The present invention relates to a clamp for the detachable connection of a column tray to a support ring in a column, and the use.
In thermal separation processes, columns which have trays, for example sieve trays, valve trays, dual-flow trays, etc., as internals having separation activity are frequently used. The trays must be detachably fastened to the inner wall of the column, as a rule via a support ring. For this purpose, it is usual to screw the trays to the support ring, for example as described in EP-A 0 856 343. However, it is also possible to carry out the detachable connection of the tray to the support ring by means of clamps.
Suitable thermal separation processes are in particular the rectification and absorption processes. Here, it is frequently necessary to treat thermally unstable substances which tend to polymerize under the process conditions. Particularly critical here are, inter alia, the connecting elements between trays and support rings, i.e. the screws or clamps described above.
EP-A 0 856 343 discloses a retaining apparatus for column trays, an orifice through which liquid can flow away being provided in at least a part of the retaining apparatus.
It is an object of the present invention to provide an improved clamp for detachable connection of a column tray to a support ring in a column, which clamp ensures that liquid which has penetrated into the clamp flows away reliably and is moreover simpler to mount.
We have found that this object is achieved by a clamp for detachable connection of a column tray to a support ring in a column, comprising a bolt and a lower clamp part connected to the bolt, the lower clamp part having at least one orifice through which a liquid present in the column can flow away.
In mass transfer columns which contain trays as internals having separation activity, as a rule support rings are firmly connected, usually welded, to the inner wall of the column for detachable fastening of said trays.
The novel clamp for detachable fastening of a column tray to a support ring is formed as one piece and comprises a bolt and a lower clamp part connected thereto.
Since the column trays are usually installed horizontally in the vertical column, the bolts of the clamps are as a rule likewise arranged vertically in the installed state.
The lower clamp part which is movably connected to the bolt has, according to the invention, at least one orifice through which liquid present in the column can flow away.
Here, the geometric formation of the orifice is not limited to a specific shape and size, and all that is necessary is that the orifice be sufficiently large for liquid to be able to flow away through it. As a rule, a hydraulic diameter of 1–15 mm, preferably 1–7 mm, is sufficient for this purpose. The cross-sectional shape of the orifice or orifices in a horizontal plane can in principle be as desired, for example circular, semicircular or polygonal shapes being possible.
The bolts in the lower clamp part are preferably connected via an axial joint which is movable in the vertical plane. This simplifies the installation and removal of the column trays.
Bolts and lower clamp parts made of stainless steel, preferably of stainless steel 1.4571 according to DIN 17007, are preferred.
The novel clamp is particularly suitable for use for an absorption and/or rectification column in which thermally unstable substances are absorbed and/or rectified. The soiling of the column by deposits due to polymerization of the thermally unstable substances can be considerably reduced by using the novel clamp.
The novel clamp is particularly suitable for use in rectification and/or absorption columns in which mixtures of substances containing one or more of the substances (meth)acrylic acid and/or esters thereof, acrylonitrile and/or styrene are treated.
The invention is explained in more detail below with reference to a drawing and an embodiment.
Specifically,
a shows a longitudinal section through an embodiment of a novel clamp,
b shows a cross section through the embodiment shown in longitudinal section in
c shows a longitudinal section in the sectional plane perpendicular to that shown in
a shows a longitudinal section through an embodiment of a clamp according to the prior art,
b shows a cross section through the embodiment shown in longitudinal section in
c shows a longitudinal section in the sectional plane perpendicular to that shown in
In the figures, identical reference numerals denote identical or corresponding features of the apparatus.
The longitudinal section in
The cross-sectional diagram in
The longitudinal section shown in
By comparison,
In a rectification column for the distillative purification of crude acrylic acid, i.e. of a mixture comprising the main components stated below in percentages by weight:
and comprising dual-flow trays, the dual-flow trays were fastened using novel clamps, corresponding to the schematic diagram in
In a comparative experiment, the same starting mixture was rectified in the same column, but the dual-flow trays were fastened using clamps corresponding to the schematic diagram in
Number | Date | Country | Kind |
---|---|---|---|
101 59 823 | Dec 2001 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/EP02/13728 | 12/4/2002 | WO | 00 | 5/13/2004 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO03/047713 | 6/12/2003 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
4174363 | Bruckert | Nov 1979 | A |
5547617 | Lee et al. | Aug 1996 | A |
5788895 | Altinger et al. | Aug 1998 | A |
Number | Date | Country |
---|---|---|
1125406 | Mar 1962 | DE |
1920268 | Oct 1970 | DE |
0856343 | Aug 1998 | EP |
Number | Date | Country | |
---|---|---|---|
20050005418 A1 | Jan 2005 | US |