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Titlebook: Clean Utilization of Coal; Coal Structure and R Yuda Yürüm Book 1992 Springer Science+Business Media Dordrecht 1992 Ion.combustion.environm

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书目名称Clean Utilization of Coal
副标题Coal Structure and R
编辑Yuda Yürüm
视频video
丛书名称Nato Science Series C:
图书封面Titlebook: Clean Utilization of Coal; Coal Structure and R Yuda Yürüm Book 1992 Springer Science+Business Media Dordrecht 1992 Ion.combustion.environm
描述This volume contains the lectures presented at the Advanced Study Institute on "Chemistry and Chemical Engineering of Catalytic Solid Fuel Conversion for the Production of aean Synthetic Fuels" which was held at Ak~;ay, Edremit, Tiirkiye, between July 21 and August 3, 1991. The book includes 23 chapters originally written for the meeting by distinguished scientists an technologists in the field. l would like to acknowledge the contribution of each of the authors in the book. Their efforts have shed light on our understanding in coal science research and better utilization of coal. Three main subjects: structure and reactivity of coal; cleaning of coal and its products, and factors affecting environmental balance of energy usage and solutions for future, were discussed in the Institute and these are presented under six groups in the book. I hope that of great use to research workers from academic and industrial background. the book will be Many people contributed to the success of the Institute on which this volume was based. I take this occasion to thank my colleagues who lectured in the Institute, both for their efforts during the two weeks and their expertly prepared lecture note
出版日期Book 1992
关键词Ion; combustion; environment; structure
版次1
doihttps://doi.org/10.1007/978-94-017-1045-9
isbn_softcover978-90-481-4158-6
isbn_ebook978-94-017-1045-9Series ISSN 1389-2185
issn_series 1389-2185
copyrightSpringer Science+Business Media Dordrecht 1992
The information of publication is updating

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Coal Liquefaction Kineticskinetic studies and the reaction orders and activation energies obtained. It is interesting to note that the activation energies have been found to be similar for all these processes and fall in the range of 30–50 Kcal/mole regardless of the reaction order assumed by the researchers.
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Catalysis in Direct Coal Liquefactionct alone could lead to greatly increased possibilities for a coal liquefaction industry to compete with decreasing and eventually more expensive liquids from petroleum. Since coal liquefaction was first commercialized in Germany, many improvements have been made in the use of catalysts. Although not
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Livio Trusolino,Simonetta M. Leto. Coals are fascinating materials. They are worth studying not only because such studies may have practical impact, but also because they provide a formidable challenge to both the experimental tools and the theoretical insight of chemists..Other models of coal structure differing from this one in f
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Stephanie Rossouw,Talita Greylingct alone could lead to greatly increased possibilities for a coal liquefaction industry to compete with decreasing and eventually more expensive liquids from petroleum. Since coal liquefaction was first commercialized in Germany, many improvements have been made in the use of catalysts. Although not
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Upgrading of Coal-Derived Liquidsis unique to liquids from coal. Successful upgrading processes will have to achieve significant reductions in the content of these aromatic components. Methods will also have to be found to reduce the buildup of coke on the catalyst surface, which has been the main reason for decreasing catalyst-bed activity during upgrading processing.
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Desulfurization of Coal Gas at High Temperatures with Regenerable Sorbentsmperature applications have been reviewed in this paper. Also, the results of sulfidation and regeneration experiments conducted using a simulated coal gas mixture at temperatures 1250°–1600°F (675° – 870°C) are reported for a novel sorbent having different loadings of copper and manganese oxides on a high silica-zeolite.
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