CN206203990U - One kind is based on agroecological utilization system - Google Patents
One kind is based on agroecological utilization system Download PDFInfo
- Publication number
- CN206203990U CN206203990U CN201621168167.XU CN201621168167U CN206203990U CN 206203990 U CN206203990 U CN 206203990U CN 201621168167 U CN201621168167 U CN 201621168167U CN 206203990 U CN206203990 U CN 206203990U
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- Prior art keywords
- pit
- collecting
- methane
- collecting pit
- motor
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E50/00—Technologies for the production of fuel of non-fossil origin
- Y02E50/30—Fuel from waste, e.g. synthetic alcohol or diesel
Abstract
Agroecological utilization system is based on the utility model discloses one kind, including collecting dung pond 1, methane-generating pit 3 and background control system 9, the excrement in described collecting dung pond 1 sends into methane-generating pit 3 by excrement delivery pump 4 after filler pipe 17 is diluted with water and is stirred through collecting pit agitator 15 with pipe method;The biogas of methane-generating pit 3 gives downstream user by conveyance conduit 6;After the waste residue that methane-generating pit 3 is produced is stirred after being added water by the pipeline 18 that adds water by Stirver for methane tank 16; filtered by filter 7; bulky grain or block impurity are delivered to ashes collecting tank 14 after being crushed into disintegrating machine 13 after being filtered through filter 7; liquid or little particle impurity are delivered to downstream collecting pit by waste residue delivery pump 8; solve traditional ecological agriculture and waste substantial amounts of manpower and materials; operating efficiency is low, the extremely low problem of automaticity.
Description
Technical field
The utility model is related to a kind of utilization system, more particularly to a kind of based on agroecological comprehensive utilization system
System, belongs to recycling economy field of comprehensive utilization.
Background technology
The ecological agriculture be one kind according to ecological theory, make full use of natural condition, a certain specific region set up
The system agricultural industry for getting up.In this system, because of the suitable reasonable arrangement layout of agricultural production of geology and product structure, input is most
Few energy and resource, obtain product as much as possible, keep ecological relative equilibrium, realize the development of production comprehensive coordinate.
Although traditional ecological agriculture is all together in series all of industry chain (supply chain), the waste of a part of resource and the energy is changed
Problem, but whole process be all the transfer for manually carrying out article so as to reach circulation, waste substantial amounts of manpower and materials, work effect
Rate is low, and automaticity is extremely low.
Utility model content
The technical problems to be solved in the utility model is to provide one kind based on agroecological utilization system, using one
All of industry chain (supply chain) has all been connected although planting and solving traditional ecological agriculture based on agroecological utilization system
Come, change the problem of the waste of a part of resource and the energy, but whole process is all the transfer for manually carrying out article so as to reach
To circulation, substantial amounts of manpower and materials are wasted, operating efficiency is low, the extremely low problem of automaticity.
One kind is based on agroecological utilization system, including collecting dung pond, methane-generating pit and background control system,
The excrement in described collecting dung pond is after filler pipe is diluted with water and is stirred through collecting pit agitator by excrement delivery pump
Methane-generating pit is sent into pipe method;The biogas of methane-generating pit gives downstream user by conveyance conduit;The waste residue that methane-generating pit is produced leads to
Cross after being stirred by Stirver for methane tank after the pipeline that adds water adds water, filtered by filter, bulky grain or block impurity are through filter
Ashes collecting pit is delivered to after entering crusher in crushing after filtering, liquid or little particle impurity are delivered to down by waste residue delivery pump
Trip collecting pit;Background control system respectively with collecting dung pit level meter, collecting pit agitator motor, excrement conveying pump motor,
It is waste residue conveying pump motor, methane-generating pit liquid level gauge, Stirver for methane tank motor, the first motor-driven valve, the second motor-driven valve, the 3rd electronic
The connection of valve, the first collecting pit liquid level gauge, the second collecting pit liquid level gauge and the 3rd collecting pit liquid level gauge.
Described excrement delivery pump is arranged on the connecting pipe of collecting dung pond and methane-generating pit.
Described filter is arranged on methane-generating pit outlet official road.
Described waste residue delivery pump is arranged on the connection official road that methane-generating pit is connected with downstream collecting pit, and position is in filter
Afterwards.
Described collecting dung pit level meter is arranged on collecting dung pond top by mounting flange.
Described methane-generating pit liquid level gauge is arranged on methane-generating pit top by mounting flange.
