CN107912644A - A kind of Procambius clarkii nurturing period is with high viability feed and preparation method thereof - Google Patents

A kind of Procambius clarkii nurturing period is with high viability feed and preparation method thereof Download PDF

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Publication number
CN107912644A
CN107912644A CN201711010641.5A CN201711010641A CN107912644A CN 107912644 A CN107912644 A CN 107912644A CN 201711010641 A CN201711010641 A CN 201711010641A CN 107912644 A CN107912644 A CN 107912644A
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Prior art keywords
parts
uniformly mixed
feed
procambius clarkii
filtrate
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CN201711010641.5A
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Inventor
胡从玉
钱长建
钱永言
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Mingguang City Xingyu Crayfish Breeding Center
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Mingguang City Xingyu Crayfish Breeding Center
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Priority to CN201711010641.5A priority Critical patent/CN107912644A/en
Publication of CN107912644A publication Critical patent/CN107912644A/en
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K50/00Feeding-stuffs specially adapted for particular animals
    • A23K50/80Feeding-stuffs specially adapted for particular animals for aquatic animals, e.g. fish, crustaceans or molluscs
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K10/00Animal feeding-stuffs
    • A23K10/10Animal feeding-stuffs obtained by microbiological or biochemical processes
    • A23K10/12Animal feeding-stuffs obtained by microbiological or biochemical processes by fermentation of natural products, e.g. of vegetable material, animal waste material or biomass
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K10/00Animal feeding-stuffs
    • A23K10/20Animal feeding-stuffs from material of animal origin
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K10/00Animal feeding-stuffs
    • A23K10/20Animal feeding-stuffs from material of animal origin
    • A23K10/22Animal feeding-stuffs from material of animal origin from fish
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K10/00Animal feeding-stuffs
    • A23K10/20Animal feeding-stuffs from material of animal origin
    • A23K10/26Animal feeding-stuffs from material of animal origin from waste material, e.g. feathers, bones or skin
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K10/00Animal feeding-stuffs
    • A23K10/30Animal feeding-stuffs from material of plant origin, e.g. roots, seeds or hay; from material of fungal origin, e.g. mushrooms
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K10/00Animal feeding-stuffs
    • A23K10/30Animal feeding-stuffs from material of plant origin, e.g. roots, seeds or hay; from material of fungal origin, e.g. mushrooms
    • A23K10/37Animal feeding-stuffs from material of plant origin, e.g. roots, seeds or hay; from material of fungal origin, e.g. mushrooms from waste material
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K20/00Accessory food factors for animal feeding-stuffs
    • A23K20/10Organic substances
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K20/00Accessory food factors for animal feeding-stuffs
    • A23K20/10Organic substances
    • A23K20/142Amino acids; Derivatives thereof
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K20/00Accessory food factors for animal feeding-stuffs
    • A23K20/10Organic substances
    • A23K20/142Amino acids; Derivatives thereof
    • A23K20/147Polymeric derivatives, e.g. peptides or proteins
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K20/00Accessory food factors for animal feeding-stuffs
    • A23K20/10Organic substances
    • A23K20/158Fatty acids; Fats; Products containing oils or fats
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K20/00Accessory food factors for animal feeding-stuffs
    • A23K20/10Organic substances
    • A23K20/163Sugars; Polysaccharides
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K20/00Accessory food factors for animal feeding-stuffs
    • A23K20/20Inorganic substances, e.g. oligoelements
    • A23K20/28Silicates, e.g. perlites, zeolites or bentonites
    • 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
    • Y02A40/818Alternative feeds for fish, e.g. in aquacultures
    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/80Food processing, e.g. use of renewable energies or variable speed drives in handling, conveying or stacking
    • Y02P60/87Re-use of by-products of food processing for fodder production

Abstract

Include fish meal, dregs of beans, wheat bran, corn flour, river snail powder, husk, wheaten starch, sodium alginate, brewer's yeast, edible fungi residues, bone meal, rape cake, dried silkworm chrysalis meal, calcium monohydrogen phosphate, allicin, sodium Diacetate, manna oligosaccharide, Bacitracin Zinc, L crystal amino acids, chitosan oligosaccharide, beta glucan enzyme, levamisol, dusty yeast, cellulase, bonding modified additive and modified Controlled-release filler with high viability feed, its raw material the invention discloses a kind of Procambius clarkii nurturing period.The present invention also proposes preparation method of the above-mentioned Procambius clarkii nurturing period with high viability feed.The Procambius clarkii nurturing period of the present invention contains abundant nutriment with feed, disclosure satisfy that the nutritional need of nurturing period, effectively increases Procambius clarkii survival rate, further increases the yield of Procambius clarkii.

Description

A kind of Procambius clarkii nurturing period is with high viability feed and preparation method thereof
Technical field
The present invention relates to field of fodder, more particularly to a kind of Procambius clarkii nurturing period is with high viability feed and its preparation Method.
Background technology
As the improvement of people's living standards, catering trade also shows the one side of prosperity, and cray is also known as kirschner original Crayfish, it is Fresh & Tender in Texture, have become the signboard of each local cuisines, and with the prosperity of cuisines industry, the supply pressure of cray Power is increasing, and the yield propagated artificially in currently available technology can not meet the needs of market, by cray Cultivated, the problem of yield for improving cray is current urgent need to resolve, the feeding then used in cray cultivating process Material, its nutriment can not meet the needs of cray early growth period, and feed easy bulk cargo, food utilization efficiency in water is entered Low, the nutriment of cray intake can not meet actual demand, and the survival rate of cray is low, so there is an urgent need for develop a kind of kirschner original chela The shrimp nurturing period solves the problems of the prior art with high viability feed.
