CN113615616A - Multi-independent space shielding device for portunus trituberculatus breeding - Google Patents

Multi-independent space shielding device for portunus trituberculatus breeding Download PDF

Info

Publication number
CN113615616A
CN113615616A CN202111000082.6A CN202111000082A CN113615616A CN 113615616 A CN113615616 A CN 113615616A CN 202111000082 A CN202111000082 A CN 202111000082A CN 113615616 A CN113615616 A CN 113615616A
Authority
CN
China
Prior art keywords
shielding
pipe
tube
small
type
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.)
Granted
Application number
CN202111000082.6A
Other languages
Chinese (zh)
Other versions
CN113615616B (en
Inventor
王芳
朱柏杉
张涵尊
刘大鹏
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.)
Ocean University of China
Original Assignee
Ocean University of China
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 Ocean University of China filed Critical Ocean University of China
Priority to CN202111000082.6A priority Critical patent/CN113615616B/en
Publication of CN113615616A publication Critical patent/CN113615616A/en
Application granted granted Critical
Publication of CN113615616B publication Critical patent/CN113615616B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; CARE OF BIRDS, FISHES, INSECTS; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K61/00Culture of aquatic animals
    • A01K61/70Artificial fishing banks or reefs
    • A01K61/73Artificial fishing banks or reefs assembled of components
    • 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
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/80Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in fisheries management
    • Y02A40/81Aquaculture, e.g. of fish

Abstract

A multi-independent space shielding device for culturing blue crabs comprises three groups of tubular shielding objects, a large rectangular shielding plate, a small rectangular shielding plate, a supporting plate and the like, wherein each group of tubular shielding objects comprises a large tubular shielding pipe, a medium tubular shielding pipe and a small tubular shielding pipe, the three shielding pipes are sequentially connected in a large sequence, a medium sequence and a small sequence, the interiors of the three shielding pipes are communicated, and two ends of the three shielding pipes are open; three group's cast shield the pipe and set up side by side, and two adjacent big cast shield the pipe and carry out the adhesion, and the cast shields to connect with the level setting between the pipe in two adjacent, and two adjacent little cast shield to connect with the big rectangle shielding plate of level setting between the pipe. Compared with the traditional plastic basket shielding pipe, the plastic basket shielding pipe has the advantages that the utilization efficiency of the bottom of the pond and the protection effect on crabs are greatly improved, more independent spaces can be provided, and the young crabs and the crabs in the molting period can be effectively protected.

