CN206365342U - The sustainable circulatory system of plant - Google Patents

The sustainable circulatory system of plant Download PDF

Info

Publication number
CN206365342U
CN206365342U CN201621430851.0U CN201621430851U CN206365342U CN 206365342 U CN206365342 U CN 206365342U CN 201621430851 U CN201621430851 U CN 201621430851U CN 206365342 U CN206365342 U CN 206365342U
Authority
CN
China
Prior art keywords
unit
biogas
collecting
dirt
sustainable
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201621430851.0U
Other languages
Chinese (zh)
Inventor
祝大同
万君社
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Gu Village Eco Agriculture Science And Technology Ltd Co
Original Assignee
Shenzhen Gu Village Eco Agriculture Science And Technology Ltd Co
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen Gu Village Eco Agriculture Science And Technology Ltd Co filed Critical Shenzhen Gu Village Eco Agriculture Science And Technology Ltd Co
Priority to CN201621430851.0U priority Critical patent/CN206365342U/en
Application granted granted Critical
Publication of CN206365342U publication Critical patent/CN206365342U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E50/00Technologies for the production of fuel of non-fossil origin
    • Y02E50/30Fuel from waste, e.g. synthetic alcohol or diesel

Landscapes

  • Treatment Of Sludge (AREA)

Abstract

The utility model discloses a kind of sustainable circulatory system of plant, including for putting the ecologic breeding unit of livestock in a suitable place to breed and setting dirt-collecting unit in the inner, the dirt-collecting unit is connected with dirt separation unit, the dirt-collecting unit is connected with biogas unit and vermiculture unit respectively, and the biogas unit is connected to life and breeds unit, aquaculture unit and organic vegetable unit with energy unit, marsh gas power generation unit, orchard planting unit, fungi planter units, mud fish fry;The aquaculture unit is connected with the fungi planter units, and the fungi planter units are connected with the vermiculture unit, and the vermiculture unit is connected with poultry free-ranging unit, and the poultry free-ranging unit is connected with orchard planting unit.The utility model realizes can following on the spot for plant's waste and changes recycling, reduces the waste processing cost of plant, reduces pollution of the waste to surrounding enviroment, realizes plant's new growth engines.

Description

The sustainable circulatory system of plant
Technical field
The utility model belongs to livestock cultural technique field, and in particular to a kind of sustainable circulatory system of plant.
Background technology
Aquaculture not only provides the more raw material of industry, also provides the abundant food such as meat, breast, egg for people's lives, most Also it can provide the draught animal and muck for agricultural eventually;Thus, aquaculture is national indispensable pillar industry.Due to land resource Gradually deficient, cultivation is more generally by the way of stable breeding, and blowdown is increasingly becoming the problem of aquaculture, especially for cattle and sheep For big-and-middle-sized livestock-raising, the discharge cost of the waste liquid such as excrement and urine accounts for the larger ratio of aquaculture cost.And for row In the processing mode for letting out thing etc., more use is used to need in the processing mode of farm manure, whole process after excreta is fermented It is transported to after appointed place fermentation process, fermentation and is transported to specified farmland and is used as farm manure;Including transport, fermentation period compared with Long, cost is higher, and occupies larger land area;Also it is exactly directly to transport excreta to some places to carry out random heap Processing is put, can equally increase cost of transportation and floor space, and surrounding environment is polluted.Especially for urine and flushing The waste liquids such as liquid, excrement urine discharge and transport are extremely inconvenient, and large range of environmental pollution can be caused if discharging on the spot, and And because it has vapo(u)rability, it is more that extremely ill effect is caused to surrounding environment using the processing mode directly discharged, and Coverage is larger.
Need to be improved existing cultivation sewage treatment system, it is adaptable to which it is useless that the big-and-middle-sized livestock such as cattle and sheep pig cultivates Thing processing, for the mode of discharge and transport processing on the spot, realizes that waste is sustainable and recycles, in reduction cultivation Cost, realizes new growth engines, eliminates the harmful effect aspect to surrounding enviroment caused by cultivating blowdown and seems very heavy Will.
Utility model content
In view of this, the utility model provides a kind of sustainable circulatory system of plant.
The purpose of this utility model is achieved through the following technical solutions:
A kind of sustainable circulatory system of plant, including for putting the ecologic breeding unit of livestock, the ecologic breeding in a suitable place to breed The dirt-collecting unit for being used for collecting sanitary sewage and livestock dirt is provided with unit, the dirt-collecting unit is separated with being used for Sanitary sewage is connected with the dirt separation unit of urine, and the dirt separation unit is connected to for storing and filtering life The sewage water filtration unit of sewage and the urine collecting unit for collecting livestock urine, the sewage water filtration unit are connected with aquatic products Cultivate unit;The dirt-collecting unit is respectively with producing the biogas unit of biogas with animal manure and with animal manure breeding earthworm Vermiculture unit is connected, and the biogas unit is connected to the life for using biogas as the energy and sent out with energy unit and biogas Electric unit, the orchard planting unit using biogas residue as fertilizer and fungi planter units, the loach of nutrient solution is used as by the use of biogas slurry Seedling breeds unit and aquaculture unit, while utilizing the organic vegetable unit of biogas residue and biogas slurry;The aquaculture unit with The fungi planter units are connected, and the fungi planter units are connected with the vermiculture unit, the vermiculture unit With using earthworm to be connected as the poultry free-ranging unit of feed, the poultry free-ranging unit is connected with orchard planting unit.
Further, the dirt-collecting unit is included positioned at the underface of livestock buttocks for collecting excrement of animals Groove, being used on livestock lower ground collects highstrenghtpiston's grid of livestock urine, and positioned at highstrenghtpiston Grid bottom is used for the undercut for conveying livestock urine;Institute's undercut is obliquely arranged at underground, and the undercut and horizontal plane Angle be in 15 degree.
Further, one end of the undercut passes through from underground and is connected with the dirt separation unit, the undercut The other end is passed through from underground and is connected with flushing pipeline.
Further, one end of the groove be provided with tie point and the second branch road, the groove by tie point with First drag conveyor is connected, and first drag conveyor is connected with the vermiculture pond of the vermiculture unit, described Groove is connected by the second branch road with the second drag conveyor, and second drag conveyor is connected with the biogas unit.
Further, the sewage water filtration unit and the urine collecting unit is be arranged side by side, the undercut it is another End is located between the sewage water filtration unit and the urine collecting unit, and the other end of the undercut is connected with for controlling The equipment of liquid flow direction.