The content of the invention
To solve technical problem present in background technology, the present invention proposes that a kind of Procambius clarkii nurturing period is survived with high Rate feed and preparation method thereof, obtained feed nutrition material enrich, and meet the nutritional need of Procambius clarkii early growth period, The survival rate of Procambius clarkii is improved, further improves the yield of Procambius clarkii.
A kind of Procambius clarkii nurturing period proposed by the present invention is included by weight with high viability feed, its raw material:Fish 80-120 parts of powder, 30-50 parts of dregs of beans, 10-30 parts of wheat bran, 2-8 parts of corn flour, 3-6 parts of river snail powder, 5-15 parts of husk, wheat form sediment 2-6 parts of powder, 1-4 parts of sodium alginate, 4-9 parts of brewer's yeast, 6-12 parts of edible fungi residues, 1-5 parts of bone meal, 1-4 parts of rape cake, silkworm chrysalis 3-6 parts of powder, 4-8 parts of calcium monohydrogen phosphate, 2-4 parts of allicin, 2-5 parts of sodium Diacetate, 1-4 parts of manna oligosaccharide, Bacitracin Zinc 2-5 Part, 1-3 parts of L- crystal amino acids, 4-9 parts of chitosan oligosaccharide, 2-5 parts of 1,4 beta-glucanase, 2-4 parts of levamisol, 1-6 parts of dusty yeast, fibre Plain 1-6 parts of the enzyme of dimension, bond 10-20 parts of modified additive, modified 5-15 parts of Controlled-release filler.
Preferably, bond the raw material of modified additive includes by weight:5-15 parts of gluten, 2-5 parts of oil cake of flax seed, tapioca starch 3- 6 parts, 1-5 parts of potato, 3-9 parts of alphalise starch, 1-5 parts of animal's leather powder, 4-8 parts of bentonite, 3-6 parts of ligninsulfonate, soybean 2-5 parts of stalk, 1-4 parts of sodium Diacetate, 3-5 parts of soybean oil, 3-5 parts of wheat-middlings, 2-4 parts of prince's-feather, 1-3 parts of dusty yeast, chitosan 3-6 parts, 2-5 parts of organic rectorite, 3-6 parts of sodium alginate, 1-4 parts of nano-calcium carbonate, 3-5 parts of poly butyric ester, poly- ortho acid 1-5 parts of ester, -6 parts of poly- phosphatidase 3,4-8 parts of Fibrin Glue.
Preferably, modified additive is bonded to be prepared by following technique:By gluten, oil cake of flax seed, tapioca starch, potato, α- Starch, animal's leather powder, bentonite, ligninsulfonate, soybean stalk, sodium Diacetate and soybean oil co-grinding, then sieve Material a is obtained after son, wheat-middlings, prince's-feather and dusty yeast are added into material a and is uniformly mixed, ferments, is cooled to room temperature to obtain material b;Material b is filtered to take into filtrate, then concentrates filtrate, it is dry, it is cooled to room temperature to obtain material c;By chitosan, organic tired support Stone, sodium alginate and nano-calcium carbonate are uniformly mixed, stirring, then dry in freeze drier, are subsequently added into material c, are gathered Butyric ester, polyorthoester and poly- phosphatide are uniformly mixed, stirring, are then added Fibrin Glue and are uniformly mixed, are followed by stirring for, It is then centrifuged for collecting, is freeze-dried after washing and obtains bonding modified additive.
Preferably, modified additive is bonded to be prepared by following technique:By gluten, oil cake of flax seed, tapioca starch, potato, α- Starch, animal's leather powder, bentonite, ligninsulfonate, soybean stalk, sodium Diacetate and soybean oil co-grinding, then mistake Material a is obtained after 100-200 mesh sieve, wheat-middlings, prince's-feather and dusty yeast are added into material a and is uniformly mixed, in 60-80 DEG C of fermentation 10-20d, is cooled to room temperature to obtain material b;Material b is filtered to take into filtrate, then by filtrate in 50-60 DEG C of concentration, in 90-105 DEG C dry 2-6h, is cooled to room temperature to obtain material c;Chitosan, organic rectorite, sodium alginate and nano-calcium carbonate are mixed equal It is even, 20-30min is stirred in 350-650r/min rotating speeds, then the dry 20-40min in -30~-50 DEG C of freeze driers, connects Addition material c, poly butyric ester, polyorthoester and poly- phosphatide to be uniformly mixed, 10- is stirred in 4500-5500r/min rotating speeds 20min, then adds Fibrin Glue and is uniformly mixed, then 3-5h is stirred in 250-350r/min rotating speeds, then in 8500- 12000r/min rotating speeds are collected by centrifugation, and are freeze-dried after washing and obtain bonding modified additive.
Preferably, the raw material of modified Controlled-release filler includes by weight:5-15 parts of shelling element, 2-6 parts of soybean lecithin, gather 1-5 parts of lactic-glycolic acid solution, 3-9 parts of araboxylan, 4-8 parts of seaweed, 2-5 parts of peppermint, 3-6 parts of soybean stalk, green grass or young crops 1-5 parts of highland barley stalk, 4-8 parts of butter, 3-6 parts of sodium Diacetate, 2-5 parts of oyster shell whiting, 1-5 parts of soybean oil, 3-9 parts of prince's-feather, yeast 4-8 parts of powder.
