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Energy the next challenge of biotechnology _33624

 
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PostWysłany: Śro 22:48, 06 Kwi 2011    Temat postu: Energy the next challenge of biotechnology _33624

Energy: the next challenge of biotechnology


Years later appears. This is to prove the first evidence of this approach. Anaerobic biotransformation of the pioneering work of hydrocarbons MaxPlanck Association and the United States in the implementation of the Newcastle team Larter and Head f the present in Canada) in the field of research in the leading level, the energy industry in this area between the invention and application of dependence and common progress. . The corruption of the reservoir layer, through the analysis of cores extracted from the bacterial DNA. Confirms our view that the bacteria survive in the reservoir in the oil-water interface. Genetically similar to the point of view, genetic information can be processed. Speculated that gene function can be predicted. In this environment, poor living conditions of the various constraints posed by the town to decide the composition a very few rare combination of bacterial survival. The bacteria body is often easier than the complex group of bacteria. In 2003 when the first application of the technology found in an acidic mineral composition of biological membrane is a successful example. In the oil industry, more practical applications of biotechnology related to the production of enzymes, or biological catalyst for a particular purpose. Decomposition of biopolymers in the past used commercial enzymes has stimulated the application of good, used to find new and efficient biocatalyst rapid development of mining technology, indicating the rapid progress in this field. Particularly in the identification of new catalysts and optimization of the emergence of two new methods: a reliance on natural enzyme technology to accelerate the evolution of a test tube, which is based on repeated mutation and selection of effective methods: the other is based on completely different the natural environment in the activity of bacteria. Direct function of the choice. Recent examples show that in both cases F, with good biological activity of the catalyst can be separated. Similarly. We expect to make progress in these activities,[link widoczny dla zalogowanych], with low levels of biological methods of biodegradable waste from extracting catalyst. 2. Quest for green energy, clean energy is applied to the biological process, the real challenge is to develop new methods of energy from alternative or renewable energy sources to obtain energy. To control CO2 emissions. Corn bio-ethanol and biodiesel production process. Despite its feasibility. Can also be mass-produced, but still not the economy, and they compete with the crops, land use rights. From agricultural waste and low-oxygen compounds in the production of renewable bio-fuel out of the new methods are being developed, this provides us with corn and vegetable oil from the cheap energy to extract more energy and better methods. Although predicted to extract from a crop of biofuels can not meet transportation energy needs, but in fact this part of the energy is quite large. In the United States to produce bio-ethanol now accounts for 3% of its total energy is expected to increase its production next year, 50%, while some of the major countries of Europe intends to 2020, with bio-fuels in the transport sector 20% of National Fuel, which is Europe's bioenergy production and use of consistent vision. Genetic improvement and metabolic engineering of biological catalysts is the development of new methods to produce biofuels premise. Indeed. High-quality enzymes and can be extracted from the organisms metabolize hydrocarbons in the bacterial species were used for the production of bioethanol, and while some are in development. New varieties, easy-to-metabolism energy crops for biofuels is also very interested in the people studied. These present significant investment made by the energy industry attempts to fully explain the research in this area as an opportunity. Prepare for the future. Get the atmosphere in the carbon and light energy and transform them into bio-chemical process. There is an intrinsic and mandatory elegant imitation. Many marine organisms rely on solar energy and carbon dioxide to survive it has begun the study of marine microbial genomes. They are likely to be modified for the new, more efficient microbes for the production of energy for human use. Some studies have focused on improved varieties and improved energy absorption of light and carbon dioxide, the microbial conversion of bio-fuels, while other studies focused on the development of entirely new, has its identified uses of artificial cells. For this goal, CraigVenter JCV genome and the synthesis of tissue concentration of financial and material resources. Although the hardware has reached the advanced level, but may not have guaranteed success, the result may occur in the distant future, but our attempt is worthwhile. . 【
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