Further, the equipment for being used to control controlling flow direction is triple valve.
Further, the methane-generating pit of the biogas unit is also associated with for the separation of solid and liquid of biogas slurry, biogas residue separation to be set It is standby.
Further, the biogas unit be connected with the life between energy unit by the first biogas pipeline, described It is connected between biogas unit and the marsh gas power generation unit by the second biogas pipeline, first biogas pipeline and the second biogas One end of pipeline is respectively equipped with the first aspiration pump and the second aspiration pump, and first aspiration pump and the second aspiration pump are located at institute respectively State in the collecting methane pond of biogas unit.
Further, the biogas unit is connected by the first pipeline with organic vegetable unit;The biogas unit passes through Second pipe is connected with aquaculture unit, and the biogas unit is bred unit with mud fish fry by the 3rd pipeline and is connected, described One end of first pipeline, the second pipe and the 3rd pipeline is connected to the first biogas slurry pump, the second biogas slurry pump and Three biogas slurry pumps, the first biogas slurry pump, the second biogas slurry pump and the 3rd biogas slurry pump are collected positioned at the biogas slurry of the biogas unit respectively In pond.
Further, it is connected between the organic vegetable unit and the biogas unit by the first feed belt;It is described It is connected between orchard planting unit and the biogas unit by the second feed belt;The fungi planter units and the biogas Unit is connected by the 3rd feed belt;Pass through the 4th transmission skin between the aquaculture unit and the fungi planter units Band is connected;It is connected between the fungi planter units and the vermiculture unit by the 5th feed belt;The earthworm is supported Grow and be connected between unit and the poultry free-ranging unit using earthworm as feed by the 6th feed belt;The poultry free-ranging unit with It is connected between orchard planting unit by the 7th feed belt.
Compared with prior art, the utility model at least has advantages below:Can the utility model proposes a kind of plant Persistent loop economic system, the on the spot discharge traditional compared to plant's waste or transport processing mode, are collected by waste, sent out Ferment processing, realizes that can following on the spot for plant's waste changes recycling, reduces the waste processing cost of plant, reduce waste Pollution to surrounding enviroment, realizes plant's new growth engines.
Brief description of the drawings
Fig. 1 is the sustainable circulatory system annexation schematic diagram of plant described in the utility model;
Fig. 2 is the breeding house internal structure schematic diagram of the sustainable circulatory system of plant described in the utility model;
Wherein, 1- ecologic breedings unit;101- lairage machining cells;102- sewage water filtration units;104- oxen urine collects single Member;105- mud fish fries breed unit;106- dirt separation units;107- aquaculture units;108- organic vegetable units;109- White mushroom planter units;110- vermiculture units;111- hen free-ranging units;112- orchard planting units;113- biogas is sent out Electric unit;114- lives energy unit;115- biogas units;116- dirt-collecting units;2- livestock breeding houses;21- undercuts; Between 22- oxen only isolate;23- grooves;24- highstrenghtpiston's grids;25- guard rails;26- troughs.
Embodiment
The utility model is described in further detail with reference to the accompanying drawings and examples, following examples be it is descriptive, It is not limited, it is impossible to which protection domain of the present utility model is limited with this.
The sustainable circulatory system annexation schematic diagram of plant of the present utility model as shown in Figure 1, including for putting Support the dirt for being provided with the ecologic breeding unit 1 of livestock, the ecologic breeding unit 1 and being used for collecting sanitary sewage and livestock dirt Collector unit 116, the dirt-collecting unit 116 is connected with for separating sanitary sewage with the dirt separation unit 106 of urine, The dirt separation unit 106 is connected to sewage water filtration unit 102 for storing and filtering sanitary sewage and for receiving Collect the urine collecting unit of livestock urine, the sewage water filtration unit 102 is connected with aquaculture unit 107;The dirt is received Collect unit 116 respectively with animal manure produce biogas biogas unit 115 and the vermiculture unit with animal manure breeding earthworm 110 connections, the biogas unit 115 is connected to life energy unit 114 and the marsh gas power generation for using biogas as the energy Unit 113, the orchard planting unit 112 using biogas residue as fertilizer and fungi planter units, by the use of biogas slurry it is used as nutrient solution Mud fish fry breeds unit 105 and the aquaculture unit 107, while utilizing the organic vegetable unit 108 of biogas residue and biogas slurry;Institute State aquaculture unit 107 with the fungi planter units to be connected, the fungi planter units and the vermiculture unit 110 It is connected, the vermiculture unit 110 is with using earthworm to be connected as the poultry free-ranging unit of feed, the poultry free-ranging unit It is connected with orchard planting unit 112.It is described to put one kind that livestock be the large mammals such as ox, pig, horse, sheep, this reality in a suitable place to breed Apply in example, the animal preferably cultivated is ox.Aquaculture unit described in the present embodiment 107 is lotus pool, can be with the lotus pool The aquatic products such as culturing fish and shrimp;The sewage water filtration unit 102 is adjacent with the lotus pool, and the water after filtering is directly thrown into the lotus pool In.The poultry free-ranging unit is hen free-ranging unit 111, and its hen cultivated is used to produce chicken.The ecologic breeding Unit 1 is also associated with lairage machining cell 101, and the lairage machining cell 101 is used to produce beef, the urine collecting unit Collector unit 104 is urinated for ox.