Preferably, modified Controlled-release filler is prepared by following technique:Shelling element and soybean lecithin are uniformly mixed, stirred Mix, it is then dry in freeze drier, be subsequently added into polylactic-co-glycolic acid solution and be uniformly mixed, stir, then add Ah Draw primary xylan to be uniformly mixed, be followed by stirring for, be then centrifuged for collecting, be freeze-dried after washing and obtain material A;By seaweed, peppermint, Soybean stalk, highland barley stalk, butter, sodium Diacetate, oyster shell whiting and soybean oil co-grinding, then sieve, and then add thousand fringes Paddy and dusty yeast are uniformly mixed, and fermentation, is cooled to room temperature to obtain material B;Material B is filtered to take into filtrate, then concentrates filtrate, Then dry, be cooled to room temperature to obtain modified Controlled-release filler.
Preferably, modified Controlled-release filler is prepared by following technique:Shelling element and soybean lecithin are uniformly mixed, in 350-650r/min rotating speeds stir 20-30min, and then the dry 20-40min in -30~-50 DEG C of freeze driers, then adds Enter polylactic-co-glycolic acid solution to be uniformly mixed, 10-20min is stirred in 4500-5500r/min rotating speeds, then add Arabic Xylan is uniformly mixed, and then stirs 3-5h in 250-350r/min rotating speeds, is then centrifuged and is received in 8500-12000r/min rotating speeds Collection, is freeze-dried after washing and obtains material A;By seaweed, peppermint, soybean stalk, highland barley stalk, butter, sodium Diacetate, oyster shell whiting With soybean oil co-grinding, 100-200 mesh sieves are then crossed, then prince's-feather is added and dusty yeast is uniformly mixed, in 60-80 DEG C of hair Ferment 10-20d, is cooled to room temperature to obtain material B;Material B is filtered to take into filtrate, then by filtrate in 50-60 DEG C concentration, then in 90-105 DEG C of dry 2-6h, is cooled to room temperature to obtain modified Controlled-release filler.
A kind of Procambius clarkii nurturing period of the present invention with the preparation method of high viability feed, includes the following steps:
S1, by dregs of beans, wheat bran, corn flour, husk, wheaten starch, sodium alginate, brewer's yeast, edible fungi residues, bone meal, Rape cake and calcium monohydrogen phosphate co-grinding, obtain material I after then crossing 100-200 mesh sieve, fish meal, river snail are added into material a Powder and dried silkworm chrysalis meal are uniformly mixed, and ferment 10-20d in 60-80 DEG C, is cooled to room temperature to obtain material II;
S2, by material II filter to take filtrate, filtrate is then concentrated to give material c in 50-60 DEG C, then by material III It is dry to water content≤6% in 90-105 DEG C, obtain material IV;
S3, by allicin, sodium Diacetate, manna oligosaccharide, Bacitracin Zinc, L- crystal amino acids, chitosan oligosaccharide, beta glucan Enzyme, levamisol, dusty yeast, cellulase, bonding modified additive and modified Controlled-release filler crush, and cross 100-300 mesh sieve and obtain To material V, cellulase then is added into material V, ferment 5-10d in 50-60 DEG C, is cooled to room temperature to obtain material VI, so Material IV and material VI are uniformly mixed afterwards, be made the 20-40 mesh granular Procambius clarkii nurturing period through comminutor is deposited with height Motility rate feed.
A kind of Procambius clarkii nurturing period of the present invention with high viability feed, its raw material include fish meal, dregs of beans, wheat bran, Corn flour, river snail powder, husk, wheaten starch, sodium alginate, brewer's yeast, edible fungi residues, bone meal, rape cake, dried silkworm chrysalis meal, phosphorus Sour hydrogen calcium, allicin, sodium Diacetate, manna oligosaccharide, Bacitracin Zinc, L- crystal amino acids, chitosan oligosaccharide, 1,4 beta-glucanase, a left side Revolve imidazoles, dusty yeast, cellulase, bonding modified additive and modified Controlled-release filler.Wherein using fish meal as major ingredient, there is provided abundant Protein, with dregs of beans, wheat bran, corn flour, river snail powder, husk, wheaten starch, sodium alginate, brewer's yeast, edible fungi residues, The supplement raw material of bone meal, rape cake, dried silkworm chrysalis meal and calcium monohydrogen phosphate as protein, starch and trace element, with allicin, double second Sour sodium, manna oligosaccharide, Bacitracin Zinc, L- crystal amino acids, chitosan oligosaccharide, 1,4 beta-glucanase, levamisol, dusty yeast, fiber Plain enzyme, bond modified additive and modified Controlled-release filler as modified strengthening helping agent, and obtained feed nutrition material enriches, nutrition kind Class is more, disclosure satisfy that the nutritional need of the nurturing period of Procambius clarkii, effectively increases the survival rate of Procambius clarkii, further Improve the yield of Procambius clarkii.Wherein, modified additive is bonded by by gluten, oil cake of flax seed, tapioca starch, potato, α-shallow lake Powder, animal's leather powder, bentonite, ligninsulfonate, soybean stalk, sodium Diacetate and soybean oil co-grinding, then sift out Material a is obtained afterwards, and wheat-middlings, prince's-feather and dusty yeast are added into material a and is uniformly mixed, ferments, is cooled to room temperature to obtain material b; Material b is filtered to take into filtrate, then concentrates filtrate, it is dry, it is cooled to room temperature to obtain material c;By chitosan, organic tired support Stone, sodium alginate and nano-calcium carbonate are uniformly mixed, stirring, then dry in freeze drier, are subsequently added into material c, are gathered Butyric ester, polyorthoester and poly- phosphatide are uniformly