CN220788174U - Floating oil removing device for sewage treatment plant - Google Patents

Floating oil removing device for sewage treatment plant Download PDF

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Publication number
CN220788174U
CN220788174U CN202322325219.6U CN202322325219U CN220788174U CN 220788174 U CN220788174 U CN 220788174U CN 202322325219 U CN202322325219 U CN 202322325219U CN 220788174 U CN220788174 U CN 220788174U
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China
Prior art keywords
oil
output
sewage treatment
treatment plant
fan
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Application number
CN202322325219.6U
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Chinese (zh)
Inventor
宋素娜
任洪叶
郭登科
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Kangda Dongying Environmental Water Co ltd
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Kangda Dongying Environmental Water Co ltd
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Priority to CN202322325219.6U priority Critical patent/CN220788174U/en
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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
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A20/00Water conservation; Efficient water supply; Efficient water use
    • Y02A20/20Controlling water pollution; Waste water treatment
    • Y02A20/204Keeping clear the surface of open water from oil spills

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  • Removal Of Floating Material (AREA)

Abstract

The utility model provides a floating oil removing device for a sewage treatment plant, which relates to the technical field of sewage treatment and comprises a rack member and an oil suction mechanism, wherein oil distributing assemblies which are connected in a sleeved mode are arranged on the inner sides of two ends of the rack member, the top of the rack member is provided with the oil suction mechanism which is connected in a sleeved mode through bolts, and the oil suction mechanism comprises a semi-sealed cabin, a pump body, a pump motor, a rotating shaft, an oil pumping blade, a sieve plate, a telescopic scraping fan, a valve body, a pneumatic valve plug and an oil discharge pipe; according to the utility model, the rotating rod and the oil suction core can be slowly lifted by utilizing the mutual matching of the roller rod and the output belt, the trend of gravity is utilized in the lifting process, the rapid drying is carried out by matching with the upper fan, and when the oil suction device runs to the top end, the oil stain can be centrifugally thrown into the semi-sealed cabin in a centrifugal motion mode by utilizing the mutual matching of the driving motor, the rotating rod and the heating wire and then extracted and separated, so that the effect of efficient cleaning is achieved.

