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    • 4. 发明申请
    • Controlling Tar By Quenching Cracked Effluent From A Liquid Fed Gas Cracker
    • 通过从液体加入的气体破碎机中淬火破碎的流出物来控制焦油
    • US20090280042A1
    • 2009-11-12
    • US12505840
    • 2009-07-20
    • James N. McCoyBarrington M. HammondDavid J. DuhonMark A. RooneyRobert D. StrackJohn R. Messinger
    • James N. McCoyBarrington M. HammondDavid J. DuhonMark A. RooneyRobert D. StrackJohn R. Messinger
    • B01J8/04
    • C10G9/002
    • In a system for thermal cracking gaseous feedstocks, the system including a gas cracker for producing an effluent comprising olefins, at least one transfer line exchanger for the recovery of process energy from the effluent and a water quench tower system, a process for extending the range of system feedstocks to include liquid feedstocks that yield tar is provided. The process includes the steps of injecting a first quench fluid downstream of a primary transfer line exchanger to quench the process effluent comprising olefins, separating in a first separation vessel a cracked product and a first byproduct stream comprising tar from the quenched effluent, directing the separated cracked product to a water quench tower system and quenching the separated cracked product with a second quench fluid to produce a cracked gas effluent for recovery and a second byproduct stream comprising tar. An apparatus for carrying out such process is also provided.
    • 在用于热裂解气态原料的系统中,该系统包括用于生产包含烯烃的流出物的气体裂化器,用于从流出物回收过程能量的至少一个输送管线交换器和一个水骤冷塔系统, 的系统原料以包括产生焦油的液体原料。 该方法包括以下步骤:在一次转移管线交换器的下游注入第一骤冷流体以猝灭包含烯烃的工艺流出物,在第一分离容器中分离裂化产物和包含来自骤冷流出物的焦油的第一副产物流,引导分离的 将产品裂化成水淬火塔系统,并用第二骤冷流体骤冷分离的裂化产物以产生用于回收的裂化气体流出物和包含焦油的第二副产物流。 还提供了一种用于执行这种处理的装置。
    • 5. 发明授权
    • Controlling tar by quenching cracked effluent from a liquid fed gas cracker
    • 通过淬灭来自液体供给气体裂解器的裂解废液来控制焦油
    • US07582201B2
    • 2009-09-01
    • US11633975
    • 2006-12-05
    • James N. McCoyBarrington M. HammondDavid J. DuhonMark A. RooneyRobert D. StrackJohn R. Messinger
    • James N. McCoyBarrington M. HammondDavid J. DuhonMark A. RooneyRobert D. StrackJohn R. Messinger
    • C10C1/19C10G55/02F28D21/00
    • C10G9/002
    • In a system for thermal cracking gaseous feedstocks, the system including a gas cracker for producing an effluent comprising olefins, at least one transfer line exchanger for the recovery of process energy from the effluent and a water quench tower system, a process for extending the range of system feedstocks to include liquid feedstocks that yield tar is provided. The process includes the steps of injecting a first quench fluid downstream of a primary transfer line exchanger to quench the process effluent comprising olefins, separating in a first separation vessel a cracked product and a first byproduct stream comprising tar from the quenched effluent, directing the separated cracked product to a water quench tower system and quenching the separated cracked product with a second quench fluid to produce a cracked gas effluent for recovery and a second byproduct stream comprising tar. An apparatus for carrying out such process is also provided.
    • 在用于热裂解气态原料的系统中,该系统包括用于生产包含烯烃的流出物的气体裂化器,用于从流出物回收过程能量的至少一个输送管线交换器和一个水骤冷塔系统, 的系统原料以包括产生焦油的液体原料。 该方法包括以下步骤:在一次转移管线交换器的下游注入第一骤冷流体以猝灭包含烯烃的工艺流出物,在第一分离容器中分离裂化产物和包含来自骤冷流出物的焦油的第一副产物流, 将产品裂化成水淬火塔系统,并用第二骤冷流体骤冷分离的裂化产物以产生用于回收的裂化气体流出物和包含焦油的第二副产物流。 还提供了一种用于执行这种处理的装置。
    • 6. 发明申请
    • Controlling tar by quenching cracked effluent from a liquid fed gas cracker
    • 通过淬灭来自液体供给气体裂解器的裂解废液来控制焦油
    • US20080128323A1
    • 2008-06-05
    • US11633975
    • 2006-12-05
    • James N. McCoyBarrington M. HammondDavid J. DuhonMark A. RooneyRobert D. StrackJohn R. Messinger
    • James N. McCoyBarrington M. HammondDavid J. DuhonMark A. RooneyRobert D. StrackJohn R. Messinger
    • C10C1/19C10G55/02F28D21/00
    • C10G9/002
    • In a system for thermal cracking gaseous feedstocks, the system including a gas cracker for producing an effluent comprising olefins, at least one transfer line exchanger for the recovery of process energy from the effluent and a water quench tower system, a process for extending the range of system feedstocks to include liquid feedstocks that yield tar is provided. The process includes the steps of injecting a first quench fluid downstream of a primary transfer line exchanger to quench the process effluent comprising olefins, separating in a first separation vessel a cracked product and a first byproduct stream comprising tar from the quenched effluent, directing the separated cracked product to a water quench tower system and quenching the separated cracked product with a second quench fluid to produce a cracked gas effluent for recovery and a second byproduct stream comprising tar. An apparatus for carrying out such process is also provided.
