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    • 3. 发明申请
    • Systems and Methods for Producing a Crude Product
    • 生产原油产品的系统和方法
    • US20090008290A1
    • 2009-01-08
    • US12233171
    • 2008-09-18
    • Goutam BiswasDarush Farshid
    • Goutam BiswasDarush Farshid
    • C10G45/22
    • C10G67/049
    • Systems and methods for hydroprocessing a heavy oil feedstock, the system employs a plurality of contacting zones and separation zones and an interstage solvent deasphalting unit. The contacting zones operate under hydrocracking conditions, employing a slurry catalyst for upgrading the heavy oil feedstock, forming upgraded products of lower boiling hydrocarbons. In the separation zones which operates at a temperature within 20° F. and a pressure within 10 psi of the pressure in the contacting zones, upgraded products are removed overhead and optionally, further treated in an in-line hydrotreater. At least a portion of the non-volatile fractions recovered from at least one of the separation zones is sent to the interstage solvent deasphalting unit, for separating unconverted heavy oil feedstock into deasphalted oil and asphaltenes. The deasphalted oil stream is sent to one of the contacting zones for further upgrade.
    • 用于加氢处理重油原料的系统和方法,该系统采用多个接触区和分离区以及级间溶剂脱沥青单元。 接触区在加氢裂化条件下运行,使用用于升级重油原料的浆料催化剂,形成较低沸点烃的升级产物。 在温度在20°F范围内工作的分离区和接触区压力在10 psi以内的压力,升级后的产物在顶部除去,任选地在直列式加氢处理机中进一步处理。 从至少一个分离区回收的至少一部分非挥发性馏分被送入级间溶剂脱沥青装置,用于将未转化的重油原料分离成脱沥青油和沥青质。 脱沥青油流被送到其中一个接触区域进一步升级。
    • 4. 发明授权
    • Systems and methods for producing a crude product
    • 用于生产粗产品的系统和方法
    • US08372266B2
    • 2013-02-12
    • US12233171
    • 2008-09-18
    • Goutam BiswasDarush Farshid
    • Goutam BiswasDarush Farshid
    • C10G67/04C10G65/10
    • C10G67/049
    • Systems and methods for hydroprocessing a heavy oil feedstock, the system employs a plurality of contacting zones and separation zones and an interstage solvent deasphalting unit. The contacting zones operate under hydrocracking conditions, employing a slurry catalyst for upgrading the heavy oil feedstock, forming upgraded products of lower boiling hydrocarbons. In the separation zones which operates at a temperature within 20° F. and a pressure within 10 psi of the pressure in the contacting zones, upgraded products are removed overhead and optionally, further treated in an in-line hydrotreater. At least a portion of the non-volatile fractions recovered from at least one of the separation zones is sent to the interstage solvent deasphalting unit, for separating unconverted heavy oil feedstock into deasphalted oil and asphaltenes. The deasphalted oil stream is sent to one of the contacting zones for further upgrade.
    • 用于加氢处理重油原料的系统和方法,该系统采用多个接触区和分离区以及级间溶剂脱沥青单元。 接触区在加氢裂化条件下运行,使用用于升级重油原料的浆料催化剂,形成较低沸点烃的升级产物。 在温度在20°F范围内工作的分离区和接触区压力在10 psi以内的压力,升级后的产物在顶部除去,任选地在直列式加氢处理机中进一步处理。 从至少一个分离区回收的至少一部分非挥发性馏分被送入级间溶剂脱沥青装置,用于将未转化的重油原料分离成脱沥青油和沥青质。 脱沥青油流被送到其中一个接触区域进一步升级。
    • 5. 发明申请
    • Process For Upgrading Heavy Oil Using A Reactor WIth A Novel Reactor Separation System.
    • 使用反应堆升级重油的方法,新型反应器分离系统。
    • US20090057194A1
    • 2009-03-05
    • US12212231
    • 2008-09-17
    • Darush FarshidJames MurphyBruce Reynolds
    • Darush FarshidJames MurphyBruce Reynolds
    • C10G45/00
    • C10G65/02C10G49/12C10G2300/1022C10G2300/1033C10G2300/107C10G2300/1074C10G2300/1077C10G2300/1088C10G2300/4081C10G2300/703
    • Applicants have developed a new residuum full hydroconversion slurry reactor system that allows the catalyst, unconverted oil, hydrogen, and converted oil to circulate in a continuous mixture throughout an entire reactor with no confinement of the mixture. The mixture is separated internally, within one of more of the reactors, to separate only the converted oil and hydrogen into a vapor product while permitting the unconverted oil and the slurry catalyst to continue on into the next sequential reactor as a liquid product. A portion of the unconverted oil is then converted to lower boiling point hydrocarbons in the next reactor, once again creating a mixture of unconverted oil, hydrogen, converted oil, and slurry catalyst. Further hydroprocessing may occur in additional reactors, fully converting the oil. The oil may alternately be partially converted, leaving a concentrated catalyst in unconverted oil which can be recycled directly to the first reactor.
