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	<title>Engineer and Technician &#187; solar</title>
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	<link>http://www.engineer-and-technician.com</link>
	<description>Straight Talk on Modern Industrial Automation and Engineering Technology</description>
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		<title>Ending Our Dependence On Foreign Oil With Solar Power</title>
		<link>http://www.engineer-and-technician.com/ending-our-dependence-on-foreign-oil-with-solar-power/</link>
		<comments>http://www.engineer-and-technician.com/ending-our-dependence-on-foreign-oil-with-solar-power/#comments</comments>
		<pubDate>Thu, 11 Jun 2009 16:29:45 +0000</pubDate>
		<dc:creator>Neal Babcock</dc:creator>
				<category><![CDATA[Solar Power and Solar Panels]]></category>
		<category><![CDATA[energy]]></category>
		<category><![CDATA[photovoltaic]]></category>
		<category><![CDATA[power]]></category>
		<category><![CDATA[solar]]></category>
		<category><![CDATA[solar panels]]></category>

		<guid isPermaLink="false">http://engineer-and-technician.com/?p=473</guid>
		<description><![CDATA[It seems that high prices for gasoline and heating oil used in homes are here to stay. Sure, they go up and down, but overall they still remain pretty high and consume more of our pocketbooks than they ever have in the past. We are constantly struggling with the Middle East, at least in part [...]]]></description>
			<content:encoded><![CDATA[<p><img class="alignright size-full wp-image-474" title="solar-flare" src="http://engineer-and-technician.com/wp-content/uploads/2009/07/solar-flare.jpg" alt="solar-flare" width="588" height="252" /></p>
<p>It seems that high prices for gasoline and heating oil used in homes are here to stay.  Sure, they go up and down, but overall they still remain pretty high and consume more of our pocketbooks than they ever have in the past.  We are constantly struggling with the Middle East, at least in part to protect our interest in their oil. <span id="more-473"></span>And as other nations, including China and India, increase their demand for fossil fuels, it seems that conflicts regarding energy are looming large on the horizon. In the meantime, power plants that burn fossil fuels, as well as all of our vehicles everywhere, continue to pour millions of tons of pollutants into the atmosphere annually, threatening our health and well-being.</p>
<p>There are a number of well-meaning scientists, engineers and politicians who have presented various methods that could slightly reduce our use of fossil fuel. However, these steps are not enough. The US needs a plan to work itself away from our dependence on fossil fuels. It appears that only answer is a transition to solar power.</p>
<p>The potential of solar energy is overwhelming. For example, the energy in the sunlight striking the earth for only 40 minutes is equivalent to our human global energy consumption for one year. The U.S. is lucky in the sense that we have at least 250,000 mi. of land in the Southwest alone that is suitable for building solar power plants.  That land receives more than 4500 quadrillion British thermal units (BTUs) of solar radiation every year. If we were to convert only 2.5% of that radiation into electricity, we would match the nation’s total energy consumption of 2006.</p>
<p>However, to convert this solar power, large tracts of land would have to be covered with photovoltaic cells and perhaps solar heating troughs.</p>
<p>The good news is that the technology is nearly ready. Let’s look at photovoltaic farms.</p>
<p>In the last few years, the cost to produce photovoltaic cells and modules have really dropped pretty radically, opening the way for large-scale implementation. A number of cell types exist, but the best modules today are made of very thin films of cadmium telluride. To work up the numbers, if we were to provide electricity at $.06 per kilowatt-hour by the year 2020, cadmium telluride modules must be able to convert electricity with at least 14% efficiency and complete systems would have to be installed at about a $1.20 per watt capacity. Current modules have only 10% efficiency and an installed system costs about $4 per watt. We are making progress, and the technology is advancing rapidly; commercial efficiencies have risen to upwards of 10% in the last year. As these commercial efficiencies rise, rooftop photovoltaic for the home will become even more cost competitive, further reducing daytime electricity demand on the utilities.</p>
<p>In one scenario, by 2050, photovoltaic technology could provide almost 3000 GW, or billions of Watts, of power. 30,000 square miles of photovoltaic arrays would need to be constructed. This may seem like a huge number, but current installations already in place show that the land required for each gigawatt hour of solar energy produced in the Southwest is less than the actual amount needed for a power plant when the area used for coal mining is taken into consideration. The National Renewable Energy Laboratory in Golden, Colorado shows that more than enough land in the Southwest is available without disturbing any environmentally sensitive areas, cities or towns. In Arizona, the Department of Water Conservation has stated that more than 80% of the state’s land is not privately owned and that Arizona is very interested in developing its solar potential. Because of the nature of photovoltaic plants, and the lack of water required to operate these plants, the environmental impact should be minimal.</p>
<p>The main problem is still reaching that magic number of module efficiency of 14%. Although the efficiencies of commercial modules won’t reach those of solar cells in the laboratory, cadmium telluride cells at the National Renewable Energy Laboratory are now up to 16.5% and rising. At least one manufacturer, <a href="http://www.firstsolar.com/" target="_blank">First Solar in Perrysburg, Ohio</a>, has increased the efficiency of their modules from 6% to 10% from 2005-2007. They plan on reaching 11.5% by 2010.</p>
<p>So, the trick is to keep an eye on the efficiencies of solar cells. After they reach 14% efficiency and the base cost per kilowatt hour becomes more acceptable, expect to see a number of companies and individuals making investments in this future.</p>
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		<title>Money From The Stimulus Package Powers The Purchase Of Solar Panels</title>
		<link>http://www.engineer-and-technician.com/money-from-the-stimulus-package-powers-the-purchase-of-solar-panels/</link>
		<comments>http://www.engineer-and-technician.com/money-from-the-stimulus-package-powers-the-purchase-of-solar-panels/#comments</comments>
		<pubDate>Mon, 27 Apr 2009 17:00:00 +0000</pubDate>
		<dc:creator>Neal Babcock</dc:creator>
				<category><![CDATA[Solar Power and Solar Panels]]></category>
		<category><![CDATA[power]]></category>
		<category><![CDATA[solar]]></category>
		<category><![CDATA[wind generators]]></category>

		<guid isPermaLink="false">http://engineer-and-technician.com/?p=491</guid>
		<description><![CDATA[Money from the recently passed federal stimulus package is going to help the Air Force Academy at Colorado Springs with a brand-new 2 MW solar power plant. The plant will cost $18.3 million and cover up to 30 acres on the Academy grounds. It is the first part of a long-range plan to shift the [...]]]></description>
			<content:encoded><![CDATA[<p>Money from the recently passed federal stimulus package is going to help the Air Force Academy at Colorado Springs with a brand-new 2 MW solar power plant.</p>
<p>The plant will cost $18.3 million and cover up to 30 acres on the Academy grounds. It is the first part of a long-range plan to shift the school&#8217;s power demands to completely renewable resources.<span id="more-491"></span></p>
<p>However, the solar plant is going to be owned and operated like Colorado Springs Utilities and the electricity it generates will be shared with customers throughout the city.</p>
<p>The money comes from extra-base maintenance money that was added to the stimulus package. The Academy will transfer the cost of the utility, which will design and build the plant. In return, it gets an agreement that a portion of the base&#8217;s electricity comes from completely renewable energy sources, including solar power panels.</p>
<p>Lt. Col. Jace Davey, commander of the academy&#8217;s 10th Civil Engineer Squadron, says that the solar panel array will most likely be built along the eastern edge of the Academy near State Route 25 because that is the area of the Academy that gets the most sunlight.</p>
<p>The current plans involve building a facility that will convert enough sunlight with the solar panels to power more than 1400 homes.</p>
<p>The utility company has already been working with the military throughout the region to reduce its power use while generating even more through solar power.</p>
<p>This year the utility started operating a brand-new 12 acre solar panel plant at Fort Carson that generates enough electricity for over 500 homes.</p>
<p>The final arrangements with the Academy have not yet been made, but officials on both sides are optimistic about the process and hope to start generating electricity with solar panels within the next two years.</p>
<p>&#8220;It certainly adds to our renewable portfolio,&#8221; Romero said.</p>
<p>The solar plan is part of the academy&#8217;s effort to cut down its power bills. The school spends nearly $10 million a year on its utilities area.</p>
<p>&#8220;If you can cut back 10 percent, that&#8217;s $1 million,&#8221; said Lt. Col. Michael Greiner, the academy&#8217;s director of financial management.</p>
<p>The Academy disclosed that the details of the planned solar plant are going to be worked out in the next few weeks after the Air Force transfers the stimulus package money.</p>
<p>At that point the engineers from school and the utility will start work on building it.</p>
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		<title>Solar Panels at Budweiser Brewery Now Providing Power</title>
		<link>http://www.engineer-and-technician.com/solar-panels-at-budweiser-brewery-now-providing-power/</link>
		<comments>http://www.engineer-and-technician.com/solar-panels-at-budweiser-brewery-now-providing-power/#comments</comments>
		<pubDate>Sat, 18 Apr 2009 17:00:40 +0000</pubDate>
		<dc:creator>Neal Babcock</dc:creator>
				<category><![CDATA[Solar Power and Solar Panels]]></category>
		<category><![CDATA[solar]]></category>
		<category><![CDATA[solar panels]]></category>

		<guid isPermaLink="false">http://engineer-and-technician.com/?p=493</guid>
		<description><![CDATA[Press Release FAIRFIELD, Calif., April 16, 2009 Today, Anheuser-Busch has announced that more than six acres of photovoltaic solar arrays and solar panels, which are installed and operated by Sun Edison, are now generating the equivalent of 3% of the breweries electrical needs. &#8220;Operating with care and concern for the environment has been a hallmark [...]]]></description>
			<content:encoded><![CDATA[<p>Press Release</p>
<p>FAIRFIELD, Calif., April 16, 2009</p>
<p>Today, Anheuser-Busch has announced that more than six acres of  photovoltaic solar arrays and solar panels, which are installed and operated by Sun Edison, are now generating the equivalent of 3% of the breweries electrical needs.<span id="more-493"></span></p>
<p>&#8220;Operating with care and concern for the environment has been a hallmark of Anheuser-Busch for more than a century,&#8221; said Kevin Finger, general manager, Anheuser-Busch Fairfield brewery. &#8220;Our increased use of alternative energy sources is the latest example of how we strive to be the best beer company in a better world.&#8221;</p>
<p>Last year after meetings with <a href="http://www.sunedison.com" target="_blank">SunEdison</a>, the brewery entered into an agreement to provide the property for a solar panel power plant.  In addition, the brewer reconstructed a bioenergy recovery system which provides more than 15% of the breweries fuel. This is done by turning nutrients in the brewing wastewater into a renewable biogas that can then be burned, decreasing the brewery&#8217;s use of natural gas.</p>
<p>These two projects represent the latest in a series of improvements at the Fairfield brewery regarding conservation and efficiency. Recent efforts have included a project that will recover steam in the brewhouse and reduce greenhouse gas emissions. Another involves the installation of a more efficient boiler burner and new, more energy-efficient air compressors. Also, brewery lighting is now controlled by timers. Because of all of these enhancements and improvements, the brewery has decreased fuel use by more than 37%, water use by  by more than 30% and electricity use by more than 13%.</p>
<p>&#8220;Anheuser-Busch has been a good neighbor to Fairfield and the surrounding communities for more than 30 years,&#8221; said State Senator Lois Wolk, who represents the region. &#8220;They have earned their reputation as not only a top employer in the area, but as a business doing the right thing for the environment, even before it was popular.&#8221;</p>
<p>&#8220;Anheuser-Busch has taken a strong leadership role in protecting natural resources and using energy wisely and efficiently. By hosting a PV solar energy system, Anheuser-Busch is part of America&#8217;s new energy future. SunEdison is proud to support them today and for decades to come,&#8221; said Kirk Roller, vice president of SunEdison.</p>
<p>The ground mounted solar system, capable of producing 1.2 MW through its solar panels, is located on every property near California Highway 80 area as part of the agreement, SunEdison financed installs and is operating the photovoltaic solar panel energy system. The system also generates renewable energy certificates.</p>
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		<title>Make The Sun Brighter, And Make Solar Panels Work Better</title>
		<link>http://www.engineer-and-technician.com/make-the-sun-brighter-and-make-solar-panels-work-better/</link>
