Ethylene is widely used in chemical industry, and its worldwide production(over 109 million tonnes in 2006) exceeds that of any other organic compound. Commercially ethylene is obtained by(1)thermal cracking of hydrocarbons such as ethane, propane, butane, naphtha, kerosene, gasoil, crude oil,etc,(2) auto thermic cracking (partial oxidation) of the above hydrocarbons,(3)recovery from refinery off-gas,(4) recovery from coke-oven gas, and(5) catalytic dehydration of ethyl alcohol or ethyl ether. The thermal cracking process is the most interesting process to produce ethylene commercially .At this project production of ethylene from naphtha is studied. Naphtha, an important feedstock for ethylene production, is a collective of liquid hydrocarbon intermediate oil refining products. It is a mixture of hydrocarbons in the boiling point range of 30-200ºC. it is fed to the naphtha cracking furnace. Then, the cracked gas is fed to gasoline fractionator, where it separates the quench oil as a bottom and the cracked gasoline and lighter components as the overhead products. Then, the overhead products are separated in different column.
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Ethylene is widely used in chemical industry, and its worldwide production(over 109 million tonnes in 2006) exceeds that of any other organic compound. Commercially ethylene is obtained by(1)thermal cracking of hydrocarbons such as ethane, propane, butane, naphtha, kerosene, gasoil, crude oil,etc,(2) auto thermic cracking (partial oxidation) of the above hydrocarbons,(3)recovery from refinery off-gas,(4) recovery from coke-oven gas, and(5) catalytic dehydration of ethyl alcohol or ethyl ether. The thermal cracking process is the most interesting process to produce ethylene commercially .At this project production of ethylene from naphtha is studied. Naphtha, an important feedstock for ethylene production, is a collective of liquid hydrocarbon intermediate oil refining products. It is a mixture of hydrocarbons in the boiling point range of 30-200ºC. it is fed to the naphtha cracking furnace. Then, the cracked gas is fed to gasoline fractionator, where it separates the quench oil as a bottom and the cracked gasoline and lighter components as the overhead products. Then, the overhead products are separated in different column.
Aref Shahi: M.Sc in Chemical Engineering, Abadan Petroleum University of Technology,2014.B.Sc in Chemical Engineering,Babol Noshirvani University of Technology,2012.Three years, industry oriented Research with focus on pyrolysis of polymers, Heavy Vacuum Gas Oil, environmental friendly processes, CFD modeling, process simulation and optimization.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Taschenbuch. Etat : Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Ethylene is widely used in chemical industry, and its worldwide production(over 109 million tonnes in 2006) exceeds that of any other organic compound. Commercially ethylene is obtained by(1)thermal cracking of hydrocarbons such as ethane, propane, butane, naphtha, kerosene, gasoil, crude oil,etc,(2) auto thermic cracking (partial oxidation) of the above hydrocarbons,(3)recovery from refinery off-gas,(4) recovery from coke-oven gas, and(5) catalytic dehydration of ethyl alcohol or ethyl ether. The thermal cracking process is the most interesting process to produce ethylene commercially .At this project production of ethylene from naphtha is studied. Naphtha, an important feedstock for ethylene production, is a collective of liquid hydrocarbon intermediate oil refining products. It is a mixture of hydrocarbons in the boiling point range of 30-200ºC. it is fed to the naphtha cracking furnace. Then, the cracked gas is fed to gasoline fractionator, where it separates the quench oil as a bottom and the cracked gasoline and lighter components as the overhead products. Then, the overhead products are separated in different column. N° de réf. du vendeur 9783659791437
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Taschenbuch. Etat : Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Ethylene is widely used in chemical industry, and its worldwide production(over 109 million tonnes in 2006) exceeds that of any other organic compound. Commercially ethylene is obtained by(1)thermal cracking of hydrocarbons such as ethane, propane, butane, naphtha, kerosene, gasoil, crude oil,etc,(2) auto thermic cracking (partial oxidation) of the above hydrocarbons,(3)recovery from refinery off-gas,(4) recovery from coke-oven gas, and(5) catalytic dehydration of ethyl alcohol or ethyl ether. The thermal cracking process is the most interesting process to produce ethylene commercially .At this project production of ethylene from naphtha is studied. Naphtha, an important feedstock for ethylene production, is a collective of liquid hydrocarbon intermediate oil refining products. It is a mixture of hydrocarbons in the boiling point range of 30-200ºC. it is fed to the naphtha cracking furnace. Then, the cracked gas is fed to gasoline fractionator, where it separates the quench oil as a bottom and the cracked gasoline and lighter components as the overhead products. Then, the overhead products are separated in different column. 184 pp. Englisch. N° de réf. du vendeur 9783659791437
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Taschenbuch. Etat : Neu. Neuware -Ethylene is widely used in chemical industry, and its worldwide production(over 109 million tonnes in 2006) exceeds that of any other organic compound. Commercially ethylene is obtained by(1)thermal cracking of hydrocarbons such as ethane, propane, butane, naphtha, kerosene, gasoil, crude oil,etc,(2) auto thermic cracking (partial oxidation) of the above hydrocarbons,(3)recovery from refinery off-gas,(4) recovery from coke-oven gas, and(5) catalytic dehydration of ethyl alcohol or ethyl ether. The thermal cracking process is the most interesting process to produce ethylene commercially .At this project production of ethylene from naphtha is studied. Naphtha, an important feedstock for ethylene production, is a collective of liquid hydrocarbon intermediate oil refining products. It is a mixture of hydrocarbons in the boiling point range of 30-200ºC. it is fed to the naphtha cracking furnace. Then, the cracked gas is fed to gasoline fractionator, where it separates the quench oil as a bottom and the cracked gasoline and lighter components as the overhead products. Then, the overhead products are separated in different column.Books on Demand GmbH, Überseering 33, 22297 Hamburg 184 pp. Englisch. N° de réf. du vendeur 9783659791437
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