PNIPAAm-coated Beetles in desert areas can collect and drink water from fogs, by capturing water droplets on their bodies, which roll into their mouths.

Similarly, some spiders capture humidity on their silk network. This was the inspiration for this new coated-cotton material, which collects and releases water from misty environments simply as the temperature changes throughout the day.

This property implies that the material may potentially be suitable for providing water in deserts or mountain regions, where the air is often misty at night. According to TU/e researcher dr.

Catarina Esteves a further advantage is that the basic material - cotton fabric - is cheap and can be easily and locally produced. The polymer coating increases the cost slightly, but with the current conditions the amount required is only about 12%. In addition, the polymer used is not particularly costly.

Fine-mesh 'fog harvesting nets' are already being used in some mountains and dry coastal areas, but these use a different principle: they collect water from misty air, by droplets that gradually form on the nets and fall to the ground or a suitable recipient. But this system depends on a strong air flow, wind. The coated cotton developed the research team can also work without wind.

In addition, cotton fibers coated with this polymer can be laid directly where the water is needed, for example on cultivated soil. The researchers are also considering completely different applications such as camping tents that collect water at night, or sportswear that keeps perspiring athletes dry.

The research was led by professor John Xin at PolyU and dr. Catarina Esteves at TU/e. They now intend to investigate further how they can optimize the quality of the new material.

For example they hope to increase the amount of water absorbed by the coated-cotton. Moreover they also expect to be able to adjust the temperature at which the material changes from water-collecting to the water-releasing state, towards lower temperatures.

.


Related Links
Eindhoven University of Technology
Water News - Science, Technology and Politics






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








WATER WORLD
Antibacterial agent used in common soaps found in increasing amounts in freshwater lakes
Minneapolis MN (SPX) Jan 23, 2013
When people wash their hands with antibacterial soap, most don't think about where the chemicals contained in that soap end up. University of Minnesota engineering researchers do. A new University of Minnesota study determined that the common antibacterial agent, called triclosan, used in soaps and many other products is found in increasing amounts in several Minnesota freshwater lakes. The find ... read more


WATER WORLD
US, Europe team up for moon fly-by

Russia to Launch Lunar Mission in 2015

US, Europe team up for moon fly-by

Mission would drag asteroid to the moon

WATER WORLD
NASA's Veteran Mars Rover Ready to Start 10th Year

Opportunity Investigating Light-toned Veins in Rock Outcrop

Reull Vallis: a river ran through it

US scientists find evidence of ancient Martian lake

WATER WORLD
TDRS-K Offers Upgrade to Vital Communications Net

An Astronaut's Guide

Mathematical breakthrough sets out rules for more effective teleportation

Orion Teamwork Pays Off

WATER WORLD
Reshuffle for Tiangong

China to launch 20 spacecrafts in 2013

Mr Xi in Space

China plans manned space launch in 2013: state media

WATER WORLD
NASA to Send Inflatable Pod to International Space Station

ISS to get inflatable module

ESA workhorse to power NASA's Orion spacecraft

Competition Hopes To Fine Tune ISS Solar Array Shadowing

WATER WORLD
NASA Selects Experimental Commercial Suborbital Flight Payloads

Payload elements come together in Starsem's wrap-up Soyuz mission from Baikonur Cosmodrome for Globalstar

Amazonas 3 in Kourou for Ariane 5 year-opening launch campaign

Suborbital Space Research and Education Conference Scheduled for June 2013

WATER WORLD
New Evidence Indicates Auroras Occur Outside Our Solar System

Glitch has space telescope shut down

Earth-size planets common in galaxy

NASA's Hubble Reveals Rogue Planetary Orbit For Fomalhaut B

WATER WORLD
Researchers move Barkhausen Effect forward

Computer breakthrough: Code of life becomes databank

Kim Dotcom apologises for Mega bugs

World's Most Complex 2D Laser Beamsteering Array Demonstrated




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement