A MODULAR INSTALLATION FOR PROCESSING BULK GRAIN PRODUCTS WITH ULTRAVIOLET RADIATION
20190075827 ยท 2019-03-14
Inventors
Cpc classification
A23L3/001
HUMAN NECESSITIES
A23B9/06
HUMAN NECESSITIES
A01C1/00
HUMAN NECESSITIES
International classification
Abstract
The invention relates to devices for disinfecting bulk materials, in particular grain and grain products, with the help of ultraviolet radiation. The technical solution can be used in the food, microbiological, pharmaceutical, pharmacological, cosmetic, agricultural, livestock, poultry, and in production of ecologically clean food products.
The modular installation for processing bulk grain products with ultraviolet radiation consists of successively arranged modules. The module consists of a rectangular housing, wherein inside the housing at an equal distance from each other, horizontally, with the possibility of adjusting the mutual position, lamps of ultraviolet radiation are installed, equipped with a protective, transparent for ultraviolet radiation, Teflon coating adjacent to the lamp glass and equipped on the top with a protective shield to protect from the product being poured, the module has an lamps ultraviolet intensity sensor aimed at one of the lamps, as well as a device for cleaning the lamps from contamination, the modules are mounted on racks, with the possibility of adjusting the distance between modules, racks are fixed on a frame equipped with a vibrating mechanism.
The technical result consists in providing passage of bulk material between ultraviolet lamps and in cleaning it from harmful microorganisms with the possibility of regulating the flow velocity of particles and controlling the intensity of irradiation.
The technical result consists in providing a passage of grain material between the ultraviolet lamps and cleaning it from harmful micro-organisms with the possibility of adjusting the particle flow velocity and controlling the intensity of irradiation.
Claims
1. A device for processing bulk grain products with ultraviolet radiation comprising successively arranged modules, each module comprising: a rectangular housing, wherein inside the housing at an equal distance from each other, horizontally, with the possibility of adjusting the mutual position, a plurality of lamps of ultraviolet radiation are installed, equipped with a protective, transparent for ultraviolet radiation, Teflon coating adjacent to a lamp glass of each of the plurality of lamps and equipped on top with a protective shield; an ultraviolet intensity sensor aimed at one of the plurality of lamps; and a device for cleaning the plurality of lamps from contamination, wherein the modules are mounted on racks with the possibility of adjusting the distance between modules, and wherein the racks are fixed on a frame equipped with a vibrating mechanism.
2. The device of claim 1, wherein the device for cleaning the lamps contains a pneumatic fitting installed on the rectangular housing.
3. The device of claim 1, wherein the device comprises the source of infrared radiation.
4. The device of claim 1, wherein the device comprises a bipolar ionizer for the removal of static electricity from each module.
5. The device of claim 1, wherein the protective shield is made in the form of a corner (L-shaped cross section) or channel (U-shaped cross section) and is made of metal or a composite material.
6. The device of claim 1, wherein the vibrating mechanism contains a base and a vibration motor, wherein the frame is mounted on the base by means of a damper, and the vibration motor is fixed on the frame.
7. The device of claim 1, wherein the lamps of ultraviolet radiation in adjacent modules are located crosswise in relation to each other.
