Drink filling system and sterilizing method thereof
09751742 ยท 2017-09-05
Assignee
Inventors
Cpc classification
B67C7/0073
PERFORMING OPERATIONS; TRANSPORTING
B08B9/027
PERFORMING OPERATIONS; TRANSPORTING
B65B2210/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
C02F1/68
CHEMISTRY; METALLURGY
B67C7/00
PERFORMING OPERATIONS; TRANSPORTING
B08B9/027
PERFORMING OPERATIONS; TRANSPORTING
B67C3/00
PERFORMING OPERATIONS; TRANSPORTING
A61L2/00
HUMAN NECESSITIES
Abstract
In a sterilizing method for a drink filling system provided with a drink supply pipe line (7) for feeding drink into a filling machine (2) through a heating sterilizing section (18), wherein hot water or heated steam is fed to the drink supply pipe line (7), F-values are calculated while detecting temperature at a plurality portions of the drink supply pipe line at every predetermined time interval, and a sterilizing process is ended at a time when a minimum F-value reaches an aimed value. According to such method, a working time till the starting of drink filling work or a producing interval time can be shortened.
Claims
1. A sterilizing method for a drink filling system provided with a drink supply pipe line for feeding drink into a filling machine through a heat sterilizing section, wherein hot water or heated steam is fed to the drink supply pipe line, F-values are calculated while detecting temperature of the fluid within the pipelines at a plurality portions of the drink supply pipe line at every predetermined time interval, and a sterilizing process is ended at a time when a minimum F-value reaches an aimed value, wherein an upstream side return path is provided for the upstream side pipe line section going through the heating sterilizing section of the drink supply pipe line to thereby form an upstream side circulation path, the F-values are calculated while flowing the hot water from the upstream side pipe line section and flowing the heated steam toward the inside of the filling machine from the downstream side of the upstream side pipe line section, and the sterilizing process is ended at a time when each of the minimum F-values reaches the aimed valve.
2. The sterilizing method for a drink filling system according to claim 1, wherein the F-value is calculated by using a following equation 1:
F=.sub.t.sub.
3. A drink filling system provided with a drink supply pipe line for feeding drink into a filling machine through a heating sterilizing section, wherein hot water or heated steam is fed to the drink supply pipe line, F-values are calculated while detecting temperature of the fluid within the pipelines by temperature sensors disposed at a plurality portions of the drink supply pipe line at every predetermined time interval, and a sterilizing process is ended at a time when a minimum F-value reaches an aimed value, wherein an upstream side return path is provided for the upstream side pipe line section going through the heating sterilizing section of the drink supply pipe line to thereby form an upstream side circulation path, the F-values are calculated by temperature sensors disposed at predetermined portions of the upstream side circulation path while flowing the hot water in the upstream side circulation path and the F-values are calculated also by temperature sensors disposed at predetermined portions of the downstream side circulation path while flowing the heated steam to the downstream side pipe line section extending from the upstream side of the upstream side pipe line section towards the inside of the filling machine, and the sterilizing process is ended at a time when each of the minimum F-values reaches the aimed valve.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
EMBODIMENT FOR CARRYING OUT THE INVENTION
(7) An embodiment of the present invention will be explained hereunder with reference to the accompanying drawings.
(8) Hereunder, a configuration or structure of the drink filling system is first explained, and then, a sterilizing method of this system will be explained.
(9) As shown in
(10) The preparation apparatus 1 is an apparatus for preparing, for example, tea drink, fruit drink and the like at a predetermined composition rate (blended rate), and since such preparation apparatus is known one, detailed explanation thereof is omitted herein.
(11) The filling machine 2 is a machine provided with a wheel (not shown) that rotates a number of filling nozzles 2a at high speed in a horizontal plane, and this machine is for filling bottles 4 travelling in synchronism with a peripheral speed of the wheel disposed under the filling nozzles 2a with a constant amount of drink from the filling nozzles 2a, respectively, while rotating in conformity with the rotation of the wheel. Further, this filling machine 2 is also known one, and accordingly, detailed explanation thereof is omitted herein.
(12) The drink supply pipe line 7 of the drink filling system is provided with a balance tank 5, a heat sterilizing section (UHT (Ultra High-Temperature) section) 18, a manifold valve 8, an aseptic tank 19, and a head tank 11 in this order from the upstream side toward the downstream side in view of the drink flow direction in the pipe line from the preparation apparatus 1 toward the filling machine 2.
(13) The UHT section 18 is provided therein with a first stage heating section 12, a second stage heating section 13, a holding tube 14, a first stage cooling section 15, a second stage cooling section, and others and acts to gradually heat the drink or water supplied from the balance tank 5 while being delivered from the first stage heating section 12 to the second stage heating section 13, then heat the drink or water to an aiming temperature within the holding tube 14, and thereafter, cool the drink or water while cooling from the first stage cooling section to the second stage cooling section 16. The numbers of the heating sections and cooling sections may be changed as occasion demands.
(14) Further, since the balance tank 5, the manifold valve 8, the aseptic tank 19, and the head tank 11 are all known ones, so that detailed explanations thereof are omitted herein.
(15) As shown with a thick line in
(16) Furthermore, the upstream side pipe line section 7a is provided with temperature sensors 10 at portions including a portion at which a temperature hardly increases at a time when hot water is supplied. These portions at which the temperature sensors 10 are arranged may include portions of the pipe line, for example, a portion between respective portions inside the UHT section 18, a portion just outside of the second stage cooling section 16, and a portion just before the manifold valve 8, and the temperature sensors 10 may be arranged to these portions, respectively. Informations of the temperatures measured at these portions by the respective temperature sensors 10 are sent to the controller 17.
