TUBE BUNDLE REACTOR HAVING A STRUCTURED PACKING
A tubular reactor for carrying out a catalytically supported, homogeneous chemical reaction in the gas phase at an elevated temperature and a subsequent cooling, wherein the reactor is arranged upright, and therefore the tubes extend vertically and the as flows downward through the tubes. The tubes are filled with a catalyst bed in the upper part thereof extending in the reaction zone of the reactor and are filled with a structured packing in the lower part, the cooling zone of the reactor.
1 : A tubular reactor for carrying out a heterogeneously catalyzed gas phase reaction, the tubular reactor comprising:
a plurality of reactor tubes including a reaction zone and a cooling zone,
wherein the reactor tubes are arranged vertically upright,
wherein the tubular reactor is configured such that a gaseous reaction mixture flows through the reactor tubes from top to bottom and, in doing so, passes first through the reaction zone and then through the cooling zone,
wherein, in an upper part of the reactor tubes, extending in a reaction zone of the tubular reactor, the reactor tubes are filled with a catalyst bed of solid, granular catalyst,
wherein, in a lower part of the reactor tubes, corresponding to the cooling zone of the reactor, the reactor tubes are filled with a structured packing,
wherein the catalyst bed and the structured packing each are held in their position by a gas-permeable, removable holder, and
wherein the reactor tubes are heated in endothermic reactions, and cooled in exothermic reactions, by indirect heat exchange with a heat-transfer medium in the reaction zone, and are cooled in the cooling zone of the reactor.
2 : The tubular reactor of claim 1 , wherein the reaction zone of the reactor is divided into a plurality of succeeding sections,
wherein on a tube side the kind and quantity of the catalyst material varies from section to section, and
wherein on a shell side each section is equipped with a separately adjustable heat transfer system.
3 : The tubular reactor of claim 1 , wherein the structured packing is split into several parts along its longitudinal axis.
4 : A method for replacing the structured packing in a cooling zone of a tubular reactor of claim 1 , the method comprising:
a) shutting down the tubular reactor;
b) opening an access to the cooling zone of the reactor on a bottom side of the tubular reactor;
c) removing the structured packing;
d) inserting a new structured packing or a cleaned original packing;
e) closing the access to the cooling zone of the reactor on the bottom side of the tubular reactor; and
f) recommissioning the tubular reactor.
5 : A method of carrying out a selective oxidation reaction, the method comprising:
introducing a compound into the tubular reactor of claim 1 .
6 : The method of claim 5 , wherein the selective oxidation reaction is the conversion of propylene to
acrolein,
acrylic acid, or
acrolein and acrylic acid.
7 : The method of claim 5 , wherein the selective oxidation reaction is the conversion of o-xylene to phthalic anhydride.
8 : The method of claim 5 , wherein the selective oxidation reaction is the conversion of p-xylene to terephthalic acid.
9 : The method of claim 5 , further comprising cooling, inserting, or cooling and inserting the tubular reactor.
10 : The tubular reactor of claim 2 , wherein the structured packing is split into several parts along its longitudinal axis.