CN203744399U - Sterilized cooling room - Google Patents

Sterilized cooling room Download PDF

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Publication number
CN203744399U
CN203744399U CN201420122510.1U CN201420122510U CN203744399U CN 203744399 U CN203744399 U CN 203744399U CN 201420122510 U CN201420122510 U CN 201420122510U CN 203744399 U CN203744399 U CN 203744399U
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CN
China
Prior art keywords
air
house
temperature
ozone generator
cooling
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420122510.1U
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Chinese (zh)
Inventor
张泓
胡宏海
黄峰
张春江
张雪
路立立
陈文波
徐芬
郭昕
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.)
Institute of Food Science and Technology of CAAS
Original Assignee
Institute of Food Science and Technology of CAAS
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Filing date
Publication date
Application filed by Institute of Food Science and Technology of CAAS filed Critical Institute of Food Science and Technology of CAAS
Priority to CN201420122510.1U priority Critical patent/CN203744399U/en
Application granted granted Critical
Publication of CN203744399U publication Critical patent/CN203744399U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

The utility model discloses a sterilized cooling room. A concealed-type ozone generator is arranged in a cooling air pipeline of a low-temperature air conditioning unit to sterilize cold air entering the room, the secondary pollution of external air is isolated, an ultraviolet sterilizing lamp and a movable type ozone generator are arranged in the room to conduct sufficient sterilization, the defect of the radiating dead angles of the ultraviolet sterilizing lamp is compensated by the movable type ozone generator, and the defects that the movable type ozone generator is inconvenient to use for a long time and the upper portion of a space is difficult to cover for sterilization due to the fact that ozone is prone to subsidence are compensated by the ultraviolet sterilizing lamp. Due to the fact that an ozone concentration detector and temperature sensors are arranged in the room to feed back the ozone concentration and the temperature in the room to the ozone generator and the low-temperature air conditioning unit, so that the ozone concentration and the cooling temperature in the room are controlled, and the comprehensive management of the temperature and the cleanness degree of the sterilized cooling room is achieved.

Description

A kind of bacteria reducing cooling chamber
Technical field
The utility model relates to a bacteria reducing cooling chamber.
Background technology
Along with socioeconomic development, the raising of people's living standard, consumers in general are increasing for the demand of prefabricated conditioning food, and food-safety problem also more and more receives consumer's concern.How prefabricated conditioning products, after conditioning completes, ensures temperature and the cleannes of product chilling room, avoids not contaminated in cooling procedure, most important for the Quality Safety and the shelf life that ensure final products.Therefore the air cleaning that, how to realize food cooling chamber becomes is badly in need of the technical problem that solves.At present, coolingly conventionally realize refrigeration with air conditioner, but that air conditioner is loaded on is outdoor, when transporting cold wind, can bring extraneous air into, affect the hygienic conditions in cooling chamber, cold wind is carried out to bacteria reducing processing in transporting cold wind is the key to the bacteria reducing processing of cooling chamber space simultaneously.In addition, though conventional ozone sterilization and uviol lamp sterilizing at present respectively has advantage, but also each defectiveness, uviol lamp sterilizing is difficult to effect to indoor shaded side, and though ozone sterilization can be realized without dead angle sterilizing, but the proportion of ozone is higher than air, sink to the bottom in space under general, and excessive use easily accelerates aging containing the parts of rubber or organic plastics.Ozone sterilization and uviol lamp sterilization method are used in conjunction with, can bring out one's strengths to make up for one's weaknesses, strengthen bacteria reducing effect.
Utility model content
The utility model has been designed and developed a kind of bacteria reducing cooling chamber, in order to solve current factory especially in food processing factory cooling chamber do not possess the problem of bacteria reducing function.
The technical scheme that the utility model provides is:
A kind of bacteria reducing cooling chamber, comprises house wall and inner space, possesses:
Sterilizing cooling system, described sterilizing cooling system is installed on the top of house one side wall outer side, comprising:
Low-temperature air conditioner unit;
Cooling-air pipeline, is sealedly and fixedly connected with the air outlet of described low-temperature air conditioner unit, and extends to inside, house by the air inlet being arranged on house wall, between described cooling-air pipeline and described air inlet, is tightly connected;
Concealed ozone generator, is installed among described cooling-air pipeline, and the cold air that described low-temperature air conditioner unit is produced carries out ozone sterilization,
Exhaust system, be installed on the interior side-lower of described sterilizing cooling system place body of wall, and near with described sterilizing cooling system place wall body vertical and the side wall larger with the horizontal range of described air inlet, the exhaust duct of described exhaust system extends to outside, house by the air outlet being arranged on house wall, between described exhaust duct and described air outlet, be tightly connected, the exhaust air rate of described exhaust system is less than the cold air air output of described sterilizing cooling system
Ultraviolet sterilizing lamp, be installed on house inner tip middle part, sterilizing is carried out in the space that is conducive to cover top, house, and described ultraviolet sterilizing lamp can be installed one or more with certain interval according to house size, make the sterilizing scope of described ultraviolet sterilizing lamp cover top, house
Mobile ozone generator,
Ozone concentration detector, is installed on the bottom of the inner either side body of wall in house, and is connected with described concealed ozone generator and mobile ozone generator by holding wire,
Temperature sensor, is installed on the middle part of inner each the side wall body in house, and is connected with described low-temperature air conditioner unit by holding wire.
Preferably, in described bacteria reducing cooling chamber, the air outlet that described cooling-air device for cleaning pipeline is crossed microwell plate muffler and described low-temperature air conditioner unit is sealedly and fixedly connected, the noise that described microwell plate muffler produces in order to reduce low-temperature air conditioner unit.
Wherein, described ozone concentration detector is to described concealed ozone generator and described mobile ozone generator Real-time Feedback indoor ozone concentration, described concealed ozone generator and described mobile ozone generator according to the ozone concentration of feedback by self with the generation concentration of robot control system(RCS) control ozone or ozone send stop and starting, make indoor ozone remain on constant concentration range.
Wherein, described temperature sensor is to low-temperature air conditioner unit Real-time Feedback indoor temperature, by low-temperature air conditioner unit self with robot control system(RCS) calculate mean temperature and control chilling temperature.
Wherein, the switch of described mobile ozone generator and described ultraviolet sterilizing lamp is arranged on wall outside bacteria reducing cooling chamber entrance, in the time that staff need enter the work of bacteria reducing cooling chamber, close described mobile ozone generator and described ultraviolet sterilizing lamp, prevent the injury to staff, by the indoor ozone concentration of described ozone concentration detector Real-Time Monitoring, by the ozone concentration in the robot control system(RCS) holding chamber of described concealed ozone generator in the safe range of 0.1~0.5ppm.When personnel leave, start described mobile ozone generator and described ultraviolet germicidal lamp, by the ozone concentration in the real-time sensing chamber of intrasystem ozone concentration detector, ensure that indoor ozone is in more effective sterilizing concentration range.During without refrigeration, close low-temperature air conditioner unit, microwell plate muffler and concealed ozone generator.
Bacteria reducing cooling chamber described in the utility model, by concealed ozone generator being set in the cooling-air pipeline of low-temperature air conditioner unit, to entering indoor cold air sterilizing, the secondary pollution of isolated extraneous air, ultraviolet germicidal lamp is set and mobile ozone generator carries out space sterilizing indoor, and make up ultraviolet germicidal lamp and exist the problem at radiation dead angle by mobile ozone generator, make up that ozone generator inconvenience is used when long and the ozone defect that easily sinking is difficult to covering space top and carries out sterilizing by ultraviolet germicidal lamp.And by the indoor ozone concentration detector that arranges to concealed ozone generator and mobile ozone generator Real-time Feedback indoor ozone concentration, two kinds of ozone generators according to the ozone concentration of feedback by self with the generation of robot control system(RCS) control ozone, make indoor ozone remain on suitable concentration, feed back indoor temperature by temperature sensor to low-temperature air conditioner unit again, by low-temperature air conditioner unit self with robot control system(RCS) control chilling temperature, realize the integrated management of bacteria reducing cooling chamber temperature and cleannes.
Brief description of the drawings
Fig. 1 is the plan structure schematic diagram of bacteria reducing cooling chamber described in the utility model.
Detailed description of the invention
Below in conjunction with embodiment, and by reference to the accompanying drawings, the utility model is described in further detail, to make those skilled in the art can implement according to this with reference to description word.
As shown in Figure 1, a kind of bacteria reducing cooling chamber that the utility model provides, comprises house wall 1 and inner space, possesses:
Sterilizing cooling system, described sterilizing cooling system is installed on the top of house one side wall outer side, comprising:
Low-temperature air conditioner unit 2, has outside air inlet 12;
Cooling-air pipeline 5, described cooling-air pipeline 5 is sealedly and fixedly connected by microwell plate muffler 3 and the air outlet of described low-temperature air conditioner unit 1, the noise that described microwell plate muffler 3 produces in order to reduce low-temperature air conditioner unit 2, and extend to inside, house by the air inlet 6 being arranged on house wall, between described cooling-air pipeline 5 and described air inlet 6, be tightly connected;
Concealed ozone generator 4, is installed among described cooling-air pipeline 5, and the cold air that described low-temperature air conditioner unit 2 is produced carries out ozone sterilization;
Exhaust system 7, be installed on the interior side-lower of described sterilizing cooling system place body of wall, and near with described sterilizing cooling system place wall body vertical and the side wall larger with the horizontal range of described air inlet, the exhaust duct of described exhaust system 7 extends to outside, house by the air outlet being arranged on house wall, between described exhaust duct and described air outlet, be tightly connected, the exhaust air rate of described exhaust system is less than the cold air air output of described sterilizing cooling system;
Ultraviolet sterilizing lamp 10, be installed on house inner tip, mobile ozone generator 9, ozone concentration detector 8, be installed on the bottom of the inner either side body of wall in house, and be connected with described concealed ozone generator 4 and mobile ozone generator 9 by holding wire;
Temperature sensor 11, is installed on the middle part of inner each the side wall body in house, and is connected with described low-temperature air conditioner unit 2 by holding wire, and bacteria reducing cooling chamber imports and exports 13.
Wherein, described ozone concentration detector is to described concealed ozone generator and described mobile ozone generator Real-time Feedback indoor ozone concentration, described concealed ozone generator and described mobile ozone generator according to the ozone concentration of feedback by self with the generation concentration of robot control system(RCS) control ozone or ozone send stop and starting, make indoor ozone remain on constant concentration range.
Wherein, described temperature sensor is to low-temperature air conditioner unit Real-time Feedback indoor temperature, by low-temperature air conditioner unit self with robot control system(RCS) calculate mean temperature and control chilling temperature.
In the time that staff need enter the work of bacteria reducing cooling chamber, first close mobile ozone generator and ultraviolet germicidal lamp, prevent the injury to staff, by the indoor ozone concentration of ozone concentration detector Real-Time Monitoring, by the ozone concentration in the robot control system(RCS) holding chamber of concealed ozone generator in the safe range of 0.1~0.5ppm.While entering without personnel, start mobile ozone generator and ultraviolet sterilizing lamp, by the ozone concentration in the real-time sensing chamber of intrasystem ozone concentration detector, ensure that indoor ozone is at 0.5ppm, close low-temperature air conditioner unit, microwell plate muffler and concealed without when refrigeration night.
Although embodiment of the present utility model is open as above, but it is not restricted to listed utilization in description and embodiment, it can be applied to the various fields of the present utility model that are applicable to completely, for those skilled in the art, can easily realize other amendment, therefore do not deviating under the universal that claim and equivalency range limit, the utility model is not limited to specific details and illustrates here and the legend of describing.

Claims (2)

1. a bacteria reducing cooling chamber, comprises house wall and inner space, it is characterized in that possessing:
Sterilizing cooling system, described sterilizing cooling system is installed on the top of house one side wall outer side, comprising:
Low-temperature air conditioner unit;
Cooling-air pipeline, is sealedly and fixedly connected with the air outlet of described low-temperature air conditioner unit, and extends to inside, house by the air inlet being arranged on house wall, between described cooling-air pipeline and described air inlet, is tightly connected;
Concealed ozone generator, is installed among described cooling-air pipeline, and the cold air that described low-temperature air conditioner unit is produced carries out ozone sterilization,
Exhaust system, be installed on the interior side-lower of described sterilizing cooling system place body of wall, and near with described sterilizing cooling system place wall body vertical and the side wall larger with the horizontal range of described air inlet, the exhaust duct of described exhaust system extends to outside, house by the air outlet being arranged on house wall, between described exhaust duct and described air outlet, be tightly connected, the exhaust air rate of described exhaust system is less than the cold air air output of described sterilizing cooling system
Ultraviolet sterilizing lamp, is installed on inner tip middle part, house, mobile ozone generator,
Ozone concentration detector, is installed on the bottom of the inner either side body of wall in house, and is connected with described concealed ozone generator and mobile ozone generator by holding wire,
Temperature sensor, is installed on the middle part of inner each the side wall body in house, and is connected with described low-temperature air conditioner unit by holding wire.
2. bacteria reducing cooling chamber as claimed in claim 1, is characterized in that, in described sterilizing cooling system, the air outlet that described cooling-air device for cleaning pipeline is crossed microwell plate muffler and described low-temperature air conditioner unit is sealedly and fixedly connected.
CN201420122510.1U 2014-03-18 2014-03-18 Sterilized cooling room Expired - Fee Related CN203744399U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420122510.1U CN203744399U (en) 2014-03-18 2014-03-18 Sterilized cooling room

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420122510.1U CN203744399U (en) 2014-03-18 2014-03-18 Sterilized cooling room

Publications (1)

Publication Number Publication Date
CN203744399U true CN203744399U (en) 2014-07-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420122510.1U Expired - Fee Related CN203744399U (en) 2014-03-18 2014-03-18 Sterilized cooling room

Country Status (1)

Country Link
CN (1) CN203744399U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110478112A (en) * 2019-09-11 2019-11-22 武汉亚格光电技术股份有限公司 A kind of medical sterile air skin cooling system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110478112A (en) * 2019-09-11 2019-11-22 武汉亚格光电技术股份有限公司 A kind of medical sterile air skin cooling system
CN110478112B (en) * 2019-09-11 2024-04-02 武汉亚格光电技术股份有限公司 Medical sterilizing air skin cooling system

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140730

Termination date: 20210318

CF01 Termination of patent right due to non-payment of annual fee