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bioresource engineering : ウィキペディア英語版
bioresource engineering
Bioresource engineering is similar to biological engineering, except that it is based on biological and/or agricultural feedstocks. Bioresource engineering is more general and encompasses a wider range of technologies and various elements such as biomass, biological waste treatment, bioenergy, biotransformations and bioresource systems analysis, and technologies associated with Thermochemical conversion technologies such as combustion, pyrolysis, gasification, catalysis, etc.
Bioresource engineering also contains biochemical conversion technologies such as aerobic methods, anaerobic digestion, microbial growth processes, enzymatic methods, and composting. Products include fibre, fuels, feedstocks, fertilisers, building materials, polymers and other industrial products, and management products e.g. modelling, systems analysis, decisions, and support systems.
The impact of urbanization and increasing demand for food, water and land presents bioresource engineers with the task of bridging the gap between the biological world and traditional engineering. Agricultural and bioresource engineers attempt to develop efficient and environmentally sensitive methods of producing food, fiber, timber, bio-based products and renewable energy sources for an ever-increasing world population. Some of the research in bioresource engineering include machine vision, vehicle modification, wastewater irrigation, irrigation water management, stormwater management, inside natural environment for animals and plants, sensors, non-point source pollution and animal manure management.〔Goldberg, Lee. "(Bioresources Engineering )." Welcome to the Department of Bioresources Engineering. College of Agriculture, n.d. Web. 13 Oct. 2009.〕

== Accomplishments ==
A biosynthesis of silver nanoparticles (NPs) mediated by fungal proteins of Coriolus versicolor has been undertaken for the first time last year.〔Verma, Preeti, and Rashmi Sanghi. "(Bioresource Technology )." Research GATE.N.p., Aug. 2008. Web. 13 Oct. 2009.〕 Hydrogels have been used to separate As(V) from water.〔Verma, Preeti, and Rashmi Sanghi. "(Bioresource Technology )." Research GATE. N.p., Aug. 2008. Web. 13 Oct. 2009.〕 The importance of bioresource engineers are usually obscured, but it is they who are the scientists helping the environment. Most recently bioresource engineers were working on checking the thermal properties of compost from waste to use it as a renewable, low temperature heat source.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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