Download PDF by Adam Brown (auth.), A. V. Bridgwater (eds.): Advances in Thermochemical Biomass Conversion
By Adam Brown (auth.), A. V. Bridgwater (eds.)
This ebook presents an account of the state of the art in thermochemical biomass conversion and arises from the 3rd convention in a sequence backed through the overseas strength Agency's Bioenergy contract. primary and utilized examine issues are integrated, reflecting fresh advances in addition to demonstration and advertisement innovation.
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Extra info for Advances in Thermochemical Biomass Conversion
Research is now focusing on the optimization and scale-up of these isolation/separation techniques. The identification of market opportunities for these chemicals is another major research priority. The various activities, results and future directions of the research underway in this area will be presented. Gasification technologies received considerable research support a decade ago, but because of the lack of interest from industry, research is continuing at a low level in areas of commercial potential that still require further technical advancement, such as gas cleanup for firing into gas turbines, and program activities will be discussed.
Amable, Quebec for the production of carbon black and fuel oil from used tires. The reactor also has potential for the production of fine chemicals and in the environmental area for the treatment of contaminated soils, waste sludges, and industrial waste such as automobile shredder residue. BBC Engineering has recently developed a system involving a simple continuous ablative transport reactor and are testing the process on shredded rubber tires. The system provides a continuous steady force for ablation, eliminates inert solids recycle yet maintains very high heat transfer rates.
Thus, methanol production would be enhanced, and loss of carbon dioxide (a gas known to contribute to the greenhouse effect) would be minimized. As a part of NREL's research for the Office of Energy Research (OER) Basic Energy Sciences (BES) program, a new class of catalysts for the electrochemical reduction of carbon dioxide has been developed. , at relatively low overvoltages and with high turnover rates). The primary focus of this program is the development of new classes of catalysts and the elucidation of structural factors important in obtaining catalysts with high turnover rates, high selectivity, and long lifetimes.
Advances in Thermochemical Biomass Conversion by Adam Brown (auth.), A. V. Bridgwater (eds.)