mixed, stirring, are then added Fibrin Glue and are uniformly mixed, are followed by stirring for, It is then centrifuged for collecting, is freeze-dried after washing and obtains bonding modified additive, in the feed for the Procambius clarkii for applying to the present invention, Enable to feed forming effect more preferable, bulk cargo is not easy after entering in water so that nutriment can be fully by kirschner original chela Shrimp absorbs, and improves the utilization ratio of feed.Wherein, modified Controlled-release filler is equal by the way that shelling element and soybean lecithin are mixed Even, stirring is then dry in freeze drier, is subsequently added into polylactic-co-glycolic acid solution and is uniformly mixed, stirs, Ran Houjia Enter araboxylan to be uniformly mixed, be followed by stirring for, be then centrifuged for collecting, be freeze-dried after washing and obtain material A;By material A, Seaweed, peppermint, soybean stalk, highland barley stalk, butter, sodium Diacetate, oyster shell whiting and soybean oil co-grinding, then sieve, so Add prince's-feather afterwards and dusty yeast is uniformly mixed, ferment, be cooled to room temperature to obtain material B;Material B is filtered to take into filtrate, then Filtrate is concentrated, is then dried, is cooled to room temperature to obtain modified Controlled-release filler, applies to the freshwater crayfish feed stuff of the present invention In, enable to the nutriment in freshwater crayfish feed stuff to be fully absorbed, improve the efficiency of nutriment release And quality so that Procambius clarkii can efficiently absorb nourishment material, and can effectively improve the yield and matter of Procambius clarkii Amount.
Embodiment
The present invention is described in detail with reference to specific embodiment, it should be appreciated that embodiment is served only for illustrating this hair It is bright, rather than for limiting the invention, any modification made on the basis of the present invention, equivalent substitution etc. are in this hair In bright protection domain.
Embodiment 1
A kind of Procambius clarkii nurturing period proposed by the present invention is included by weight with high viability feed, its raw material:Fish 100 parts of powder, 40 parts of dregs of beans, 20 parts of wheat bran, 5 parts of corn flour, 4.5 parts of river snail powder, 10 parts of husk, 4 parts of wheaten starch, sodium alginate 2.5 parts, 6.5 parts of brewer's yeast, 9 parts of edible fungi residues, 3 parts of bone meal, 2.5 parts of rape cake, 4.5 parts of dried silkworm chrysalis meal, 6 parts of calcium monohydrogen phosphate, 3 parts of allicin, 3.5 parts of sodium Diacetate, 2.5 parts of manna oligosaccharide, 3.5 parts of Bacitracin Zinc, 2 parts of L- crystal amino acids, chitosan oligosaccharide 6.5 parts, 3.5 parts of 1,4 beta-glucanase, 3 parts of levamisol, 3.5 parts of dusty yeast, 3.5 parts of cellulase, bond 15 parts of modified additive, Modified 10 parts of Controlled-release filler.
Modified additive is bonded to be prepared by following technique:By weight by 10 parts of glutens, 3.5 parts of oil cake of flax seed, 4.5 parts of wood Potato powder, 3 portions of potatos, 6 parts of alphalise starch, 3 parts of animal's leather powder, 6 parts of bentonites, 4.5 parts of ligninsulfonates, 3.5 parts of big beanstalks Stalk, 2.5 parts of sodium Diacetates and 4 parts of soybean oil co-grindings, obtain material a after then crossing 150 mesh sieve, 4 parts are added into material a Wheat-middlings, 3 portions of prince's-feathers and 2 parts of dusty yeasts are uniformly mixed, and ferment 15d in 70 DEG C, is cooled to room temperature to obtain material b;By material b mistakes Leaching filtrate, filtrate then, in 100 DEG C of dry 4h, be cooled to room temperature to obtain material c in 55 DEG C of concentrations;4.5 parts of shells are gathered Sugar, 3.5 parts of organic rectorites, 4.5 parts of sodium alginates and 2.5 parts of nano-calcium carbonates are uniformly mixed, and are stirred in 500r/min rotating speeds 25min, then the dry 30min in -40 DEG C of freeze driers, is subsequently added into material c, 4 parts of poly butyric esters, 3 parts of poly- originals Acid esters and 4.5 parts of poly- phosphatide are uniformly mixed, and 15min is stirred in 5000r/min rotating speeds, then add 6 parts of Fibrin Glue mixing Uniformly, 4h then is stirred in 300r/min rotating speeds, is then collected by centrifugation in 10500r/min rotating speeds, be freeze-dried and obtain after washing Bond modified additive.
Modified Controlled-release filler is prepared by following technique:10 parts of shelling elements and 4 parts of soybean lecithins are mixed by weight Close uniformly, 25min is stirred in 500r/min rotating speeds, then the dry 30min in -40 DEG C of freeze driers, is subsequently added into 3 parts and gathers Lactic-glycolic acid solution is uniformly mixed, and 15min is stirred in 5000r/min rotating speeds, then adds 6 parts of araboxylan mixing Uniformly, 4h then is stirred in 300r/min rotating speeds, is then collected by centrifugation in 10500r/min rotating speeds, be freeze-dried and obtain after washing Material A;By material A, 6 portions of seaweed, 3.5 portions of peppermints, 4.5 parts of soybean stalks, 3 parts of highland barley stalks, 6 parts of butter, 4.5 parts of diacetic acids Sodium, 3.5 parts of oyster shell whitings and 3 parts of soybean oil co-grindings, then cross 150 mesh sieves, then add 6 portions of prince's-feathers and 6 parts of dusty yeasts It is uniformly mixed, ferment 15d in 70 DEG C, is cooled to room temperature to obtain material B;Material B is filtered to take into filtrate, then by filtrate in 55 DEG C Concentration, then in 100 DEG C of dry 4h, is cooled to room temperature to obtain modified Controlled-release filler.
