Patents Assigned to Process Technologies, Inc.
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Patent number: 11266923Abstract: A fluid distribution device includes a riser having a first end and a second end. A cap operatively connected to the second end of the riser. The cap includes an inner surface and an outer surface with a plurality of holes defined between the inner and outer surface. The device includes at least one distribution arm extending radially outward from the cap. The at least one distribution arm has an interior surface and an exterior surface. The at least one distribution arm includes a plurality of holes between the interior surface and the exterior surface. A processing assembly includes a vessel defining an interior space and the fluid distribution device including a riser mounted in the interior space of the vessel having a first end mounted to the vessel and a second end opposite from the first end.Type: GrantFiled: April 24, 2019Date of Patent: March 8, 2022Assignee: Technip Process Technology, Inc.Inventors: Raj Kanwar Singh, Paul Marchant, Dilip Dharia
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Patent number: 11235301Abstract: A downflow reactor, e.g. a downer reactor or system, includes an outer wall defining an interior reactor space. An elongated plug is within the outer wall having a first end and a second end, defining a longitudinal axis between the first and second ends. A distribution baffle positioned at a vertical position between the first end and the second end of the elongated plug configured and adapted to direct hot down flowing catalyst towards a feedstock spray.Type: GrantFiled: July 16, 2020Date of Patent: February 1, 2022Assignee: Technip Process Technology, Inc.Inventors: Eusebius Anku Gbordzoe, Alexander Maller
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Publication number: 20220018476Abstract: The present disclosure provides a pipe 10 with center influent branch 20 and opposing side influent branches 30. Each of the influent branches 20, 30 also have a concentric reducer 40 at their terminus.Type: ApplicationFiled: July 15, 2021Publication date: January 20, 2022Applicant: Fluidtrol Processing Technologies, Inc.Inventor: David Michael Hamilton
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Patent number: 10913044Abstract: A device for the intimate mixing of solid particles and a gaseous medium within a gas-solid fluidized bed, comprising a plurality corrugated and/or ribbed planar stanchions arranged in alternating intersecting planes that provide a plurality of open spaces between or adjacent the alternating intersecting planar stanchions. The element has a three-dimensional lattice configuration and the corrugated and/or ribbed planar stanchions are formed from metal having peaks and valleys or ribs, such that the peaks and valleys or ribs are angled at less than 90 degrees from the fall-line of the planar stanchion when assembled into the element. The angled peaks and valleys or ribs form channels that enhance lateral movement of catalyst particles into the spaces between the stanchions to provide improved vapor/solids mixing and contact.Type: GrantFiled: July 14, 2017Date of Patent: February 9, 2021Assignee: Technip Process Technology, Inc.Inventors: Alexander Maller, Eusebius Anku Gbordzoe
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Patent number: 10879102Abstract: A system for the flux free processing of a plurality of solder balls on a wafer, comprising: an articulable vacuum support chuck for maintaining support of a plurality of solder balls on a wafer being processed. An articulable flux-free binder applicator arranged in binder depositing relationship with the wafer within the treatment chamber. An articulable fluid dispenser is arranged in a binder-applied minimization-treatment with respect to the flux free binder applied to the wafer within the treatment chamber.Type: GrantFiled: August 1, 2018Date of Patent: December 29, 2020Assignee: Boston Process Technologies, IncInventor: Jian Zhang
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Patent number: 10782075Abstract: An external catalyst cooler arrangement for an FCC regenerator improves the operation of the catalyst cooler by the use of a heat removal unit design utilizing a central supply tube and central heat removal conduit surrounded by external heat removal tubes connected directly to the central heat removal conduit.Type: GrantFiled: July 6, 2017Date of Patent: September 22, 2020Assignee: Technip Process Technology, Inc.Inventors: Millard Alamath Carter, Andrew Kennedy Camille, Kenneth Fewel, Remus Ciobotaru, Bhumil Diwanji
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Patent number: 10731086Abstract: The present disclosure is directed to an apparatus and a compact riser separation system for separating a gaseous mixture from a stream of particles entering from a central riser reactor used for cracking a hydrocarbon feed with the stream of particles. The apparatus provides improved gas solid separation efficiency and maximize containment of the hydrocarbon and minimize residence time in the separation system and thereby minimizing undesired post riser cracking reactions.Type: GrantFiled: January 27, 2017Date of Patent: August 4, 2020Assignee: Technip Process Technology, Inc.Inventors: Paul Marchant, Raj Kanwar Singh