Description

Floating oil removing device for sewage treatment plant
Technical Field
The utility model relates to the technical field of sewage treatment, in particular to a floating oil removal device for a sewage treatment plant.
Background
In the aspects of industry, life and the like, the problems of wastewater treatment and sewage discharge are increasingly prominent, and when the discharge of oil contained in the wastewater is different from the common sewage discharge, firstly, oil-water separation is needed, otherwise, adverse effects are brought to a drainage pipe network and a subsequent sewage treatment station.
When the conventional oil slick removing device is used, oil water is generally required to be removed after standing still to achieve the effect of oil-water separation, for example, application number CN202111241981.5 relates to a removing device, in particular to an oil slick removing device for a sewage treatment plant, and the utility model provides the oil slick removing device for the sewage treatment plant, which has the advantages of simple structure, convenient operation and capability of oil-water separation, and the utility model provides the oil slick removing device for the sewage treatment plant, which comprises the following components: the support legs and the charging frame are symmetrically arranged on two sides of the bottom of the charging frame; however, in the above-mentioned technology, the separation and removal equipment arranged in parallel is difficult to effectively drain water due to no height difference, and water is mixed in the separated oil dirt, so the utility model provides a floating oil removal device for a sewage treatment plant to solve the problems in the prior art.
Disclosure of Invention
According to the floating oil removal device for the sewage treatment plant, the rotating rod and the oil suction core can be slowly lifted by the aid of the mutual matching of the roller rod and the output belt, the oil stain can be centrifugally thrown into the semi-sealed cabin in a centrifugal motion mode and then extracted and separated by the aid of the driving motor, the rotating rod and the heating wire when the oil stain is moved to the top end through the fact that the oil stain is quickly dried by the aid of the gravity trend and the fan in the lifting process, and the oil stain can be efficiently removed.
In order to achieve the purpose of the utility model, the utility model is realized by the following technical scheme: the floating oil removing device for the sewage treatment plant comprises a rack member and an oil absorbing mechanism, wherein oil distributing assemblies which are connected in a sleeved mode are arranged on the inner sides of two ends of the rack member, and the oil absorbing mechanism which is connected in a sleeved mode through bolts is arranged on the top of the rack member;
the oil absorption mechanism comprises a semi-sealed cabin, a pump body, a pump motor, a rotating shaft, an oil pumping blade, a sieve plate, a telescopic scraping fan, a valve body, a pneumatic valve plug and an oil discharge pipe, wherein the semi-sealed cabin is arranged at the top of the bench member, one end of the semi-sealed cabin is provided with the pump body connected with the output end of the pump motor, the rotating shaft connected with the output end of the pump motor is arranged inside the pump body, the annular distributed oil pumping blade is arranged on the outer side of the rotating shaft, one end of the rotating shaft is connected with the sieve plate in a penetrating manner, one end of the sieve plate is provided with the telescopic scraping fan, the valve body provided with the pneumatic valve plug is arranged below the pump body, and the output end of the valve body is connected with the oil discharge pipe.
As a preferred implementation mode of the utility model, the sieve plate is of a porous sheet structure, and the rotating shaft is positioned on the same straight line with the central axes of the sieve plate and the telescopic scraping fan.
As a preferred embodiment of the utility model, the rack member comprises a bolt base, a built-in bottom groove, an elevated frame, an air plate, a fan, a fixing plate and a top base, wherein the built-in bottom groove is arranged on the inner side of the bolt base, the elevated frame is arranged above the bolt base, a plurality of groups of air plates which are distributed in parallel and are used for installing the fan are arranged on the outer side of the elevated frame, the fixing plate is arranged on the inner side of the elevated frame, and the top base is arranged on the top of the elevated frame.
As a preferred embodiment of the utility model, the oil distribution assembly comprises a sleeve seat, a first transmission wheel set, a belt pulley, an output wheel, an output motor, a roller rod, an output belt, a patch, an electromagnetic telescopic rod, an adjusting block, a driving motor, a rotating rod, a heating wire and an oil absorption core, wherein the sleeve seat is arranged on the inner side of the fixed plate, the first transmission wheel set is arranged on one side of the sleeve seat, the first transmission wheel set is connected with the output end of the belt pulley, and the belt pulley is connected with the output motor through the transmission of the output wheel.
As a preferable implementation mode of the utility model, the inner end of the sleeve joint seat is provided with a roller rod, the outer side of the roller rod is provided with a wound output belt, and the outer side of the output belt is provided with a plurality of groups of adhesive blocks which are equidistantly and parallelly distributed.
