target-safaris.com/components/iphone/windows-mobile-75-spy.php The guiding theme is the utilization of renewable resources in the chemical industry. The book covers a variety of aspects and perspectives, ranging from production, technical, and chemical processes to logistics and transport, including the different actors and stakeholders. Furthermore, it discusses existing value chains, life cycle analyses, and the economic, social, and agricultural implications of the industrial use of renewable resources.
The book can be divided into three parts. First, Chapters 2 and 3 address the production of various products made from renewable resources and aspects of their current and future availability according to agricultural capacity. Second, Chapters 4e6 discuss determining factors for the use and logistics of industrial utilization chains for renewable raw materials. Examples of existing value chains and potentials for future progression are provided.
Finally, Chapters 7e9 present a more holistic perspective, examining socioeconomic aspects such as economic and social implications, market needs and opportunities, and environmental aspects. In addition, in chapter provides the reader with concluding remarks and an extensive list of references for further reading. The book offers comprehensive information about the utilization of renewable raw materials and covers a wide range of aspects from different perspectives. The result is coverage from a wide range of perspectives, emphasizing not only the technical issues but also considering the market place and socio-economic aspects.
He received his lecturing qualifi cation from the same university in , and has been Professor for Bioengineering at the Technical University of Kaiserslautern since Professor Ulber's main research interest is the use of renewable resources as feedstock for chemical and biotechnological processes. A professor at Stuttgart University, Germany, since , Thomas Hirth studied chemistry at Karlsruhe University with a focus on organic and technical chemistry, where he gained his doctorate in physical chemistry in Since then he has worked at the Fraunhofer Gesellschaft, initially as department head of environmental engineering at the Fraunhofer Institute for Chemical Technology, and since as head of the Fraunhofer Institute for Interfacial and Bioprocess Engineering.
The main emphasis of his scientifi c work is on the material use of renewable resources and the development of biorefi nery concepts for integrating chemical and biotechnological processes. An extraordinary professor at Leibniz-University Hanover, Germany, since the beginning of , Dieter Sell studied biology with a focus on biochemistry at Ruhruniversitat Bochum.
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The amount of land supporting the nation's forests has remained relatively constant since USDA, Narodoslawsky, M. The genetic information collected on these organisms will provide researchers with insights on the genes that control plant traits and cellular processes NRC, AED Lignin constitutes about 15 to 25 percent of the weight of lignocellulose. Fossil resource and greenhouse gas savings can be claimed when certified biomass is co-fed with fossil raw materials into a highly efficient interlinked production network.
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One of the main challenges facing the chemical industry is the transition to sustainable operations. Industries are taking initiatives to reduce resource intensities. Renewable Raw Materials: New Feedstocks for the Chemical Industry One of the main challenges facing the chemical industry is the.
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