Patent assignee · US · COMPANY

CAMERON SOLUTIONS, INC.

52Patents
52Active
52Granted
55Portfolio score

Filing activity: May 1, 2009 → Feb 26, 2021 · 1 expiring within 5 years

Most-cited patents

PatentTitleAreaCited byStatus
US9764336B2 Petroleum desalting utilizing voltage modulation Performing Operations; Transporting 5 Active
US9023213B2 Treatment of interface rag produced during heavy crude oil processing Chemistry; Metallurgy 5 Active
US9186629B2 Single end, shell-side feed, hollow fiber membrane separation module Emerging Cross-Sectional Technologies 4 Active
US10471366B2 System and method to reboil a process stream in a distillation system by mixing the stream with a heating medium Chemistry; Metallurgy 4 Active
US9150477B1 System for removing salt from a rich mono ethylene glycol stream Chemistry; Metallurgy 3 Active
US10370272B2 Subsea deoxygenation in a water injection process plant Emerging Cross-Sectional Technologies 3 Active
US9764253B2 High velocity electrostatic coalescing oil/water separator Performing Operations; Transporting 3 Active
US9732019B1 System and method to remove organic acid from a rich MEG stream by stripping Chemistry; Metallurgy 3 Active
US10934237B2 System and process for removal of organic carboxylates from mono ethylene glycol (MEG) water streams by acidification and vaporization under vacuum Chemistry; Metallurgy 3 Active
US10478745B2 System and method to vaporize a process stream by mixing the stream with a heating medium Emerging Cross-Sectional Technologies 2 Active
US10618825B2 Water treating equipment providing coalescence and flotation within a single vessel Chemistry; Metallurgy 2 Active
US9469585B2 Divalent ion removal from monoethylene glycol (MEG) feed streams Chemistry; Metallurgy 2 Active
US10683219B2 Divalent ion removal from monoethylene glycol-water streams Chemistry; Metallurgy 2 Active
US11083974B2 System and method to reboil a process stream in a distillation system by mixing the stream with a heating medium Chemistry; Metallurgy 2 Active
US10005708B2 System and process for removal of organic carboxylates from mono ethylene glycol (MEG) water streams by acidification and vaporization under vacuum Chemistry; Metallurgy 2 Active
US10590017B2 System to reduce interface emulsion layer formation in an electrostatic dehydrator or desalter vessel through use of a low voltage electrostatic interface emulsion treatment system inside the vessel Chemistry; Metallurgy 2 Active
US10335708B2 System and method to generate steam by mixing a feed water stream with a heating medium Mechanical Engineering; Lighting; Heating 2 Active
US10112850B2 System to reduce interface emulsion layer formation in an electrostatic dehydrator or desalter vessel through use of a low voltage electrostatic interface emulsion treatment system inside the vessel Chemistry; Metallurgy 2 Active
US9725388B2 Divalent ion removal from monoethylene glycol (MEG) feed streams Chemistry; Metallurgy 2 Active
US10308578B2 System and process for removal of organic carboxylates from mono ethylene glycol (MEG) water streams by acidification and vaporation under vacuum Chemistry; Metallurgy 2 Active
US10864456B2 System and method to partially vaporize a process stream by mixing the stream with a heating medium Emerging Cross-Sectional Technologies 2 Active
US10370264B2 System and method to desalinate a feed water stream by mixing the feed water stream with a heating medium Emerging Cross-Sectional Technologies 2 Active
US10328360B2 System and method to partially vaporize a process stream by mixing the stream with a heating medium Emerging Cross-Sectional Technologies 2 Active
US9522865B2 System for removing salt from a rich mono ethylene glycol stream Chemistry; Metallurgy 2 Active
US10745301B2 System to reduce interface emulsion layer formation in an electrostatic dehydrator or desalter vessel through use of a low voltage electrostatic interface emulsion treatment system inside the vessel Chemistry; Metallurgy 1 Active

Source: USPTO / EPO open patent data. Counts and citation impact are objective bibliographic measures.