As a preferred implementation mode of the utility model, an electromagnetic telescopic rod is arranged in the sticking block, one end of the electromagnetic telescopic rod is provided with an adjusting block, a driving motor is arranged in the adjusting block, the output end of the driving motor is connected with a rotating rod, a heating wire is arranged in the rotating rod, and an oil suction core connected in a sleeved mode is arranged on the outer side of the rotating rod.
The beneficial effects of the utility model are as follows:
according to the utility model, the rotating rod and the oil suction core can be slowly lifted by utilizing the mutual matching of the roller rod and the output belt, the trend of gravity is utilized in the lifting process, the rapid drying is carried out by matching with the upper fan, and when the oil suction device runs to the top end, the oil stain can be centrifugally thrown into the semi-sealed cabin in a centrifugal motion mode by utilizing the mutual matching of the driving motor, the rotating rod and the heating wire and then extracted and separated, so that the effect of efficient cleaning is achieved.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic bottom perspective view of the present utility model;
FIG. 3 is a schematic view of the oil distribution assembly of the present utility model;
fig. 4 is a schematic structural view of the oil absorbing mechanism of the present utility model.
Wherein: 1. a gantry member; 101. a bolt base; 102. a bottom groove is arranged in the bottom groove; 103. an overhead; 104. a wind plate; 105. a fan; 106. a fixing plate; 107. a top base; 2. an oil distribution assembly; 201. a socket is sleeved; 202. a first drive wheel set; 203. a belt pulley; 204. an output wheel; 205. an output motor; 206. a roller bar; 207. an output belt; 208. sticking blocks; 209. an electromagnetic telescopic rod; 2010. an adjusting block; 2011. a driving motor; 2012. a rotating rod; 2013. a heating wire; 2014. an oil-absorbing core; 3. an oil absorption mechanism; 301. semi-sealed cabin; 302. a pump body; 303. a pump motor; 304. a rotating shaft; 305. pumping blades; 306. a sieve plate; 307. a telescopic scraping fan; 308. a valve body; 309. a pneumatic valve plug; 3010. and an oil discharge pipe.
Detailed Description
The present utility model will be further described in detail with reference to the following examples, which are only for the purpose of illustrating the utility model and are not to be construed as limiting the scope of the utility model.
According to the figures 1-4, the embodiment provides a floating oil removal device for a sewage treatment plant, which comprises a rack member 1 and an oil absorption mechanism 3, wherein oil distribution assemblies 2 which are connected in a sleeved mode are arranged on the inner sides of two ends of the rack member 1, and the top of the rack member 1 is provided with the oil absorption mechanism 3 which is connected in a sleeved mode through bolts;
the oil absorption mechanism 3 comprises a semi-sealed cabin 301, a pump body 302, a pump motor 303, a rotating shaft 304, oil pumping blades 305, a sieve plate 306, a telescopic scraping fan 307, a valve body 308, a pneumatic valve plug 309 and an oil discharge pipe 3010, wherein the semi-sealed cabin 301 is arranged at the top of the rack member 1, one end of the semi-sealed cabin 301 is provided with the pump body 302 connected with the output end of the pump motor 303, the inside of the pump body 302 is provided with the rotating shaft 304 connected with the output end of the pump motor 303, the outer side of the rotating shaft 304 is provided with the annularly distributed oil pumping blades 305, one end of the rotating shaft 304 is connected with the sieve plate 306 in a penetrating way, one end of the sieve plate 306 is provided with the telescopic scraping fan 307, the lower part of the pump body 302 is provided with the valve body 308 for installing the pneumatic valve plug 309, and the output end of the valve body 308 is connected with the oil discharge pipe 3010.
The sieve plate 306 is of a porous sheet structure, and the rotating shaft 304 is positioned on the same straight line with the central axes of the sieve plate 306 and the telescopic scraping fan 307.
In this embodiment, the valve body 308 is opened by using the pneumatic valve plug 309, then the pump motor 303 is started to output power to drive the output end of the pump motor 303 to operate, so that the output end of the pump motor 303 drives the rotating shaft 304 and the pumping blades 305 inside the pump body 302 to pump the oil stain in the semi-sealed cabin 301, the oil stain difficult to be adsorbed can be scraped and rubbed under the action of the telescopic scraping fan 307 at one end of the sieve plate 306 and input into the valve body 308 below the pump body 302 under the action of the pump body 302, and then the oil stain discharging equipment is enabled to achieve the collection effect under the action of the valve body 308 and the oil drain pipe 3010.
The rack member 1 comprises a bolt base 101, a built-in bottom groove 102, an elevated 103, an air plate 104, a fan 105, a fixing plate 106 and a top base 107, wherein the built-in bottom groove 102 is arranged on the inner side of the bolt base 101, the elevated 103 is arranged above the bolt base 101, a plurality of groups of air plates 104 which are distributed in parallel and are provided with the fan 105 are arranged on the outer side of the elevated 103, the fixing plate 106 is arranged on the inner side of the elevated 103, and the top base 107 is arranged on the top of the elevated 103.
In this embodiment, when the oil suction core 2014 at the outer side of the rotating rod 2012 contacts with sewage, the oil suction core 2014 effectively adsorbs oil stains on the sewage, the oil suction core 2014 on the output belt 207 is slowly lifted through the output transmission of the output belt 207, and in the lifting process, the fan 105 at the inner side of the windward plate 104 generates wind force to dry the oil suction core 2014, so that moisture can be quickly evaporated.
The oil distribution assembly 2 comprises a sleeve seat 201, a first transmission wheel set 202, a belt pulley 203, an output wheel 204, an output motor 205, a roller rod 206, an output belt 207, a paste block 208, an electromagnetic telescopic rod 209, an adjusting block 2010, a driving motor 2011, a rotating rod 2012, a heating wire 2013 and an oil absorption core 2014, wherein the sleeve seat 201 is arranged on the inner side of the fixed plate 106, the first transmission wheel set 202 is arranged on one side of the sleeve seat 201, the first transmission wheel set 202 is connected with the output end of the belt pulley 203, and the belt pulley 203 is connected with the output motor 205 through the transmission of the output wheel 204.
In this embodiment, when in use, the output motor 205 is started to output power to drive the output end of the output motor 205 to operate, so that the output end of the output motor 205 drives the output wheel 204 to rotate, the belt pulley 203 is driven to perform transmission operation through the rotation of the output wheel 204, and the first transmission wheel set 202 is driven to output transmission through the transmission operation of the belt pulley 203.
The inner end of the sleeve seat 201 is provided with a roller rod 206, the outer side of the roller rod 206 is provided with a wound output belt 207, and the outer side of the output belt 207 is provided with a plurality of groups of adhesive blocks 208 which are distributed in parallel at equal intervals.
In this embodiment, the roller 206 at the inner end of the sleeve seat 201 is driven to operate by the output transmission of the first transmission wheel set 202, and the output belt 207 is driven to output transmission by the operation of the roller 206, so that the patch 208 at the outer side of the output belt 207 contacts sewage.
The inside of subsides piece 208 is provided with electromagnetic telescopic link 209, and the one end of electromagnetic telescopic link 209 is provided with regulating block 2010, and the inside of regulating block 2010 is provided with driving motor 2011, and driving motor 2011's output is connected with rotatory stick 2012, and the inside of rotatory stick 2012 is provided with heater strip 2013, and the outside side of rotatory stick 2012 is provided with the oil absorption core 2014 of cup joint connection.
In this embodiment, when the oil suction core 2014 lifted at a retarded speed is operated to the top end, the electromagnetic telescopic rod 209 outputs power to drive the adjusting block 2010 to extend into the semi-sealed cabin 301, then the driving motor 2011 is started to output power to drive the output end of the driving motor 2011 to make the rotary rod 2012 operate at a high speed, and under the action of the heating wire 2013 and the rotary rod 2012, the adsorbed oil stain is softened and then centrifugally moved to be discharged into the semi-sealed cabin 301.
The working principle of the floating oil removal device for the sewage treatment plant is as follows: when in use, the output motor 205 is started to output power to drive the output end of the output motor 205 to operate, the output end of the output motor 205 drives the output wheel 204 to rotate, the belt pulley 203 is driven to drive by the rotation of the output wheel 204, the first transmission wheel set 202 is driven to output transmission by the transmission operation of the belt pulley 203, the first transmission wheel set 202 is driven to drive the roller rod 206 at the inner end of the sleeve seat 201 to operate, the output belt 207 is driven to output transmission by the operation of the roller rod 206, the patch 208 at the outer side of the output belt 207 is enabled to contact with sewage, when the oil suction core 2014 at the outer side of the rotary rod 2012 contacts with sewage, the oil suction core 2014 is enabled to effectively adsorb oil stains on the sewage, the oil suction core 2014 on the output belt 207 is enabled to carry out retarding lifting by the output transmission of the output belt 207, in the lifting process, the fan 105 at the inner side of the upper air plate 104 generates wind power to dry the oil suction core 2014, so that water can be quickly evaporated, when the slowly lifted oil suction core 2014 runs to the top end, the electromagnetic telescopic rod 209 outputs power to drive the regulating block 2010 to extend into the semi-sealed cabin 301, then the driving motor 2011 is started to output power to drive the driving motor 2011 output end to drive the rotary rod 2012 to run at high speed, under the action of the heating wire 2013 and the rotary rod 2012, adsorbed oil stains are softened and centrifugally moved to be discharged into the semi-sealed cabin 301, then the valve body 308 is opened by using the pneumatic valve plug 309, then the pump motor 303 is started to output power to drive the output end of the pump motor 303 to run, so that the oil stains in the semi-sealed cabin 301 are driven by the rotating shaft 304 and the oil suction blades 305 in the pump body 302 after the output end of the pump motor 303 runs, and the oil stains which are difficult to adsorb can be scraped and rubbed under the action of the telescopic scraping fan 307 at one end of the sieve plate 306 to be input into the valve body 308 below the pump body 302 under the cooperation with the pump body 302, the grease is then forced out of the apparatus by the valve body 308 and the grease drain 3010 to achieve a collection effect.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (6)

