CN209828424U - Used oil recovery processing system - Google Patents

Used oil recovery processing system Download PDF

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Publication number
CN209828424U
CN209828424U CN201920470687.3U CN201920470687U CN209828424U CN 209828424 U CN209828424 U CN 209828424U CN 201920470687 U CN201920470687 U CN 201920470687U CN 209828424 U CN209828424 U CN 209828424U
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China
Prior art keywords
pipeline
tank
adsorption tank
output end
oil
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CN201920470687.3U
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Chinese (zh)
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王文
刘守权
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DAQING HAI XIAO MACHINERY AND EQUIPMENT MANUFACTURE Co.,Ltd.
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王文
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Abstract

The utility model provides a used oil recovery processing system, relate to environmental protection equipment technical field, it includes used oil storage device, stacked separator, the finished product oil tank, retrieval and utilization water pitcher and residue oil pond, used oil storage device passes through the pipeline and is connected with residue oil pond and precipitation device, precipitation device passes through rough filter equipment, electromagnetic heating device and dewatering device are connected with stacked separator, stacked separator output connects gradually the adsorption tank, advanced treatment device and finished product oil tank, the solid-liquid separation device is led to and connects gradually to advanced treatment device output, active carbon adsorption equipment and retrieval and utilization water pitcher, the solid-liquid separation device output is connected with residue oil pond and condenser respectively, the condenser is connected with dewatering device, stacked separator output is connected with residue processing apparatus, residue processing apparatus is connected with solid-liquid separation device. The waste engine oil recovery processing system achieves a good separation and recovery effect through a series of processing means, and finally obtains engine oil with higher purity.

Description

Used oil recovery processing system
The technical field is as follows:
the utility model relates to an environmental protection equipment technical field, concretely relates to used oil recovery processing system.
Background art:
the national environmental protection agency sets the waste engine oil as one of three major control points in the 21 world environmental protection field, fully utilizes the waste engine oil to regenerate and reduce the waste engine oil into finished engine oil, can relieve the contradiction between the shortage of oil and the increasing demand of supply and demand, and can create objective economic benefit.
The utility model has the following contents:
the utility model aims at overcoming the weak point that above-mentioned prior art exists, and provide a used oil recovery processing system, its energy resource consumption is low, resources are saved, handles thoroughly, reaches the recovery standard.
In order to solve the problem existing in the background art, the utility model adopts the following technical scheme: the system comprises a waste engine oil storage device, a stacked separation device, a finished oil tank, a recycling water tank and a residual oil tank, wherein unrecoverable engine oil in the waste engine oil storage device is connected with the residual oil tank through a pipeline, recovered engine oil in the internal medicine of the waste engine oil storage device is connected with a pipeline sedimentation device, the sedimentation device is connected with a rough filtering device through a pipeline, the rough filtering device is connected with an electromagnetic heating device through a pipeline, the electromagnetic heating device is connected with a dewatering device through a pipeline, the dewatering device is connected with the stacked separation device through a pipeline, a first output end of the stacked separation device is respectively connected with a first adsorption tank and a second adsorption tank through pipelines, a first valve and a second valve are respectively arranged on the pipeline between the stacked separation device and the first adsorption tank and the second adsorption tank, the first adsorption tank and the second adsorption tank are connected with a depth treatment device through pipelines, and a first output end of the depth treatment device is connected with the finished, the second output end of the advanced treatment device is connected with the solid-liquid separation device through a pipeline, the first output end of the solid-liquid separation device is connected with the residual oil pool through a pipeline, the second output end of the solid-liquid separation device is connected with the activated carbon adsorption device through a pipeline, the activated carbon adsorption device is connected with the reuse water tank, the third output end of the solid-liquid separation device is connected with the condenser through a pipeline, the condenser is connected with the input end of the dehydration device through a first circulation pipeline, the second output end of the stacked separation device is connected with the residual treatment device through a pipeline, the first output end of the residual treatment device is connected with the input end of the solid-liquid separation device through a pipeline, and the second output end of the residual treatment device is connected.
First adsorption tank and second adsorption tank on the outer wall all be equipped with the desorption subassembly, the desorption subassembly comprises microwave generator and supersonic generator.
The first adsorption tank and the second adsorption tank are filled with adsorbents, and the adsorbents are adhered to the inner walls of the first adsorption tank and the second adsorption tank.
The pipelines are all provided with pump bodies.
The first valve and the second valve are controlled manually or by a controller.
The beneficial effects of the utility model are that simple structure, the practicality is strong, and green reaches good separation through a series of processing means and retrieves the effect, finally obtains the higher machine oil of purity, is fit for extensive popularization and use.
Description of the drawings:
fig. 1 is a schematic flow chart of the present invention.
The specific implementation mode is as follows:
referring to fig. 1, the present invention specifically adopts the following embodiments: the system comprises a waste engine oil storage device, a stacked separation device, a finished oil tank, a recycling water tank and a residual oil tank, wherein unrecoverable engine oil in the waste engine oil storage device is connected with the residual oil tank through a pipeline, recovered engine oil in the internal medicine of the waste engine oil storage device is connected with a pipeline sedimentation device, the sedimentation device is connected with a rough filtering device through a pipeline, the rough filtering device is connected with an electromagnetic heating device through a pipeline, the electromagnetic heating device is connected with a dewatering device through a pipeline, the dewatering device is connected with the stacked separation device through a pipeline, a first output end of the stacked separation device is respectively connected with a first adsorption tank and a second adsorption tank through pipelines, a first valve and a second valve are respectively arranged on the pipeline between the stacked separation device and the first adsorption tank and the second adsorption tank, the first adsorption tank and the second adsorption tank are connected with a depth treatment device through pipelines, and a first output end of the depth treatment device is connected with the finished, the second output end of the advanced treatment device is connected with the solid-liquid separation device through a pipeline, the first output end of the solid-liquid separation device is connected with the residual oil pool through a pipeline, the second output end of the solid-liquid separation device is connected with the activated carbon adsorption device through a pipeline, the activated carbon adsorption device is connected with the reuse water tank, the third output end of the solid-liquid separation device is connected with the condenser through a pipeline, the condenser is connected with the input end of the dehydration device through a first circulation pipeline, the second output end of the stacked separation device is connected with the residual treatment device through a pipeline, the first output end of the residual treatment device is connected with the input end of the solid-liquid separation device through a pipeline, and the second output end of the residual treatment device is connected. First adsorption tank and second adsorption tank on the outer wall all be equipped with the desorption subassembly, the desorption subassembly comprises microwave generator and supersonic generator. The first adsorption tank and the second adsorption tank are filled with adsorbents, and the adsorbents are adhered to the inner walls of the first adsorption tank and the second adsorption tank. The pipelines are all provided with pump bodies. The first valve and the second valve are controlled manually or by a controller.
When the waste engine oil recovery processing system is used, unrecoverable engine oil in the waste engine oil storage device is directly conveyed to a residual oil pool for unified collection and management, recyclable engine oil is conveyed to a precipitation device for precipitation, the precipitation device precipitates large-volume substances which are mixed in the waste engine oil and are insoluble in the waste engine oil, the precipitated upper layer waste engine oil is conveyed to a rough filtering device for filtering, small-volume impurities mixed in the waste engine oil are filtered, the filtered waste engine oil enters an electromagnetic heating device, impurities with the boiling point smaller than that of the waste engine oil are evaporated from the waste engine oil, the purpose of separating the waste engine oil from the waste engine oil is achieved, the heated waste engine oil enters a dehydration device for dehydration work, the dehydration device removes water vapor in a waste engine oil mixture, the waste engine oil mixture after the water vapor is removed enters a stacked separation device, and the stacked separation device plays a role in solid-liquid separation, solid substances in the waste engine oil are separated, the solid device separated by the stacked separation device is conveyed into a residue treatment device for cooling or filtering and other work, the treated solid impurities enter the solid-liquid separation device again for separating solid, water and water vapor, the completely treated solid impurities are conveyed into a residual oil pool for recycling, liquid water is conveyed into an active carbon adsorption device for adsorbing impurity odor, water with high purity is obtained after adsorption by the active carbon adsorption device and is finally conveyed into a reuse water tank, the water vapor separated by the solid-liquid separation device enters a condenser for condensation, and the condensed water is conveyed into a dehydration device through a first circulation pipeline for dehydration treatment; the waste engine oil separated by the stacked separation device selectively enters a first adsorption tank or a second adsorption tank, the first adsorption tank and the second adsorption tank can work simultaneously and independently, a first valve is opened, the waste engine oil enters the first adsorption tank, the adsorbent adsorbs the waste engine oil in a waste engine oil mixture, when the adsorbent is full of engine oil, the adsorbent is conveyed into the deep treatment device through a pipeline and a pump body and subjected to deep filtration treatment, a desorption assembly is opened simultaneously, a microwave generator heats the adsorbent, the speed of separating the engine oil from the adsorbent is accelerated, the pump body can conveniently and quickly pump the engine oil into the deep treatment device, the ultrasonic generator vibrates the first adsorption tank, the speed of separating the engine oil from the adsorbent is also accelerated, the pump body can conveniently and quickly pump the engine oil into the deep treatment device, the purity of the engine oil treated by the deep treatment device is high, can be reused and transported to a product oil tank for use.
When the first adsorption tank is full of machine oil, a second valve can be opened to enable the second adsorption tank to absorb the machine oil, the second adsorption tank is filled with an adsorbent, and a desorption assembly is also arranged on the outer wall of the second adsorption tank; when the amount of the engine oil mixture to be processed is large, the first valve and the second valve can be opened simultaneously, so that the first adsorption tank and the second adsorption tank work simultaneously, and the engine oil is adsorbed in batches, thereby not only improving the working efficiency, but also improving the quality of the engine oil adsorption and ensuring the purity of the finally obtained crude oil.
In conclusion, this used oil recovery processing system simple structure, the practicality is strong, and green reaches good separation recovery effect through a series of processing means, finally obtains the higher machine oil of purity, is fit for extensive popularization and use.