Described the first motor-driven valve, the second motor-driven valve and the 3rd motor-driven valve are separately mounted to the first collecting pit, second receive
On Ji Chi and the 3rd collecting pit inlet duct.
Described the first collecting pit liquid level gauge, the second collecting pit liquid level gauge and the 3rd collecting pit liquid level gauge are respectively by peace
Dress flange is arranged on the first collecting pit, the second collecting pit and the 3rd collecting pit top.
Described background control system is programmable control system.
Using the technical solution of the utility model, in Eco-agricultural Economy industrial park, for the excrement from each plant
Just, scattered excrement is collected by the way of unification is collected into a collecting pit, collecting pit is provided with liquid level gauge, is reached in liquid level
After certain altitude, after the agitation and dilution that then adds water, collecting dung pond can be manually booted by background control system is automatic or manual
Outlet pump, is sent to methane-generating pit generation biogas, and biogas can be sent to downstream user and use, be reach a certain height in biogas pit level
Afterwards, after being diluted with water stirring, the slag charge or the block of bulk for then producing are filtered by filter, recycle crusher in crushing
After send into stockyard, transporting to the fruit field woods using automobile uses, and the liquid after being filtered is got to by methane-generating pit outlet pump
Each live scattered fertilizer collecting pit, fertilizer collecting pit is built in each fruit tree woods, you can realization is applied fertilizer on the spot, overall process base
This realizes remote monitoring and operation, greatly reduces cost of labor and improves efficiency.
Excrement delivery pump of the present utility model is arranged on the connecting pipe of collecting dung pond and methane-generating pit, by long-range control
System processed realizes conveying brakingization.
The utility model filter is arranged on methane-generating pit outlet official road, may filter that the impurity and particle of bulk, in order to avoid
Conveyance conduit is blocked.
Waste residue delivery pump of the present utility model is arranged on the connection official road that methane-generating pit is connected with downstream collecting pit, and position exists
After filter, so that excrement is transported to methane-generating pit.
Collecting dung pit level meter of the present utility model is arranged on collecting dung pond top by mounting flange, accurately to survey
Amount excrement pit level, to realize control system automatic transport excrement to the function in downstream.
Methane-generating pit liquid level gauge of the present utility model is arranged on methane-generating pit top by mounting flange, accurately to measure methane-generating pit
Liquid level, to realize the slag charge of control system automatic transport methane-generating pit generation to the function in downstream.
First motor-driven valve of the present utility model, the second motor-driven valve and the 3rd motor-driven valve be separately mounted to the first collecting pit,
On second collecting pit and the 3rd collecting pit inlet duct, so that system is transported to conjunction according to live actual collection pit level selection
Suitable collecting pit.
First collecting pit liquid level gauge of the present utility model, the second collecting pit liquid level gauge and the 3rd collecting pit liquid level gauge difference
First collecting pit, the second collecting pit and the 3rd collecting pit top are arranged on by mounting flange, it is possible to achieve system remote is monitored,
Cause the situation of spilling so as to avoid producing collecting pit level continuation high and feeding.
Background control system of the present utility model is programmable control system, can be according to needed for on-site actual situations are write
Control program and monitored picture, and other system data acquisitions etc..
In sum, although traditional ecological agriculture can be solved all of product using the technical solution of the utility model
Industry chain is all together in series, and changes the problem of the waste of a part of resource and the energy, but whole process is all manually to carry out
The transfer of article wastes substantial amounts of manpower and materials so as to reach circulation, and operating efficiency is low, and automaticity is extremely low to ask
Topic.
Brief description of the drawings
Fig. 1 is the utility model system schematic figure;
It is illustrated as in figure:1st, collecting dung pond, 2, collecting dung pit level meter, 3, methane-generating pit, 4, excrement delivery pump, 5, natural pond
Gas pit level meter, 6, conveyance conduit, 7, filter, 8, waste residue delivery pump, 9, background control system, the 10, first collecting pit, 11,
Second collecting pit, the 12, the 3rd collecting pit, 14, ashes collecting tank, 15, collecting pit stirring, 16, Stirver for methane tank, 17, excrement
Collecting pit adds water pipeline, and 18, methane-generating pit adds water pipeline, the 19, first motor-driven valve, the 20, first collecting pit liquid level gauge, the 21, second electricity
Dynamic valve, the 22, second collecting pit liquid level gauge, the 23, the 3rd motor-driven valve, the 24, the 3rd collecting pit liquid level gauge.
Specific embodiment
Utility model is described further below.