		<comments>http://www.engineer-and-technician.com/make-the-sun-brighter-and-make-solar-panels-work-better/#comments</comments>
		<pubDate>Sun, 12 Apr 2009 16:37:31 +0000</pubDate>
		<dc:creator>Neal Babcock</dc:creator>
				<category><![CDATA[Solar Power and Solar Panels]]></category>
		<category><![CDATA[make solar panels]]></category>
		<category><![CDATA[solar]]></category>
		<category><![CDATA[solar panels]]></category>

		<guid isPermaLink="false">http://engineer-and-technician.com/?p=480</guid>
		<description><![CDATA[Marc Baldo of MIT is working on a way to make solar panels better. Baldo has coated the surfaces of 10 cm square pieces of glass with dyes that glow orange under an ultraviolet lamp. However, the uncoated edges of the glass are shining more brightly than the top. The sheet of glass is called [...]]]></description>
			<content:encoded><![CDATA[<p>Marc Baldo of MIT is working on a way to make solar panels better.</p>
<p>Baldo has coated the surfaces of 10 cm square pieces of glass with dyes that glow orange under an ultraviolet lamp. However, the uncoated edges of the glass are shining more brightly than the top.<span id="more-480"></span></p>
<p>The sheet of glass is called a solar concentrator. This is the device that gathers normal, natural diffuse light and focuses it onto a small solar cell. Solar cells are multilayered electronic devices made of highly refined silicon and are very expensive to manufacture. The bigger they are, the more they cost. Solar concentrators can lower the overall cost of solar power by making the cells much smaller. Usually, though, the concentrators are typically made of curved mirrors or lenses which are bulky and need elaborate mechanical systems to help them track the sun.</p>
<p>These glass sheets are different as they act more as waveguides by channeling the light in the same way that fiber-optic cables transmit optical signals. The dyes in this experiment that coat the surfaces of the glass absorb sunlight. Different dyes are used to store different wavelengths of light. Then the dyes will re-insert the light into the glass and the glass channels it to the edges. Solar cell strips have been attached to the edges and accept the light and generate electricity. The larger the surface of the glass compared with the thickness of the edges, the more the light is concentrated and the less the power costs.</p>
<p>Baldo, an associate professor of electrical engineering, published his findings recently in Science.   He believes that his solar concentrators can be made large enough for the electricity they generate to compete with electricity from traditional sources, such as fossil fuels. He believes that this could be the cheapest solar technology available.</p>
<p>The process for making these solar concentrators begins in another lab at MIT. Several bottles filled with colorful dye powders are measured carefully into small vials. Some of the dyes had been developed for use in car paint; others have been used in creating organic light emitting diodes. Both types of guys are very hardy and can last for years in the sun. This, of course, is essential for solar panel devices.</p>
<p>Once he has measured out the powders, a solvent is added to each to make a form of liquid ink.</p>
<p>Next, the ingredients are placed inside a sealed box and each solution is mixed. It is critical that the right combination of inks is used. If the glass sheet is coated with a dye that absorbs sunlight in those green range of the solar spectrum and emits light that is in the same wavelength, emitted light will in turn be reabsorbed by the dye and it will never reach the edge of the glass.</p>
<p>After the mixture is formed, a small amount is poured on the glass structure. Within a minute or two, the solvent has evaporated out of the dye in the process is finished. The solar panel concentrator with its new coating of orange dye is complete.</p>
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		<title>Making A Cheaper Solar Panel</title>
		<link>http://www.engineer-and-technician.com/making-a-cheaper-solar-panel/</link>
		<comments>http://www.engineer-and-technician.com/making-a-cheaper-solar-panel/#comments</comments>
		<pubDate>Sat, 04 Apr 2009 15:45:45 +0000</pubDate>
		<dc:creator>Neal Babcock</dc:creator>
				<category><![CDATA[Solar Power and Solar Panels]]></category>
		<category><![CDATA[power and solar panels]]></category>
		<category><![CDATA[solar]]></category>
		<category><![CDATA[solar panels]]></category>

		<guid isPermaLink="false">http://engineer-and-technician.com/?p=471</guid>
		<description><![CDATA[Solaria is a startup company based in Fremont California. It intends to cut the cost of manufacturing solar panels by decreasing the amount of the most expensive material required; silicon. It has recently started shipping its first panels. This spring, the company is going to begin production of solar panels at a factory built to [...]]]></description>