A kind of Procambius clarkii nurturing period of the present invention with the preparation method of high viability feed, includes the following steps:
S1, by dregs of beans, wheat bran, corn flour, husk, wheaten starch, sodium alginate, brewer's yeast, edible fungi residues, bone meal, Rape cake and calcium monohydrogen phosphate co-grinding, then cross 150 mesh sieve after material I, into material a add fish meal, river snail powder and Dried silkworm chrysalis meal is uniformly mixed, and ferment 15d in 70 DEG C, is cooled to room temperature to obtain material II;
S2, by material II filter to take filtrate, and filtrate then is concentrated to give material c in 55 DEG C, then by material III in 100 DEG C of dryings obtain material IV to water content≤6%;
S3, by allicin, sodium Diacetate, manna oligosaccharide, Bacitracin Zinc, L- crystal amino acids, chitosan oligosaccharide, beta glucan Enzyme, levamisol, dusty yeast, cellulase, bonding modified additive and modified Controlled-release filler crush, and cross 200 mesh sieve and obtain thing Expect V, then add cellulase into material V, ferment 7.5d in 55 DEG C, is cooled to room temperature to obtain material VI, then by material IV and material VI are uniformly mixed, and the 30 mesh granular Procambius clarkii nurturing period is made with high viability feed through comminutor.
Embodiment 2
A kind of Procambius clarkii nurturing period proposed by the present invention is included by weight with high viability feed, its raw material:Fish 80 parts of powder, 50 parts of dregs of beans, 10 parts of wheat bran, 8 parts of corn flour, 3 parts of river snail powder, 15 parts of husk, 2 parts of wheaten starch, sodium alginate 4 Part, 4 parts of brewer's yeast, 12 parts of edible fungi residues, 1 part of bone meal, 4 parts of rape cake, 3 parts of dried silkworm chrysalis meal, 8 parts of calcium monohydrogen phosphate, allicin 2 Part, 5 parts of sodium Diacetate, 1 part of manna oligosaccharide, 5 parts of Bacitracin Zinc, 1 part of L- crystal amino acids, 9 parts of chitosan oligosaccharide, 1,4 beta-glucanase 2 parts, 4 parts of levamisol, 1 part of dusty yeast, 6 parts of cellulase, bond 10 parts of modified additive, modified 15 parts of Controlled-release filler.
Modified additive is bonded to be prepared by following technique:By weight by 5 parts of glutens, 5 parts of oil cake of flax seed, 3 parts of tapioca starch, 5 portions of potatos, 3 parts of alphalise starch, 5 parts of animal's leather powder, 4 parts of bentonites, 6 parts of ligninsulfonates, 2 parts of soybean stalks, 4 parts of double second Sour sodium and 3 parts of soybean oil co-grindings, obtain material a after then crossing 200 mesh sieve, 3 parts of wheat-middlings, 4 part of thousand fringe are added into material a Paddy and 1 part of dusty yeast are uniformly mixed, and ferment 10d in 80 DEG C, is cooled to room temperature to obtain material b;Material b is filtered to take into filtrate, so Afterwards filtrate, in 90 DEG C of dry 6h, is cooled to room temperature to obtain material c in 60 DEG C of concentrations;By 3 parts of chitosans, 5 parts of organic tired supports Stone, 3 parts of sodium alginates and 4 parts of nano-calcium carbonates are uniformly mixed, and 30min is stirred in 350r/min rotating speeds, then in -30 DEG C of freezings Dry 40min in drying machine, it is equal to be subsequently added into material c, 3 parts of poly butyric esters, 5 parts of polyorthoesters and 3 parts of poly- phosphatide mixing It is even, 10min is stirred in 5500r/min rotating speeds, 8 parts of Fibrin Glues is then added and is uniformly mixed, then in 250r/min rotating speeds 5h is stirred, is then collected by centrifugation in 8500r/min rotating speeds, is freeze-dried after washing and obtains bonding modified additive.
Modified Controlled-release filler is prepared by following technique:5 parts of shelling elements and 6 parts of soybean lecithins are mixed by weight Uniformly, 30min is stirred in 350r/min rotating speeds, then the dry 40min in -30 DEG C of freeze driers, is subsequently added into 1 part of poly- breast Sour hydroxyacetic acid solution is uniformly mixed, and 10min is stirred in 5500r/min rotating speeds, and it is equal then to add 9 parts of araboxylan mixing It is even, 5h then is stirred in 250r/min rotating speeds, is then collected by centrifugation in 8500r/min rotating speeds, is freeze-dried after washing and obtains thing Expect A;Material A, by 8 portions of seaweed, 2 portions of peppermints, 6 parts of soybean stalks, 1 part of highland barley stalk, 8 parts of butter, 3 parts of sodium Diacetates, 5 portions of shellfishes Shell powder and 1 part of soybean oil co-grinding, then cross 200 mesh sieves, then add 3 portions of prince's-feathers and 8 parts of dusty yeasts are uniformly mixed, in 60 DEG C of fermentation 20d, are cooled to room temperature to obtain material B;Material B is filtered to take into filtrate, then by filtrate in 50 DEG C concentration, then in 105 DEG C of dry 2h, are cooled to room temperature to obtain modified Controlled-release filler.