When it is implemented, Fig. 2 is the internal structure schematic diagram of livestock breeding house 2, the middle part of the livestock breeding house 2 is along domestic animal Raise breeding house 2 fore-and-aft direction and set fluted 23, the both sides of the groove 23 be arranged side by side respectively ox only isolate between 22, it is adjacent Ox only isolate between separated by guard rail 25 between 22, the trough 26 be located at the ox only isolate between 22 opposite side. The dirt-collecting unit 116 is arranged on the inside of the livestock breeding house 2.The dirt-collecting unit 116 includes being located at domestic animal Raise buttocks underface be used for collect the groove 23 of excrement of animals, positioned at ox only isolate between being used on 22 lower grounds collect Highstrenghtpiston's grid 24 of livestock urine, the undercut 21 for conveying livestock urine is used for positioned at the bottom of highstrenghtpiston's grid 24, The undercut 21 is obliquely installed and located underground, so that the buttocks of the ox only is aligned with each other and the buttocks of ox only is located at institute The top of groove 23 is stated, and causes the ox head to be located at the top of the trough 26 shown in Fig. 2, the pin of the ox only is located at described Above highstrenghtpiston's grid 24, highstrenghtpiston's grid 24 is used to penetrate into the urine of ox only positioned at described high-strength In the undercut 21 for spending the bottom of plastic lattices 24, the undercut 21 is inclined relative to horizontal 15 degree, and the undercut 21 is obliquely installed Purpose be used for by ox only urine flowed away along undercut 21.
When it is implemented, one end of the undercut 21 passes through from underground and is connected with the dirt separation unit 106, it is described The other end of undercut 21 is passed through from underground and is connected with flushing pipeline (not shown).Flushing pipeline is used to remain in undercut 21 Ox urine discharge water and wash away, in order to avoid produce more toxic gas.The sewage washed away can flow to the dirt separation list from undercut 21 At member 106.
When it is implemented, the sewage water filtration unit 102 is to be arranged side by side with ox urine collector unit 104, it is described dark The other end of groove 21 be located at the sewage water filtration unit 102 and the ox urine collector unit 104 between, the undercut 21 it is another End is connected with the dirt separation unit 106.The dirt separation unit 106 can be one in triple valve, movable block water plate Kind, the liquid of the undercut 21 flows into the sewage water filtration unit 102 by the dirt separation unit 106 or ox urine is received Collect in unit 104.
When it is implemented, the dirt separation unit 106 is triple valve, the import of the triple valve is another with the undercut One end is connected, and the first outlet of the triple valve is located in the sewage water filtration pond of sewage water filtration unit 102, and the of the triple valve Two outlets are located in the urine collection chamber that the ox urinates collector unit 104, by the adjusting handle for manually controlling the triple valve To open or close the first outlet and second outlet.When the liquid in the undercut 21 is that ox urinates, second outlet is opened, First outlet is closed, and ox urine enters ox and urinates collector unit 104, when the liquid in undercut 21 is the sewage for washing away undercut, first Port opening, second outlet is closed, and the sewage is flowed in the cesspool of sewage water filtration unit 102.
When it is implemented, the sewage water filtration unit 102 includes four sewage water filtration ponds placed and be sequentially communicated side by side, Sewage after four sewage water filtration ponds are sequentially passed through first filtering ponds and are filtered layer by layer since lotus pool is flowed to.
When it is implemented, the ox urine that the ox urine collector unit 104 is collected has infertile field, Biocidal and alleviates soil It is hardened to wait effect, it can sell.