			<content:encoded><![CDATA[<p>Solaria is a startup company based in Fremont California. It intends to cut the cost of manufacturing solar panels by decreasing the amount of the most expensive material required; silicon. It has recently started shipping its first panels. This spring, the company is going to begin production of solar panels at a factory built to produce 25 MW of solar panels every year.<span id="more-471"></span></p>
<p>Currently, the high costs for the type of silicone that is used in photovoltaics have driven up the price of conventional solar panels. Soleria’s solar panel cells generate about 90% as much power as a conventional solar panel, while using just half as much silicon.</p>
<p>Usually, the silicon in a solar panel covers the entire surface, collecting light from as much area as is possible. But Solaria is able to slice the silicon into thin strips and places them so that they only cover about half of the panel’s area. A clear molded plastic cover collects light from the entire panel and channels it to the strips of silicon.</p>
<p>This method saves a lot of money because the total cost of the molded plastic and the additional manufacturing steps are still lower than the cost of the silicon that would normally be used in conventional solar panels. They also reduce costs by using existing manufacturing equipment that has already been developed for the semiconductor industry. These first products could be economical enough compete with panels provided by much larger companies. In successive generations, the cost could be as much as 30% less than their competitors.</p>
<p>Unfortunately, silicon prices are high now. But the element is abundant on this planet and there are already new facilities being built to produce more refined silicon. Soleri plans to implement even more cost-saving measures to remain competitive.</p>
<p>Such measures are clearly possible. For example in a conventional solar panel, the wires for collecting the electricity are placed on top of the cell, where they inherently block some of the incoming sunlight. Soleria could place wires in between the strips of silicon were no light is blocked. Because these wires wouldn’t have to be made then to avoid blocking the existing sunlight, they could be sized to collect the electricity in a more efficient manner.</p>
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		<title>ENN Reports Solar Panel Production with Thin Film Line</title>
		<link>http://www.engineer-and-technician.com/enn-reports-solar-panel-production-with-thin-film-line/</link>
		<comments>http://www.engineer-and-technician.com/enn-reports-solar-panel-production-with-thin-film-line/#comments</comments>
		<pubDate>Sun, 22 Mar 2009 19:14:39 +0000</pubDate>
		<dc:creator>Neal Babcock</dc:creator>
				<category><![CDATA[Solar Power and Solar Panels]]></category>
		<category><![CDATA[solar]]></category>
		<category><![CDATA[solar panel]]></category>

		<guid isPermaLink="false">http://engineer-and-technician.com/?p=499</guid>
		<description><![CDATA[Langfang, China, March 21st, 2009 Working together at ENN&#8217;s facility in Langfang, China, ENN and Applied achieved this milestone just five months after equipment installation. These ultra-large PV panels are nearly four times larger than conventional modules on the market and use Applied&#8217;s tandem junction technology to deliver higher conversion efficiencies, according to the companies. [...]]]></description>
			<content:encoded><![CDATA[<p>Langfang, China,  March 21st, 2009</p>
<p>Working together at ENN&#8217;s facility in Langfang, China, ENN and Applied achieved this milestone just five months after equipment installation. These ultra-large PV panels are nearly four times larger than conventional modules on the market and use Applied&#8217;s tandem junction technology to deliver higher conversion efficiencies, according to the companies.<span id="more-499"></span></p>
<p>&#8220;By combining the high efficiency of tandem junction technology with ultra-large 5.7m2 substrates, we&#8217;re able to deliver modules that dramatically reduce installed cost per watt,&#8221; said Dr. Rick Wan, General Manager of ENN Solar. &#8220;Our close association with Applied Materials has enabled ENN to build a winning platform, combining our next-generation solar technology with our world-class manufacturing capability.&#8221;</p>