As shown in figure 1, a kind of be based on agroecological utilization system, including excrement collecting dung pond 1, collecting dung pond
Liquid level gauge 2, methane-generating pit 3, excrement delivery pump 4, methane-generating pit liquid level gauge 5, conveyance conduit 6, filter 7, waste residue delivery pump 8, backstage
Control system 9, the first collecting pit 10, the second collecting pit 11, the 3rd collecting pit 12, the stirring 15, natural pond of ashes collecting tank 14, collecting pit
Gas pond agitator 16, the collecting dung pond pipeline 17, methane-generating pit that adds water adds water pipeline 18, the first motor-driven valve 19, the first collecting pit liquid
Count the 20, second motor-driven valve 21, the second collecting pit liquid level gauge 22, the 3rd motor-driven valve 23, the 3rd collecting pit liquid level gauge 24 in position.
The excrement in collecting dung pond 1 is after filler pipe 17 is diluted with water and is stirred through collecting pit agitator 15 by excrement
Delivery pump 4 sends into methane-generating pit 3 with pipe method;The biogas of methane-generating pit 3 gives downstream user by conveyance conduit 6;Methane-generating pit 3 is produced
After raw waste residue is stirred after being added water by the pipeline 18 that adds water by Stirver for methane tank 16, filtered by filter 7, bulky grain or block
Shape impurity is delivered to ashes collecting tank 14 after being crushed into disintegrating machine 13 after being filtered through filter 7, liquid or little particle impurity are logical
Cross waste residue delivery pump 8 and be delivered to downstream collecting pit;Background control system 9 is stirred with collecting dung pit level meter 2, collecting pit respectively
The motor of device 15, the motor of excrement delivery pump 4, the motor of waste residue delivery pump 8, methane-generating pit liquid level gauge 5, the motor of Stirver for methane tank 16,
One motor-driven valve 19, the second motor-driven valve 21, the 3rd motor-driven valve 23, the first collecting pit liquid level gauge 20, the second collecting pit liquid level gauge 22 with
And the 3rd collecting pit liquid level gauge 24 connect.
Excrement delivery pump 4 is arranged on the connecting pipe of collecting dung pond 1 and methane-generating pit 3.
Filter 7 is arranged on methane-generating pit outlet official road.
Waste residue delivery pump 8 is arranged on the connection official road that is connected with downstream collecting pit of methane-generating pit 3, position filter 7 it
Afterwards.
Collecting dung pit level meter 2 is arranged on the top of collecting dung pond 1 by mounting flange.
Methane-generating pit liquid level gauge 5 is arranged on the top of methane-generating pit 3 by mounting flange.
First motor-driven valve 19, the second motor-driven valve 21 and the 3rd motor-driven valve 23 are separately mounted to the first collecting pit 10, second
On collecting pit 11 and the inlet duct of the 3rd collecting pit 12.
First collecting pit liquid level gauge 20, the second collecting pit liquid level gauge 22 and the 3rd collecting pit liquid level gauge 24 are respectively by peace
Dress flange is arranged on the first collecting pit 10, the second collecting pit 11 and the top of the 3rd collecting pit 12.
Background control system 9 is programmable control system.
Each pond being built up according to such scheme and connecting each connecting pipe, the quantity in various ponds can basis
On-site actual situations are built, and after installing armamentarium, are actually needed according to scene in background control system 9 first, by institute
The output signal for having liquid level gauge is connected to background control system, and the remote control signal of electrically operated valve is connected into Background control system
System, background control system is connected to by the motor control signal of all agitators, the motor control letter of the pump that will be installed on pipeline
Number connection background control system.
System is tested by background control system is write after required program, where Background control platform 9
Surveillance center, in the collecting dung situation in host computer observation collecting dung pond 1, it can be seen that once collecting dung reaches necessarily
Thing position, now adds water dilution, in the stirring of remote activation agitator, after the liquid level of collecting pit 1 continues to increase to certain altitude,
Excrement delivery pump 4 starts immediately, and the excrement after dilution is transported into methane-generating pit 3.
Produce biogas, biogas to be sent to downstream user by biogas conveyance conduit 6 in methane-generating pit 3, produced in methane-generating pit
Waste material filtered by filter 7, the lump material of bulk be sent to disintegrating machine 13 it is broken after enter particle stockyard, then transport to each
Individual fruit is cooked waste material.
, by being sent to each collecting pit in downstream after filter by delivery pump 8 again, collecting pit is according to liquid level for liquid
Situation, the low just long-range entrance electrically operated valve automatically opened up by system before collecting pit of liquid level, feed liquid is just transported to corresponding receipts
Ji Chi, orchard worker can on the spot be applied fertilizer in nearby location to required fruit tree.It is achieved thereby that system automation, a large amount of to save
Manpower and cost, improve efficiency.