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Publication number: 20200129944Abstract: A withdrawal system for withdrawing particulate matter from a high-temperature unit of a high-temperature industrial process is disclosed. The withdrawal system comprises a material storage silo that comprises a vent line containing a first vent valve, one or more temperature sensors to measure temperature of the particulate matter in the material transfer line, and a controller that receives output measurements from the one or more temperature sensors to monitor and control flow of the particulate matter. The system does not contain a receiving vessel located in the material transfer line between the high-temperature unit and the material storage silo.Type: ApplicationFiled: July 6, 2018Publication date: April 30, 2020Applicant: Johnson Matthey Process Technologies, Inc.Inventors: Martin EVANS, Rick FISHER
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Patent number: 10607866Abstract: A vertically oriented treatment chamber for the processing of a flux-free solder ball (or plated solder ball) loaded wafer chip. A treatment chamber comprises a first or upper heater at an upper end of the treatment chamber and a second or lower heater at a lower end of the treatment chamber. The treatment chamber includes a centrally disposed, preloaded flux free solder ball loaded wafer chip support ring movable upwardly and downwardly within the treatment chamber in response to temperature sensed monitoring of a wafer chip supported on the wafer chip support ring.Type: GrantFiled: August 1, 2018Date of Patent: March 31, 2020Assignee: Boston Process Technologies, IncInventor: Jian Zhang
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Publication number: 20200071245Abstract: The present disclosure relates to processes for improved yields of propylene via metathesis, primarily from the conversion of C4 and C5+ olefins obtained from steam or fluid catalytic cracking of hydrocarbons. In particular, the present disclosure relates to processes for preparing propylene by improved isomerization of 1-butene to 2-butene relative to the metathesis reaction.Type: ApplicationFiled: February 13, 2018Publication date: March 5, 2020Applicant: Technip Process Technology, Inc.Inventors: Steven Evitt, Cornelis F. Van Egmond, Veronique Reich, Yvon SIMON, Bruno DESTOUR
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Publication number: 20190338197Abstract: A method and system for increasing olefin production and quality from a hydrocarbon feed comprising a fully integrated multi-stage catalyst regeneration zones with multi-stage reaction zones in series and/or parallel. The multi-stage regeneration with at least one partial and one full burn zone provides an independent control to achieve the lowest possible regenerated catalyst temperature, resulting in highest possible catalyst to oil ratio required to maximize olefins yields through increased catalytic cracking in a multi stage FCC riser/risers.Type: ApplicationFiled: May 2, 2018Publication date: November 7, 2019Applicant: Technip Process Technology , Inc.Inventors: Dilip Dharia, Raj Kanwar Singh, Harvey McQuiston
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Publication number: 20190015808Abstract: A device for the intimate mixing of solid particles and a gaseous medium within a gas-solid fluidized bed, comprising a plurality corrugated and/or ribbed planar stanchions arranged in alternating intersecting planes that provide a plurality of open spaces between or adjacent the alternating intersecting planar stanchions. The element has a three-dimensional lattice configuration and the corrugated and/or ribbed planar stanchions are formed from metal having peaks and valleys or ribs, such that the peaks and valleys or ribs are angled at less than 90 degrees from the fall-line of the planar stanchion when assembled into the element. The angled peaks and valleys or ribs form channels that enhance lateral movement of catalyst particles into the spaces between the stanchions to provide improved vapor/solids mixing and contact.Type: ApplicationFiled: July 14, 2017Publication date: January 17, 2019Applicant: Technip Process Technology, Inc.Inventors: Alexander Maller, Eusebius Anku Gbordzoe
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Publication number: 20190011195Abstract: An external catalyst cooler arrangement for an FCC regenerator improves the operation of the catalyst cooler by the use of a heat removal unit design utilizing a central supply tube and central heat removal conduit surrounded by external heat removal tubes connected directly to the central heat removal conduit.Type: ApplicationFiled: July 6, 2017Publication date: January 10, 2019Applicant: Technip Process Technology, Inc.Inventors: Millard Alamath Carter, Andrew Kennedy Camille, Kenneth Fewel, Remus Ciobotaru, Bhumil Diwanji
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Patent number: 10150054Abstract: A packing system is disclosed that has a series of flat blades arranged to promote mixing in a fluidized bed such as one in a FCC stripper, with an upward flowing gas stream and a downward flowing solid particle stream. The blade arrangement provides for different gas solids flow directions within a single layer of packing system to enhance cross mixing of gas and catalyst in all directions and reduces the potential for gas and catalyst bypassing. The blade arrangement has splits which minimizes the tendency for phase separation around the blade. The arrangement and sizing of the blades is intended to promote intimate contact between the two phases to ensure efficient mass transfer of material trapped inside the particles to the gas phase. The arrangement of the blades prevents excessive bubble growth and channeling, both of which reduce surface area for mass transfer.Type: GrantFiled: November 30, 2017Date of Patent: December 11, 2018Assignee: Technip Process Technology, Inc.Inventors: Paul Marchant, Raj Kanwar Singh