    • 在用于热裂解气态原料的系统中,该系统包括用于生产包含烯烃的流出物的气体裂化器,用于从流出物回收过程能量的至少一个输送管线交换器和一个水骤冷塔系统, 的系统原料以包括产生焦油的液体原料。 该方法包括以下步骤:在一次转移管线交换器的下游注入第一骤冷流体以猝灭包含烯烃的工艺流出物,在第一分离容器中分离裂化产物和包含来自骤冷流出物的焦油的第一副产物流, 将产品裂化成水淬火塔系统,并用第二骤冷流体骤冷分离的裂化产物以产生用于回收的裂化气体流出物和包含焦油的第二副产物流。 还提供了一种用于执行这种处理的装置。
    • 7. 发明申请
    • Method And Apparatus For Cooling Pyrolysis Effluent
    • 冷却热解流出物的方法和装置
    • US20090085234A1
    • 2009-04-02
    • US11866175
    • 2007-10-02
    • David B. SpicerRobert D. StrackGeorge StephensJames M. Frye
    • David B. SpicerRobert D. StrackGeorge StephensJames M. Frye
    • B01D47/02B01F3/04
    • F28D7/106C10G9/00F28C3/06F28D7/0066F28D2021/0075
    • A process and apparatus are provided for cooling gaseous effluent from a hydrocarbon pyrolysis furnace, the cooling conduit apparatus comprising: (i) an inner wall for contacting the effluent, the inner wall defining a bore extending a length of the cooling conduit, the inner wall including a perimeter opening along the bore; (ii) an outer wall external to the inner wall and substantially coaxial to the inner wall; (iii) a substantially annular cavity external to the inner wall and including at least a portion of the outer wall, the annular cavity fluidly and remotely connected to the perimeter opening, the annular cavity externally surrounding a perimeter of the inner wall, the annular cavity including at least a portion of the outer wall; and (iv) a peripheral channel extending around a perimeter of the inner wall, the peripheral channel providing a channel flow path that fluidly connects the annular cavity with the remotely connected perimeter opening along the perimeter of the inner wall.
    • 提供了一种用于冷却来自烃热解炉的气态流出物的方法和装置,所述冷却导管装置包括:(i)用于接触流出物的内壁,所述内壁限定延伸所述冷却导管的一段长度的孔, 包括沿孔的周边开口; (ii)内壁外部并与内壁基本同轴的外壁; (iii)在所述内壁外部的基本上环形的空腔,并且包括所述外壁的至少一部分,所述环形腔流体地和远程地连接到所述周边开口,所述环形空腔在外部围绕所述内壁的周边,所述环形空腔 包括所述外壁的至少一部分; 以及(iv)围绕所述内壁的周边延伸的周边通道,所述周边通道提供通道流动路径,所述通道流动路径沿着所述内壁的周边将所述环形腔与所述远程连接的周边开口流体连接。
    • 8. 发明授权
    • Method and apparatus for cooling pyrolysis effluent
    • 冷却热解废水的方法和装置
    • US08177200B2
    • 2012-05-15
    • US13153893
    • 2011-06-06
    • David B. SpicerRobert D. StrackGeorge StephensJames M. Frye
    • David B. SpicerRobert D. StrackGeorge StephensJames M. Frye
    • B01F3/04
    • F28D7/106C10G9/00F28C3/06F28D7/0066F28D2021/0075
    • A process and apparatus are provided for cooling gaseous effluent from a hydrocarbon pyrolysis furnace, the cooling conduit apparatus including: (i) an inner wall for contacting the effluent, the inner wall defining a bore extending a length of the cooling conduit, the inner wall including a perimeter opening along the bore; (ii) an outer wall external to the inner wall and substantially coaxial to the inner wall; (iii) a substantially annular cavity external to the inner wall and including at least a portion of the outer wall, the annular cavity fluidly and remotely connected to the perimeter opening, the annular cavity externally surrounding a perimeter of the inner wall, the annular cavity including at least a portion of the outer wall; and (iv) a peripheral channel extending around a perimeter of the inner wall, the peripheral channel providing a channel flow path that fluidly connects the annular cavity with the remotely connected perimeter opening along the perimeter of the inner wall.