When it is implemented, the vermiculture unit 110 and biogas unit 115 are close to the dirt-collecting unit 116, institute The one end for stating groove 23 is provided with tie point and the second branch road, and the groove 23 passes through tie point and the first drag conveyor (not shown) is connected, and first drag conveyor is connected with the vermiculture pond of the vermiculture unit 110, the groove 23 are connected by the second branch road with the second drag conveyor (not shown), second drag conveyor and the biogas unit 115 are connected.The cow dung collected in groove 23 is manually transported to the first drag conveyor or the second drag conveyor along groove 23 In, then by first drag conveyor or the second drag conveyor cow dung is delivered to the vermiculture unit 110 or natural pond In gas unit 115.The biogas unit 115 is connected with sewer pipe, and sanitary sewage and cow dung are transported into the biogas unit Carry out curing and anaerobic fermentation in 115, the biogas unit 115 includes fermentation vat, methane-generating pit, biogas slurry pond, biogas residue pond.
When it is implemented, the methane-generating pit of the biogas unit 115 is also associated with for the solid-liquid of biogas slurry, biogas residue separation to be divided From equipment.The biogas slurry of separation is stored in the biogas slurry pond by the solid-liquid separating equipment, and the biogas residue is stored in into the natural pond In slag bath.
When it is implemented, the biogas unit 115 pass through the first biogas pipeline phase with the life between energy unit 114 Even, it is connected between the biogas unit 115 and the marsh gas power generation unit 113 by the second biogas pipeline, first biogas One end of pipeline and the second biogas pipeline is respectively equipped with the first aspiration pump and the second aspiration pump, first aspiration pump and and second Aspiration pump is respectively in the collecting methane pond of the biogas unit.First aspiration pump and the second aspiration pump respectively will be described Biogas, which is delivered in the life energy unit 114 and the marsh gas power generation unit 113, is used as the energy.
When it is implemented, the biogas unit 115 is connected by the first pipeline with the organic vegetable unit 108, it is described Biogas unit 115 is connected by second pipe with the aquaculture unit 107, and the biogas unit 115 passes through the 3rd pipeline Unit 105 is bred with the mud fish fry to be connected, one end connection of first pipeline, the second pipe and the 3rd pipeline There are the first biogas slurry pump, the second biogas slurry pump and the 3rd biogas slurry pump, the first biogas slurry pump, the second biogas slurry pump and the 3rd biogas slurry pump difference In the biogas slurry collecting pit of the biogas unit.The first biogas slurry pump, the second biogas slurry pump and the 3rd biogas slurry pump be used for by State biogas slurry and be transported to the organic vegetable unit 108, aquaculture unit 107, mud fish fry respectively and breed and be used as culture in unit 105 Liquid.
When it is implemented, passing through the first feed belt phase between the organic vegetable unit 108 and the biogas unit 115 Even, first feed belt is used to the biogas residue in the biogas residue pond of the biogas unit 115 being transported to the organic vegetable unit It is used as fertilizer in 108.
It is connected between the orchard planting unit 112 and the biogas unit by the second feed belt, described second passes Belt is sent to be used to the biogas residue in the biogas residue pond of the biogas unit 115 being transported in the orchard planting unit 112 to be used as fertilizer.
The fungi planter units are connected with the biogas unit 115 by the 3rd feed belt, the 3rd transmission skin Band is used to the biogas residue in the biogas unit 115 being transported in the fungi planter units to be used as fertilizer.In the present embodiment, institute It is White mushroom to select fungi, and the fungi planter units are White mushroom planter units 109.
It is connected between the aquaculture unit 107 and the fungi planter units by the 4th feed belt, described Four feed belts are used to the bacteria residue in the fungi planter units be transported to the aquaculture unit 107 as feed, meanwhile, 4th feed belt, which is also used for being transported to the pond sludge of the aquaculture unit 107 in the fungi planter units, is used as training Support base.
It is connected between the fungi planter units and the vermiculture unit 110 by the 5th feed belt, described Five feed belts are used to the bacteria residue in the fungi planter units being transported in the vermiculture unit 110 to be used as feed.
When it is implemented, the annual value of production of one mu of the earthworm is up to ten thousand yuan of 5-6, net profit 2-3 ten thousand, with higher economy Value.
Pass through the 6th feed belt phase between the vermiculture unit 110 and the poultry free-ranging unit using earthworm as feed Even, the 6th feed belt is used to be transported to the earthworm in the poultry free-ranging unit as feed, in the present embodiment, The poultry is preferably hen, and the poultry free-ranging unit is hen free-ranging unit 111.
It is connected between the poultry free-ranging unit and orchard planting unit 112 by the 7th feed belt, the described 7th passes Belt is sent to be used as fertilizer for brid guano (chicken manure in the present embodiment) to be transported into the orchard planting unit 112.
More than, only the utility model preferably embodiment, but the protection domain of utility model is not limited to This, any one skilled in the art is in the technical scope that the utility model is disclosed, the change that can be readily occurred in Or replace, it should all cover within protection domain of the present utility model.Therefore, protection domain of the present utility model should be with right The protection domain of claim is defined.

