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Thursday, October 31, 2013
Winning Homes of the 2009 Solar Decathlon
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Blu Homes Acquires Green Prefab Pioneer mkDesigns
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Straw Bale Home in Sonoma County
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New Green Product Reviews and Information
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Tax Credits for Plug-In Hybrid Conversions
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New Guide to Cell Phone Radiation
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From Parking Lot to Paradise
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The Phoenix Commotion - Houses From Salvaged Materials
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Wednesday, October 30, 2013
Biomimetic Vascular Solar Cells
Researchers at North Carolina State University have come up with a new way of making solar cells with a method that uses circulation much like that in plant leaves to maintain the efficiency of the cells.
Dye-sensitized solar cells (DSSC) are organic cells that use light-sensitive dyes to generate electricity. These cells could eventually make low-cost and more environmentally-friendly collectors for solar energy, but until now, the problem has been that the dyes eventually break down due to ultraviolet rays from the sun and lose their efficiency.
The NCSU scientists have created a cell with vascular chanels, much like the veins in a leaf, to allow them to replenish the dye and thereby maintain the efficiency of the cell. Lead author Prof. Orlin Velev describes the process: “We considered how the branched network in a leaf maintains water and nutrient levels throughout the leaf. Our microchannel solar cell design works in a similar way. Photovoltaic cells rendered ineffective by high intensities of ultraviolet rays were regenerated by pumping fresh dye into the channels while cycling the exhausted dye out of the cell. This process restores the device’s effectiveness in producing electricity over multiple cycles.”
DSSCs are made with "a water-based gel core, electrodes, and inexpensive, light-sensitive, organic dye molecules that capture light and generate electric current." The simpler, non-metallic makeup of these cells could make them less expensive to produce, and could mean less extraction of rare minerals required in order to continue to provide solar energy.
via: Cleantechnica
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New Solar Cell Material Offers Both Cheap and Efficient Power
Another potential path for ever cheaper solar power is now being researched by scientists investigating the use of perovskite minerals to make solar cells. Perovskites are a very cheap material that have good light capturing properties as well as good conductivity. The advantage that perovskites offer is a great combination of inexpensive production combined with good efficiency in energy production.
Current laboratory experiment versions of perovskite-based solar cells have efficiencies of about 15 percent. Although there are other solar cells with greater efficiency, the figure for perovskite cells is higher than other cheap-to-manufacture methods.
The advantages provided with perovskite materials come from requiring a far less intensive manufacturing process. While fabricating silicon-based solar cells requires careful and expensive processing of silicon to a high degree of purity (not to mention the energy intensity of that manufacturing), cells using perovskites are made by spray applying materials to a glass or metal foil substrate, described as a "solar cell [that] can be fabricated as easily as painting a surface."
Perovskite-based solar cells might eventually be able to be produced for 10 to 20 cents per watt, as compared to present soalr panels which are around 75 cents per watt.
image: by Andrew Silver, USGS via Wikimedia Commons
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Saving a Solar Archive
Six decades of collected research and information about solar energy was nearly lost last month when torrential rains flooded parts of Boulder CO. The American Solar Energy Society, a non-profit organization supporting solar energy research and implementation is based on Boulder. The archives are now sitting in the organization's executive director's garage, but the organization has bigger plans in store.
The ASES is running a Kickstarter to raise funds to digitize 60 years of archives. The fundraiser seeks to raise a relatively modest $118,977 to not just scan the documents, but also to OCR the information and make it more readily useful. "After a page is scanned from a paper format, whether it's a book, magazine, research paper, or pdf, it will be converted to plain text via OCR. The images and diagrams will also become separate entities with their own tagging and categorization methodology that allows searching to be optimized as well as displayed in different contextual formats."
ASES plans to make all of this information freely available. "Similar to the way that the open source code community shares information, where code is open for others to see and build or improve upon, within open systems, creativity and innovation are able to grow exponentially. We want the same thing to happen with solar and renewable technologies."
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