Showing posts with label science technology. Show all posts
Showing posts with label science technology. Show all posts

UNAIR Students Create Environmentally Friendly Plastics

Who said plastic will biodegrade in the soil long? Humaira, a student majoring in Chemistry Faculty of Science and Technology University of Airlangga (Airlangga University), Surabaya, East Java, Indonesia, has denied this. Tuesday (20 / 7), 21-year-old woman was announcing the results of his research, eco-friendly plastic that is easily decomposed by soil within a week.

According Humaira, this is done because the plastic has been used often cause environmental pollution due to garbage piling on too long, so prone to flooding. "Plastics are typically pile up and pollute the environment for years could be degraded or decomposed by the soil only within less than a week," said the girl was born in Jombang.

Humaira explains, is a synthetic plastic food packaging materials that have a negative impact on the environment and human health. That comes from the synthesis of materials such as cellulose acetate, polyethylene, polypropylene, polyamide, polyester, polyvinyl chloride (PVC), polyvinyl acetate and aluminum foil. While plastics made from these materials are nonbiodegradable or can not be explained naturally by microorganisms in the soil.

Not only that, typically of synthetic plastics material added softener (plasticizer) that is not rigid and not easily fragile. This softener material consisted mostly of groups phthalate compounds (esters derived from phthalic acid). "In fact, the use of DEHA plasticizer such as PCBs and can cause tissue death and is carcinogenic in humans," said Humaira.

Humaira research provides a breakthrough alternative to this time through the development of biodegradable plastics are easily degraded by microorganisms in the soil and renewable resources. The materials used for the manufacture of biodegradable plastics include starches aloe vera, chitosan, with glycerol as a plasticizer.

"Aloe vera contains polysaccharides that can form a layer of plastic film which has antibacterial properties. While chitosan containing proteins to strengthen the mechanical properties or strength of plastics, as well as glycerol as a plasticizer in an environmentally safe to give flexibility or elasticity in the plastic," said Humaira. That is why, from the aloe vera biodegradable plastics has advantages, which are antibacterial and easily degraded by microorganisms in the soil.

Humaira also said plastics from starch and aloe vera-chitosan prepared by chitosan concentration of three percent, four percent, five percent, six percent and seven percent (w / v). Meanwhile, aloe vera and glycerol concentration is fixed which is five percent (w / v) and 10 milliliters.

About the method, Humaira explained, the methods used in the synthesis of plastics from Aloe vera-chitosan, which is inverse phase with the solvent evaporates at a temperature of 60 degrees Celsius. "For this characterization, including measurement of thickness of plastic, test the mechanical properties, swelling test, determination of morphology, and test the properties of biodegradable," Humaira explained.

From the research, obtained value attractiveness percentage elongation and modulus of plastic film on the optimal composition of chitosan, starch, aloe vera and five per cent compared to seven percent (w / v), which is 461.538 MPa, respectively, 6.2 percent, and 744.416 MPa. "The percentage of swelling (swelling), the optimum was obtained at the composition of plastic between the starch-chitosan aloe five percent compared to four percent (w / v), with a value of 12.5 percent. In addition, based on Scanning Electron Microscopy results (SEM) produced morphological The flat plastic film and not hollow, "said Humaira. Thus, in a test of biodegradable plastics from Aloe vera-chitosan using EM4 bacteria showed that the degradation of plastic film in just one week.
read more...

Germanium Laser is The Latest Light Technology

The materials in lasers can be difficult and expensive to work with. A discovery at MIT may be changing all of that much sooner than we think as germanium laser technology is here and it is very real. The beauty of this latest technology is that there isn’t even a large call to change manufacturing specs as they exist because germanium can easily be incorporated into designs that are already in place.

Light technology is nothing new. In fact, it seems to be stealing all of the headlines these days. The scientific community is quickly figuring out that the sun can be used for a lot more than just heating up homes and powering cars. Light can be a very powerful resource if it is used properly. Researchers have been making great strides in many different areas regarding this kind of technology and the recent proving of indirect-band-gap semiconductors yielding practical lasers has everyone sitting up and taking notice.

A challenge that is being realized as computers and other electronic devices become more advanced is that the communication process is getting to the point that current technology is holding back advancements. Data is being streamed faster and faster and as the possibility of that rate increases, a new transfer of that data is going to have to be created.

This is where germanium laser technology has the chance to truly make a name. Instead of transporting date in manners that we now consider to be the norm, date transfer via laser beam would be more power efficient and much cheaper than turbo-charging the devices as they are now. Because of the speed and power that is needed, the cost of everything would go dramatically up if a different solution is not found.

For all of this to fall into place, germanium will now have to be integrated into the manufacturing process of lasers. What we would consider a standard laser today would be a very challenging fit to use for purposes such as this. However, by creating a germanium laser, the entire makeup of everything is changed and a laser beam that transfers data in now a reality.

Before anyone gets too excited, there is still progress to be made. Just like other earth-shattering discoveries that have been announced over the last few weeks, this process is hardly efficient enough to deliver on what is anticipated. That day will surely come though as the groundwork has been laid and it is now just a matter of the researchers fine tuning the process
(alternative-energy)
read more...

The Pedal A Watt Stationary Bicycle Generator

Today’s twin goals of keeping fit while doing something good for the planet by creating electricity without any pollution come together in a product that has been around for over ten years – The Pedal-A-Watt Stationary Bicycle Generator. Use your bicycle along with the Pedal-A-Watt Stand (it takes 15 seconds to drop your bike in) and create anywhere from 100 to 300 watts depending on how strong you are.

Then, use this energy to power small, household appliances. For example, a home office with a laptop and high efficiency LED lighting can be run for almost three hours on just a 30 minute workout.

The kids can “earn” their TV time by pedaling to create the energy needed to watch their favorite shows. Plus, kids will learn the true meaning of a “watt” and how many watts it takes to power their favorite electronic devices. It gives them a newfound appreciation for the cost of energy in physical terms.

And, the user will be helping to stay fit too. The typical adult will burn somewhere between 300 and 700 calories for each 30 minute workout. A few times a week and the calories expended really add up. Plus, the amount of energy created over time is surprising.

People all over the world have used the Pedal-A-Watt to power all kinds of items such a projectors, radios, lights in remote villages, water pumps, small heaters, chicken coops and hundreds of other unique applications.

The Pedal-A-Watt has been donated to schools across the country to help grade school children learn about alternative energy.
read more...