CN104588389B - Fuel waste residue recovery and processing system - Google Patents

Fuel waste residue recovery and processing system Download PDF

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Publication number
CN104588389B
CN104588389B CN201410659059.1A CN201410659059A CN104588389B CN 104588389 B CN104588389 B CN 104588389B CN 201410659059 A CN201410659059 A CN 201410659059A CN 104588389 B CN104588389 B CN 104588389B
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China
Prior art keywords
shaking table
rotary strainer
husky
iron filings
deflector chute
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CN201410659059.1A
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CN104588389A (en
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林文革
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JINJIANG GUANXING BUILDING MATERIAL Co Ltd
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JINJIANG GUANXING BUILDING MATERIAL Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/20Waste processing or separation

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Abstract

Disclosure one fuel waste residue recovery and processing system, including the grid screen device using conveyer belt to couple, rotary strainer device, remove iron filings magnetic separator, material water screening device, disintegrating machine, wet concentration removes scrap iron removing device, jigging machine, shaking table, disc type drags for husky device, shake formula dewaterer, materials warehouse, fuel waste residue can recycling after being processed by the technology of the present invention system, turn waste into wealth, go to fill by originally needing to waste a large amount of land resource the raw material mode that can provide for construction and decoration is provided, first resource exploitation repeatedly utilizes, develop with greatly reducing resource, protection environment, and water is as just a kind of medium in production process, will not repeated contamination water source, promote the well-being of mankind.

Description

Fuel waste residue recovery and processing system
Technical field
The present invention relates to environmental protection sciemtifec and technical sphere, specifically a kind of fuel waste residue recovery and processing system.
Background technology
The mode that the chemical fuel contained energy such as coal, oil and natural gas generates electricity is utilized to be referred to as thermal power generation, in China due to coal resources relatively horn of plenty, coal resources are utilized to generate electricity as thermal power generation mode main, although thermal power generation function-stable, but there is a lot of problem needing us constantly to go to solve: such as resource consumes excessively, resource utilization is extremely low, and environmental disruption is very big, and environment causes great pollution;
Wherein owing to coal fuel source fuel is insufficient, have some residues of some cinders.Current most of heat power station is in order to save processing cost, reduce cost payout, directly cinder residue is poured in rivers, or directly cinder is filled with land-fill method, although the soil after landfill also decent can must grow some weeds, but the cinder layer essence of deep layer is constant, it is still that cinder residue, cannot change, and the invasion and attack soil originally that cinder residual meeting is all the year round, cause soil constituent, Soil structure to be originally seriously damaged.
Cinder residue land-fill method not only breaks up soil, also can severe contamination water source, containing a lot of harmful substances in cinder residue, during rainy day, in cinder residue, harmful substance mixes with underground water source along with water flows, affecting water source, if things go on like this, the life of the mankind is necessarily subject to impact.It is the object that the present invention studies hence for the problems referred to above.
Summary of the invention
It is an object of the invention to provide a kind of fuel waste residue recovery and processing system; fuel waste residue can recycling after being processed by the technology of the present invention system; turn waste into wealth; script needing waste a large amount of land resource and goes to fill the raw material mode that can provide for construction and decoration of changing into, first resource exploitation repeatedly utilizes, and develops with greatly reducing resource; protection environment; and water is as just a kind of medium in production process, will not repeated contamination water source, promote the well-being of mankind.
Technical program of the present invention lies in: a kind of fuel waste residue recovery and processing system, go scrap iron removing device, jigging machine, shaking table, disc type to drag for husky device, shake formula dewaterer, materials warehouse including the grid screen device using conveyer belt to couple, rotary strainer device, removal iron filings magnetic separator, material water screening device, disintegrating machine, wet concentration;
Described grid screen device is erected on a melt pit, described grid screen device includes a taper feed bin, above described taper feed bin, erection has an oblique grid mesh screen, described grid mesh screen side is hinged with taper feed bin, opposite side is coupled with taper feed bin by spring stack, described grid mesh screen is provided with a vibrating motor, and described taper feed bin bottom is provided with the discharging opening of a circle;
Described rotary strainer device includes a rotary strainer frame, in described rotary strainer frame, crossbearer has a drum sieve, described drum sieve surface has been covered with the rotary strainer hole for material screening, the erection of described drum sieve periphery has a fines to collect cylinder, described fines collects bottom of cylinder and is provided with a fines outlet, described drum sieve end face is coarse fodder outlet, described drum sieve other end is material inlet, the coarse fodder outlet of described drum sieve is connected with the coarse fodder conveyer belt for carrying coarse fodder, described drum sieve centrage and horizontal line angle are 5 degree, and described drum sieve is driven by motor;
Described removal iron filings magnetic separator is lifted on above conveyer belt, including a hoisting frame, described hoisting frame two ends have respectively been longitudinally set with a cylinder, two cylinders are set with a belt conveyor jointly, a cylindrical magnetic iron block it is folded with between two cylinders in belt conveyor, it is positioned on belt conveyor surface and is longitudinally stained with a limited slip block, be positioned at belt conveyor side and be connected with iron filings deflector chute;
Described material water screening device is the current casing of one " people " font, and both sides, described current casing upper end are respectively connected to a water inlet pipe, is connected to a floating material deflector chute on the upside of described current casing, and described current casing two end is precipitate discharging opening;
Described wet concentration goes scrap iron removing device to include three rectangular channels side by side, located anteriorly rectangular channel is erected at below the discharging opening of disintegrating machine, centrally located rectangular channel erection has a cylinder, the Magnet for iron filings can be held it is provided with in described cylinder, it it is rectangle mesh screen bottom centrally located rectangular channel, described rectangle mesh screen is connected with fines bucket, and the rectangular channel being located behind is iron filings groove, and described iron filings groove side is connected to iron filings deflector chute;
Described shaking table includes shaking table base and the jolting plate that can teetertotter, described jolting plate upper surface longitudinal direction intaglio has a plurality of groove cut for material screening granule, reduce successively from jolting plate top to bottom groove cut length, described jolting plate upper left side is placed with one for importing vertical four square grooves of material, described vertical four directions bottom land end is distributed multiple rectangular opening for flowing out material, it is positioned on the right side of jolting plate top and has been longitudinally set with a distribution gutter, described distribution gutter bottom is hollow out, it is positioned at distribution gutter to be arranged with and the diversion sheet being distributed gutter and becoming 45 degree of angles, the jolting plate side being positioned at groove cut end is provided with shaking table coarse fodder deflector chute, it is positioned at jolting plate bottom and undertakes a shaking table fines deflector chute;
Described disc type is dragged for husky device and is included a horizontal hopper, above described horizontal hopper, husky swiveling wheel is dragged in erection, the described sand swiveling wheel that drags for includes a swiveling wheel, described swiveling wheel is arranged with three fishing sand buckets, described drag for husky bucket bottom for the mesh screen of moisture content can be filtered, described in drag for husky swiveling wheel side and be provided with and drag for husky discharge bucket;