Description

Multi-independent space shielding device for portunus trituberculatus breeding
Technical Field
The invention relates to a multi-independent space shielding device for portunus trituberculatus breeding, and belongs to the technical field of aquaculture.
Background
The portunus trituberculatus is an important aquaculture variety in China, and is widely cultured in Shandong, Jiangsu, Hebei and other provinces in China. With the improvement of pond culture technology in recent years, the low survival rate caused by the struggle of residual food becomes the bottleneck limiting the development of industry. When the portunus trituberculatus is in the young crab stage, fighting for the cannibalism is very frequent, and the death rate is highest in the stage; in addition, the portunus trituberculatus has soft body and weak vitality when the portunus trituberculatus is exuviated, has no defense capability to the attack behavior of other individuals, and is very easy to be eaten by other individuals. The crayfish can be effectively relieved from the cannibalism by carrying out visual isolation and individual contact isolation. By utilizing the principle, laying the shielding pipe to provide a protection facility for the crabs is a common means in production, and the purposes of improving the yield and the breeding income are achieved. In addition, the investment of a proper shielding pipe can effectively reduce the activity of the crabs, reduce the breathing energy of the movement of the crabs, and enable more energy of the ingested baits to be used for growth, so that the growth rate and the quality are improved, the bait feeding amount is reduced, and the water body pollution caused by the bait feeding is reduced.
In the existing portunus trituberculatus breeding process, the shielding pipe most commonly put in is a square plastic basket, and the shielding pipe is simple and easy to obtain, but has a plurality of defects: each plastic basket can only provide an independent space, and the space utilization rate of the bottom of the pond is low; due to the specification change and the desquamation asynchronism in the crab growth period, the crabs with different specifications in the desquamation stage and the later molting stage cannot be shielded, and the protection effect is poor; the plastic basket has poor quality, and is likely to be broken after being soaked in seawater for a long time and being clamped by crabs for many times, so that the plastic basket cannot play a good protection role on the crabs. Perfecting and improving the shielding pipe is a requirement for improving survival rate, yield and economic benefit of crabs and is an important ring for green ecological breeding.
Disclosure of Invention
The invention aims to provide a multi-independent space shielding device for the pond culture of portunus trituberculatus, which overcomes the defects of the existing shielding tube.
A multi-independent space shielding device for culturing blue crabs is characterized by comprising three groups of tubular shielding objects, wherein each group of tubular shielding object comprises a large tubular shielding tube, a middle tubular shielding tube and a small tubular shielding tube, the three shielding tubes are sequentially connected in a large sequence, a middle sequence and a small sequence, the interiors of the three shielding tubes are communicated, and openings are formed in two ends of the three shielding tubes;
the large tube type shielding tube and the middle tube type shielding tube are connected by a large annular connecting plate, and the middle tube type shielding tube and the small tube type shielding tube are connected by a small annular connecting plate;
the three groups of pipe-type shielding pipes are arranged side by side, two adjacent large pipe-type shielding pipes are adhered, two adjacent middle pipe-type shielding pipes are connected by a small rectangular shielding plate arranged horizontally, and two adjacent small pipe-type shielding pipes are connected by a large rectangular shielding plate arranged horizontally;
the bottom of the middle pipe type shielding pipe at the two sides is axially supported by an open rectangular support plate, the bottom of the middle pipe type shielding pipe at the middle part is axially supported by a support plate, and the bottom of the small pipe type shielding pipe is axially supported by a rectangular support plate;
the opening type rectangular support plate is coplanar with the rectangular support plates in the same group, and the support plates are coplanar with the rectangular support plates in the same group; and a transverse supporting plate is arranged between two adjacent middle pipe type shielding pipes and is positioned at the junction of the middle pipe type shielding pipe and the small pipe type shielding pipe.
The device has the following characteristics:
1) the device is provided with three groups of tube-type shielding tubes, wherein each group of shielding tubes comprises a large tube-type shielding tube, a middle tube-type shielding tube and a small tube-type shielding tube;
2) the three shielding pipes in each group are arranged according to the size sequence and are connected and fixed by annular connecting plates with different specifications;