Description
[0019] The invention is illustrated with graphical materials:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025] The essence of the invention is not limited to the description below:
[0026] A modular plant for processing bulk grain products with ultraviolet radiation contains three modules 1 (
[0027] The work of a modular plant for processing bulk grain products with ultraviolet radiation based on the process of spilling loose material from the top down through modules 1 with lamps 4 of ultraviolet radiation. The lamps 4 are connected to the source of electric current. Lamps 4 emit ultraviolet radiation. A vibratory mechanism 8 is started and for this purpose a vibrator 10 is started. The vibrator 10 fixed to the frame 7 transmits vibration to the frame 7, the frame 7 not rigidly connected to the base 9 begins to vibrate (oscillate) on the dampers 11 (rolling on wheels backwards and at the same time held by the springs). Vibration via frame 7 and posts 2 is transferred to modules 1. Loose material, for example, wheat grain are taken and are poured out on top of module 1. For loading and unloading of the processed material, the plant can be equipped with loading and unloading mechanisms, for example in the form of auger, noria or belt conveyor. Under the force of gravity, particles of bulk material, wheat grains, fall on the protective shields 5 and slide under the influence of weight and vibration into the gaps between adjacent flaps 5. Pitched plates 23 facilitate the direction of particles of bulk material in the gaps. Depending on the properties of the bulk material, the position of the protective shields 5 is adjusted, together with the lamp 5 installed under it, selecting the optimal gap between the adjacent edges of the protective flaps 5, providing the necessary speed of particle spillage. The possibility of adjusting the protective flap 5 and the gap between adjacent protective flaps 5 makes it possible to adjust the spillage time of the product and its quantity, as well as adjust the dose of ultraviolet irradiation. Particles of bulk material pass through the gap between the shields 5, while vibration does not allow the particles to stop in the gap, forming a clog. After passing through the gap, between the shields 5, the particles fall and rotate, while ultraviolet radiation from the lamps 4 irradiates the particles. The protective shield 5 protects each lamp 4 from the impact of particles of bulk material that is poured over from above. Sequentially, the particles pass through each module, mounted one above the other, from top to bottom. The Teflon coating of lamps 4 transmits ultraviolet rays and protects the glass (bulb) of lamp 4 from mechanical damage. Ultraviolet irradiation of lamps 4 acts on the surface of particles of bulk material and disinfects them, sterilizes, cleanses harmful microorganisms (viruses, bacteria, spores, mold, etc.). The intensity sensor 6 (not shown in the figures) of the ultraviolet radiation from the bulbs 4 directed to one of the lamps 4 makes it possible to control the intensity of the ultraviolet radiation. In this case, the decrease in the intensity of ultraviolet radiation occurs, in particular, as a result of contamination of the Teflon coating of the lamps 4 and, according to the intensity sensor 6, determine the need for cleaning from dust and dirt. To clean the Teflon coating of the lamps 4, a cleaning device 13 is used. To the pneumatic fitting 14 (not shown in the figures), pneumatic hoses (not shown) are connected and compressed air is supplied from them by the compressor or receiver. The compressed air cleans the contamination of the Teflon coating of the lamps 4. The capacity of the installation as a whole and the degree of cleaning of bulk material spilled from above through the installation depend on the number of modules 1 installed one above the other, as well as on the number of racks 2 and the total number of modules 1. Lamps 4 in adjacent modules are crossed (cross to cross) relative to each other, this allows you to change the direction of the particles and irradiate them more evenly. Static electricity generated during the operation of the unit is removed by a bipolar ionizer. The bipolar ionizer 16 can be mounted on the installation rack 2, one for each module 1. In each module 1, infrared radiation thermoelectric heater 12 is installed (not shown in the figures) which provide heating of the lamp cap 4.
[0028] Industrial applicabilitythe plant has a simple design, it is not difficult to manufacture and does not require sophisticated process equipment, the installation can be manufactured on modern industrial equipment and can be used in agriculture for preseeding of grain seeds and for cleaning grain crops from harmful microorganisms. The use of the invention will make it possible to clean the surface of the purified product as necessary from 20% to 99.99% of bacteria, fungi, spores, harmless to humans, without the use of chemicals, in small quantities and on an industrial scale. The use of the installation in agriculture for presowing treatment improves the germination of cereals, reduces the number of diseases that the crop undergoes from growth to germination to harvest. The use of the plant in poultry and livestock farming reduces the likelihood of disease transmission through the feed and consequently reduces the likelihood of the mortality of birds and animals.
[0029] At the same time, the use of a plant for the processing of grain products allows to reduce or abandon completely the use of chemicals and antibiotics.