    • 申请人开发了一种新的残渣全加氢转化淤浆反应器系统,其允许催化剂,未转化的油,氢和转化的油在连续混合物中在整个反应器中循环,而不限制混合物。 将混合物在更多的反应器之一内部分离,仅将转化的油和氢分离成蒸气产物,同时允许未转化的油和浆料催化剂作为液体产物继续进入下一个连续的反应器。 然后将未转化的油的一部分转化为下一个反应器中的低沸点烃,再次产生未转化的油,氢,转化的油和浆料催化剂的混合物。 进一步的加氢处理可能发生在额外的反应器中,完全转化油。 油可以替代地部分转化,留下浓缩的催化剂在未转化的油中,其可以直接再循环到第一反应器。
    • 6. 发明申请
    • Process for upgrading heavy oil using a highly active slurry catalyst composition
    • 使用高活性浆料催化剂组合物对重油进行改质的方法
    • US20070138057A1
    • 2007-06-21
    • US11305377
    • 2005-12-16
    • Darush FarshidBruce Reynolds
    • Darush FarshidBruce Reynolds
    • C10G45/00
    • C10G49/12C10G65/02
    • The instant invention is directed to a new residuum full hydroconversion slurry reactor system that allows the catalyst, unconverted oil and converted oil to circulate in a continuous mixture throughout an entire reactor with no confinement of the mixture. The mixture is partially separated in between the reactors to remove only the products and hydrogen, while permitting the unconverted oil and the slurry catalyst to continue on into the next sequential reactor where a portion of the unconverted oil is converted to lower boiling point hydrocarbons, once again creating a mixture of unconverted oil, converted oil, and slurry catalyst. Further hydroprocessing may occur in additional reactors, fully converting the oil. The oil may alternately be partially converted, leaving a highly concentrated catalyst in unconverted oil which can be recycled directly to the first reactor.
    • 本发明涉及一种新的残渣全加氢转化淤浆反应器系统,其允许催化剂,未转化的油和转化油在连续混合物中在整个反应器中循环,而不限制混合物。 混合物在反应器之间部分分离以除去产物和氢气,同时允许未转化的油和浆料催化剂继续进入下一个顺序的反应器,其中一部分未转化的油转化为低沸点烃,一次 再次产生未转化的油,转化油和浆料催化剂的混合物。 进一步的加氢处理可能发生在额外的反应器中,完全转化油。 油可以部分地转化,留下高度浓缩的催化剂在未转化的油中,其可以直接再循环到第一反应器。
    • 7. 发明申请
    • Process for upgrading heavy oil using a reactor with a novel reactor separation system
    • 使用具有新型反应器分离系统的反应器升级重油的方法
    • US20070138056A1
    • 2007-06-21
    • US11303427
    • 2005-12-16
    • Darush FarshidJames MurphyBruce Reynolds
    • Darush FarshidJames MurphyBruce Reynolds
    • C10G45/00C10G65/02C10G69/02
    • C10G65/02C10G49/12C10G2300/1022C10G2300/1033C10G2300/107C10G2300/1074C10G2300/1077C10G2300/1088C10G2300/4081C10G2300/703
    • Applicants have developed a new residuum full hydroconversion slurry reactor system that allows the catalyst, unconverted oil, hydrogen, and converted oil to circulate in a continuous mixture throughout an entire reactor with no confinement of the mixture. The mixture is separated internally, within one of more of the reactors, to separate only the converted oil and hydrogen into a vapor product while permitting the unconverted oil and the slurry catalyst to continue on into the next sequential reactor as a liquid product. A portion of the unconverted oil is then converted to lower boiling point hydrocarbons in the next reactor, once again creating a mixture of unconverted oil, hydrogen, converted oil, and slurry catalyst. Further hydroprocessing may occur in additional reactors, fully converting the oil. The oil may alternately be partially converted, leaving a concentrated catalyst in unconverted oil which can be recycled directly to the first reactor.