Described shake formula dewaterer includes a dovetail groove, described dovetail groove has a vibrations bucket by spring stack erection, a vibrations mesh screen tiltedly it is covered with in described vibrations bucket, described vibrations bucket is added is provided with two vibrating motors, described vibrations bucket end is provided with dehydration discharge bucket, and current are passed to transfer pond by pipeline by described dovetail groove;
Material is delivered to the material inlet of first rotary strainer device by the discharging opening of grid screen device by conveyer belt, thin material is delivered to material water screening device by conveyer belt by the fines outlet of the first rotary strainer device, above conveyer belt between first rotary strainer device and material water screening device, erection has First to remove iron filings magnetic separator, thick material is delivered to First disintegrating machine by conveyer belt and crushes by the coarse fodder outlet of described first rotary strainer device, material after broken is transmitted back on the grid mesh screen of grid screen device by First disintegrating machine, above conveyer belt between described first rotary strainer device and First disintegrating machine, erection has second to remove iron filings magnetic separator, precipitate is circulated to wet concentration and removes the rectangular front groove of scrap iron removing device by the precipitate discharging opening of described material water screening device, iron filings in material are adsorbed to rotate by the cylinder of intermediate rectangular groove goes out from iron filings deflector chute delivery to the rectangular channel of rear, leftover materials flow in the feed bin of First jigging machine by the rectangle screen filtration of intermediate rectangular trench bottom, fine granular materials flow to the feed bin of second jigging machine from the upper end discharging opening of First jigging machine, fine particle material flow to the material inlet of second rotary strainer device from second jigging machine upper end discharging and again screens, coarse granule material is respectively from First, second jigging machine bottom thick material discharging opening is circulated in vertical four square grooves of first shaking table, coarseparticulate stream drops down onto on the jolting plate of first shaking table, coarse granule material shakes screening through the jolting plate of first shaking table, coarse granule spills out from a plurality of cut of the first shaking table shaking table coarse fodder deflector chute of beating, fine granular materials flow to transfer pond from the fines deflector chute of the first shaking table by pipeline, material in transfer pond is circulated to disc type and drags for the horizontal hopper of husky device, thin material in second rotary strainer device drags in the horizontal hopper of husky device by fines outlet stream to disc type, disc type is dragged for the material in the horizontal hopper of husky device and is filtered out moisture content by dragging for husky swiveling wheel, it is circulated on the vibrations bucket of shake formula dewaterer through vibrated and dehydrated machine dehydration, materials warehouse is passed to by conveyor belt flow.
The material higher in order to extract particle purity, the coarse fodder outlet of second rotary strainer device branches to second, the 3rd shaking table by deflector chute, and fine particle material is guided to transfer pond by the shaking table fines deflector chute of second, the 3rd shaking table.
For the ease of implementing, the material stream in transfer pond is delivered in the horizontal hopper that disc type drags for husky device by material elevator.
It is an advantage of the current invention that: one is fuel waste residue processed by the technology of the present invention system after can recycling; turn waste into wealth; go to fill by originally needing to waste a large amount of land resource the raw material mode that can provide for construction and decoration is provided; first resource exploitation repeatedly utilizes; develop with greatly reducing resource, protect environment, and in production process water as just a kind of medium; will not repeated contamination water source, promote the well-being of mankind;Two is use the grid screen device of conveyer belt connection, rotary strainer device, removal iron filings magnetic separator, material water screening device, disintegrating machine, wet concentration to go scrap iron removing device, jigging machine, shaking table, disc type to drag for husky device, shake formula dewaterer, materials warehouse one huge fuel waste residue recovery and processing system of composition, the original innovative design of system, it is possible to process fuel waste residue expeditiously;Three is the material inlet that material is delivered to first rotary strainer device by the discharging opening of grid screen device by conveyer belt, thin material is delivered to material water screening device by conveyer belt by the fines outlet of the first rotary strainer device, above conveyer belt between first rotary strainer device and material water screening device, erection has First to remove iron filings magnetic separator, thick material is delivered to First disintegrating machine by conveyer belt and crushes by the coarse fodder outlet of described first rotary strainer device, material after broken is transmitted back on the grid mesh screen of grid screen device by First disintegrating machine, above conveyer belt between described first rotary strainer device and First disintegrating machine, erection has second to remove iron filings magnetic separator, precipitate is circulated to wet concentration and removes the rectangular front groove of scrap iron removing device by the precipitate discharging opening of described material water screening device, iron filings in material are adsorbed to rotate by the cylinder of intermediate rectangular groove goes out from iron filings deflector chute delivery to the rectangular channel of rear, leftover materials flow in the feed bin of First jigging machine by the rectangle screen filtration of intermediate rectangular trench bottom, fine granular materials flow to the feed bin of second jigging machine from the upper end discharging opening of First jigging machine, fine particle material flow to the material inlet of second rotary strainer device from second jigging machine upper end discharging and again screens, coarse granule material is respectively from First, second jigging machine bottom thick material discharging opening is circulated in vertical four square grooves of first shaking table, coarseparticulate stream drops down onto on the jolting plate of first shaking table, coarse granule material shakes screening through the jolting plate of first shaking table, coarse granule spills out from a plurality of cut of the first shaking table shaking table coarse fodder deflector chute of beating, fine granular materials flow to transfer pond from the fines deflector chute of the first shaking table by pipeline, material in transfer pond is circulated to disc type and drags for the horizontal hopper of husky device, thin material in second rotary strainer device drags in the horizontal hopper of husky device by fines outlet stream to disc type, disc type is dragged for the material in the horizontal hopper of husky device and is filtered out moisture content by dragging for husky swiveling wheel, it is circulated on the vibrations bucket of shake formula dewaterer through vibrated and dehydrated machine dehydration, materials warehouse is passed to by conveyor belt flow.This technological process of production is reasonable in design rigorous, and water is only used as a kind of circulating medium, it is possible to recycle, and greatly reduces water and pollutes.
Accompanying drawing explanation
Fig. 1 is the fuel waste residue recovery and processing system schematic flow sheet in embodiment.
Fig. 2 is the main TV structure schematic diagram of the rotary strainer device in embodiment.
Fig. 3 is the main TV structure schematic diagram of the rotary strainer device in embodiment.
Fig. 4 is the rotary strainer device side-looking structural representation in embodiment.
Fig. 5 is the removal iron filings magnetic separator structural representation in embodiment.
Fig. 6 is the material water screening device structural representation in embodiment.
Fig. 7 is that the wet concentration in embodiment removes iron filings apparatus structure schematic diagram.
Fig. 8 is the main TV structure schematic diagram of the shaking table in embodiment.
Fig. 9 is the shaking table side-looking structural representation in embodiment.
Figure 10 is that the disc type in embodiment drags for the husky main TV structure schematic diagram of device.
Figure 11 is that the disc type in embodiment drags for husky device side-looking structural representation.
Figure 12 is the structural representation shaking formula dewaterer in embodiment.
Detailed description of the invention
For the features described above of the present invention and advantage can be become apparent, special embodiment below, and coordinate accompanying drawing, it is described in detail below, but the present invention is not limited to this.
With reference to legend 1 ~ 12, a kind of fuel waste residue recovery and processing system, goes scrap iron removing device 5, jigging machine 9, shaking table 6, disc type to drag for husky device 7, shake formula dewaterer 8, materials warehouse including the grid screen device 1 using conveyer belt to couple, rotary strainer device 2, removal iron filings magnetic separator 3, material water screening device 4, disintegrating machine 10, wet concentration;
Described grid screen device 1 is erected on a melt pit 101, described grid screen device includes a taper feed bin 102, above described taper feed bin 102, erection has an oblique grid mesh screen 103, described grid mesh screen 103 side is hinged with taper feed bin 102, opposite side is coupled with taper feed bin 102 by spring stack 104, described grid mesh screen 103 is provided with a vibrating motor 105, and described taper feed bin 102 bottom is provided with the discharging opening of a circle;
Described rotary strainer device 2 includes a rotary strainer frame, in described rotary strainer frame, crossbearer has a drum sieve 201, described drum sieve 201 surface has been covered with the rotary strainer hole 202 for material screening, the erection of described drum sieve periphery has a fines to collect cylinder 203, described fines collects and is provided with a fines outlet 204 bottom cylinder 203, described drum sieve 201 end face is coarse fodder outlet 205, described drum sieve other end is material inlet 206, the coarse fodder outlet 205 of described drum sieve is connected with the coarse fodder conveyer belt 207 for carrying coarse fodder, described drum sieve 201 centrage and horizontal line angle are 5 degree, described drum sieve 201 is driven by motor, the diameter in described rotary strainer hole is 5cm;This rotary strainer device can filter out different size of granule quickly and efficiently, is mainly used in two kinds of size particles screenings, and this rotary strainer device can be used in production line, can continue to screen, uninterruptedly, be not easily blocked, this rotary strainer apparatus structure is simple, adopts the mode rolled to screen, and efficiency is high;
Described removal iron filings magnetic separator 3 is lifted on above conveyer belt, including a hoisting frame 301, described hoisting frame 301 two ends have respectively been longitudinally set with a cylinder 302, two cylinders are set with a belt conveyor 303 jointly, it is folded with a cylindrical magnetic iron block 304 between two cylinders 302 in belt conveyor 303, it is positioned on belt conveyor 303 surface and is longitudinally stained with a limited slip block 305, be positioned at belt conveyor side and be connected with iron filings deflector chute 306;
Described material water screening device 4 is the current casing 401 of one " people " font, both sides, described current casing 401 upper end are respectively connected to a water inlet pipe 402, being connected to a floating material deflector chute 403 on the upside of described current casing 401, described current casing two end is precipitate discharging opening;
Described wet concentration goes scrap iron removing device 5 to include three rectangular channels 501 side by side, located anteriorly rectangular channel 501 is erected at below the discharging opening of disintegrating machine, centrally located rectangular channel erection has a cylinder 502, the Magnet 503 for iron filings can be held it is provided with in described cylinder 502, it it is rectangle mesh screen 504 bottom centrally located rectangular channel, described rectangle mesh screen 504 is connected with fines bucket 505, and the rectangular channel being located behind is iron filings groove 506, and described iron filings groove 506 side is connected to iron filings deflector chute;
Described shaking table 6 includes shaking table base 601 and the jolting plate 602 that can teetertotter, described jolting plate 602 upper surface longitudinal direction intaglio has a plurality of groove cut 603 for material screening granule, reduce successively from jolting plate 602 top to bottom groove cut length, described jolting plate 602 upper left side is placed with one for importing vertical four square grooves 604 of material, described vertical four square groove 604 bottoms are distributed multiple rectangular opening for flowing out material, it is positioned on the right side of jolting plate top and has been longitudinally set with a distribution gutter 605, described distribution gutter 605 bottom is hollow out, it is positioned at distribution gutter to be arranged with and the diversion sheet 609 being distributed 45 degree of angles of gutter 605 one-tenth, jolting plate 602 side being positioned at groove cut end is provided with shaking table coarse fodder deflector chute 606, it is positioned at jolting plate 602 bottom and undertakes a shaking table fines deflector chute 607;
Described disc type is dragged for husky device 7 and is included a horizontal hopper 701, above described horizontal hopper 701, husky swiveling wheel 702 is dragged in erection, the described sand swiveling wheel 702 that drags for includes a swiveling wheel 703, described swiveling wheel 703 is arranged with three fishing sand buckets 704, described drag for for the mesh screen of moisture content can be filtered bottom husky bucket 704, described in drag for husky swiveling wheel 702 side and be provided with and drag for husky discharge bucket;
Described shake formula dewaterer 8 includes a dovetail groove 801, described dovetail groove 801 has a vibrations bucket 802 by spring stack erection, a vibrations mesh screen 803 tiltedly it is covered with in described vibrations bucket 802, described vibrations bucket 802 is added is provided with two vibrating motors 804, described vibrations bucket 802 ends are provided with dehydration discharge bucket 805, and current are passed to transfer pond by pipeline by described dovetail groove 801;
Material is delivered to the material inlet of first rotary strainer device by the discharging opening of grid screen device 1 by conveyer belt, thin material is delivered to material water screening device 4 by conveyer belt by the fines outlet of the first rotary strainer device, above conveyer belt between first rotary strainer device and material water screening device 4, erection has First to remove iron filings magnetic separator, thick material is delivered to First disintegrating machine by conveyer belt and crushes by the coarse fodder outlet of described first rotary strainer device, material after broken is transmitted back on the grid mesh screen 1 of grid screen device by First disintegrating machine, above conveyer belt between described first rotary strainer device and First disintegrating machine, erection has second to remove iron filings magnetic separator, precipitate is circulated to wet concentration and removes the rectangular front groove of scrap iron removing device 5 by the precipitate discharging opening of described material water screening device 4, iron filings in material are adsorbed to rotate by the cylinder of intermediate rectangular groove goes out from iron filings deflector chute delivery to the rectangular channel of rear, leftover materials flow in the feed bin of First jigging machine by the rectangle screen filtration of intermediate rectangular trench bottom, fine granular materials flow to the feed bin of second jigging machine from the upper end discharging opening of First jigging machine, fine particle material flow to the material inlet of second rotary strainer device from second jigging machine upper end discharging and again screens, coarse granule material is respectively from First, second jigging machine bottom thick material discharging opening is circulated in vertical four square grooves of first shaking table, coarseparticulate stream drops down onto on the jolting plate of first shaking table, coarse granule material shakes screening through the jolting plate of first shaking table, coarse granule spills out from a plurality of cut of the first shaking table shaking table coarse fodder deflector chute of beating, fine granular materials flow to transfer pond from the fines deflector chute of the first shaking table by pipeline, material in transfer pond is circulated to disc type and drags for the horizontal hopper of husky device 7, thin material in second rotary strainer device drags in the horizontal hopper of husky device 7 by fines outlet stream to disc type, disc type is dragged for the material in the horizontal hopper of husky device 7 and is filtered out moisture content by dragging for husky swiveling wheel, it is circulated on the vibrations bucket of shake formula dewaterer 8 through vibrated and dehydrated machine dehydration, materials warehouse is passed to by conveyor belt flow.The original innovative design of system, fuel waste residue can be processed expeditiously in one embodiment, the material higher in order to extract particle purity, the coarse fodder outlet of second rotary strainer device branches to second, the 3rd shaking table by deflector chute, and fine particle material is guided to transfer pond by the shaking table fines deflector chute of second, the 3rd shaking table.
In one embodiment, for the ease of implementing, the material stream in transfer pond is delivered in the horizontal hopper that disc type drags for husky device by material elevator.
This technological process of production is reasonable in design rigorous, and water is only used as a kind of circulating medium, it is possible to recycle, and greatly reduces water and pollutes.
Fuel waste residue is become the powdered granule of recoverable, powdered granule (moisture 8%) after process adds a small amount of mud (moisture 35%), quantitative cement is added again from vertical cement storage pot, after dry companion, add water and be again stirring for into brick-making raw material, its sandy soil, mud, cement (concrete), the mixing ratio of water is: 85:4:10:1, raw material conveyer belt after stirring is delivered in distribution cabins, utilize brick machine production line compressing, place 12 hours, stockyard is sent to stack bricks after condensation, water seasoning seven days, can be used for walling unit after 20 days to use, turn waste into wealth, garbage is become the raw material of repeatable utilization, environment has been done huge contribution.
The foregoing is only presently preferred embodiments of the present invention, all equalizations done according to the present patent application the scope of the claims change and modify, and all should belong to the covering scope of the present invention.

Claims (1)

1. a fuel waste residue recovery and processing system, scrap iron removing device, jigging machine, shaking table, disc type is gone to drag for husky device, shake formula dewaterer, materials warehouse including the grid screen device using conveyer belt to couple, rotary strainer device, removal iron filings magnetic separator, material water screening device, disintegrating machine, wet concentration, it is characterised in that:
Described grid screen device is erected on a melt pit, described grid screen device includes a taper feed bin, above described taper feed bin, erection has an oblique grid mesh screen, described grid mesh screen side is hinged with taper feed bin, opposite side is coupled with taper feed bin by spring stack, described grid mesh screen is provided with a vibrating motor, and described taper feed bin bottom is provided with the discharging opening of a circle;
Described rotary strainer device includes a rotary strainer frame, in described rotary strainer frame, crossbearer has a drum sieve, described drum sieve surface has been covered with the rotary strainer hole for material screening, the erection of described drum sieve periphery has a fines to collect cylinder, described fines collects bottom of cylinder and is provided with a fines outlet, described drum sieve end face is coarse fodder outlet, described drum sieve other end is material inlet, the coarse fodder outlet of described drum sieve is connected with the coarse fodder conveyer belt for carrying coarse fodder, described drum sieve centrage and horizontal line angle are 5 degree, and described drum sieve is driven by motor;
Described removal iron filings magnetic separator is lifted on above conveyer belt, including a hoisting frame, described hoisting frame two ends have respectively been longitudinally set with a cylinder, two cylinders are set with a belt conveyor jointly, a cylindrical magnetic iron block it is folded with between two cylinders in belt conveyor, it is positioned on belt conveyor surface and is longitudinally stained with a limited slip block, be positioned at belt conveyor side and be connected with iron filings deflector chute;
Described material water screening device is the current casing of one " people " font, and both sides, described current casing upper end are respectively connected to a water inlet pipe, is connected to a floating material deflector chute on the upside of described current casing, and described current casing two end is precipitate discharging opening;
Described wet concentration goes scrap iron removing device to include three rectangular channels side by side, located anteriorly rectangular channel is erected at below the discharging opening of disintegrating machine, centrally located rectangular channel erection has a cylinder, the Magnet for iron filings can be held it is provided with in described cylinder, it it is rectangle mesh screen bottom centrally located rectangular channel, described rectangle mesh screen is connected with fines bucket, and the rectangular channel being located behind is iron filings groove, and described iron filings groove side is connected to iron filings deflector chute;
Described shaking table includes shaking table base and the jolting plate that can teetertotter, described jolting plate upper surface longitudinal direction intaglio has a plurality of groove cut for material screening granule, reduce successively from jolting plate top to bottom groove cut length, described jolting plate upper left side is placed with one for importing vertical four square grooves of material, described vertical four directions bottom land end is distributed multiple rectangular opening for flowing out material, it is positioned on the right side of jolting plate top and has been longitudinally set with a distribution gutter, described distribution gutter bottom is hollow out, it is positioned at distribution gutter to be arranged with and the diversion sheet being distributed gutter and becoming 45 degree of angles, the jolting plate side being positioned at groove cut end is provided with shaking table coarse fodder deflector chute, it is positioned at jolting plate bottom and undertakes a shaking table fines deflector chute;
Described disc type is dragged for husky device and is included a horizontal hopper, above described horizontal hopper, husky swiveling wheel is dragged in erection, the described sand swiveling wheel that drags for includes a swiveling wheel, described swiveling wheel is arranged with three fishing sand buckets, described drag for husky bucket bottom for the mesh screen of moisture content can be filtered, described in drag for husky swiveling wheel side and be provided with and drag for husky discharge bucket;
Described shake formula dewaterer includes a dovetail groove, described dovetail groove has a vibrations bucket by spring stack erection, a vibrations mesh screen tiltedly it is covered with in described vibrations bucket, described vibrations bucket is added is provided with two vibrating motors, described vibrations bucket end is provided with dehydration discharge bucket, and current are passed to transfer pond by pipeline by described dovetail groove;
Material is delivered to the material inlet of first rotary strainer device by the discharging opening of grid screen device by conveyer belt, thin material is delivered to material water screening device by conveyer belt by the fines outlet of the first rotary strainer device, above conveyer belt between first rotary strainer device and material water screening device, erection has First to remove iron filings magnetic separator, thick material is delivered to First disintegrating machine by conveyer belt and crushes by the coarse fodder outlet of described first rotary strainer device, material after broken is transmitted back on the grid mesh screen of grid screen device by First disintegrating machine, above conveyer belt between described first rotary strainer device and First disintegrating machine, erection has second to remove iron filings magnetic separator, precipitate is circulated to wet concentration and removes the rectangular front groove of scrap iron removing device by the precipitate discharging opening of described material water screening device, iron filings in material are adsorbed to rotate by the cylinder of intermediate rectangular groove goes out from iron filings deflector chute delivery to the rectangular channel of rear, leftover materials flow in the feed bin of First jigging machine by the rectangle screen filtration of intermediate rectangular trench bottom, fine granular materials flow to the feed bin of second jigging machine from the upper end discharging opening of First jigging machine, fine particle material flow to the material inlet of second rotary strainer device from second jigging machine upper end discharging and again screens, coarse granule material is respectively from First, second jigging machine bottom thick material discharging opening is circulated in vertical four square grooves of first shaking table, coarseparticulate stream drops down onto on the jolting plate of first shaking table, coarse granule material shakes screening through the jolting plate of first shaking table, coarse granule spills out from a plurality of cut of the first shaking table shaking table coarse fodder deflector chute of beating, fine granular materials flow to transfer pond from the fines deflector chute of the first shaking table by pipeline, material in transfer pond is circulated to disc type and drags for the horizontal hopper of husky device, thin material in second rotary strainer device drags in the horizontal hopper of husky device by fines outlet stream to disc type, disc type is dragged for the material in the horizontal hopper of husky device and is filtered out moisture content by dragging for husky swiveling wheel, it is circulated on the vibrations bucket of shake formula dewaterer through vibrated and dehydrated machine dehydration, materials warehouse is passed to by conveyor belt flow;The coarse fodder outlet of second rotary strainer device branches to second, the 3rd shaking table by deflector chute, and fine particle material is guided to transfer pond by the shaking table fines deflector chute of second, the 3rd shaking table;Material stream in transfer pond is delivered in the horizontal hopper that disc type drags for husky device by material elevator.
CN201410659059.1A 2014-11-19 2014-11-19 Fuel waste residue recovery and processing system Expired - Fee Related CN104588389B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410659059.1A CN104588389B (en) 2014-11-19 2014-11-19 Fuel waste residue recovery and processing system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410659059.1A CN104588389B (en) 2014-11-19 2014-11-19 Fuel waste residue recovery and processing system

Publications (2)

Publication Number Publication Date
CN104588389A CN104588389A (en) 2015-05-06
CN104588389B true CN104588389B (en) 2016-06-29

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CN105107819A (en) * 2015-08-24 2015-12-02 晋江市冠兴建材有限责任公司 Regeneration process for solid waste of garbage power plants
CN107952554B (en) * 2017-12-14 2020-06-26 贵州西能电力建设有限公司 Novel environment-friendly power generation equipment

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CN1089191A (en) * 1993-04-12 1994-07-13 鞍山钢铁公司 Magnetic separating, processing and recovery system for steel slag
EP1076206A1 (en) * 1999-08-13 2001-02-14 Ebara Corporation Method for processing furnace-bottom residue produced in gasification and slagging combustion furnace
CN1282635A (en) * 2000-09-08 2001-02-07 武汉冶金渣环保工程有限责任公司 Comprehensive utilization of steel slags
CN102061345A (en) * 2010-11-28 2011-05-18 上海大学 Comprehensive treatment method for recycling ferrous metallurgical slag
CN103374635A (en) * 2012-04-16 2013-10-30 攀钢集团攀枝花钢铁研究院有限公司 Blast furnace slag recycling method
CN102688804A (en) * 2012-05-17 2012-09-26 昆明冶金研究院 Method for recycling metal iron from steel slag of converter
CN204262035U (en) * 2014-11-19 2015-04-15 晋江市冠兴建材有限责任公司 Fuel waste residue recovery and processing system

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