3) the large shielding pipes of the three groups of shielding pipes are arranged in a row, aligned and adhered;
4) the middle shielding pipes are connected and fixed by small rectangular shielding plates;
5) the small shielding pipes are connected and fixed by a large rectangular shielding plate;
6) the bottom of the middle shielding pipe at two sides is axially supported by an open rectangular support plate, and the bottom of the middle shielding pipe at the middle part is axially supported by a support plate;
7) the bottom of the small shielding pipe is axially supported by a rectangular support plate;
8) the tail end of the middle shielding pipe is provided with a transverse supporting plate which is connected with two adjacent middle shielding pipes;
9) all the components are connected by waterproof glass cement;
the invention can be divided into a plurality of independent spaces, the bottom of the pond is three-dimensional, the underwater space is fully utilized, and a plurality of individuals are effectively protected; can protect the individual which is easy to be attacked, such as young crab, crab in molting period, etc., so that the crab can pass through the fragile molting period and the later molting period; high quality and repeated use.
When the shielding tube is used for culturing the portunus trituberculatus, the normal culture measures such as feeding, water changing, disease control and the like are matched. Before crab larvae are thrown, sufficient shielding pipes are thrown into the bottom of the aquaculture pond, each shielding pipe comprises 13 independent spaces which are different in the shielding pipes and under the shielding plates, and the small independent spaces (the inner part of each small shielding pipe and the bottom of each middle shielding pipe) are at more hidden and safer positions.
The preferences of the crabs in different growth stages for the specification of the shielding pipes are different, and the crabs generally tend to enter the shielding pipes with the specifications slightly larger than the specifications of the shielding pipes, and are difficult to enter the small shielding pipes and threaten individuals in the small shielding pipes. For crabs which grow asynchronously, crabs with small specifications can obtain a safer space and are not easy to be caught by crabs with large specifications, and crabs with large specifications can be hidden in a large independent space (the inside of a medium-sized shielding pipe, the inside of a large shielding pipe and the bottom of a small shielding pipe) and cannot form threats to crabs in the small independent space. When the crabs exuviate, the device can also provide an independent space which is suitable for the specifications of the crabs so as to protect the crabs from the later period of exuviation. Compared with the traditional plastic basket shielding pipe, the plastic basket shielding pipe has the advantages that the utilization efficiency of the bottom of the pond and the protection effect on crabs are greatly improved, more independent spaces can be provided, and the young crabs and the crabs in the molting period can be effectively protected.
Drawings
Fig. 1 is a perspective view of the present invention.
FIG. 2 is a bottom schematic view of the present invention.
Fig. 3 is a rear view of the present invention.
Wherein, 1-large tube type shielding tube, 2-middle tube type shielding tube; 3-small tube type shielding tube; 4-small rectangular shielding plate; 5-large rectangular shielding plate; 6-open type rectangular support plate; 7-a rectangular support plate; 8-a large annular web; 9-small annular connecting plate; 10-a support plate; 11-transverse support plate.
Detailed Description
The invention is further illustrated by the following detailed description in conjunction with the accompanying drawings.
Referring to fig. 1-3, a multi-independent space shielding device for culturing portunus trituberculatus is characterized by comprising three groups of tubular shielding objects, wherein each group of tubular shielding objects comprises a large tubular shielding tube, a middle tubular shielding tube and a small tubular shielding tube, the three shielding tubes are sequentially connected in a large sequence, a middle sequence and a small sequence, the interiors of the three shielding tubes are communicated, and two ends of the three shielding tubes are open;
the large tubular shielding tube 1 is connected with the middle tubular shielding tube 2 through a large annular connecting plate 8, and the middle tubular shielding tube 2 is connected with the small tubular shielding tube 3 through a small annular connecting plate 9;
the three groups of pipe-type shielding pipes are arranged side by side, two adjacent large pipe-type shielding pipes 1 are adhered, two adjacent middle pipe-type shielding pipes 2 are connected through a small rectangular shielding plate 4 which is horizontally arranged, and two adjacent small pipe-type shielding pipes 3 are connected through a large rectangular shielding plate 5 which is horizontally arranged;
the bottom of the middle pipe type shielding pipe 2 at the two sides is axially supported by an open rectangular support plate 6, the bottom of the middle pipe type shielding pipe 2 at the middle part is axially supported by a support plate 10, and the bottom of the small pipe type shielding pipe 3 is axially supported by a rectangular support plate 7;
