CN105060674A - Blue algae extrusion and dehydration device - Google Patents

Blue algae extrusion and dehydration device Download PDF

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Publication number
CN105060674A
CN105060674A CN201510456442.1A CN201510456442A CN105060674A CN 105060674 A CN105060674 A CN 105060674A CN 201510456442 A CN201510456442 A CN 201510456442A CN 105060674 A CN105060674 A CN 105060674A
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filter screen
blue
extrusion dehydration
green algae
dehydration
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CN201510456442.1A
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CN105060674B (en
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龚正圣
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Heilongjiang Caihui Digital Trade Technology Co.,Ltd.
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Abstract

The invention belongs to the technical field of water surface blue algae processing, and specifically relates to a blue algae extrusion, filtration, and dehydration device. The device comprises a filter screen mechanism, which is provided with a filter screen, an extrusion and dehydration part, and a blowing mechanism. The filter screen is provided with the extrusion and dehydration part. The extrusion and dehydration part can push blue algae or algae water to move forward on the filter screen, or can push the filter screen, which contain blue algae or algae water, to move forward. At the same time, the extrusion and dehydration part can extrude the blue algae or algae water to remove the water from the filter screen. The blowing mechanism is used to blow the filter screen that is obstructed by the blue algae. The device has the advantages of low cost, high efficiency, and environment-friendliness, and can conveniently, effectively, stably, and reliably process blue algae.

Description

A kind of blue-green algae squeezing dehydration device
Technical field
The invention belongs to water-surface blue-green algae processing technology field, be specifically related to a kind of blue-green algae squeezing dehydration device.
Background technology
Blue-green algae is photosynthetic oxygen evolution biology the earliest, becomes aerobic environment play huge effect to earth surface from the atmospheric environment of anaerobic.But because blue-green algae reproduction speed is exceedingly fast, vitality is strong again, and in the water body that some are nutritious, blue-green algae often in amount reproduction in summer, and forms one deck blue-greenish colour at the water surface and has the offscum of bad smell, causes wawter bloom phenomenon.Large-scale blue algae bloom, can cause water quality deterioration, may exhaust water oxygen gas and cause the death of fish time serious, very harmful.
In order to avoid the above-mentioned harm of blue-green algae, the main method that current blue-green algae is administered comprises artificial salvaging, water diversion and renewal, Sediment Dredging etc., is wherein most widely used with the operating method of manually salvaging especially.In current maturing technique, artificial by after the blue algae collecting, fishing assembled in water, after usually adding flocculation agent again, filter-press dehydration makes algal biscuit, delivers to treatment plant and carries out such as landfill, burning and even fermented manure process etc.But, it is to be noted, because blue-green algae surface texturisation is tight and survivable, even if rely on flocculation agent to carry out moisture removal, flocculation agent also cannot effectively infiltrate in blue-green algae at all, naturally its water suction effect is had a greatly reduced quality, and causes the water ratio of algal biscuit finished product still high, thus brings difficulty for follow-up algal biscuit finished product.How to seek a kind of operation practical and reliable processing mode, the facilitation treatment effect of blue-green algae can be realized, to solve the bottleneck of present stage blue-green algae process, thus for subsequent disposal operation provides water ratio lower and more tractable blue-green algae finished product, be the technical barrier that this area is urgently to be resolved hurrily in recent years.
Summary of the invention
Object of the present invention is for overcoming above-mentioned the deficiencies in the prior art, the device of a kind of rational in infrastructure and blue-green algae press filtration of practicality dehydration is provided, effectively can realize the facilitation processing intent of blue-green algae, thus can be subsequent disposal operation and provide water ratio lower and more tractable blue-green algae mud, its working stability is reliable and processing efficiency is high.
For achieving the above object, present invention employs following technical scheme:
A kind of blue-green algae squeezing dehydration device, this device comprise be equipped with filter screen filter screen mechanism, extrusion dehydration parts and blower mechanism; On described filter screen, be provided with and push blue-green algae or algae water moves ahead on filter screen, or the filter screen filling blue-green algae or algae water is moved ahead, and by extruding the extrusion dehydration parts making the moisture in blue-green algae or algae water be discharged by filter screen; The blower mechanism of the filter screen blocked by blue-green algae for purge is also provided with in this device.
The present invention can also be able to further realization by following technical measures.
Preferably, described filter screen is collodion or silk screen.
Preferably, the side towards filter screen of described extrusion dehydration parts, is provided with multiple extrusion dehydration block; Described extrusion dehydration block adopts the material being easy to absorb water.
Further, the material of described extrusion dehydration block is collodion.
Further, the spacing between described filter screen and extrusion dehydration block is adjustable.
Preferably, the blowing mouth of described blower mechanism be located at the centre of extrusion dehydration block or its before and after locate, the outlet air end of blowing mouth is arranged towards filter screen, and the other end of blowing mouth is connected by airduct with blower fan.
Preferably, be provided with squeezing groove in described filter screen mechanism, described filter screen is laid in squeezing groove; Described extrusion dehydration block is located at the top of filter screen and moves along the direction that filter screen is arranged, or moves in the direction that filter screen is arranged along extrusion dehydration block; Described extrusion dehydration block is all or part of to be sticked together with filter screen; The upside of described filter screen is provided with opening for feed; Described filter screen is provided with discharge gate.
As one of them preferred version of the present invention, described filter screen mechanism comprises cylindric first ring baffle being arranged on inner side and cylindric second ring baffle being arranged on outside, surrounds circular squeezing groove between described first ring baffle and the second ring baffle; The top of described first ring baffle and the second ring baffle offers opening for feed; Described extrusion dehydration parts are fixedly connected between the first ring baffle and the second ring baffle, and described extrusion dehydration parts are set to multiple, and multiple extrusion dehydration parts are circumferentially evenly arranged in the upside of filter screen.
As another preferred version of the present invention, described extrusion dehydration parts are set to multiple, and multiple extrusion dehydration parts are fixedly installed in rotating band, reciprocating rotation under the drive of described rotating band winding on two rollers and at roller; Described filter screen mechanism at least comprises the filter screen being arranged on upside rotating band underside plan shape, and the extrusion dehydration block on described extrusion dehydration parts is set to abut on filter screen.
Preferably, described rotating band is provided with feed pieces in the front side of its turning direction, and the opening for feed of described feed pieces is set to towards the upside of rotating band, and opening for feed be arranged so that the width uniform distribution of blue-green algae along belt; This device is provided with discharge groove at the rear side along rotating band turning direction of filter screen.
Beneficial effect of the present invention is:
1) extrusion dehydration and cleaning filter screen combine by the present invention, make blue algae dewatering and clean filter screen and synchronously carry out.Because extrusion dehydration block and described filter screen are close together, between the extrusion dehydration block of extrusion dehydration parts and filter screen, form the enclosed space of extrusion dehydration, cleaning.When extrusion dehydration block push algae water move ahead on filter screen time, moisture in blue-green algae have been arranged by filter screen in the effect next section of squeeze and has been gone out, another part then converges in the surface of filter screen, the blowing mouth be located in the middle of extrusion dehydration block is transported between filter screen and extrusion dehydration block by the wind that blower fan is sent here by airduct continuously, now water is gentle mixes, therefore just define and be similar to the same cleaning performance of water blast gun, the blue-green algae that is blocked in filter screen mesh is rushed out soon, and moves ahead together along with extrusion dehydration block.Extruding and kneading so repeatedly, algae water will become algae mud soon.Algae mud discharges finally by the discharge gate be located on filter screen.
From the above, cost of manufacture of the present invention is low and efficiency is high, without contaminative to environment, effectively can realize again the facilitation processing intent of blue-green algae simultaneously, working stability and reliable.
2) spacing in the present invention between the extrusion dehydration block of extrusion dehydration parts and described filter screen is adjustable, thus when being worn when extrusion dehydration block or causing because of other reasons the spacing between extrusion dehydration block and filter screen to increase or need to change filter screen, extrusion dehydration parts or filter screen mechanism only need be lowered or rise by operator, thus the performance effectively ensuring this device is unaffected.
3) filter screen in the present invention and extrusion dehydration block all adopt collodion, the pore of collodion is little, and water-absorbent is stronger, the setting of collodion significantly enhances the water absorbing properties of extrusion dehydration block and filter screen, make extrusion dehydration block and filter screen all can absorb the moisture of Cells of Blue-green Algae extruding and generation in the course of the work, thus effectively increase the processing efficiency of this device to blue-green algae.
