Conveniently Made Silicon-Based Chemicals from Sand
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Easily Made Silicon-based Chemicals from Sand
I believe this new procedure for creating silicon-based chemicals via sand will revolutionize the industry by simply decreasing costs and raising productivity. College or university of The state of michigan Professor and materials man of science, Richard Laine, discovered a nontoxic and inexpensive way of making a many different kinds of silicon-based chemicals. This Process uses sand or rice hull ash and antifreeze to develop needed chemicals while helping decrease costs and increase environmental basic safety. This new procedure will enable companies to produce silicon-based products without using the old method of employing compounds just like quartz crushed stone (Si0 ), high temperatures, an electrical current, and a carbon dioxide compound (to bond with oxygen) to develop impure si metal. This process is very pricey and produces many dangerous byproducts. Even now the old procedures impure silicon is not ready for use and need to still be purified even further to insure top quality. Because this process is so pricey it is forgone and replaced with fossil energy polymers which might be highly pollutant and will at some point deplete. With Laine's new findings we use little more than yellow sand or rice hull, ethylene glycol (antifreeze), and a caustic to create these silicon-based compounds used in the production of goods such as computer system chips and textiles. We can also use this procedure to create silicon-based polymers which may someday exchange the depletable fossil gasoline polymers being used today. These kinds of silicon-based polymers would make items cheaper due to abundance of silicon-based materials that make up 25% of the earths crust. We all as buyers can benefit from the brand new process monetarily (decreased prices) and environmentally (cleaner reaction). By using this fresh process we could save each of our fossil fuels to produce more needed materials instead of wasting all of them on items that can be manufactured using a more abundant source. This also...