the open type rectangular support plate 6 is coplanar with the rectangular support plate 7 in the same group, and the support plate 10 is coplanar with the rectangular support plate 7 in the same group; a transverse supporting plate 11 is arranged between two adjacent middle pipe type shielding pipes 2, and the transverse supporting plate 11 is positioned at the junction of the middle pipe type shielding pipe 2 and the small pipe type shielding pipe 3.
As shown in fig. 1, the present invention includes a triple-tube type shield, a rectangular shield plate, and a rectangular support plate. Each set of tubular shutters includes one each of three tubular shutter tubes, shutter tube material: PVC, large tubular shielding tube 1: the diameter is 13-15cm, and the length is 10-12 cm; middle tube type shielding tube 2: the diameter is 6-9cm, and the length is 8-10 cm; small tube type shielding tube 3: diameter: 3-5cm and 6-8cm in length.
The shields of each group are respectively connected by a large annular connecting plate 8 and a small annular connecting plate 9 and are fixed by PVC glue in an adhesion way, and the large annular connecting plate 8 and the small annular connecting plate 9 are made of materials: PVC.
Aligning the adhered shielding pipes, horizontally placing the shielding pipes side by side, and adhering the large shielding pipes 1 of all the groups by using PVC glue.
Connecting the middle shielding pipes 2 of each group by using a small rectangular shielding plate 4 and fixing the middle shielding pipes by using PVC glue, wherein the small rectangular shielding plate 4 is made of: PVC, long: 8-10cm, width: 6-8 cm; connecting the small shielding pipes 3 of each group by using a large rectangular shielding plate 5 and fixing the small shielding pipes by using PVC glue, wherein the large rectangular shielding plate 5 is made of the following materials: PVC, long: 6-8cm, width: 8-12 cm.
The open type rectangular support plate 6 is axially fixed at the lower part along the middle shielding pipes 2 at both sides, and the support plate 10 is axially fixed at the lower part along the middle shielding pipes 2 at the middle part and is fixed by PVC glue.
Open rectangular support plate 6 material: PVC, long: 8-10cm, 3-4cm wide, and 5 × 2cm opening at the bottom; material of the support plate 10: PVC, long: 8-10cm, 3-4cm wide and no opening at the bottom.
Fix rectangular support plate 7 in little shielding 3 lower parts of pipe along the axial to it is fixed with PVC glue, rectangular support plate 7 material: PVC, long: 6-8cm in width and 5-7cm in width.
The transverse supporting plate 11 is transversely connected with two adjacent middle shielding pipes 2 at the tail ends of the middle shielding pipes 2 and is fixed by PVC glue; transverse support plate 11 material: PVC, long: 10-14cm, width: 6-8 cm.
In the pond culture of the portunus trituberculatus, a sufficient amount of the shielding pipes are placed at the bottom of the pond before the seedlings are put, the shielding pipes comprise up to 13 independent spaces, and the independent spaces are different in size. Along with the growth of the crabs, the independent spaces suitable for the specifications of the crabs are changed, and the crabs can select the independent spaces suitable for the specifications of the crabs. When the size of the crabs is increased after the crabs exuviate, the crabs cannot enter a smaller shielding space and cannot prey on individuals with small sizes; after the crabs exuviate, the shielding pipe can also provide a proper independent space for the crabs to avoid and spend the later period of exuviation, so that the high cannibalism rate and the high death rate caused by asynchronous growth and asynchronous exuviation of the crabs in the culture process are reduced, and the yield and the culture income are improved. The shielding pipe can provide more independent spaces with various specifications, has higher space utilization rate on the bottom of the pond, and can provide better shielding effect on the portunus trituberculatus; the structure is simple, the materials are easy to obtain, the cost is low, and batch production can be realized according to the requirements in large-scale pond culture; the feed can be recycled and cleaned after the culture period of the current year is finished and can be reused; the specifications and the structures can be improved according to the requirements, and the cultivation of various crustaceans such as blue crabs, river crabs, crayfish and the like is completed.
The foregoing description and examples have described the general principles and structural components of the present invention. The specific application is not limited by the examples in the above description, which only illustrates the principle of the present invention, and the present invention can make various modifications and changes, such as changing the material, shape, specification and the number of the tube-type shielding tube groups, changing the connection mode between the shielding tubes and the supporting mode of the shielding tubes, etc., without departing from the guidance of the above basic principle of the present invention, and the modifications and changes are within the protection scope of the present invention.