1. A oil slick clearing device for sewage treatment plant, includes rack component (1) and oil absorption mechanism (3), its characterized in that: the inner sides of two ends of the rack member (1) are provided with oil distributing components (2) which are connected in a sleeved mode, and the top of the rack member (1) is provided with an oil absorbing mechanism (3) which is connected in a sleeved mode through bolts;
the oil suction mechanism (3) comprises a semi-sealed cabin (301), a pump body (302), a pump motor (303), a rotating shaft (304), oil pumping blades (305), a sieve plate (306), a telescopic scraping fan (307), a valve body (308), a pneumatic valve plug (309) and an oil discharge pipe (3010), wherein the semi-sealed cabin (301) is arranged at the top of the rack component (1), one end of the semi-sealed cabin (301) is provided with a pump body (302) connected with the output end of the pump motor (303), the inside of the pump body (302) is provided with a rotating shaft (304) connected with the output end of the pump motor (303), the outer side of the rotating shaft (304) is provided with annular oil pumping blades (305), one end of the rotating shaft (304) is connected with the sieve plate (306) in a penetrating manner, one end of the sieve plate (306) is provided with the telescopic scraping fan (307), the lower part of the pump body (302) is provided with a valve body (308) provided with the pneumatic valve plug (309), and the output end of the valve body (308) is connected with the oil discharge pipe (3010).
2. A floating oil removal apparatus for a sewage treatment plant according to claim 1, wherein: the sieve plate (306) is of a porous sheet structure, and the rotating shaft (304) is positioned on the same straight line with the central axes of the sieve plate (306) and the telescopic scraping fan (307).
3. A floating oil removal apparatus for a sewage treatment plant according to claim 1, wherein: the utility model discloses a rack component (1) is including bolt base (101), built-in kerve (102), overhead (103), aerofoil (104), fan (105), fixed plate (106) and top base (107), the interior avris of bolt base (101) is provided with built-in kerve (102), the top of bolt base (101) is provided with overhead (103), the outside side of overhead (103) is provided with multiunit parallel distribution and installs aerofoil (104) of fan (105), the interior avris of overhead (103) is provided with fixed plate (106), the top of overhead (103) is provided with top base (107).
4. A floating oil removal apparatus for a sewage treatment plant according to claim 3, wherein: the oil distribution assembly (2) comprises a sleeve seat (201), a first transmission wheel set (202), a belt pulley (203), an output wheel (204), an output motor (205), a roller rod (206), an output belt (207), a paste block (208), an electromagnetic telescopic rod (209), an adjusting block (2010), a driving motor (2011), a rotating rod (2012), a heating wire (2013) and an oil suction core (2014), the sleeve seat (201) is arranged on the inner side of the fixed plate (106), the first transmission wheel set (202) is arranged on one side of the sleeve seat (201), the output end of the belt pulley (203) is connected with the first transmission wheel set (202), and the belt pulley (203) is connected with the output motor (205) through the transmission of the output wheel (204).
5. The apparatus for removing floating oil from a sewage treatment plant according to claim 4, wherein: the inner end of the sleeve joint seat (201) is provided with a roller rod (206), the outer side of the roller rod (206) is provided with a wound output belt (207), and the outer side of the output belt (207) is provided with a plurality of groups of adhesive blocks (208) which are distributed in parallel at equal intervals.
6. The apparatus for removing floating oil from a sewage treatment plant according to claim 4, wherein: the inside of subsides piece (208) is provided with electromagnetism telescopic link (209), just the one end of electromagnetism telescopic link (209) is provided with regulating block (2010), the inside of regulating block (2010) is provided with driving motor (2011), just the output of driving motor (2011) is connected with rotatory stick (2012), the inside of rotatory stick (2012) is provided with heater strip (2013), the outside side of rotatory stick (2012) is provided with oil absorption core (2014) of cup jointing.
CN202322325219.6U 2023-08-29 2023-08-29 Floating oil removing device for sewage treatment plant Active CN220788174U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322325219.6U CN220788174U (en) 2023-08-29 2023-08-29 Floating oil removing device for sewage treatment plant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322325219.6U CN220788174U (en) 2023-08-29 2023-08-29 Floating oil removing device for sewage treatment plant

Publications (1)

Publication Number Publication Date
CN220788174U true CN220788174U (en) 2024-04-16

Family

ID=90632919

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322325219.6U Active CN220788174U (en) 2023-08-29 2023-08-29 Floating oil removing device for sewage treatment plant

Country Status (1)

Country Link
CN (1) CN220788174U (en)

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