CN213095863U - Triple de-odoring system for goat milk - Google Patents

Triple de-odoring system for goat milk Download PDF

Info

Publication number
CN213095863U
CN213095863U CN202022068044.1U CN202022068044U CN213095863U CN 213095863 U CN213095863 U CN 213095863U CN 202022068044 U CN202022068044 U CN 202022068044U CN 213095863 U CN213095863 U CN 213095863U
Authority
CN
China
Prior art keywords
odoring
component
triple
goat milk
tank
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.)
Active
Application number
CN202022068044.1U
Other languages
Chinese (zh)
Inventor
孟百跃
程建良
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.)
Xi'an Baiyue Goat Milk Group Co ltd
Xi'an Yugong Goat Milk Co ltd
Original Assignee
Xi'an Baiyue Goat Milk Group Co ltd
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 Xi'an Baiyue Goat Milk Group Co ltd filed Critical Xi'an Baiyue Goat Milk Group Co ltd
Priority to CN202022068044.1U priority Critical patent/CN213095863U/en
Application granted granted Critical
Publication of CN213095863U publication Critical patent/CN213095863U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Dairy Products (AREA)

Abstract

The utility model discloses a triple de-odoring system for goat milk, which is provided with a first triple de-odoring component connected with a goat milk feeding component, a second triple de-odoring component connected with the first triple de-odoring component, a third triple de-odoring component connected with the second triple de-odoring component, and a PLC controller electrically connected with the first triple de-odoring component, the second triple de-odoring component and the third triple de-odoring component; the third de-odoring component is connected with the goat milk discharging component, de-odoring of the fresh goat milk is performed through the triple de-odoring system, and then de-odoring of the fresh goat milk is performed to obtain the non-odoring goat milk suitable for most people, and the PLC controls the working time, the working temperature and the like of each device in the de-odoring process, so that the whole de-odoring process is a full-automatic control process, and the purposes of rapidness, cleanness, safety and convenience are achieved. The goat milk subjected to triple de-odoring can keep original nutrition and well de-odore to accord with the taste of the public.

Description

Triple de-odoring system for goat milk
Technical Field
The utility model relates to a dairy products field of making especially relates to a triple system of mutton smell that takes off of goat's milk.
Background
The nutrition of the goat milk is close to that of human milk, the protein formation of the goat milk is small, the fat globules are small and uniform, the goat milk is easy to digest and absorb by human bodies, and the goat milk is particularly suitable for infants to drink. However, the smell of goat milk is disappointed by many people, so that the problem of smell removal of goat milk is always the greatest importance of goat milk enterprises.
In view of the above, the technical problem to be solved is to well maintain the nutrient substances in the goat milk and remove the goat odor so as to meet the taste requirement of the public.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a triple system of mutton smell that takes off of goat's milk to improve the current problem that the goat's milk takes off the mutton smell thoroughly inadequately.
In order to realize the purpose, the utility model discloses a technical scheme as follows:
a triple de-odoring system for goat milk comprises a first triple de-odoring component connected with a goat milk feeding component, a second triple de-odoring component connected with the first triple de-odoring component, a third triple de-odoring component connected with the second triple de-odoring component, and a PLC (programmable logic controller) electrically connected with the first triple de-odoring component, the second triple de-odoring component and the third triple de-odoring component; wherein the third de-odoring component is connected with the goat milk discharging component; the first heavy de-odoring component is used for sterilizing, exhausting and de-odoring fresh goat milk; the second heavy de-odoring component is used for carrying out homogeneous concentration de-odoring on the goat milk subjected to sterilization, exhaust and de-odoring by the first heavy de-odoring component; the third de-odoring component is used for sterilizing, condensing and de-odoring the goat milk subjected to the homogeneous concentration and de-odoring of the second de-odoring component.
Further, the first re-mutton smell removing assembly comprises a pasteurization machine, a vacuum degassing tank connected with the pasteurization machine, and a separator connected with the vacuum degassing tank; wherein, the pasteurization machine is respectively connected with the separator and the second de-odoring component; the fresh goat milk feeding assembly is connected with the pasteurization machine, a discharge hole of the pasteurization machine is formed in the side wall of the vacuum degassing tank, and the discharge hole of the vacuum degassing tank is located at the bottom of the vacuum degassing tank.
Further, the second de-odoring component comprises a batching system connected with the pasteurization machine, a vacuum concentration evaporator connected with the batching system, and a de-odoring condensing tank connected with the vacuum concentration evaporator; wherein, the de-odoring condensation tank is connected with the third de-odoring component.
Further, the third de-odoring component comprises an ultrahigh-temperature instantaneous sterilization machine connected with a de-odoring condensation tank, a flash evaporation sterilization de-odoring tank connected with the ultrahigh-temperature instantaneous sterilization machine, and a condensation pipe connected with the flash evaporation sterilization de-odoring tank; wherein, the condenser pipe links to each other with goat's milk unloading subassembly.
Compared with the prior art, the utility model discloses following beneficial effect has:
(1) the utility model discloses a de-odoring system is provided with a first heavy de-odoring component connected with a goat milk feeding component, a second heavy de-odoring component connected with the first heavy de-odoring component, a third heavy de-odoring component connected with the second heavy de-odoring component, and a PLC controller electrically connected with the first heavy de-odoring component, the second heavy de-odoring component and the third heavy de-odoring component; the third de-odoring component is connected with the goat milk discharging component, de-odoring of the fresh goat milk is performed through the triple de-odoring system, and then de-odoring of the fresh goat milk is achieved, so that the de-odoring process is full-automatic, and rapidness, cleanness, safety and convenience are achieved.
(2) The utility model discloses a first heavy de-odoring subassembly includes pasteurization machine, the vacuum degassing jar that links to each other with pasteurization machine to and the separating centrifuge that links to each other with the vacuum degassing jar. And (4) sending the preheated raw goat milk into a pasteurization machine for sterilization through a goat milk feeding assembly. And then the goat milk is conveyed to a vacuum degassing tank, the common knowledge shows that the boiling point is increased when the pressure is increased, the boiling point is reduced when the pressure is reduced, the vacuum degassing tank is vacuumized, so that the goat milk is in a negative pressure state, the boiling point of the goat milk is reduced, the goat milk reaches a boiling state at a low temperature, bubbles contained in the goat milk rise to the top of a vacuum degassing pipe along with water vapor and are discharged out of the tank body, and the influence components of the goat milk are not damaged, and the goat milk can be well degassed and deodorized.
(3) The utility model discloses a second is got rid of the mutton smell subassembly again includes the feed proportioning system who links to each other with pasteurization machine, the vacuum concentration evaporimeter that links to each other with the feed proportioning system, the condensate tank that takes off the mutton smell that links to each other with the vacuum concentration evaporimeter. After the sheep milk is homogenized in a batching system, the sheep milk is conveyed to a vacuum concentration evaporator, thereby the mutton smell is removed through evaporation, concentrated milk is discharged after the sheep milk passes through a mutton smell removing condensation tank, the second mutton smell removing is completed, the sheep milk is evaporated in a vacuum environment, the evaporator provides a large space for the falling film sheep milk, the moisture in the sheep milk is separated from milk liquid more easily, the formed evaporation gas enters a compression fan and then enters an effect body to be evaporated for a heating tube array, and redundant heat and gas are discharged through a very-empty pump.
(4) The utility model discloses a triple de-odoring subassembly includes the super high temperature instantaneous sterilization machine that links to each other with the condensation jar that takes off the mutton smell, and the flash distillation that links to each other with super high temperature instantaneous sterilization machine is disinfected and is taken off the mutton smell jar, and the condenser pipe that takes off the mutton smell jar and link to each other with the flash distillation is disinfected. The goat milk subjected to secondary concentration and de-odoring is sterilized at high temperature to remove the smell of the mutton, and then is discharged at a low temperature, so that the original nutrition of the goat milk is not damaged.
Drawings
Fig. 1 is a flowchart of a triple de-odoring system for goat milk provided by an embodiment of the present invention.
Detailed Description
The present invention will be further described with reference to the following drawings and examples, and embodiments of the present invention include, but are not limited to, the following examples.
Referring to fig. 1, a triple de-odoring system for goat milk comprises a first triple de-odoring component connected with a goat milk feeding component, a second triple de-odoring component connected with the first triple de-odoring component, a third triple de-odoring component connected with the second triple de-odoring component, and a PLC controller electrically connected with the first triple de-odoring component, the second triple de-odoring component and the third triple de-odoring component; wherein, the third de-odoring component is connected with the goat milk discharging component. The first heavy de-odoring component is used for sterilizing, exhausting and de-odoring fresh goat milk; the second heavy de-odoring component is used for carrying out homogeneous concentration de-odoring on the goat milk which is sterilized and exhausted by the first heavy de-odoring component; the third de-odoring component is used for sterilizing and condensing the goat milk subjected to the homogeneous concentration and de-odoring of the second de-odoring component. The mutton smell of fresh goat milk is removed through the de-gassing and de-odoring of the triple de-odoring system to obtain the mutton smell-free goat milk suitable for most people, and the PLC controls the de-odoring process, the working time, the temperature and the like of each device, so that the whole de-odoring process is a full-automatic control flow, and the purposes of rapidness, cleanness, safety and convenience are achieved.
The first de-odoring component comprises a pasteurization machine, a vacuum degassing tank connected with the pasteurization machine, and a separator connected with the vacuum degassing tank; wherein, the pasteurization machine is respectively connected with the separator and the second de-odoring component.
And (3) sending the preheated raw goat milk into a pasteurization machine through a goat milk feeding assembly, and heating to 60-65 ℃ for sterilization. And then conveying the mixture to a vacuum degassing tank, wherein a discharge port of the pasteurization machine is arranged on the side wall of the vacuum degassing tank, and the discharge port is positioned at the bottom of the vacuum degassing tank. It is known from the common knowledge that the boiling point increases when the pressure increases, the boiling point decreases when the pressure decreases, the boiling point of the goat milk is reduced when the vacuum degassing tank is vacuumized to make the goat milk in a negative pressure state, so that the goat milk reaches a boiling state at a low temperature, and bubbles contained in the goat milk rise to the top of the vacuum degassing pipe along with water vapor and are discharged out of the tank body. In this example, the vacuum degree of the vacuum degassing tank was about-0.6 kpr.
And conveying the goat milk subjected to de-odoring and de-odoring to a separator, wherein the temperature of the separator is 50-55 ℃, and performing degerming, de-odoring and separation. And then conveyed from the separator back to the pasteurization machine to finish the first de-odorizing step.
The second de-odoring component comprises a batching system connected with the pasteurization machine, a vacuum concentration evaporator connected with the batching system, and a de-odoring condensation tank connected with the vacuum concentration evaporator, wherein the de-odoring condensation tank is connected with the third de-odoring component. And (3) conveying the goat milk sterilized, exhausted and de-odored by the first de-odoring component into a batching system from a pasteurization machine, homogenizing by 10-14 Mpa, conveying to a vacuum concentration evaporator, evaporating to remove the goat odor, discharging concentrated milk with the solid content of 45-55% through a de-odoring condensing tank, and finishing secondary de-odoring. In this embodiment, the vacuum pump for the vacuum concentration evaporator is a water ring vacuum pump, and the air, the excessive steam and the heat in the effect body are sucked by using the change of the volume of the space formed by the water and the impeller and then discharged through the exhaust port, and the whole process is to continuously discharge the excessive evaporation heat and the moisture in the effect body in order to ensure the low-pressure environment of the concentration system, so as to ensure the negative pressure and the operating temperature of the effect body.
The third de-odoring component comprises an ultrahigh-temperature instantaneous sterilization machine connected with a de-odoring condensation tank, a flash evaporation sterilization de-odoring tank connected with the ultrahigh-temperature instantaneous sterilization machine, and a condensation pipe connected with the flash evaporation sterilization de-odoring tank.
And (3) conveying the concentrated milk subjected to secondary de-odoring to an ultrahigh-temperature instantaneous sterilization machine, maintaining a high-temperature sterilization state in a protein holding tube for 60s, conveying the concentrated milk to a flash evaporation sterilization de-odoring tank with the working temperature of 145 ℃, performing flash evaporation sterilization for 4s, removing the mutton smell, condensing in a condensing pipeline, conveying the concentrated milk to a goat milk blanking assembly, and finishing the tertiary de-odoring to obtain the goat milk without mutton smell. The temperature and time setting of each device is controlled by a PLC controller.
The utility model discloses a de-odoring system, which adopts triple de-odoring, realizes the sterilization, de-odoring and de-odoring of raw goat milk through the cooperation of a first heavy pasteurization machine, a vacuum degassing pipe and a separator; concentrating and deodorizing through second burdening, vacuum concentration, evaporation and condensation; and performing triple high-temperature instant sterilization, flash evaporation sterilization, smell removal and condensation to prepare the mutton-smell-free goat milk. The utility model discloses through the triple goat's milk that obtains after taking off the mutton smell, it is effectual to take off the mutton smell, and nutrient substance can be fine remain, whole process full-automatic, swift, safe function.
The above-mentioned embodiment is only the preferred embodiment of the present invention, and is not a limitation to the protection scope of the present invention, but all the changes made by adopting the design principle of the present invention and performing non-creative work on this basis should belong to the protection scope of the present invention.