Claims (2)

1. A multi-independent space shielding device for culturing blue crabs is characterized by comprising three groups of tubular shielding objects, wherein each group of tubular shielding object comprises a large tubular shielding tube, a middle tubular shielding tube and a small tubular shielding tube, the three shielding tubes are sequentially connected in a large sequence, a middle sequence and a small sequence, the interiors of the three shielding tubes are communicated, and openings are formed in two ends of the three shielding tubes;
the large tube type shielding tube (1) is connected with the middle tube type shielding tube (2) through a large annular connecting plate (8), and the middle tube type shielding tube (2) is connected with the small tube type shielding tube (3) through a small annular connecting plate (9);
the three groups of pipe-type shielding pipes are arranged side by side, two adjacent large pipe-type shielding pipes (1) are adhered, two adjacent middle pipe-type shielding pipes (2) are connected through a small rectangular shielding plate (4) which is horizontally arranged, and two adjacent small pipe-type shielding pipes (3) are connected through a large rectangular shielding plate (5) which is horizontally arranged;
the bottom of the middle pipe type shielding pipe (2) at the two sides is axially supported by an open rectangular support plate (6), the bottom of the middle pipe type shielding pipe (2) at the middle part is axially supported by a support plate (10), and the bottom of the small pipe type shielding pipe (3) is axially supported by a rectangular support plate (7);
the opening type rectangular support plate (6) is coplanar with the rectangular support plate (7) in the same group, and the support plate (10) is coplanar with the rectangular support plate (7) in the same group; a transverse supporting plate (11) is arranged between two adjacent middle pipe type shielding pipes (2), and the transverse supporting plate (11) is positioned at the junction of the middle pipe type shielding pipe (2) and the small pipe type shielding pipe (3).
2. The multiple independent space shielding device for blue crab cultivation according to claim 1, wherein the shielding tube is made of PVC, and the large tube type shielding tube (1): the diameter is 13-15cm, and the length is 10-12 cm; medium-tube type shielding tube (2): the diameter is 6-9cm, and the length is 8-10 cm; small tube type shielding tube (3): diameter: 3-5cm and 6-8cm in length;
little rectangle shielding plate (4) adopt the PVC material, long: 8-10cm, width: 6-8 cm; big rectangle shielding plate (5) adopt the PVC material, long: 6-8cm, width: 8-12 cm;
open type rectangular supporting plate (4) is made of PVC material and is long: 8-10cm, 3-4cm wide, and 5 × 2cm opening at the bottom; the support plate (10) is made of PVC material and is long: 8-10cm, 3-4cm wide;
rectangle backup pad (7) adopt the PVC material, long: 6-8cm in width and 5-7cm in width;
horizontal backup pad (11) adopt the PVC material, long: 10-14cm, width: 6-8 cm.
CN202111000082.6A 2021-08-28 2021-08-28 Multi-independent space shielding device for portunus trituberculatus breeding Active CN113615616B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202111000082.6A CN113615616B (en) 2021-08-28 2021-08-28 Multi-independent space shielding device for portunus trituberculatus breeding

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202111000082.6A CN113615616B (en) 2021-08-28 2021-08-28 Multi-independent space shielding device for portunus trituberculatus breeding

Publications (2)

Publication Number Publication Date
CN113615616A true CN113615616A (en) 2021-11-09
CN113615616B CN113615616B (en) 2022-06-14

Family

ID=78388243

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202111000082.6A Active CN113615616B (en) 2021-08-28 2021-08-28 Multi-independent space shielding device for portunus trituberculatus breeding

Country Status (1)

Country Link
CN (1) CN113615616B (en)

Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2033191A (en) * 1978-10-18 1980-05-21 Simontorps Akvatiska Avelslab Breeding Shellfish
CN102696513A (en) * 2012-05-25 2012-10-03 中国水产科学研究院南海水产研究所 Land-based crab breeding device and crab breeding method
CN203058090U (en) * 2012-12-13 2013-07-17 浙江海洋学院 Ecological environment-friendly protector of larval and juvenile fishes
KR101549056B1 (en) * 2015-01-09 2015-09-02 경상남도 Octopus hiding place and marine cage fish farms comprising the same
CN106417126A (en) * 2016-09-14 2017-02-22 江苏省淡水水产研究所 Covering for cultivating eriocheir sinensis
CN107616125A (en) * 2017-09-22 2018-01-23 广西南宁胜祺安科技开发有限公司 A kind of cultural method of Australia freshwater lobster
CN107616124A (en) * 2017-09-22 2018-01-23 广西南宁胜祺安科技开发有限公司 A kind of cultural method for improving Australia freshwater lobster survival rate
CN107897071A (en) * 2017-11-07 2018-04-13 浙江海洋大学 It is a kind of reduce view and admire shrimp kill and devour and can appearance incorporate make scape aquarium hide device
CN111165410A (en) * 2019-12-31 2020-05-19 广东省石油与精细化工研究院 Lobster full growth cycle shielding device
KR102218630B1 (en) * 2020-06-05 2021-02-22 장철호 Octopus aquaculture apparatus
CN112471020A (en) * 2020-12-02 2021-03-12 含山县环峰夏桥特种水产养殖有限公司 Cylindrical crab culture shielding device

