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公开(公告)号:US20220362731A1
公开(公告)日:2022-11-17
申请号:US17663821
申请日:2022-05-17
Applicant: H QUEST VANGUARD, INC.
Inventor: George L. Skoptsov , Aayush Mantri , Vignesh Viswanathan , Preet K. Jain
Abstract: System and methods for plasma treatment of a fluidized bed of particles are disclosed. The systems include an energy coupling zone configured to generate a plasma from microwave radiation and an interface element configured to propagate the plasma from the energy coupling zone to a reaction zone. The reaction zone is configured to receive the plasma, receive a plurality of reactant particles in a fluidization plane direction from a fluidization assembly positioned below the reaction zone, and form a product in presence of the plasma. The fluidization plane is substantially perpendicular to the propagated plasma.
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公开(公告)号:US20240092637A1
公开(公告)日:2024-03-21
申请号:US18468302
申请日:2023-09-15
Applicant: H QUEST VANGUARD, INC.
Inventor: George L. Skoptsov , Aayush Mantri , Vignesh Viswanathan
CPC classification number: C01B3/26 , B01J19/088 , C01B32/05 , C07C2/82 , B01J2219/0869 , B01J2219/0871 , B01J2219/0898 , C01B2203/1041 , C01B2203/1235
Abstract: Systems and methods for producing hydrogen and solid carbon from gaseous feedstock. The system includes a plasma reactor configured to receive and convert feedstock comprising hydrocarbons into acetylene-containing feed stream, and a refractory coupled to the plasma reactor that is configured to receive and decompose acetylene to hydrogen and solid carbon. The system is further configured to deliver one or more auxiliary feedstock comprising hydrocarbons directly to the refractory for decomposition into hydrogen and carbon. The energy required to decompose the auxiliary feedstock is provided by the energy released from decomposition of acetylene in the refractory.
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公开(公告)号:US12226765B2
公开(公告)日:2025-02-18
申请号:US17663821
申请日:2022-05-17
Applicant: H QUEST VANGUARD, INC.
Inventor: George L. Skoptsov , Aayush Mantri , Vignesh Viswanathan , Preet K. Jain
Abstract: System and methods for plasma treatment of a fluidized bed of particles are disclosed. The systems include an energy coupling zone configured to generate a plasma from microwave radiation and an interface element configured to propagate the plasma from the energy coupling zone to a reaction zone. The reaction zone is configured to receive the plasma, receive a plurality of reactant particles in a fluidization plane direction from a fluidization assembly positioned below the reaction zone, and form a product in presence of the plasma. The fluidization plane is substantially perpendicular to the propagated plasma.
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公开(公告)号:US20240092711A1
公开(公告)日:2024-03-21
申请号:US18468423
申请日:2023-09-15
Applicant: H QUEST VANGUARD, INC.
Inventor: George L. Skoptsov , Aayush Mantri , Vignesh Viswanathan
CPC classification number: C07C13/62 , B01D3/10 , C01B32/205 , C07C2/78 , C10C3/06 , C10L5/08 , C01P2006/12 , C10L2290/06
Abstract: High-purity polycyclic aromatic hydrocarbons (PAHs) and the byproducts thereof, and methods for producing such products are disclosed. The PAHs may comprise an aromaticity index of about 0.65 to about 0.80. The PAHs may have quinoline insolubles and sulfur impurities of less than about 0.1 wt. % each. A tar or pitch comprising the high-purity PAHs and a method of producing such tar or pitch are disclosed. A synthetic graphite comprising high-purity PAHs is also disclosed. A method of making carbon pellets from high-purity PAHs is also disclosed.
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公开(公告)号:US20220185730A1
公开(公告)日:2022-06-16
申请号:US17437616
申请日:2020-03-12
Applicant: H QUEST VANGUARD, INC.
Inventor: George L. Skoptsov , Kurt W. Zeller , Aayush Mantri , Vignesh Viswanathan
IPC: C04B20/00 , C01B32/194 , C09C1/44 , C01B32/336 , C08K7/18 , C04B28/08 , C22C14/00 , C22C32/00
Abstract: A nanocarbon material includes agglomerate nanostructures made of aggregates of: (i) graphene nanostructures having at least partially crumpled morphology, and (ii) clusters of at least one carbon material. The carbon material may have a graphitic structure. At least a portion of the graphitic structure may be at least partially hollow and have at least one winged protrusion. Optionally, the nanocarbon material may be part of a composition that includes a dispersion medium or a cementitious material. Methods of making such a composition are also disclosed.
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