Home > Nanotechnology Columns > Brian Wang > Nanosand Could Make Deserts Green, Alleviate Poverty and Water Scarcity
Brian Wang Z1 Consulting |
Abstract:
Waterproof sand is being placed into plastic sheets and then buried under the topsoil to create an artificial water table and reduce water losses in irrigation by 75%. Eighty-five percent of the water in the MENA (Middle East and North Africa) region is used for irrigation and that is potentially the main area from which the growing urban demand can be met. 3000 tons of the waterproof nanosand are being made per day. 1 ton of sand would probably cover 10 square meters. 4 days to cover a square kilometer.
The plant is ready to meet the demands of potential customers such as Dubai Municipality which has inquired about the product as it works toward greening the Emirate from the current 3.7 per cent of total landscape to eight per cent by 2015.
Some people are concerned about plastic being used on such a large scale or the environmental effect of the plastic. Yet they are also concerned that plastic will sit in landfills forever. They can select a plastic that will not decompose. This is rolls of plastic filled with waterproof sand buried under the topsoil to create an artificial water table.
This is the first use of nanotechnology to make a major impact on a major problem. Ironically it is similar to the first product that claimed to use nanotechnology, which were waterproof/stain resistant pants. Nanotechnology could make more impact on water scarcity with emerging nano-membranes for water purification and desalination.
* Saving 75% of water from irrigation could save millions of lives and prevent a massive humanitarian disaster and regional chaos with water wars
-Whatever downsides some may be worried about consider the upside.
Water scarcity gets mitigated and regional poverty (from more local agriculture) gets reduced and the chance and probably the amount of water wars will be less. This helps the areas with the worst poverty and violence (The middle east and Africa.)
February 5th, 2009
Nanosand Could Make Deserts Green, Alleviate Poverty and Water Scarcity
Crossposted from
http://nextbigfuture.com/2009/02/waterproof-sand-could-green-deserts.html
Nanosand -covered with silicate to make waterproof |
fiberglass roll with plastic sheet |
Projected water scarcity for 2025 |
The large rolls sandwich the sand between layers of polyethylene and can be produced in lengths of up to 50 metres. "The coating is done in 30 or 45 seconds," said Hareb. "We have the capacity of manufacturing 3,000 tonnes per day."
The plant is ready to meet the demands of potential customers such as Dubai Municipality which has inquired about the product as it works toward greening the Emirate from the current 3.7 per cent of total landscape to eight per cent by 2015.
By simply laying down a 10-centimetre blanket of DIME Hydrophobic Materials sand beneath typical desert topsoils, the new super sand stops water below the roots level of the plants and maintains a water table, giving greenery a constant water supply.
"It's super thin," Schulze said. "Every single sand kernel gets a skin, a coating, which encloses it."
The nanotechnology coating is so thin, in fact, that it can't be seen by the naked eye and measures 12,500 to 13,500 micro millimetres.
To date, it's been approved by the Federal Environment Agency (FEA) in Germany which, according to Schulze, has issued a no-objection certificate for the product declaring it as ecologically safe.
UAE University Professor Mohammad Abdel Muhsen Salem told XPRESS that DIME sand has been undergoing trials since December 2007 with positive results although tests are only half completed.
At the university's College of Food and Agriculture, date palms and foreign grasses have been planted with the sand and to date, Salem said "we can see a 25 per cent increase in the roots with the hydrophobic sand compared to when just the sweet soil is used."
Salem noted that water monitoring has also revealed that the sand conserves water.
"I'm sure it (the sand) will save up to 35 per cent more water,he said. But we're still testing it."
Tests on growing rice have just begun. If rice is successfully grown in the desert, the test will of some note given that rice is usually grown in water-soaked fields
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