Claims (9)
1. it is a kind of to be based on agroecological utilization system, including collecting dung pond 1, methane-generating pit 3 and background control system
9, it is characterised in that:The excrement in described collecting dung pond 1 is diluted with water by filler pipe 17 and is stirred through collecting pit agitator 15
Methane-generating pit 3 is sent into pipe method by excrement delivery pump 4 after mixing;The biogas of methane-generating pit 3 is given downstream and is used by conveyance conduit 6
Family;After the waste residue that methane-generating pit 3 is produced is stirred after being added water by the pipeline 18 that adds water by Stirver for methane tank 16, by the mistake of filter 7
Filter, bulky grain or block impurity enter after being filtered through filter 7 disintegrating machine 13 it is broken after be delivered to ashes collecting tank 14, liquid or
Little particle impurity is delivered to downstream collecting pit by waste residue delivery pump 8;Background control system 9 respectively with collecting dung pit level meter
2nd, the motor of collecting pit agitator 15, the motor of excrement delivery pump 4, the motor of waste residue delivery pump 8, the stirring of methane-generating pit liquid level gauge 5, methane-generating pit
The motor of device 16, the first motor-driven valve 19, the second motor-driven valve 21, the 3rd motor-driven valve 23, the first collecting pit liquid level gauge 20, the second collecting pit
The collecting pit liquid level gauge 24 of liquid level gauge 22 and the 3rd is connected.
2. according to claim 1 a kind of based on agroecological utilization system, it is characterised in that:Described excrement
Delivery pump 4 is arranged on the connecting pipe of collecting dung pond 1 and methane-generating pit 3.
3. according to claim 1 a kind of based on agroecological utilization system, it is characterised in that:Described filtering
Device 7 is arranged on methane-generating pit outlet official road.
4. according to claim 1 a kind of based on agroecological utilization system, it is characterised in that:Described waste residue
Delivery pump 8 is arranged on the connection official road that methane-generating pit 3 is connected with downstream collecting pit, and position is after filter 7.
5. according to claim 1 a kind of based on agroecological utilization system, it is characterised in that:Described excrement
Collecting pit liquid level gauge 2 is arranged on the top of collecting dung pond 1 by mounting flange.
6. according to claim 1 a kind of based on agroecological utilization system, it is characterised in that:Described biogas
Pit level meter 5 is arranged on the top of methane-generating pit 3 by mounting flange.
7. according to claim 1 a kind of based on agroecological utilization system, it is characterised in that:Described first
Motor-driven valve 19, the second motor-driven valve 21 and the 3rd motor-driven valve 23 are separately mounted to the first collecting pit 10, the second collecting pit 11 and
On the inlet duct of three collecting pit 12.
8. according to claim 1 a kind of based on agroecological utilization system, it is characterised in that:Described first
Collecting pit liquid level gauge 20, the second collecting pit liquid level gauge 22 and the 3rd collecting pit liquid level gauge 24 are arranged on by mounting flange respectively
First collecting pit 10, the second collecting pit 11 and the top of the 3rd collecting pit 12.
9. according to claim 1 a kind of based on agroecological utilization system, it is characterised in that:Described backstage
Control system 9 is programmable control system, including controller, input/output module and host computer.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201621168167.XU CN206203990U (en) | 2016-10-26 | 2016-10-26 | One kind is based on agroecological utilization system |
Applications Claiming Priority (1)
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CN201621168167.XU CN206203990U (en) | 2016-10-26 | 2016-10-26 | One kind is based on agroecological utilization system |
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CN206203990U true CN206203990U (en) | 2017-05-31 |
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ID=58757606
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CN201621168167.XU Expired - Fee Related CN206203990U (en) | 2016-10-26 | 2016-10-26 | One kind is based on agroecological utilization system |
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CN (1) | CN206203990U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113994898A (en) * | 2021-10-29 | 2022-02-01 | 马鞍山皖福鸽业有限公司 | Pigeon excrement and urine is regeneration device for subsequent processing |
-
2016
- 2016-10-26 CN CN201621168167.XU patent/CN206203990U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113994898A (en) * | 2021-10-29 | 2022-02-01 | 马鞍山皖福鸽业有限公司 | Pigeon excrement and urine is regeneration device for subsequent processing |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170531 Termination date: 20191026 |
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CF01 | Termination of patent right due to non-payment of annual fee |