A kind of Procambius clarkii nurturing period of the present invention with the preparation method of high viability feed, includes the following steps:
S1, by dregs of beans, wheat bran, corn flour, husk, wheaten starch, sodium alginate, brewer's yeast, edible fungi residues, bone meal, Rape cake and calcium monohydrogen phosphate co-grinding, then cross 100 mesh sieve after material I, into material a add fish meal, river snail powder and Dried silkworm chrysalis meal is uniformly mixed, and ferment 10d in 80 DEG C, is cooled to room temperature to obtain material II;
S2, by material II filter to take filtrate, filtrate then is concentrated to give material c in 60 DEG C, then by material III in 90 It is DEG C dry to water content≤6%, obtain material IV;
S3, by allicin, sodium Diacetate, manna oligosaccharide, Bacitracin Zinc, L- crystal amino acids, chitosan oligosaccharide, beta glucan Enzyme, levamisol, dusty yeast, cellulase, bonding modified additive and modified Controlled-release filler crush, and cross 300 mesh sieve and obtain thing Expect V, then add cellulase into material V, ferment 10d in 50 DEG C, is cooled to room temperature to obtain material VI, then by material IV It is uniformly mixed with material VI, the 20-40 mesh granular Procambius clarkii nurturing period is made with high viability feed through comminutor.
Embodiment 3
A kind of Procambius clarkii nurturing period proposed by the present invention is included by weight with high viability feed, its raw material:Fish 120 parts of powder, 30 parts of dregs of beans, 30 parts of wheat bran, 2 parts of corn flour, 6 parts of river snail powder, 5 parts of husk, 6 parts of wheaten starch, sodium alginate 1 Part, 9 parts of brewer's yeast, 6 parts of edible fungi residues, 5 parts of bone meal, 1 part of rape cake, 6 parts of dried silkworm chrysalis meal, 4 parts of calcium monohydrogen phosphate, 4 parts of allicin, 2 parts of sodium Diacetate, 4 parts of manna oligosaccharide, 2 parts of Bacitracin Zinc, 3 parts of L- crystal amino acids, 4 parts of chitosan oligosaccharide, 1,4 beta-glucanase 5 Part, 2 parts of levamisol, 6 parts of dusty yeast, 1 part of cellulase, bond 20 parts of modified additive, modified 5 parts of Controlled-release filler.
Modified additive is bonded to be prepared by following technique:By weight by 15 parts of glutens, 2 parts of oil cake of flax seed, 6 portions of cassavas Powder, 1 portion of potato, 9 parts of alphalise starch, 1 part of animal's leather powder, 8 parts of bentonites, 3 parts of ligninsulfonates, 5 parts of soybean stalks, 1 part Sodium Diacetate and 5 parts of soybean oil co-grindings, then cross 100 mesh sieve after material a, into material a add 5 parts of wheat-middlings, 2 parts Prince's-feather and 3 parts of dusty yeasts are uniformly mixed, and ferment 20d in 60 DEG C, is cooled to room temperature to obtain material b;Material b is filtered to take into filter Liquid, filtrate then, in 105 DEG C of dry 2h, be cooled to room temperature to obtain material c in 50 DEG C of concentrations;By 6 parts of chitosans, 2 parts it is organic Rectorite, 6 parts of sodium alginates and 1 part of nano-calcium carbonate are uniformly mixed, and 20min are stirred in 650r/min rotating speeds, then in -50 DEG C Dry 20min, is subsequently added into material c, 5 parts of poly butyric esters, 1 part of polyorthoester and 6 parts of poly- phosphatide and mixes in freeze drier Close uniformly, 20min is stirred in 4500r/min rotating speeds, then add 4 parts of Fibrin Glues and be uniformly mixed, then in 350r/min Rotating speed stirs 3h, is then collected by centrifugation in 12000r/min rotating speeds, is freeze-dried after washing and obtains bonding modified additive.
Modified Controlled-release filler is prepared by following technique:15 parts of shelling elements and 2 parts of soybean lecithins are mixed by weight Close uniformly, 20min is stirred in 650r/min rotating speeds, then the dry 20min in -50 DEG C of freeze driers, is subsequently added into 5 parts and gathers Lactic-glycolic acid solution is uniformly mixed, and 20min is stirred in 4500r/min rotating speeds, then adds 3 parts of araboxylan mixing Uniformly, 3h then is stirred in 350r/min rotating speeds, is then collected by centrifugation in 12000r/min rotating speeds, be freeze-dried and obtain after washing Material A;By material A, 4 portions of seaweed, 5 portions of peppermints, 3 parts of soybean stalks, 5 parts of highland barley stalks, 4 parts of butter, 6 parts of sodium Diacetates, 2 parts Oyster shell whiting and 5 parts of soybean oil co-grindings, then cross 100 mesh sieves, then add 9 portions of prince's-feathers and 4 parts of dusty yeasts are uniformly mixed, Ferment 10d in 80 DEG C, is cooled to room temperature to obtain material B;Material B is filtered to take into filtrate, is then concentrated filtrate in 60 DEG C, then In 90 DEG C of dry 6h, it is cooled to room temperature to obtain modified Controlled-release filler.