    • 申请人开发了一种新的残渣全加氢转化淤浆反应器系统,其允许催化剂,未转化的油,氢和转化的油在连续混合物中在整个反应器中循环,而不限制混合物。 将混合物在更多的反应器之一内部分离,仅将转化的油和氢分离成蒸气产物,同时允许未转化的油和浆料催化剂作为液体产物继续进入下一个连续的反应器。 然后将未转化的油的一部分转化为下一个反应器中的低沸点烃,再次产生未转化的油,氢,转化的油和浆料催化剂的混合物。 进一步的加氢处理可能发生在额外的反应器中,完全转化油。 油可以替代地部分转化,留下浓缩的催化剂在未转化的油中,其可以直接再循环到第一反应器。
    • 8. 发明授权
    • Integrated heavy oil upgrading process and in-line hydrofinishing process
    • 综合重油改造工艺和在线加氢精加工工艺
    • US07708877B2
    • 2010-05-04
    • US11410826
    • 2006-04-24
    • Darush FarshidBruce Reynolds
    • Darush FarshidBruce Reynolds
    • C10G45/04
    • C10G65/02C10G47/14C10G47/26C10G65/04C10G65/10C10G65/12C10G2300/1022C10G2300/107C10G2300/1074C10G2300/1077C10G2300/202C10G2300/302C10G2300/4018C10G2300/4081
    • A new residuum full hydroconversion slurry reactor system has been developed that allows the catalyst, unconverted oil and converted oil to circulate in a continuous mixture throughout an entire reactor with no confinement of the mixture. The mixture is partially separated in between the reactors to remove only the converted oil while permitting the unconverted oil and the slurry catalyst to continue on into the next sequential reactor where a portion of the unconverted oil is converted to lower boiling point hydrocarbons, once again creating a mixture of unconverted oil, converted oil, and slurry catalyst. Further hydroprocessing may occur in additional reactors, fully converting the oil. The oil may alternately be partially converted, leaving a highly concentrated catalyst in unconverted oil which can be recycled directly to the first reactor. Fully converted oil is subsequently hydrofinished for the nearly complete removal of hetoroatoms such as sulfur and nitrogen.
    • 已经开发了一种新的残渣全加氢转化淤浆反应器系统,其允许催化剂,未转化的油和转化的油在连续混合物中在整个反应器中循环,而不限制混合物。 混合物在反应器之间部分分离以除去仅转化的油,同时允许未转化的油和浆料催化剂继续进入下一个顺序的反应器,其中一部分未转化的油转化为低沸点烃,再次产生 未转化油,转化油和浆料催化剂的混合物。 进一步的加氢处理可能发生在额外的反应器中,完全转化油。 油可以部分地转化,留下高度浓缩的催化剂在未转化的油中,其可以直接再循环到第一反应器。 完全转化的油随后被加氢处理,以便几乎完全除去诸如硫和氮的氢原子。
    • 10. 发明申请
    • Process for upgrading heavy oil using a highly active slurry catalyst composition
    • 使用高活性浆料催化剂组合物对重油进行改质的方法
    • US20070138055A1
    • 2007-06-21
    • US11303426
    • 2005-12-16
    • Darush FarshidBruce Reynolds
    • Darush FarshidBruce Reynolds
    • C10G65/02C10G45/00C10G69/02
    • C10G65/00C10G65/10C10G65/18C10G2300/1022C10G2300/1033C10G2300/107C10G2300/1074C10G2300/1077C10G2300/1088C10G2300/4081C10G2300/703
    • Applicants have developed a new residuum full hydroconversion slurry reactor system that allows the catalyst, unconverted oil and converted oil to circulate in a continuous mixture throughout an entire reactor with no confinement of the mixture. The mixture is partially separated in between the reactors to remove only the products and hydrogen gas, while permitting the unconverted oil and the slurry catalyst to continue on into the next sequential reactor. A portion of the unconverted oil is then converted to lower boiling point hydrocarbons, once again creating a mixture of unconverted oil, products, hydrogen, and slurry catalyst. Further hydroprocessing may occur in additional reactors, fully converting the oil. Additional oil may be added at the interstage feed inlet, possibly in combination with slurry. The oil may alternately be partially converted, leaving a highly concentrated catalyst in unconverted oil which can be recycled directly to the first reactor.
    • 申请人开发了一种新的残渣全加氢转化淤浆反应器系统,其允许催化剂,未转化的油和转化的油在连续混合物中在整个反应器中循环,而不限制混合物。 混合物在反应器之间部分分离以除去产物和氢气,同时允许未转化的油和浆料催化剂继续进入下一个连续的反应器。 然后将未转化的油的一部分转化成低沸点烃,再次产生未转化的油,产物,氢气和浆料催化剂的混合物。 进一步的加氢处理可能发生在额外的反应器中,完全转化油。 可以在级间进料口加入额外的油,可能与浆料混合。 油可以部分地转化,留下高度浓缩的催化剂在未转化的油中,其可以直接再循环到第一反应器。