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Publication number: 20180216012Abstract: The present disclosure is directed to an apparatus and a compact riser separation system for separating a gaseous mixture from a stream of particles entering from a central riser reactor used for cracking a hydrocarbon feed with the stream of particles. The apparatus provides improved gas solid separation efficiency and maximize containment of the hydrocarbon and minimize residence time in the separation system and thereby minimizing undesired post riser cracking reactions.Type: ApplicationFiled: January 27, 2017Publication date: August 2, 2018Applicant: Technip Process Technology, Inc.Inventors: Paul Marchant, Raj Kanwar Singh
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Patent number: 9925508Abstract: A gas assisted spray nozzle assembly having a nozzle body in the form of a hollow tubular member, such as a single cylindrical pipe section, which defines a mixing zone and a downstream barrel extension zone. A liquid inlet and an impingement pin are supported by the tubular member in opposed relation to each other at the mixing zone, and a pressurized gas inlet is provided at an upstream end of the tubular member. An annular dispersion ring is fixedly supported within the tubular member downstream of the impingement pin for defining an annular ledge for directing a peripheral portion of pressurized gas stream and liquid atomized in the mixing zone radially inwardly for facilitating continued intermixing of the liquid and pressurized gas stream as they proceed through the barrel zone for discharge from the spray nozzle.Type: GrantFiled: October 3, 2014Date of Patent: March 27, 2018Assignees: Spraying Systems Co., Technip Process Technology, Inc.Inventors: Mark Lacroix, Eusebius Anku Gbordzoe, Chris Robert Santner
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Patent number: 9902667Abstract: An energy conservation process directed to the purification of styrene monomer via distillation after the dehydrogenation reaction of ethylbenzene to produce crude styrene is disclosed. As practiced today, the purification of styrene via distillation requires large amounts of energy (i.e., steam) to provide heat to the various distillation columns. The presently disclosed improved process allows for a reduction in the amount of steam needed for this purpose.Type: GrantFiled: December 19, 2012Date of Patent: February 27, 2018Assignee: Technip Process Technology, Inc.Inventor: Vincent Welch
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Patent number: 9844763Abstract: Methods and systems for heating a reactor feed in a multi reactor hydrocarbon dehydrogenation process. The methods and systems are advantageously employed for the production of styrene by the catalytic dehydrogenation of ethylbenzene. The catalytic dehydrogenation process employs heating steam operating at a steam to oil ratio of about 1.0 or less and relatively low steam superheater furnace temperature, such that all components exposed to steam in the process (outside of the fired heaters) can be constructed with standard metallurgy.Type: GrantFiled: March 31, 2015Date of Patent: December 19, 2017Assignee: Technip Process Technology, Inc.Inventor: Slawomir A. Oleksy
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Patent number: 9776152Abstract: An addition system for introducing particulate material into an industrial process is disclosed. The addition system comprises a vessel for holding the particulate material, a weighing device, piping, a controller, and a frame to support the piping. The piping comprises a first valve for transferring the particulate material to the industrial process, and a second valve for transferring a first stream of pressurized gas from a source of pressurized gas to the vessel. The vessel comprises a filling nozzle located on the top of the vessel.Type: GrantFiled: February 3, 2016Date of Patent: October 3, 2017Assignee: Johnson Matthey Process Technologies, Inc.Inventors: Martin Evans, Rahul Jagannath Prasad, Manishkumar Jayantilal Joshi
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Patent number: 9725379Abstract: The present invention is directed to improved methods and systems for increasing the efficiency of a dehydrogenation section of an alkenyl aromatic hydrocarbon production facility, wherein an alkyl aromatic hydrocarbon, such as ethylbenzene, is dehydrogenated to produce an alkenyl aromatic hydrocarbon, such as styrene. The disclosed methods are more energy-efficient and cost effective than currently known methods for manufacturing styrene. The methods and systems advantageously utilize multiple reheat exchangers arranged in a series and/or parallel configuration that result in an energy consumption reduction and, consequently, a utility cost savings, as well as a reduction in styrene manufacturing plant investment costs.Type: GrantFiled: August 30, 2012Date of Patent: August 8, 2017Assignee: Technip Process Technology, Inc.Inventor: Slawomir A. Oleksy