CANS
Mark Identification

CANS

Serial Number

79310618

Filing Date

Jan 24, 2020

Registration Date

Jun 7, 2022

Trademark by

JOHNSON MATTHEY DAVY TECHNOLOGIES LIMITED

Active Trademark

Classification Information

Catalytic reactors for use in industrial processes, Fischer Tropsch reactions, methanol production, formaldehyde production, syngas production, hydrocarbon processing, and gas and liquid chemical conversions; reactor internals being parts for catalytic reactors; chemical reactors in the nature of tubular reactors for use in industrial processes, Fischer Tropsch reactions, methanol production, formaldehyde production, syngas production, hydrocarbon processing, and gas and liquid chemical conversions; reactor internals being parts for tubular reactors; components of and spare parts for the aforementioned goods

Machinery

Construction, installation, and repair of catalytic reactors for use in industrial processes, Fischer Tropsch reactions, methanol production, formaldehyde production, syngas production, hydrocarbon processing, and gas and liquid chemical conversions; construction, installation, and repair of reactor internals for the aforementioned catalytic reactors; construction, installation, and repair of chemical plants incorporating the aforementioned catalytic reactors and reactor internals; construction, installation, and repair of tubular reactors for use in industrial processes, Fischer Tropsch reactions, methanol production, formaldehyde production, syngas production, hydrocarbon processing, and gas and liquid chemical conversions; construction, installation, and repair of reactor internals for the aforementioned tubular reactors; construction, installation, and repair of catalytic reactors for chemical processes incorporating the aforementioned tubular reactors and reactor internals

Building Construction and Repair

Design of catalytic reactors for use in industrial processes, Fischer Tropsch reactions, methanol production, formaldehyde production, syngas production, hydrocarbon processing, and gas and liquid chemical conversions; design of reactor internals for the aforementioned catalytic reactors; design of chemical processes incorporating the aforementioned catalytic reactors and reactor internals; design of tubular reactors for use in industrial processes, Fischer Tropsch reactions, methanol production, formaldehyde production, syngas production, hydrocarbon processing, and gas and liquid chemical conversions; design of reactor internals for the aforementioned tubular reactors; design of chemical processes incorporating the aforementioned tubular reactors and reactor internals

Computer and Scientific