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Showing posts with the label Renewable Energy

Journal Club:”An Engineered Microbial Platform for Direct Biofuel Production from Brown Macroalgae”

Cover of Science Issue 335. It has been a while since we have done a journal club , and so today I thought I would write about an article I recently read. Adam J. Wargacki, who works in Yasuo Yoshikuni's group, recently published the above titled paper. In light of problems associated with the use of fossil energy sources (cost, scarcity, environmental impact, and geopolitical considerations), the search for new energy sources is starting to become more important. The paper in discussion today proposes that a coupled system consisting of brown macroalgae and engineered bacteria could be used. Of course there are more traditional biofuel feedstock sources such as corn and sugarcane. There a couple of hurdles such as the debate about “food versus fuel” and technical hurdles such as the degradation of lignocellulosic matter that need to be solved. We have previously discussed how microalgaecould get around the difficulties of corn and sugarcane in the production of bioefu...

Journal Club:"Metagenomic Discovery of Biomass-Degrading Genes and Genomes from Cow Rumen"

You may remember that a while ago I blogged about a research group that found a way to produce biogas reactor using the content of a stomachs cow . One of the questions, I had back then was what kinds of bacteria were in the cow's stomach fluids? Today, we'll look at a  massive Science article from January 28 with the title "Metagenomic Discovery of Biomass-Degrading Genes and Genomes from Cow Rumen" from the Rubin Lab with Matthias Hess and Alexander Sczyrba as the primary authors recently hit the science world, and gives us that answer.

News Flash: 30% Efficient Solar Power Silicon and Nitrite

As reported by Greentechmedia on September 28th, Phoenix-based Rosestreet Labs Energy (RSLE) has successfully tested a new prototype of solar panels able to convert between 25-30% of sunlight into electricity. For comparison, the current maximum for conventional silicon-based solar panel is produced by SunPower can convert around 22.5% of sunlight into electricity. So the increases by RSLE represent a quantum leap in efficiency increases. The efficiency gains come at a cost of increased production costs. RSLE aims to lower production cost to below $ 1.50 per Watt by 2014 which is a goal already achieved by some solar panel manufacturers today. RSLE claims to achieve this feat by combining silicon-based solar technology with other nitride-based alloys - in this case indium and gallium. The combination of silicon and indium and gallium nitride can make use of a broader spectrum of the visible light resulting in higher efficiencies. According to a 2005 press release , unlike conventi...

Of Diatoms, Titanium Dioxide and A Bio-based Way to Increase Solar Power Efficiencies

Prolog: It has been a while since last I discussed a scientific journal paper. The following post is based on a paper published in the American Chemical Society NANO Journal (Vol.2, No. 10, pp 2103-2112) with the title “Metabolic Insertion of Nanostructured TiO2 into the Patterned Biosilica of the Diatom Pinnulario sp. by a Two-Stage Bioreactor Culvtivation Process”. What have they done? The Rorrer lab is a nanotechnology/biotechnology engineering lab. They manipulate various microorganisms so that the microorganisms produce substances that are of use to human kind. Their latest series of publications has focused on diatoms which are single-celled algae that are able to make silica shells with very intricate patterns (see below). The Rorrer lab has a significant body of work inducing a particular diatom by the name of Pinnulario sp . to incorporate optoelectronic substances into its frustules (outer shells) that it normally would not. Optoelectronic substances can transform, tra...