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作 者:Ndiassé Fall Dialo Diop Sossé Ndiaye Kharouna Talla Haroun Ali Adannou Astou Sarr Aboubaker Chèdikh Beye Ndiassé Fall;Dialo Diop;Sossé Ndiaye;Kharouna Talla;Haroun Ali Adannou;Astou Sarr;Aboubaker Chèdikh Beye(Groupe de Laboratoire de Physique des Solides et Sciences des Matériaux, Faculté des Sciences et Techniques, Université Cheikh Anta Diop de Dakar, Dakar, Sénégal;Département Génie Chimique, Institut National Supérieur de Pétrole de Mao, Mao, Tchad)
机构地区:[1]Groupe de Laboratoire de Physique des Solides et Sciences des Matériaux, Faculté des Sciences et Techniques, Université Cheikh Anta Diop de Dakar, Dakar, Sénégal [2]Département Génie Chimique, Institut National Supérieur de Pétrole de Mao, Mao, Tchad
出 处:《Open Journal of Yangtze Oil and Gas》2023年第1期1-10,共10页长江油气(英文版)
摘 要:Atmospheric distillation is the first step in separating crude oil into by-products. It uses the different boiling temperatures of the components of crude oil to separate them. But crude oil contains a large quantity of acids and corrosive gases, including sulfur compounds, naphthenic acids, carbon dioxide, oxygen, etc. However, the temperature has an important influence on the aggressiveness of the corrosion factors in the atmospheric distillation column. This paper aims to investigate the role of temperature on corrosive products in the atmospheric distillation column. The results of the developed model show that the temperature increases the corrosion rate in the atmospheric distillation column but above a certain temperature value (about 600 K), it decreases. This illustrates the dual role played by temperature in the study of corrosion within the atmospheric distillation column.Atmospheric distillation is the first step in separating crude oil into by-products. It uses the different boiling temperatures of the components of crude oil to separate them. But crude oil contains a large quantity of acids and corrosive gases, including sulfur compounds, naphthenic acids, carbon dioxide, oxygen, etc. However, the temperature has an important influence on the aggressiveness of the corrosion factors in the atmospheric distillation column. This paper aims to investigate the role of temperature on corrosive products in the atmospheric distillation column. The results of the developed model show that the temperature increases the corrosion rate in the atmospheric distillation column but above a certain temperature value (about 600 K), it decreases. This illustrates the dual role played by temperature in the study of corrosion within the atmospheric distillation column.
关 键 词:Atmospheric Distillation CORROSION Crude Oil Materials TEMPERATURE
分 类 号:TG1[金属学及工艺—金属学]
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