<p>&#8220;We are committed to delivering the highest level of technology innovation and manufacturing excellence to our customers,&#8221; said Dr. Randhir Thakur, senior vice president and general manager of Applied Materials&#8217; SunFab Thin Film Solar and Display Business Group. &#8220;ENN&#8217;s rapid ramp from equipment installation to producing tandem junction panels is an example of the unique capabilities that Applied delivers &#8211; unparalleled research and development, technology and manufacturing innovation, and global service and support for our customers.&#8221;</p>
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		<title>LG Highlights Green Initiatives for the Mobile Industry</title>
		<link>http://www.engineer-and-technician.com/lg-highlights-green-initiatives-for-the-mobile-industry/</link>
		<comments>http://www.engineer-and-technician.com/lg-highlights-green-initiatives-for-the-mobile-industry/#comments</comments>
		<pubDate>Wed, 18 Feb 2009 19:17:39 +0000</pubDate>
		<dc:creator>Neal Babcock</dc:creator>
				<category><![CDATA[Solar Power and Solar Panels]]></category>
		<category><![CDATA[mobile]]></category>
		<category><![CDATA[solar]]></category>
		<category><![CDATA[solar panels]]></category>

		<guid isPermaLink="false">http://engineer-and-technician.com/?p=506</guid>
		<description><![CDATA[Barcelona, Spain, February, 16, 2009 &#8211; LG Electronics, a worldwide technology and design leader in mobile communications, today unveiled its eco-friendly mobile phone equipped with a solar panel battery cover at the Mobile World Congress 2009. This Solar-powered handset is part of the company’s aggressive green initiative, proving LG’s commitment to creating a healthier environment [...]]]></description>
			<content:encoded><![CDATA[<p>Barcelona, Spain, February, 16, 2009 &#8211; LG Electronics, a worldwide technology and design leader in mobile communications, today unveiled its eco-friendly mobile phone equipped with a solar panel battery cover at the Mobile World Congress 2009. This Solar-powered handset is part of the company’s aggressive green initiative, proving LG’s commitment to creating a healthier environment for everyone.<span id="more-506"></span></p>
<p>“Using renewable solar energy in the mobile handset is an example of our ongoing efforts to help create a safer, cleaner environment for our customers,” said Dr. Skott Ahn, President and CEO of LG Electronics Mobile Communications Company. “LG continues to research and invest in creating products that not only provide a better experience for consumers, but also encourage an environmentally responsible lifestyle.”</p>
<p>The phone’s solar power system is embedded onto the battery cover, to conveniently harness the sun’s limitless and pollution-free energy.</p>
<p>By simply pointing the phone’s solar panel at natural light, the panel will convert solar energy into electricity without needing to be plugged in. Exposing the panel to the sun for ten minutes will give the phone enough power for a three-minute call, making it the perfect companion for emergency situations when no power is available to charge a dead battery. If left in natural light for long periods, the solar panel creates enough standby power to power the phone without any charging devices. LG plans to release this eco-friendly phone in the European market at the end of this year.</p>
<p>LG’s green initiative has not stopped at phones. The company’s LG HFB-500 Bluetooth solar car kit, first introduced at this January’s Consumer Electronics Show in Las Vegas, gives customers hands-free mobile use in a fully rechargeable solar unit. In addition, LG is introducing green packaging to its entire line of 2009 mobile handset models. The eco-friendly packaging saves natural resources and promotes easy recycling by printing with soy inks and using recycled paper and cardboard without laminate coating. LG will also expand the use of its eco-friendly product manuals, produced with soy ink and recycled paper, to a broader range of models in 2009.</p>
<p>LG is also taking a step forward in reducing the use of hazardous substances in its products and instead using sustainable ones. LG adheres to strict requirements administered by the EU’s RoHS regarding the management of hazardous substances including lead (Pb), cadmium (Cd), mercury (Hg), hexavalent chromium (Cr6+), polybrominated biphenyl (PBB) and polybrominated diphenyl ether (PBDE) in its production processes.</p>
<p>The company also plans to make its mobile handsets free of halogenated substances, a known endocrine disruptor, by removing Brominated flame retardants (BFR), chlorinated flame retardants (CFR) and polyvinyl chloride (PVC) from the manufacturing process by 2010 and will make all handsets antimony-free by 2012.</p>
