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Titlebook: Asphaltene Particles in Fossil Fuel Exploration, Recovery, Refining, and Production Processes; Mahendra K. Sharma,Teh Fu Yen Book 1994 Spr

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發(fā)表于 2025-3-21 16:40:27 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Asphaltene Particles in Fossil Fuel Exploration, Recovery, Refining, and Production Processes
影響因子2023Mahendra K. Sharma,Teh Fu Yen
視頻videohttp://file.papertrans.cn/164/163172/163172.mp4
圖書封面Titlebook: Asphaltene Particles in Fossil Fuel Exploration, Recovery, Refining, and Production Processes;  Mahendra K. Sharma,Teh Fu Yen Book 1994 Spr
影響因子THE CURRENT STATE OF THE ART of several aspects of asphaltene is presented in this volume. It documents the proceedings of the Internationl Symposium on Asphaltene Particles in Fossil Fuel Exploration, Recovery, Refining and Production Processes sponsored by the Fine particle Society (FPS). This meeting was held il1 Las vegas, Nevada, July 13 -17, 1992. The symposium upon which this volume is based was organized in four sessions emphasizing various basic and applied aspects of research on asphaltene technology. Major topics discussed involve surface phenomena of asphaltene, processed and unprocessed bitumen, asphaltene effect on natural and accelerated ageing of bitumens, asphaltene conversion, theoretical aspects of asphaltenes and interactions of asphaltene colloids in organic solvents. This edition includes eighteen selected papers presented at the symposium. These papers are divided in four broad categories: (1) Bitumen and Coal-Derived Asphaltenes, (2) Asphalt and Asphaltene conversion, (3) Surface and Colloidal Aspects of Asphaltenes, and (4) Thermodynamic and Molecular Aspects of Asphaltenes.
Pindex Book 1994
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Asphaltene Conversion During Coal-Bitumen Co-Processing,) was co-processed with a sub-bituminous coal (1.14% asphaltene) in a batch autoclave under hydrogen pressure at reaction temperatures varying from 400 to 440°C. Both thermal and catalytic co-processing experiments were conducted. The catalysts used were molten halide type and included ZnCl., MoCl.,
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Classification Of Asphalt Types By Asphaltene Aromaticity, separated into three types. This means that the component has to be separated from the parent asphalt first before the correlation. Result from this agrees with the traditional penetration index classification. In this paper, correlation between asphaltene aromaticity and temperature for different
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Sluge Formation During Heavy Oil Conversion, useful products. Large amounts of sludge form at high conversions in these refinery processes, and it fouls downstream units. It is generally believed that sludge forms because the asphaltenes flocculate during processing. The exact mechanism is not known, however. The asphaltenes may become less s
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Chemical Aspects Of Environmentally Processed Asphalt,lt composition have been discussed. These investigations indicate that the asphalted contaminated soil exhibits high stability and adequate performance as an end product. Asphalt with high contents of pyridinic, phenolic and ketone groups exhibits best chemical stability and performance. It is recom
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Surface Activity And Dynamics Of Asphaltenes,nts. Nitrobenzene and pyridine were found to be good candidates for this study. The results indicate that asphaltene molecules are surface active and thermodynamically reversible during the micellization and dissociation processes, similar to surfactant solutions. Due to the structural complexity, t
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Role Of Asphaltenes In Recovering Heavy Oil Through Micro-Bubble Generation,ental results in order to verify previous hypothesis on fluid flow in heavy oil reservoirs in Canada. It has been postulated that solution-gas drive in these reservoirs involves simultaneous flow of gas and oil. However, gas remains in tiny droplets under reservoir conditions. A new mathematical mod
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