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2033191A (en) * 1978-10-18 1980-05-21 Simontorps Akvatiska Avelslab Breeding Shellfish
CN102696513A (en) * 2012-05-25 2012-10-03 中国水产科学研究院南海水产研究所 Land-based crab breeding device and crab breeding method
CN203058090U (en) * 2012-12-13 2013-07-17 浙江海洋学院 Ecological environment-friendly protector of larval and juvenile fishes
KR101549056B1 (en) * 2015-01-09 2015-09-02 경상남도 Octopus hiding place and marine cage fish farms comprising the same
CN106417126A (en) * 2016-09-14 2017-02-22 江苏省淡水水产研究所 Covering for cultivating eriocheir sinensis
CN107616125A (en) * 2017-09-22 2018-01-23 广西南宁胜祺安科技开发有限公司 A kind of cultural method of Australia freshwater lobster
CN107616124A (en) * 2017-09-22 2018-01-23 广西南宁胜祺安科技开发有限公司 A kind of cultural method for improving Australia freshwater lobster survival rate
CN107897071A (en) * 2017-11-07 2018-04-13 浙江海洋大学 It is a kind of reduce view and admire shrimp kill and devour and can appearance incorporate make scape aquarium hide device
CN111165410A (en) * 2019-12-31 2020-05-19 广东省石油与精细化工研究院 Lobster full growth cycle shielding device
KR102218630B1 (en) * 2020-06-05 2021-02-22 장철호 Octopus aquaculture apparatus
CN112471020A (en) * 2020-12-02 2021-03-12 含山县环峰夏桥特种水产养殖有限公司 Cylindrical crab culture shielding device

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
王芬等: "隐蔽物在水产养殖中的应用", 《安徽农学通报》 *
苏志星: "隐蔽物对三疣梭子蟹(Portunus trituberculatus)蜕壳行为、存活生长和养殖产量的影响研究", 《中国优秀硕士学位论文全文数据库农业科技辑》 *

Also Published As

Publication number Publication date
CN113615616B (en) 2022-06-14

Similar Documents

Publication Publication Date Title
Hong et al. Review of captive bred species and fry production of marine fish in China
CN104982362A (en) Breeding method of portunus trituberculatus rapid-growth novel variety
CN216164486U (en) Intelligent crab and shrimp breeding box
WO2014183446A1 (en) Ecological farming method for ecological aquafarming facility and confinement structure unit thereof
CN113615616B (en) Multi-independent space shielding device for portunus trituberculatus breeding
CN107087560B (en) Establishment and application of ecological polyculture mode of penaeus vannamei boone and golden pompano
CN105884426A (en) Culture medium for freshwater shrimp culture and preparation method thereof
CN110402869B (en) Eight diagrams spider net type stereo net cage
CN101743921A (en) Cage culture method of takifugu rubripes
CN207897689U (en) The cultivation apparatus that squilla oratoria inhabites space can be increased
CN110214731A (en) One seed shrimp crab culture pond trash fish scavenger
CN114946717B (en) Three-dimensional comprehensive ecological culture method for alosa sapidissima
WO2013120322A1 (en) Artificial breeding method for octopus ocellatus gray in outdoor earth pond
CN110651738A (en) Method for cultivating freshwater shrimp seedlings
CN105123574A (en) Substrate ecological crucian pond culturing method
CN104872036A (en) Method for culturing procambarus clarkia in same pond in three seasons in one year
CN214853674U (en) Precious marine product increases breed equipment
CN114651761A (en) Small shed breeding method for penaeus vannamei boone without changing water
CN111602616B (en) Breeding method for trachinotus ovatus fries
CN114051958A (en) Deep sea abalone culture method
CN210695515U (en) Artemia breeding device suitable for phytoplankton artemia litopenaeus breeding method
CN212753825U (en) Crayfish simple and easy breed shrimp nest
CN205106048U (en) Aquaculture pond
CN215346512U (en) Special artificial formula feed domestication ware is cultivated to rough-skinned sculpin seedling
CN213187706U (en) Three-dimensional ecological breeding device of chinese loach high density

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant