The invention consists, apart from the arrangements set out above, of a certain number of other arrangements which will be dealt with more explicitly hereinafter as examples of embodiments described with reference to the appended drawings, but which are in no way limiting. In these drawings:
With reference to
The sludge 1 is moist and should undergo a drying treatment, advantageously solar drying. The sludge 1 is spread out and progresses in a horizontal layer C, preferably in a glasshouse (not shown).
The device D comprises a rotary shaft 2 supported above the layer C by bearings (not shown). The shaft 2 is oriented transversely, generally orthogonally, to the direction of translation A of the sludge 1.
The device D also includes a means 3 for turning the sludge 1 also ensuring its movement. The turning means 3 is generally driven in rotation in an anticlockwise direction R by the shaft 2 so as to move the sludge 1 from left to right following the arrow A on
The device D comprises, according to the invention, at least one means 4 for cutting the layer C of material, this means 4 being held at a radial distance g from the geometric axis X of the rotary shaft 2 and being driven in rotation by this shaft. The cutting means 4 is substantially situated on a cylindrical surface of revolution having the same geometric axis X as the shaft 2. The cutting means 4 is able to ensure, as it rotates and penetrates the layer C, fragmentation of the latter, while the turning means 3 moves the slice of cut sludge and granulates it.
The cutting means 4 is advantageously formed of a cutting blade 5 of which the plane is substantially tangential to a cylindrical surface of revolution with an axis X-X.
Several blades 5 can be distributed angularly about the geometric axis X-X, while remaining tangential to the cylindrical surface.
Preferably, the edges of the cutting blades are ground on both sides of the blade. A cutting blade 5, as illustrated in
With the cutting edges 5, 5a, 5b having a cutting edge on each side, the device D can be translated and worked downstream as well as upstream to the installation, that is to say towards the right or left in
Generally, the device D comprises discs 8 (
The device D may be monocoque, corresponding to a single segment, or be composed of several successive segments. In
The turning means 3 is advantageously formed of a scraper comb 9 generally oriented in the radial direction with respect to the axis X, namely perpendicular to the cylindrical surface tangential to the blades 5. The comb 9 consists of a small plate fixed at each end to a disc such as 8a, 8b, in particular by welding. The outer radial edge of the comb 9 has teeth 10 with a triangular shape according to
The depth of the space between the teeth and the separation of the teeth are chosen according to the type of sludge 1 to be treated and the desired sludge-air contact surface.
As a variant, the scraper combs can be mounted as illustrated in 9d in
Preferably, the turning means 3, in particular the scraper comb 9, is positioned behind the cutting blade 5 in the direction of rotation R of the rotary shaft 2, as can be seen in
The cutting blades 5 can be mounted slantwise with respect to the axis X as illustrated in
In order to provide better distribution of mechanical forces along a device D consisting of several segments, the blades 5 and combs 9 of a segment are offset angularly with respect to those of the adjacent segment as illustrated in
The bearings of the shaft 2 can be mounted fixed with respect to a frame. Preferably, the bearings of the shaft 2 are mounted so as to move in translation, for example in the direction of the arrow F of
On account of the fact that the cutting blades 5 are mounted tangentially to the cylindrical surface with an axis X, a slice of sludge is taken without undergoing a translational movement.
This being so, the operation and use of the device are as follows.
In order to ensure that the sludge 1 is turned and translated, the rotational drive of the shaft 2 is controlled in an anticlockwise direction R, by means of a motor (not shown). The means for driving the shaft 2 in translation in the direction of the arrow F is also put into action.
The cutting blades 5 penetrate the sludge 1 and cut it into successive layers. At each rotation of the drum, each cutting blade 5 cuts the sludge over a set thickness p depending on the speed of rotation of the shaft 2, of the rate of movement following the arrow F and the number of blades 5 distributed over the periphery. The scraper comb or combs 9 which come behind the blade 5 move the cut slice of sludge in the direction of the arrow A and granulate it. The scraper combs turn the material, aerate it, move it forward and granulate it.
An automaton is advantageously provided to vary the speeds of rotation and of translation and therefore the cutting thickness p.
Such a device is particularly suitable for an installation intended for solar drying and wind drying and for the incorporation and mixing of earth or compost into soil improvers or fertilizers.
According to the invention, the sludge is not only pressed down by the turning means 3, but is cut and brought back to the surface by the cutting means 4. Thus, instead of forming a pasty mass, the sludge becomes granulated. By increasing the surface area of the cutting section, aeration of the sludge is improved, which prevents the appearance of anaerobic zones and therefore of bad odors which accompany these.
Number | Date | Country | Kind |
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0409069 | Aug 2004 | FR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/FR05/02119 | 8/22/2005 | WO | 00 | 10/18/2007 |