<p>LG recently announced its “Life’s Good When It’s Green” initiative, the foundation of its global sustainability program at Consumer Electronics Show 2009. The worldwide program focuses on sustainability through Eco-Design and Eco-Products, the reduction of hazardous substances, responsible take-back programs and recycling facilities, and addressing global climate change.</p>
<p>The LG Solar-powered handset, Bluetooth solar car kit and new green packaging will all be showcased at the Mobile World Congress 2009 in Barcelona</p>
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		<title>Irish Firm Produces World’s Most Efficient Solar Panel</title>
		<link>http://www.engineer-and-technician.com/irish-firm-produces-worlds-most-efficient-solar-panel/</link>
		<comments>http://www.engineer-and-technician.com/irish-firm-produces-worlds-most-efficient-solar-panel/#comments</comments>
		<pubDate>Sat, 07 Feb 2009 19:18:30 +0000</pubDate>
		<dc:creator>Neal Babcock</dc:creator>
				<category><![CDATA[Solar Power and Solar Panels]]></category>
		<category><![CDATA[solar]]></category>
		<category><![CDATA[solar panel]]></category>

		<guid isPermaLink="false">http://engineer-and-technician.com/?p=508</guid>
		<description><![CDATA[Co. Mayo, Ireland — Thursday, 5 February 2009 – An Irish company today launched the most efficient solar panel ever produced. Surface Power in County Mayo says it plans to create 20 new jobs over the next 12 months with the launch and international distribution of its breakthrough product. Independent Certification by TUV Rhineland &#8211; [...]]]></description>
			<content:encoded><![CDATA[<p>Co. Mayo, Ireland — Thursday, 5 February 2009 – An Irish company today launched the most efficient solar panel ever produced.</p>
<p>Surface Power in County Mayo says it plans to create 20 new jobs over the next 12 months with the launch and international distribution of its breakthrough product.<span id="more-508"></span></p>
<p>Independent Certification by TUV Rhineland &#8211; the world’s leading testing house &#8211; has shown that when compared to other leading solar panels the Irish developed panel was in one case as much as 131% more efficient in morning and evening time and 76% more efficient at midday.</p>
<p>Surface Power estimates that the product, which has undergone six years of development and testing, has the potential to reduce domestic and commercial hot water bills by up to 70% if insulation standards meet new building regulations.</p>
<p>Company founder John Quinn believes that having a very good product result will help drive growth and jobs for the company in 2009.</p>
<p>“The market for the solar collector was worth in excess of one billion dollars in 2008 and has grown by 300% since 1998. We received over 400 enquiries from the USA alone last month after the specifications were released during the Christmas period. We also expect the international home renovation market to be very strong during the next three years, as our collector is the only pre-packaged vacuum collector on the world market. This leads to quicker, simpler and cheaper installations” added Mr. Quinn.</p>
<p>He continued, “Our solar panel has been compared to 52 other collectors which hold the prestigious Solar Keymark certification and the results of the comparative testing are excellent. The biggest difference that was achieved in comparison results was that against flat plate collectors. It is great to see the end of a product development cycle and a huge spike in enquiries from the renovation market in Europe and USA, we have several more products in development and plan to release one per year. ”</p>
<p>Outlining the benefits of using the solar panel, Mr. Quinn stated, “The solar panel is a hot water type designed specifically for the retrofit market although it is perfectly suitable also for new builds. It was designed to deal specifically with Irish climatic conditions such as wind, rain and cloud. Solar hot water can be used in domestic homes and commercial applications such as shower rooms, hotels and swimming pools. It may be classified as new technology and simpler to use and install but it is not more expensive to produce. Its cost per kW is its biggest advantage while it can generate up to 70% savings on hot water bills when coupled with an insulation upgrade, we can reduce the cost of achieving a solar installation by 50% when measured against efficiency.”</p>
<p>Established in 2003, Surface Power is targeting key world export markets for renewable Commodity products. The Údarás na Gaeltachta and Enterprise Ireland-backed firm has played a central role in the development of the domestic Renewable sector, especially micro generation.</p>
<p>For more see <a href="http://www.surfacepower.ie" target="_blank">www.surfacepower.ie</a>.</p>
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