The gas phase direct hydroxylation of benzene into phenol with hydrogen and oxygen, as initially described by Niwa in 2002, was realized in a newly developed double-membrane reactor. In the concept described by Niwa, a dense Pd membrane is used for the (safe) dosage of dissociated hydrogen species into the tubular reaction zone, where it reacts with gas phase oxygen to form surface species capable of directly converting benzene into phenol in a single-step process
A flat membrane microchannel reactor was designed and demonstrated for the safe and scalable oxidati...
Single-stage selective hydroxylation of aromatic hydrocarbons is one of the most interesting scienti...
The direct synthesis of phenol by benzene hydroxylation with hydrogen peroxide over titanium silical...
The gas phase direct hydroxylation of benzene into phenol with hydrogen and oxygen, as initially des...
Pd membrane reactor for one-step hydroxylation of benzene to phenol was investigated in an effort to...
Pd-Sil-1 composite membrane consisting of 5 μm Pd membrane anchored by multi-leg protrusions to the ...
A series of titanium silicalite zeolite catalysts were successfully incorporated inside a Pd membran...
Pd membranes of excellent stability and flux were prepared with multi-legged anchors by electroless ...
Pd membranes can be applied to many hydrogenation or dehydrogenation reactions for chemical producti...
This work presents a novel method for oxidation of organic matter in water solutions based on cataly...
In the present work, direct hydroxylation of benzene to phenol by using in situ generated H2O2 with ...
The direct gas-phase epoxidation of propene in a catalytic membrane reactor has been investigated. P...
ABSTRACT The catalytic membrane reactors (CMR) were prepared using commercial Hollow Fiber Membranes...
A review. Pd-based membranes have gained great attention since they can be effectively used for gas ...
A continuous process for safe direct synthesis of H2O2 from H2 and O2 over Pd-catalysts in a gas/liq...
A flat membrane microchannel reactor was designed and demonstrated for the safe and scalable oxidati...
Single-stage selective hydroxylation of aromatic hydrocarbons is one of the most interesting scienti...
The direct synthesis of phenol by benzene hydroxylation with hydrogen peroxide over titanium silical...
The gas phase direct hydroxylation of benzene into phenol with hydrogen and oxygen, as initially des...
Pd membrane reactor for one-step hydroxylation of benzene to phenol was investigated in an effort to...
Pd-Sil-1 composite membrane consisting of 5 μm Pd membrane anchored by multi-leg protrusions to the ...
A series of titanium silicalite zeolite catalysts were successfully incorporated inside a Pd membran...
Pd membranes of excellent stability and flux were prepared with multi-legged anchors by electroless ...
Pd membranes can be applied to many hydrogenation or dehydrogenation reactions for chemical producti...
This work presents a novel method for oxidation of organic matter in water solutions based on cataly...
In the present work, direct hydroxylation of benzene to phenol by using in situ generated H2O2 with ...
The direct gas-phase epoxidation of propene in a catalytic membrane reactor has been investigated. P...
ABSTRACT The catalytic membrane reactors (CMR) were prepared using commercial Hollow Fiber Membranes...
A review. Pd-based membranes have gained great attention since they can be effectively used for gas ...
A continuous process for safe direct synthesis of H2O2 from H2 and O2 over Pd-catalysts in a gas/liq...
A flat membrane microchannel reactor was designed and demonstrated for the safe and scalable oxidati...
Single-stage selective hydroxylation of aromatic hydrocarbons is one of the most interesting scienti...
The direct synthesis of phenol by benzene hydroxylation with hydrogen peroxide over titanium silical...