R-O-ECSYNTH_A, R-A-ECSYNTH_A
Electrosynthesis Reactor A-series is an undivided batch cell that contains a solution of the substrates and reagents and it is operating for the time needed to complete the desired reaction until all the starting material is consumed. The reaction mixture can be stirred using a magnetic stirrer to have a homogeneous concentration throughout the cell.
MORER-O-ECSYNTH_A/S, R-A-ECSYNTH_A/S
Electrosynthesis Reactor A-series/septa is an undivided batch cell that contains a solution of the substrates and reagents and it is operating for the time needed to complete the desired reaction until all the starting material is consumed. The reaction mixture can be stirred using a magnetic stirrer to have a homogeneous concentration throughout the cell.
MORER-O-ECSYNTH_B, R-A-ECSYNTH_B
Electrosynthesis Reactor B-series is an undivided batch cell that contains a solution of the substrates and reagents and it is operating for the time needed to complete the desired reaction until all the starting material is consumed. The reaction mixture can be stirred using a magnetic stirrer to have a homogeneous concentration throughout the cell.
MORER-O-ECSYNTH_B/S, R-A-ECSYNTH_B/S
Electrosynthesis Reactor B-series/septa is an undivided batch cell that contains a solution of the substrates and reagents and it is operating for the time needed to complete the desired reaction until all the starting material is consumed. The reaction mixture can be stirred using a magnetic stirrer to have a homogeneous concentration throughout the cell.
MORER-O-ECSYNTH_C, R-A-ECSYNTH_C
Electrosynthesis Reactor C-series is an undivided batch cell that contains a solution of the substrates and reagents and it is operating for the time needed to complete the desired reaction until all the starting material is consumed. The reaction mixture can be stirred using a magnetic stirrer to have a homogeneous concentration throughout the cell.
MORER-O-ECSYNTH_C/S, R-A-ECSYNTH_C/S
Electrosynthesis Reactor C-series/septa is an undivided batch cell that contains a solution of the substrates and reagents and it is operating for the time needed to complete the desired reaction until all the starting material is consumed. The reaction mixture can be stirred using a magnetic stirrer to have a homogeneous concentration throughout the cell.
MORER-O-ECSYNTH_D, R-A-ECSYNTH_D
Electrosynthesis Reactor D-series is a divided batch cell that contains a solution of the substrates and reagents and it is operating for the time needed to complete the desired reaction until all the starting material in working electrode compartment is consumed. The electrolyte in working electrode compartment is separated from the rest of the cell by ion-exchange membrane or nanoporous membrane (13 mm dia.).
MORER-O-ECSYNTH_D/S, R-A-ECSYNTH_D/S
Electrosynthesis Reactor D-series is a divided batch cell that contains a solution of the substrates and reagents and it is operating for the time needed to complete the desired reaction until all the starting material in working electrode compartment is consumed. The electrolyte in working electrode compartment is separated from the rest of the cell by ion-exchange membrane or nanoporous membrane (13 mm dia.).
MORER-O-ECSYNTH_E, R-A-ECSYNTH_E
Electrosynthesis Reactor E-series is a two-compartment batch cell that contains a solution of the substrates and reagents and it is operating for the time needed to complete the desired reaction until all the starting material in working electrode compartment is consumed. The electrolytes in working and counter electrode compartments are separated by ion-exchange membrane or nanoporous membrane (13 mm dia.).
MORER-O-ECSYNTH_E/S, R-A-ECSYNTH_E/S
Electrosynthesis Reactor E-series is a two-compartment batch cell that contains a solution of the substrates and reagents and it is operating for the time needed to complete the desired reaction until all the starting material in working electrode compartment is consumed. The electrolytes in working and counter electrode compartments are separated by ion-exchange membrane or nanoporous membrane (13 mm dia.).
MORE