Claims (10)

1. a kind of sustainable circulatory system of plant, including for putting the ecologic breeding unit of livestock, the ecologic breeding list in a suitable place to breed The dirt-collecting unit for being used for collecting sanitary sewage and livestock dirt is provided with first, the dirt-collecting unit separates life with being used for Sewage living is connected with the dirt separation unit of urine, and the dirt separation unit is connected to dirty for storing and filtering life The sewage water filtration unit of water and the urine collecting unit for collecting livestock urine, the sewage water filtration unit are connected with aquatic products and supported Grow unit;The dirt-collecting unit is respectively with producing the biogas unit of biogas and the earthworm with animal manure breeding earthworm with animal manure Earthworm cultivation unit connection, the biogas unit is connected to life energy unit and the marsh gas power generation for using biogas as the energy Unit, the orchard planting unit using biogas residue as fertilizer and fungi planter units, the mud fish fry of nutrient solution is used as by the use of biogas slurry Breed unit and aquaculture unit, while utilizing the organic vegetable unit of biogas residue and biogas slurry;The aquaculture unit and institute State fungi planter units be connected, the fungi planter units are connected with the vermiculture unit, the vermiculture unit and Poultry free-ranging unit using earthworm as feed is connected, and the poultry free-ranging unit is connected with orchard planting unit.
2. the sustainable circulatory system of plant according to claim 1, it is characterised in that the dirt-collecting unit includes The groove for being used to collect excrement of animals positioned at the underface of livestock buttocks, being used on livestock lower ground collects livestock Highstrenghtpiston's grid of urine, and the undercut positioned at highstrenghtpiston's grid bottom for conveying livestock urine;It is described dark Groove is obliquely arranged at underground, and the angle of the undercut and horizontal plane is in 15 degree.
3. the sustainable circulatory system of plant according to claim 2, it is characterised in that one end of the undercut is from underground Pass through and be connected with the dirt separation unit, the other end of the undercut is passed through from underground and is connected with flushing pipeline.
4. the sustainable circulatory system of plant according to claim 2, it is characterised in that one end of the groove is provided with the One branch road and the second branch road, the groove are connected by tie point with the first drag conveyor, first drag conveyor It is connected with the vermiculture pond of the vermiculture unit, the groove is connected by the second branch road with the second drag conveyor, Second drag conveyor is connected with the biogas unit.
5. the sustainable circulatory system of plant according to claim 3, it is characterised in that the sewage water filtration unit and institute State urine collecting unit to be arranged side by side, the other end of the undercut is located at the sewage water filtration unit and the urine collecting list Between member, and the other end of the undercut is connected with equipment for controlling controlling flow direction.
6. the sustainable circulatory system of plant according to claim 5, it is characterised in that described to be used to control controlling flow direction Equipment be triple valve.
7. the sustainable circulatory system of plant according to claim 5, it is characterised in that the methane-generating pit of the biogas unit It is also associated with the solid-liquid separating equipment for biogas slurry, biogas residue to be separated.
8. the sustainable circulatory system of plant according to claim 1, it is characterised in that the biogas unit and the life Applying flexibly can be connected between unit by the first biogas pipeline, and second is passed through between the biogas unit and the marsh gas power generation unit Biogas pipeline is connected, and one end of first biogas pipeline and the second biogas pipeline is respectively equipped with the first aspiration pump and the second pumping Pump, first aspiration pump and the second aspiration pump are respectively in the collecting methane pond of the biogas unit.
9. the sustainable circulatory system of plant according to claim 8, it is characterised in that the biogas unit passes through first Pipeline is connected with organic vegetable unit;The biogas unit is connected by second pipe with aquaculture unit, the biogas list Member is bred unit with mud fish fry by the 3rd pipeline and is connected, first pipeline, the second pipe and the 3rd pipeline One end is connected to the first biogas slurry pump, the second biogas slurry pump and the 3rd biogas slurry pump, the first biogas slurry pump, the second biogas slurry pump and Three biogas slurry pumps are respectively in the biogas slurry collecting pit of the biogas unit.
10. according to the sustainable circulatory system of plant according to any one of claims 1 to 9, it is characterised in that described organic It is connected between vegetables unit and the biogas unit by the first feed belt;The orchard planting unit and the biogas unit Between by the second feed belt be connected;The fungi planter units are connected with the biogas unit by the 3rd feed belt; It is connected between the aquaculture unit and the fungi planter units by the 4th feed belt;The fungi planter units with It is connected between the vermiculture unit by the 5th feed belt;The vermiculture unit with using earthworm as the poultry of feed It is connected between free-ranging unit by the 6th feed belt;Passed between the poultry free-ranging unit and orchard planting unit by the 7th Belt is sent to be connected.
CN201621430851.0U 2016-12-23 2016-12-23 The sustainable circulatory system of plant Expired - Fee Related CN206365342U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201621430851.0U CN206365342U (en) 2016-12-23 2016-12-23 The sustainable circulatory system of plant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201621430851.0U CN206365342U (en) 2016-12-23 2016-12-23 The sustainable circulatory system of plant

Publications (1)

Publication Number Publication Date
CN206365342U true CN206365342U (en) 2017-08-01

Family

ID=59393024

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201621430851.0U Expired - Fee Related CN206365342U (en) 2016-12-23 2016-12-23 The sustainable circulatory system of plant

Country Status (1)

Country Link
CN (1) CN206365342U (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109042349A (en) * 2018-08-22 2018-12-21 武汉轻工大学 A kind of environmentally friendly cultivating system
CN109328537A (en) * 2018-12-06 2019-02-15 浙江大学自贡创新中心 A kind of ecological farm village that waste material recycles
CN109892229A (en) * 2019-02-13 2019-06-18 青岛意联机械工业有限公司 A kind of full-automatic intelligent cultivating system
CN110921987A (en) * 2019-12-07 2020-03-27 湖南袁禾农业科技有限公司 Harmless and recycling waste treatment method
TWI738624B (en) * 2021-03-05 2021-09-01 四季洋圃生物機電股份有限公司 Agro-reproductive system
CN113892407A (en) * 2021-10-28 2022-01-07 江苏盖尔德信息科技有限公司 Ecological cycle agricultural ecological planting system
CN115136818A (en) * 2021-03-31 2022-10-04 四季洋圃生物机电股份有限公司 Farming circulation system

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109042349A (en) * 2018-08-22 2018-12-21 武汉轻工大学 A kind of environmentally friendly cultivating system
CN109042349B (en) * 2018-08-22 2021-04-06 武汉轻工大学 Environment-friendly breeding system
CN109328537A (en) * 2018-12-06 2019-02-15 浙江大学自贡创新中心 A kind of ecological farm village that waste material recycles
CN109892229A (en) * 2019-02-13 2019-06-18 青岛意联机械工业有限公司 A kind of full-automatic intelligent cultivating system
CN110921987A (en) * 2019-12-07 2020-03-27 湖南袁禾农业科技有限公司 Harmless and recycling waste treatment method
TWI738624B (en) * 2021-03-05 2021-09-01 四季洋圃生物機電股份有限公司 Agro-reproductive system
CN115136818A (en) * 2021-03-31 2022-10-04 四季洋圃生物机电股份有限公司 Farming circulation system
CN113892407A (en) * 2021-10-28 2022-01-07 江苏盖尔德信息科技有限公司 Ecological cycle agricultural ecological planting system

Similar Documents

Publication Publication Date Title
CN206365342U (en) The sustainable circulatory system of plant
CN104609675B (en) A kind of ecology synthesis processing method of cattle farm aquaculture wastewater
CN107759254A (en) A kind of livestock and poultry farm pollution ecology governing system combined based on breeding and method
CN101074144B (en) Ecological treatment and recovering utilization for farm
CN204518856U (en) A kind of poultry Ecocyclic cultivation system
CN100475030C (en) Ecological water circulation flow equipment for aquiculture pond
CN104396825A (en) Poultry and livestock ecological cycle raising system and raising method
CN107381973A (en) Scale animal and poultry cultivation fecaluria separate type ecology processing system and construction method
CN107372299A (en) Ecological cycle system of scale goose farm
CN209914686U (en) Composite seed culture system for large-scale livestock and poultry breeding manure treatment
CN104430083A (en) Water cycle aquatic breeding system and aquatic breeding method
CN204897655U (en) Dirty processing system of excrement is bred to live pig
CN111713412A (en) Ecological pig raising system and ecological circulation method thereof
CN103482818B (en) Cyclic utilization method for azolla biological cleaning biogas slurry
KR101711969B1 (en) The cultivating cages for marine products
CN109315227A (en) A kind of sustainable circulatory system of farm
CN103947561B (en) A kind of energy-conserving and environment-protective, can the disposable treatment for cow manure system of ecological circulation and treatment process
CN101696075A (en) Method for biologically digesting and recycling pig large intestine excrement and hair and intestine wastes
CN103864225B (en) The dirty decrement treatment of one fowl and livestock and Application way
CN203735218U (en) Circulation energy-saving heat preservation type livestock feeding house facility device with self-cleaning and processing functions
CN203181741U (en) Hog house with fermentation bed and biogas digester
CN107821173A (en) A kind of automated hierarchical formula livestock and poultry cultivation device
CN216392698U (en) Pneumatic multifunctional water pushing and oxygen increasing equipment
CN207083882U (en) A kind of fish stable breeding sewage solid content separator
CN211268177U (en) Low-cost pond-based freshwater fish and shrimp recirculating aquaculture system

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170801

Termination date: 20181223