A kind of Procambius clarkii nurturing period of the present invention with the preparation method of high viability feed, includes the following steps:
S1, by dregs of beans, wheat bran, corn flour, husk, wheaten starch, sodium alginate, brewer's yeast, edible fungi residues, bone meal, Rape cake and calcium monohydrogen phosphate co-grinding, then cross 200 mesh sieve after material I, into material a add fish meal, river snail powder and Dried silkworm chrysalis meal is uniformly mixed, and ferment 20d in 60 DEG C, is cooled to room temperature to obtain material II;
S2, by material II filter to take filtrate, and filtrate then is concentrated to give material c in 50 DEG C, then by material III in 105 DEG C of dryings obtain material IV to water content≤6%;
S3, by allicin, sodium Diacetate, manna oligosaccharide, Bacitracin Zinc, L- crystal amino acids, chitosan oligosaccharide, beta glucan Enzyme, levamisol, dusty yeast, cellulase, bonding modified additive and modified Controlled-release filler crush, and cross 100 mesh sieve and obtain thing Expect V, then add cellulase into material V, ferment 5d in 60 DEG C, is cooled to room temperature to obtain material VI, then by material IV It is uniformly mixed with material VI, the 40 mesh granular Procambius clarkii nurturing period is made with high viability feed through comminutor.
The foregoing is only a preferred embodiment of the present invention, but protection scope of the present invention be not limited thereto, Any one skilled in the art the invention discloses technical scope in, technique according to the invention scheme and its Inventive concept is subject to equivalent substitution or change, should be covered by the protection scope of the present invention.

Claims (8)

1. a kind of Procambius clarkii nurturing period is with high viability feed, it is characterised in that its raw material includes by weight:Fish meal 80-120 parts, 30-50 parts of dregs of beans, 10-30 parts of wheat bran, 2-8 parts of corn flour, 3-6 parts of river snail powder, 5-15 parts of husk, wheaten starch 2-6 parts, 1-4 parts of sodium alginate, 4-9 parts of brewer's yeast, 6-12 parts of edible fungi residues, 1-5 parts of bone meal, 1-4 parts of rape cake, dried silkworm chrysalis meal 3-6 parts, 4-8 parts of calcium monohydrogen phosphate, 2-4 parts of allicin, 2-5 parts of sodium Diacetate, 1-4 parts of manna oligosaccharide, 2-5 parts of Bacitracin Zinc, 1-3 parts of L- crystal amino acids, 4-9 parts of chitosan oligosaccharide, 2-5 parts of 1,4 beta-glucanase, 2-4 parts of levamisol, 1-6 parts of dusty yeast, fiber Plain enzyme 1-6 parts, bond 10-20 part of modified additive, modification 5-15 parts of Controlled-release filler.
2. the Procambius clarkii nurturing period according to claim 1 is with high viability feed, it is characterised in that bonds modification and helps The raw material of agent includes by weight:5-15 parts of gluten, 2-5 parts of oil cake of flax seed, 3-6 parts of tapioca starch, 1-5 parts of potato, alphalise starch 3-9 It is part, 1-5 parts of animal's leather powder, 4-8 parts of bentonite, 3-6 parts of ligninsulfonate, 2-5 parts of soybean stalk, 1-4 parts of sodium Diacetate, big 3-5 parts of soya-bean oil, 3-5 parts of wheat-middlings, 2-4 parts of prince's-feather, 1-3 parts of dusty yeast, 3-6 parts of chitosan, 2-5 parts of organic rectorite, seaweed Sour sodium 3-6 parts, 1-4 parts of nano-calcium carbonate, 3-5 parts of poly butyric ester, 1-5 parts of polyorthoester, -6 parts of poly- phosphatidase 3, fiber egg 4-8 parts of white glue.
3. the Procambius clarkii nurturing period according to claim 1 or 2 is with high viability feed, it is characterised in that bonding changes Property auxiliary agent is prepared by following technique:By gluten, oil cake of flax seed, tapioca starch, potato, alphalise starch, animal's leather powder, swelling Soil, ligninsulfonate, soybean stalk, sodium Diacetate and soybean oil co-grinding, obtain material a, into material a after then sifting out Add wheat-middlings, prince's-feather and dusty yeast to be uniformly mixed, ferment, be cooled to room temperature to obtain material b;Material b is filtered to take into filtrate, so Filtrate is concentrated afterwards, it is dry, it is cooled to room temperature to obtain material c;By chitosan, organic rectorite, sodium alginate and nano-calcium carbonate Calcium is uniformly mixed, stirring, then dry in freeze drier, be subsequently added into material c, poly butyric ester, polyorthoester and Poly- phosphatide is uniformly mixed, stirring, is then added Fibrin Glue and is uniformly mixed, is followed by stirring for, is then centrifuged for collecting, cold after washing Jelly is dried to obtain cohesive modified additive.
4. according to claim 1-3 any one of them Procambius clarkii nurturing periods with high viability feed, it is characterised in that viscous Knot modified additive is prepared by following technique:By gluten, oil cake of flax seed, tapioca starch, potato, alphalise starch, animal's leather powder, swollen Moisten soil, ligninsulfonate, soybean stalk, sodium Diacetate and soybean oil co-grinding, material is obtained after then crossing 100-200 mesh sieve A, into material a, addition wheat-middlings, prince's-feather and dusty yeast are uniformly mixed, and ferment 10-20d in 60-80 DEG C, is cooled to room temperature to obtain Material b;Material b is filtered to take into filtrate, then, in 90-105 DEG C of dry 2-6h, is cooled to room temperature filtrate in 50-60 DEG C of concentration Obtain material c;Chitosan, organic rectorite, sodium alginate and nano-calcium carbonate are uniformly mixed, in 350-650r/min rotating speeds 20-30min is stirred, then the dry 20-40min in -30~-50 DEG C of freeze driers, is subsequently added into material c, poly- hydroxyl fourth Acid esters, polyorthoester and poly- phosphatide are uniformly mixed, and are stirred 10-20min in 4500-5500r/min rotating speeds, are then added fiber egg White glue is uniformly mixed, and then stirs 3-5h in 250-350r/min rotating speeds, is then centrifuged and is received in 8500-12000r/min rotating speeds Collection, is freeze-dried after washing and obtains bonding modified additive.