Claims (4)

1. A triple de-odoring system for goat milk is characterized by comprising a first triple de-odoring component connected with a goat milk feeding component, a second triple de-odoring component connected with the first triple de-odoring component, a third triple de-odoring component connected with the second triple de-odoring component, and a PLC (programmable logic controller) electrically connected with the first triple de-odoring component, the second triple de-odoring component and the third triple de-odoring component; wherein the third de-odoring component is connected with the goat milk discharging component;
the first heavy de-odoring component is used for sterilizing, exhausting and de-odoring fresh goat milk;
the second heavy de-odoring component is used for carrying out homogeneous concentration de-odoring on the goat milk subjected to sterilization, exhaust and de-odoring by the first heavy de-odoring component;
the third de-odoring component is used for sterilizing and condensing the goat milk subjected to the homogeneous concentration and de-odoring of the second de-odoring component.
2. The triple de-muthing system of claim 1, wherein the first de-muthing assembly comprises a pasteurizer, a vacuum degassing tank coupled to the pasteurizer, and a separator coupled to the vacuum degassing tank;
wherein, the pasteurization machine is respectively connected with the separator and the second de-odoring component; the fresh goat milk feeding assembly is connected with the pasteurization machine, a discharge hole of the pasteurization machine is formed in the side wall of the vacuum degassing tank, and the discharge hole of the vacuum degassing tank is located at the bottom of the vacuum degassing tank.
3. The triple de-odoring system for goat milk according to claim 2, wherein the secondary de-odoring component comprises a batching system connected with a pasteurizer, a vacuum concentration evaporator connected with the batching system, and a de-odoring condensing tank connected with the vacuum concentration evaporator; wherein, the de-odoring condensation tank is connected with the third de-odoring component.
4. The triple de-odoring system for goat milk according to claim 3, wherein the third triple de-odoring component comprises an ultra-high temperature instantaneous sterilizer connected with a de-odoring condensation tank, a flash sterilization de-odoring tank connected with the ultra-high temperature instantaneous sterilizer, and a condensation pipe connected with the flash sterilization de-odoring tank; wherein, the condenser pipe links to each other with goat's milk unloading subassembly.
CN202022068044.1U 2020-09-18 2020-09-18 Triple de-odoring system for goat milk Active CN213095863U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022068044.1U CN213095863U (en) 2020-09-18 2020-09-18 Triple de-odoring system for goat milk

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022068044.1U CN213095863U (en) 2020-09-18 2020-09-18 Triple de-odoring system for goat milk

Publications (1)

Publication Number Publication Date
CN213095863U true CN213095863U (en) 2021-05-04

Family

ID=75663329

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022068044.1U Active CN213095863U (en) 2020-09-18 2020-09-18 Triple de-odoring system for goat milk

Country Status (1)

Country Link
CN (1) CN213095863U (en)

Similar Documents

Publication Publication Date Title
CN1052615C (en) Milk product
KR101326281B1 (en) Method for producing sour milk products, method for treating milk therefor, sour milk production line, device for treating milk for said line
US20090317533A1 (en) Method for producing a soy milk
EP2777388B1 (en) Method and device for producing starting material milk for skim milk
CN213095863U (en) Triple de-odoring system for goat milk
CN112868762A (en) Low-temperature pasteurized milk and preparation method thereof
CN112841302A (en) Normal-temperature milk with long shelf life and preparation method thereof
CN1135721A (en) Method and apparatus for sterilization
EP2777389B1 (en) Method for producing and device for producing cheese starting material milk
JP2001103947A (en) Device for sterilizing, drying and cooling livestock feed
NL193606C (en) A method of treating egg products or related compositions to extend the life of such products.
JP7133941B2 (en) Storage tank and deodorizing method
CN211960789U (en) Flash evaporation system for sterilizing and deodorizing soybean milk in soybean milk powder production
CN113632846A (en) Lactose-free skim milk powder and preparation method thereof
CN112913918A (en) Fresh milk and production process thereof
GB2152378A (en) Autoclave
JPH0889165A (en) Method for treating cow milk or the like
CN218999429U (en) Low-temperature pasteurization treatment device
JP2012165729A (en) Method for changing rice-washed water into feed raw material, and device
RU2805962C2 (en) Method of producing milk powder or whey, using separator to remove microbes
CN103719533A (en) Production method of high-calcium whey protein
US20230397620A1 (en) Powderization of Human Milk
US20220202030A1 (en) Method for producing a milk or whey powder, and use of a germ-removing separator
CN207151806U (en) A kind of dairy products flash distillation sterilization unit
Paludetti et al. Microbial quality of milk from grass based production systems and impact on milk powder quality

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20230306

Address after: 710000 north section of West Ring Road, Wutun street, Yanliang District, Xi'an City, Shaanxi Province

Patentee after: XI'AN BAIYUE GOAT MILK GROUP CO.,LTD.

Patentee after: Xi'an Yugong goat milk Co.,Ltd.

Address before: 710000 north section of West Ring Road, Wutun street, Yanliang District, Xi'an City, Shaanxi Province

Patentee before: XI'AN BAIYUE GOAT MILK GROUP CO.,LTD.

TR01 Transfer of patent right