Claims (5)

1. The utility model provides a used oil recovery processing system which characterized in that: the system comprises a waste engine oil storage device, a stacked separation device, a product oil tank, a recycling water tank and a residual oil tank, wherein unrecoverable engine oil in the waste engine oil storage device is connected with the residual oil tank through a pipeline, recoverable engine oil in the waste engine oil storage device is connected with a pipeline sedimentation device, the sedimentation device is connected with a rough filtration device through a pipeline, the rough filtration device is connected with an electromagnetic heating device through a pipeline, the electromagnetic heating device is connected with a dehydration device through a pipeline, the dehydration device is connected with the stacked separation device through a pipeline, a first output end of the stacked separation device is respectively connected with a first adsorption tank and a second adsorption tank through pipelines, a first valve and a second valve are respectively arranged on the pipeline connected between the stacked separation device and the first adsorption tank and the second adsorption tank, the first output end of the deep treatment device is connected with the product oil tank through a pipeline, the second output end of the advanced treatment device is connected with the solid-liquid separation device through a pipeline, the first output end of the solid-liquid separation device is connected with the residual oil pool through a pipeline, the second output end of the solid-liquid separation device is connected with the activated carbon adsorption device through a pipeline, the activated carbon adsorption device is connected with the reuse water tank, the third output end of the solid-liquid separation device is connected with the condenser through a pipeline, the condenser is connected with the input end of the dehydration device through a first circulation pipeline, the second output end of the stacked separation device is connected with the residual treatment device through a pipeline, the first output end of the residual treatment device is connected with the input end of the solid-liquid separation device through a pipeline, and the second output end of the residual treatment device is connected.
2. The used oil recovery processing system according to claim 1, characterized in that: the outer walls of the first adsorption tank and the second adsorption tank are respectively provided with a desorption assembly, and the desorption assembly comprises a microwave generator and an ultrasonic generator.
3. The used oil recovery processing system according to claim 1, characterized in that: the first adsorption tank and the second adsorption tank are filled with adsorbents, and the adsorbents are adhered to the inner walls of the first adsorption tank and the second adsorption tank.
4. The used oil recovery processing system according to claim 1, characterized in that: the pipelines are all provided with pump bodies.
5. The used oil recovery processing system according to claim 1, characterized in that: the first valve and the second valve are controlled manually or by a controller.
CN201920470687.3U 2019-04-09 2019-04-09 Used oil recovery processing system Active CN209828424U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920470687.3U CN209828424U (en) 2019-04-09 2019-04-09 Used oil recovery processing system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920470687.3U CN209828424U (en) 2019-04-09 2019-04-09 Used oil recovery processing system

Publications (1)

Publication Number Publication Date
CN209828424U true CN209828424U (en) 2019-12-24

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920470687.3U Active CN209828424U (en) 2019-04-09 2019-04-09 Used oil recovery processing system

Country Status (1)

Country Link
CN (1) CN209828424U (en)

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GR01 Patent grant
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TR01 Transfer of patent right

Effective date of registration: 20210413

Address after: 163000 No.15 Kaiyuan street, Ranghulu District, Daqing City, Heilongjiang Province

Patentee after: DAQING HAI XIAO MACHINERY AND EQUIPMENT MANUFACTURE Co.,Ltd.

Address before: 163000 building A4, Fangxiao high end equipment manufacturing park, Ranghulu District, Daqing City, Heilongjiang Province

Patentee before: Wang Wen

TR01 Transfer of patent right