5. according to claim 1-4 any one of them Procambius clarkii nurturing periods with high viability feed, it is characterised in that change The raw material of property Controlled-release filler includes by weight:5-15 parts of shelling element, 2-6 parts of soybean lecithin, polylactic-co-glycolic acid solution 1-5 parts, 3-9 parts of araboxylan, 4-8 parts of seaweed, 2-5 parts of peppermint, 3-6 parts of soybean stalk, 1-5 parts of highland barley stalk, butter 4-8 parts, 3-6 parts of sodium Diacetate, 2-5 parts of oyster shell whiting, 1-5 parts of soybean oil, 3-9 parts of prince's-feather, 4-8 parts of dusty yeast.
6. according to claim 1-5 any one of them Procambius clarkii nurturing periods with high viability feed, it is characterised in that change Property Controlled-release filler is prepared by following technique:Shelling element and soybean lecithin are uniformly mixed, stirred, then in freeze-drying It is dry in machine, it is subsequently added into polylactic-co-glycolic acid solution and is uniformly mixed, stir, it is equal then adds araboxylan mixing It is even, it is followed by stirring for, is then centrifuged for collecting, is freeze-dried after washing and obtains material A;By seaweed, peppermint, soybean stalk, highland barley straw Stalk, butter, sodium Diacetate, oyster shell whiting and soybean oil co-grinding, then sieve, and then add prince's-feather and dusty yeast mixing is equal Even, fermentation, is cooled to room temperature to obtain material B;Material B is filtered to take into filtrate, then filtrate is concentrated, is then dried, is cooled to Room temperature obtains modified Controlled-release filler.
7. according to claim 1-6 any one of them Procambius clarkii nurturing periods with high viability feed, it is characterised in that change Property Controlled-release filler is prepared by following technique:Shelling element and soybean lecithin are uniformly mixed, in 350-650r/min rotating speeds 20-30min is stirred, then the dry 20-40min in -30~-50 DEG C of freeze driers, is subsequently added into polylactic-co-glycolic acid Solution is uniformly mixed, and 10-20min is stirred in 4500-5500r/min rotating speeds, is then added araboxylan and is uniformly mixed, connects And stir 3-5h in 250-350r/min rotating speeds, be then collected by centrifugation in 8500-12000r/min rotating speeds, be freeze-dried after washing Obtain material A;Material A, seaweed, peppermint, soybean stalk, highland barley stalk, butter, sodium Diacetate, oyster shell whiting and soybean oil are mixed Close and crush, then cross 100-200 mesh sieves, then add prince's-feather and dusty yeast is uniformly mixed, ferment 10-20d in 60-80 DEG C, It is cooled to room temperature to obtain material B;Material B is filtered to take into filtrate, then by filtrate in 50-60 DEG C of concentration, then in 90-105 DEG C Dry 2-6h, is cooled to room temperature to obtain modified Controlled-release filler.
A kind of 8. preparation side according to claim 1-7 any one of them Procambius clarkii nurturing periods with high viability feed Method, it is characterised in that include the following steps:
S1, by dregs of beans, wheat bran, corn flour, husk, wheaten starch, sodium alginate, brewer's yeast, edible fungi residues, bone meal, vegetable seed Cake and calcium monohydrogen phosphate co-grinding, then cross 100-200 mesh sieve after material I, into material a add fish meal, river snail powder and Dried silkworm chrysalis meal is uniformly mixed, and ferment 10-20d in 60-80 DEG C, is cooled to room temperature to obtain material II;
S2, by material II filter to take filtrate, filtrate is then concentrated to give material c in 50-60 DEG C, then by material III in 90- 105 DEG C of dryings obtain material IV to water content≤6%;
S3, by allicin, sodium Diacetate, manna oligosaccharide, Bacitracin Zinc, L- crystal amino acids, chitosan oligosaccharide, 1,4 beta-glucanase, Levamisol, dusty yeast, cellulase, bonding modified additive and modified Controlled-release filler crush, and cross 100-300 mesh sieve and obtain thing Expect V, then add cellulase into material V, ferment 5-10d in 50-60 DEG C, is cooled to room temperature to obtain material VI, then will Material IV and material VI are uniformly mixed, and the granular Procambius clarkii nurturing period high viability of 20-40 mesh is made through comminutor Feed.
CN201711010641.5A 2017-10-25 2017-10-25 A kind of Procambius clarkii nurturing period is with high viability feed and preparation method thereof Withdrawn CN107912644A (en)

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CN109463579A (en) * 2018-12-31 2019-03-15 盐城工学院 A kind of rice shrimp aquaculture mode-specific mixed feed and preparation method thereof

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CN107156533A (en) * 2017-05-08 2017-09-15 张银花 A kind of lobster cultivation selenium element high-efficiency sustained-release high protein feed
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CN105995231A (en) * 2016-06-17 2016-10-12 安庆市皖宜季牛水产养殖有限责任公司 Bulk material prevention freshwater shrimp feed capable of improving immunity
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