4) the extrusion dehydration parts in the present invention and filter screen have multiple implementation, and such as extrusion dehydration parts can for the endless member be made up of many extrusion stems or extrusion roll, the container of filter screen then for matching with above-mentioned endless member; Such as extrusion dehydration parts are square or rectangular-shaped extrusion stem again, and filter screen is then for ease of the planar that matches with extrusion stem or extrusion roll or tabular; Therefore the present invention is easy to realize, and is convenient to produce, has larger application value.
Accompanying drawing explanation
Fig. 1,2 is the structural representation of first preferred version of the present invention.
Fig. 3 is the structural representation of first preferred version of the present invention removing feed pieces.
Fig. 4 is the structural representation of first preferred version of the present invention removing extrusion dehydration parts.
Fig. 5,6a, 6b are the structural representation of blower mechanism.
Fig. 7 is the structural representation of feed pieces.
Fig. 8 is the structural representation of second preferred version of the present invention.
In figure, the implication of label symbol is as follows:
10-first ring baffle 20-second ring baffle 30-feed pieces
31-opening for feed 40-filter screen 50-extrusion dehydration parts 51-extrusion dehydration block
52-blowing mouth 60-discharge groove 70-belt 71-roller 80-airduct
81-annular aid distributing pipe
Embodiment
Below in conjunction with the accompanying drawing in the embodiment of the present invention, be clearly and completely described the technical scheme in the embodiment of the present invention, obviously, described embodiment is only the present invention's part embodiment, instead of whole embodiments.Based on the embodiment in the present invention, those of ordinary skill in the art, not making the every other embodiment obtained under creative work prerequisite, belong to the scope of protection of the invention.
Embodiment 1
As shown in Figure 1, 2, filter screen mechanism in the present embodiment comprises horizontally disposed circular filter screen 40, described filter screen 10 is folded between cylindric first ring baffle 10 being in inner side and cylindric second ring baffle 20 being in outside, and filter screen 10 is arranged on the bottom of the first ring baffle 10 and the second ring baffle 20; The top of described first ring baffle 10 and the second ring baffle 20 is set to opening for feed; Described extrusion dehydration parts 50 are set to multiple, and multiple extrusion dehydration parts 50 are circumferentially evenly arranged in the upside of filter screen 40.
As shown in Fig. 5,6a, extrusion dehydration parts 50 follow the first ring baffle 10 and the second ring baffle 20 center rotating around filter screen 40; Now, the blowing mouth 52 of described blower mechanism is located at the middle part of extrusion dehydration block 51, it is inner that the airduct 80 be connected with blowing mouth 52 enters the first ring baffle 10 through the first ring baffle 10, airduct 80 is connected with the annular aid distributing pipe 81 being arranged in the first ring baffle 10, blower fan by active joint to annular aid distributing pipe 81 air feed.
As shown in Figure 6 b, during work, the first ring baffle 10 and the second ring baffle 20 and filter screen 40 do not rotate, and extrusion dehydration parts 50 are along filter screen 40 surface pivots; Now, the blowing mouth 52 of described blower mechanism is located at the middle part of extrusion dehydration block 51, the airduct 80 be connected with blowing mouth 52 upwards extends and bends and stretches into inner at the first ring baffle 10 or the second ring baffle 20 outside, airduct 80 can be connected with annular aid distributing pipe (not shown in Fig. 6 b) equally, blower fan equally by active joint to annular aid distributing pipe air feed.
As shown in Fig. 1,2,7, the top of described first ring baffle 10 and the second ring baffle 20 is provided with feed pieces 30, feed pieces 30 is provided with opening for feed 31.The decoration form of opening for feed 31 is varied, and the setting position of described opening for feed 31 makes blue-green algae along the turning direction uniform distribution of extrusion dehydration parts 50 as shown in Figure 1, and namely opening for feed 31 is arranged along the radial direction of filter screen 40; Certain opening for feed 31 can also be arranged along the circumferential direction of filter screen 40, as shown in Figure 2.
As shown in figures 1-4, described filter screen 40 is provided with discharge groove 60, and described discharge groove 60 is set to away from opening for feed 31 side along the turning direction of extrusion dehydration parts 50.
As shown in Figure 5,6, the side towards filter screen 40 of described extrusion dehydration parts 50 is provided with multiple extrusion dehydration block 51, and described filter screen 40 is collodion or silk screen; The material of described extrusion dehydration block 51 is collodion.
As shown in Figure 5,6, the blowing mouth 52 of described blower mechanism is located at the middle part of extrusion dehydration block 51, and namely all sides of blowing mouth 52 are all set to collodion, and the outlet air end of blowing mouth 52 is arranged towards filter screen 40, and the other end of blowing mouth 52 is connected by airduct 80 with blower fan.
Embodiment 2
As shown in Figure 8, described extrusion dehydration parts 50 are set to multiple, and multiple extrusion dehydration parts 50 are fixedly installed in rotating band 70, and the winding of described rotating band 70 is reciprocating rotation on two rollers 71 and under the drive of roller 71; Described filter screen mechanism at least comprises the filter screen 40 being arranged on upside rotating band 70 underside plan shape, and the side being provided with multiple extrusion dehydration block 51 of described extrusion dehydration parts 50 is passed rotating band 70 and is set to abut on filter screen 40.
As shown in Figure 8, described filter screen mechanism be by filter screen 40 form rectangular-shaped, and filter screen mechanism is fixedly installed on rotating band 70 rotates and in the space surrounded.
This device is provided with feed pieces 30 in the front side of rotating band 70 turning direction, and the opening for feed of described feed pieces 30 is set to towards the upside of rotating band 70, and opening for feed be arranged so that the width uniform distribution of blue-green algae along belt; This device is provided with discharge groove 60 at the rear side along rotating band 70 turning direction of filter screen 40.
In the above two embodiments, described extrusion dehydration parts 50 are all in flat bulk or in riser shape; Described extrusion dehydration block 51 is set to the fibre product being easy to absorb water, and described fibre product includes but not limited to sponge or collodion, thus increases filter dehydration performance.
Same, in the above two embodiments, the spacing between the extrusion dehydration block 51 of extrusion dehydration parts 50 and described filter screen 40 is adjustable, is conducive to the stability and the reliability that ensure extrusion dehydration performance.
For Fig. 1, working process of the present invention is elaborated below.
During real work of the present invention, first by blue-green algae with put in the cavity that the first ring baffle 10 and the second ring baffle 20 surround from the opening for feed 31 of feed pieces 30, along with the uniform rotation of the first ring baffle 10 and the second ring baffle 20, the extrusion dehydration parts 50 be fixedly installed between the first ring baffle 10 and the second ring baffle 20 also start to rotate.Because collodion material has certain elasticity, therefore the extrusion dehydration region between extrusion dehydration block 51 and filter screen 40 is operationally convenient to blue-green algae to swallow wherein, also just due to closely reclining each other and there is the dual function of elastic collodion between extrusion dehydration block 51 and filter screen 40, enter the blue-green algae in extrusion dehydration region or algae shipwreck to depart from, therefore, under the lasting rotation of extrusion dehydration parts 50, enter the blue-green algae in extrusion dehydration region or algae water will constantly be extruded under repeatedly the rubbing of collodion and dewater, and finally form algae mud, the moisture be squeezed out in the process is then directly got rid of by filter screen 40.
Algae mud constantly rolls advance under the promotion of extrusion dehydration parts 50, finally falls into discharge groove 60 and is excluded.

Claims (10)

1. a blue-green algae squeezing dehydration device, is characterized in that: this device comprise be equipped with filter screen (40) filter screen mechanism, extrusion dehydration parts (50) and blower mechanism; On described filter screen (40), be provided with and push blue-green algae or algae water moves ahead on filter screen (40), or make the filter screen (40) filling blue-green algae or algae water move ahead, and by extruding the extrusion dehydration parts (50) making the moisture in blue-green algae or algae water be discharged by filter screen (40); The blower mechanism of the filter screen (40) blocked by blue-green algae for purge is also provided with in this device.
2. the device of a kind of blue-green algae press filtration dehydration as claimed in claim 1, is characterized in that: described filter screen (40) is collodion or silk screen.
3. the device of a kind of blue-green algae press filtration dehydration as claimed in claim 1, is characterized in that: the side towards filter screen (40) of described extrusion dehydration parts (50), is provided with multiple extrusion dehydration block (51); The employing of described extrusion dehydration block (51) is easy to the material absorbed water.
4. the device of a kind of blue-green algae press filtration dehydration as claimed in claim 3, is characterized in that: the material of described extrusion dehydration block (51) is collodion.
5. a kind of blue-green algae squeezing dehydration device as claimed in claim 3, is characterized in that: the spacing between described filter screen (40) and extrusion dehydration block (51) is adjustable.
6. a kind of blue-green algae squeezing dehydration device as described in claim 1 or 2 or 3, it is characterized in that: the blowing mouth (52) of described blower mechanism be located at the centre of extrusion dehydration block (51) or its before and after locate, the outlet air end of blowing mouth (52) is arranged towards filter screen (40), and the other end of blowing mouth (52) is connected by airduct (80) with blower fan.
7. a kind of blue-green algae squeezing dehydration device as described in claim 1 or 2 or 3, is characterized in that: be provided with squeezing groove in described filter screen mechanism, and described filter screen (40) is laid in squeezing groove; Described extrusion dehydration block (51) is located at the top of filter screen (40) and moves along the direction that filter screen (40) is arranged, or filter screen (40) is along the direction motion that extrusion dehydration block (51) is arranged; Described extrusion dehydration block (51) is all or part of to be sticked together with filter screen (40); The upside of described filter screen (40) is provided with opening for feed; Described filter screen (40) is provided with discharge gate (60).
8. blue-green algae squeezing dehydration device as claimed in claim 7, it is characterized in that: described filter screen mechanism comprises cylindric first ring baffle (10) being arranged on inner side and cylindric second ring baffle (20) being arranged on outside, surrounds circular squeezing groove between described first ring baffle (10) and the second ring baffle (20); The top of described first ring baffle (10) and the second ring baffle (20) offers opening for feed; Described extrusion dehydration parts (50) are fixedly connected between the first ring baffle (10) and the second ring baffle (20), described extrusion dehydration parts (50) are set to multiple, and multiple extrusion dehydration parts (50) are circumferentially evenly arranged in the upside of filter screen (40).
9. the blue-green algae squeezing dehydration device as described in claim 1 or 2 or 3, it is characterized in that: described extrusion dehydration parts (50) are set to multiple, multiple extrusion dehydration parts (50) are fixedly installed in rotating band (70), and described rotating band (70) winding is reciprocating rotation on two rollers (71) and under the drive of roller (71); Described filter screen mechanism at least comprises the filter screen (40) being arranged on upside rotating band (70) underside plan shape, and the extrusion dehydration block (51) on described extrusion dehydration parts (50) is set to abut on filter screen (40).
10. blue-green algae squeezing dehydration device as claimed in claim 9, it is characterized in that: described rotating band (70) is provided with feed pieces (30) in the front side of its turning direction, the opening for feed of described feed pieces (30) is set to towards the upside of rotating band (70), and opening for feed be arranged so that the width uniform distribution of blue-green algae along belt; This device is provided with discharge groove (60) at the rear side along rotating band (70) turning direction of filter screen (40).
CN201510456442.1A 2015-07-28 2015-07-28 A kind of blue-green algae squeezing dehydration device Active CN105060674B (en)

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107056010A (en) * 2017-05-08 2017-08-18 江苏涞森环保设备有限公司 Volute extrusion-type dewaterer
CN107098515A (en) * 2017-07-07 2017-08-29 长江水利委员会长江科学院 Concentration integrated device and method are killed in bloom blue algae absorption
CN108455749A (en) * 2017-02-22 2018-08-28 郑百祥 It is a kind of to the sewage disposal device containing solids
CN109336360A (en) * 2018-11-08 2019-02-15 江苏省农业科学院 Cyanobacteria deep dehydration method and its power generation energy resource method
CN113101727A (en) * 2021-02-26 2021-07-13 暨南大学 Suction-blowing filtering system and suction-blowing filtering method using same
CN113101726A (en) * 2021-02-26 2021-07-13 暨南大学 Suction-blowing filtering system
CN114208657A (en) * 2021-12-10 2022-03-22 王少凯 Cultivation device for batch chlorella for algae cultivation

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102754862A (en) * 2011-10-14 2012-10-31 王行安 Cake water absorption disc device for algae processing and dewatering equipment
CN205011599U (en) * 2015-07-28 2016-02-03 龚正圣 Blue alga squeezing dehydration device

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102754862A (en) * 2011-10-14 2012-10-31 王行安 Cake water absorption disc device for algae processing and dewatering equipment
CN205011599U (en) * 2015-07-28 2016-02-03 龚正圣 Blue alga squeezing dehydration device

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108455749A (en) * 2017-02-22 2018-08-28 郑百祥 It is a kind of to the sewage disposal device containing solids
CN108455749B (en) * 2017-02-22 2024-04-26 郑百祥 Sewage treatment equipment for containing solids
CN107056010A (en) * 2017-05-08 2017-08-18 江苏涞森环保设备有限公司 Volute extrusion-type dewaterer
CN107056010B (en) * 2017-05-08 2023-06-30 江苏涞森环保设备有限公司 Worm extrusion type dehydrator
CN107098515A (en) * 2017-07-07 2017-08-29 长江水利委员会长江科学院 Concentration integrated device and method are killed in bloom blue algae absorption
CN109336360A (en) * 2018-11-08 2019-02-15 江苏省农业科学院 Cyanobacteria deep dehydration method and its power generation energy resource method
CN113101727A (en) * 2021-02-26 2021-07-13 暨南大学 Suction-blowing filtering system and suction-blowing filtering method using same
CN113101726A (en) * 2021-02-26 2021-07-13 暨南大学 Suction-blowing filtering system
CN114208657A (en) * 2021-12-10 2022-03-22 王少凯 Cultivation device for batch chlorella for algae cultivation
CN114208657B (en) * 2021-12-10 2024-03-01 深圳市永泼生物科技有限公司 Cultivation device for batch green chlorella for algae cultivation

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