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煤成油地球化学研究现状与展望 被引量:30
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作者 黄第藩 卢双舫 《地学前缘》 EI CAS CSCD 1999年第B05期183-194,共12页
重点评述与煤成油理论及勘探实践有密切关系、并在近几年取得重要进展的煤成烃演化模式、煤的生油能力及排油研究3方面的问题。指出:石油地质化学家已更深刻地认识到了煤成烃模式、阶段因地而异的复杂性;建立判别煤系源岩生油能力的... 重点评述与煤成油理论及勘探实践有密切关系、并在近几年取得重要进展的煤成烃演化模式、煤的生油能力及排油研究3方面的问题。指出:石油地质化学家已更深刻地认识到了煤成烃模式、阶段因地而异的复杂性;建立判别煤系源岩生油能力的标准是煤成油研究中最为重要的进展之一,其中以依据总生烃潜量(S1+S2)、氯仿沥青“A”和总烃含量与有机碳的相关关系建立的判别方案比较实用和有效;比较系统地评述了(与工业性煤成油气聚集有重要关系的)煤成烃排出问题的4种主要研究方法。进展、存在的问题和分歧。在此基础上,展望了对指导煤成油勘探有重要意义的煤系源岩的分布预测、倾油性的进一步判识及排出问题定量研究的发展趋势。 展开更多
关键词 煤成油 煤系源岩 成烃模式 排油机理 定量评论
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Design and optimization of exhaust gas aftertreatment system for a heavy-duty diesel engine 被引量:1
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作者 TAN Pi-qiang YAO Chao-jie +3 位作者 WANG De-yuan ZHU Lei HU Zhi-yuan LOU Di-ming 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第7期2127-2141,共15页
Diesel engines meeting the latest emission regulations must be equipped with exhaust gas aftertreatment system,including diesel oxidation catalysts(DOC),diesel particulate filters(DPF),and selective catalytic reductio... Diesel engines meeting the latest emission regulations must be equipped with exhaust gas aftertreatment system,including diesel oxidation catalysts(DOC),diesel particulate filters(DPF),and selective catalytic reduction(SCR).However,before the final integration of the aftertreatment system(DOC+DPF+SCR)and the diesel engine,a reasonable structural optimization of the catalytic converters and a large number of bench calibration tests must be completed,involving large costs and long development cycles.The design and optimization of the exhaust gas aftertreatment system for a heavy-duty diesel engine was proposed in this paper.Firstly,one-dimensional(1D)and threedimensional(3D)computational models of the exhaust gas aftertreatment system accounting for the structural parameters of the catalytic converters were established.Then based on the calibrated models,the effects of the converter’s structural parameters on their main performance indicators,including the conversion of various exhaust pollutants and the temperatures and pressure drops of the converters,were studied.Finally,the optimal design scheme was obtained.The temperature distribution of the solid substrates and pressure distributions of the catalytic converters were studied based on the 3D model.The method proposed in this paper has guiding significance for the optimization of diesel engine aftertreatment systems. 展开更多
关键词 diesel engine EMISSION exhaust gas aftertreatment computational model optimal design
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