    • 提供了一种用于冷却来自烃热解炉的气态流出物的方法和装置,所述冷却导管装置包括:(i)用于接触流出物的内壁,所述内壁限定延伸所述冷却导管的一段长度的孔, 包括沿孔的周边开口; (ii)内壁外部并与内壁基本同轴的外壁; (iii)在所述内壁外部的基本上环形的空腔,并且包括所述外壁的至少一部分,所述环形腔流体地和远程地连接到所述周边开口,所述环形空腔在外部围绕所述内壁的周边,所述环形空腔 包括所述外壁的至少一部分; 以及(iv)围绕所述内壁的周边延伸的周边通道,所述周边通道提供通道流动路径,所述通道流动路径沿着所述内壁的周边将所述环形腔与所述远程连接的周边开口流体连接。
    • 9. 发明申请
    • Method And Apparatus For Cooling Pyrolysis Effluent
    • 冷却热解流出物的方法和装置
    • US20110233797A1
    • 2011-09-29
    • US13153893
    • 2011-06-06
    • David B. SpicerRobert D. StrackGeorge StephensJames M. Frye
    • David B. SpicerRobert D. StrackGeorge StephensJames M. Frye
    • F28F13/00
    • F28D7/106C10G9/00F28C3/06F28D7/0066F28D2021/0075
    • A process and apparatus are provided for cooling gaseous effluent from a hydrocarbon pyrolysis furnace, the cooling conduit apparatus comprising: (i) an inner wall for contacting the effluent, the inner wall defining a bore extending a length of the cooling conduit, the inner wall including a perimeter opening along the bore; (ii) an outer wall external to the inner wall and substantially coaxial to the inner wall; (iii) a substantially annular cavity external to the inner wall and including at least a portion of the outer wall, the annular cavity fluidly and remotely connected to the perimeter opening, the annular cavity externally surrounding a perimeter of the inner wall, the annular cavity including at least a portion of the outer wall; and (iv) a peripheral channel extending around a perimeter of the inner wall, the peripheral channel providing a channel flow path that fluidly connects the annular cavity with the remotely connected perimeter opening along the perimeter of the inner wall.
    • 提供了一种用于冷却来自烃热解炉的气态流出物的方法和装置,所述冷却导管装置包括:(i)用于接触流出物的内壁,所述内壁限定延伸所述冷却导管的一段长度的孔, 包括沿孔的周边开口; (ii)内壁外部并与内壁基本同轴的外壁; (iii)在所述内壁外部的基本上环形的空腔,并且包括所述外壁的至少一部分,所述环形腔流体地和远程地连接到所述周边开口,所述环形空腔在外部围绕所述内壁的周边,所述环形空腔 包括所述外壁的至少一部分; 和(iv)围绕所述内壁的周边延伸的周边通道,所述周边通道提供通道流动路径,所述通道流动路径沿着所述内壁的周边将所述环形空腔与所述远程连接的周边开口流体连接。
    • 10. 发明授权
    • Controlling tar by quenching cracked effluent from a liquid fed gas cracker
    • 通过淬灭来自液体供给气体裂解器的裂解废液来控制焦油
    • US08025774B2
    • 2011-09-27
    • US12505840
    • 2009-07-20
    • James N. McCoyBarrington M. HammondDavid J. DuhonMark A. RooneyRobert D. StrackJohn R. Messinger
    • James N. McCoyBarrington M. HammondDavid J. DuhonMark A. RooneyRobert D. StrackJohn R. Messinger
    • C10G55/02C10C1/18
    • C10G9/002
    • In a system for thermal cracking gaseous feedstocks, the system including a gas cracker for producing an effluent comprising olefins, at least one transfer line exchanger for the recovery of process energy from the effluent and a water quench tower system, a process for extending the range of system feedstocks to include liquid feedstocks that yield tar is provided. The process includes the steps of injecting a first quench fluid downstream of a primary transfer line exchanger to quench the process effluent comprising olefins, separating in a first separation vessel a cracked product and a first byproduct stream comprising tar from the quenched effluent, directing the separated cracked product to a water quench tower system and quenching the separated cracked product with a second quench fluid to produce a cracked gas effluent for recovery and a second byproduct stream comprising tar. An apparatus for carrying out such process is also provided.
    • 在用于热裂解气态原料的系统中,该系统包括用于生产包含烯烃的流出物的气体裂化器,用于从流出物回收过程能量的至少一个输送管线交换器和一个水骤冷塔系统, 的系统原料以包括产生焦油的液体原料。 该方法包括以下步骤:在一次转移管线交换器的下游注入第一骤冷流体以猝灭包含烯烃的工艺流出物,在第一分离容器中分离裂化产物和包含来自骤冷流出物的焦油的第一副产物流, 将产品裂化成水淬火塔系统,并用第二骤冷流体骤冷分离的裂化产物以产生用于回收的裂化气体流出物和包含焦油的第二副产物流。 还提供了一种用于执行这种处理的装置。