TS-1 molecular sieve (titanium silicate molecular sieve)
Titanium silicate molecular sieve (TS-1 molecular sieve) is isomorphous with ZSM-5 and belongs to the MF| topological structure, so it also has a unique ten-membered ring cross-channel system. The difference is that the ZSM-5 molecular sieve is equivalent to a part of the framework silicon atoms being isomorphously replaced by aluminum atoms, while the TS-1 catalyst is equivalent to a part of the framework silicon atoms being isomorphously replaced by titanium atoms. The framework titanium atoms of the TS-1 catalyst can activate hydrogen peroxide. In addition, the catalytic system composed of TS-1 and dilute hydrogen peroxide can also lead to the selective oxidation of alcohols and alkanes, as well as the hydroxylation reaction of phenol. Titanium silicate molecular sieve, we have nanocrystalline particles and micron crystal particles, suitable for different reaction processes. Nano-scale TS-1 molecular sieves are basically below 300nm and are suitable for olefin epoxidation, cyclohexanone ammoxidation, alcohol oxidation, saturated hydrocarbon oxidation, hydroxylated aromatics, pyridine oxidation and other reaction processes
Micron-scale TS-1 molecular sieves are basically between 2-10um and are suitable for processes such as propane gas phase epoxidation.
TS-1 molecular sieve (titanium silicate molecular sieve)
Titanium silicate molecular sieve (TS-1 molecular sieve) is isomorphous with ZSM-5 and belongs to the MF| topological structure, so it also has a unique ten-membered ring cross-channel system. The difference is that the ZSM-5 molecular sieve is equivalent to a part of the framework silicon atoms being isomorphously replaced by aluminum atoms, while the TS-1 catalyst is equivalent to a part of the framework silicon atoms being isomorphously replaced by titanium atoms. The framework titanium atoms of the TS-1 catalyst can activate hydrogen peroxide. In addition, the catalytic system composed of TS-1 and dilute hydrogen peroxide can also lead to the selective oxidation of alcohols and alkanes, as well as the hydroxylation reaction of phenol. Titanium silicate molecular sieve, we have nanocrystalline particles and micron crystal particles, suitable for different reaction processes. Nano-scale TS-1 molecular sieves are basically below 300nm and are suitable for olefin epoxidation, cyclohexanone ammoxidation, alcohol oxidation, saturated hydrocarbon oxidation, hydroxylated aromatics, pyridine oxidation and other reaction processes
Micron-scale TS-1 molecular sieves are basically between 2-10um and are suitable for processes such as propane gas phase epoxidation.