(17) As shown with the thick line in
(18) Furthermore, on the downstream side of the pipe line section 7b, cups 9 which are able to approach or separate from the openings of the respective filling nozzles 2a of the filling machine 2 for the SIP treatment. At the time when the SIP treatment is performed, the respective cups 9 are applied to the front end openings of the filling nozzles 2a of the filling machine 2 by the operation of the actuator, and the front end of the drain pipe 20 is connected to the opening of each of the filling nozzles 2a.
(19) Further, to the drink supply pipe line 7, there are provided the manifold valve 8, the actuator, not shown, various types of change-over valves, and pumps, which are also controlled by output of the controller 17.
(20) Hereunder, the sterilizing method for the drink filling system of the structure mentioned above will be explained with reference to
(21) (1) When operation buttons arranged on a panel, not shown, of the controller 17, the SIP treatments are performed to the upstream side pipe line section 7a and the downstream side pipe line section 7b of the drink supply pipe line 7 in accordance with predetermined sequence (see
(22) The SIP treatments for the upstream side pipe line section 7a and the downstream side pipe line section 7b may be performed in series or in parallel with each other.
(23) (2) First, water is supplied from a water supply source, not shown, into a circulation path through the balance tank 5, and the water then circulates in the circulation path while being heated and sterilized by the UHT section 18, thereby sterilizing the interior of the upstream side pipe line section 7a.
(24) (3) At the time when the hot water flows in the upstream side pipe line section 7a, the information of each temperature is sent from each of the temperature sensors 10 arranged at plural portions of the upstream side pipe line section 7a to the controller 17 for a predetermined constant time interval.
(25) In the present embodiment, pH of a drink as product liquid filling a bottle b is set to be not less than 4.6, a reference temperature Tr is set to be 121.1 C. and a Z-value is set to be 10 C.
(26) As shown in
F=.sub.t.sub.
(27) wherein T is an optional sterilizing temperature ( C.), 10.sup.(T-121.1)/10 is a fatality rate at the optional temperature T, which corresponds to a heating time (minute) at the temperature of 121.1 C., in which the value 121.1 is the reference temperature (C), and 10 represents the Z-value (9C).
(28) At a time when the minimum F-value among the respective F-values calculated based on the above arithmetic equation reaches the aimed value, it is deemed that the sterilization process is ended, the cooling water is supplied to the first stage cooling section 15 and the second stage cooling section 16 to thereby cool the hot water, and the cooled hot water then circulates continuously till the time when the drink sterilization process starts.
(29) The aimed value of the F-value corresponds to an area hatched in
(30) In a conventional technology, as shown in
(31) Further, in the above-mentioned arithmetic equation for the F-value, the reference temperature Tr and the Z-value may be changed in accordance with kinds of drinks as product liquids.
(32) For example, the pH of the product drink is less than 4 to 4.6, the reference temperature Tr and the Z-value may be set to Tr=60 C. and Z-value=5 C.
(33) Furthermore, values to be plugged in to the above arithmetic equation in conformity with bacteria growing characteristics, circulation temperature and the like of the product liquid such as green tea, mineral water, child drink or the like may also be optionally changed.
(34) (4) Thereafter, the drink is delivered to the balance tank 5 from the preparation apparatus 1 and is then subjected to the sterilization treatment. At a timing when the water is converted into the drink, a portion in the pipe line between the upstream side pipe line section 7a and the return circulation path is shut off, and the sterilized drink is stored in the aseptic tank 19.
(35) (5) At the same time or in advance of the starting of the SIP treatment for the upstream side pipe line section 7a, the SIP treatment starts to be performed to the downstream side pipe line section 7b inclusive of the aseptic tank 19.
(36) First, the cups 9 are applied to the openings of the filling nozzles 2a, respectively, and the drain tubes 20 are connected to the filling nozzles 2a, respectively, and thereafter, the heated steam is supplied into the aseptic tank 19 and the head tank 11 from the heated steam supply source, not shown.
(37) This heated steam flows from the aseptic tank 19 into the downstream side pipe line section 7b, and after the heating of the respective sections or the like, the heated steam is discharged outside the filling machine 2 through the drain tube 20.
(38) (6) When the heated steam flows inside the downstream side pipe line section 7b, the temperature informations from the respective temperature sensors 10 arranged at various portions are reported with constant interval to the controller 17.
(39) As shown in
(40) At the time when the minimum F-value among the calculated respective F-values reaches the aimed value, the supply of the heated steam into the aseptic tank 19 and the downstream side pipe line section 7b stops. The aimed value of the F-value corresponds to the area hatched in
(41) (7) Thereafter, the aseptic air is supplied into the downstream side pipe line section 7b, and the interior of the downstream side pipe line section 7b is then cooled to a temperature, for example, of room temperature. Thereafter, the drain tube 20 is shut off, and the cups 9 are removed from the openings of the filling nozzles 2a, respectively, by an actuator, not shown.
(42) (8) The drink is stored into the aseptic tank 19 from the UHT section 18 through the upstream side pipe line section 7a after the completion of the SIP treatment for the downstream side pipe line section 7b as well as the aseptic tank 19, and the drink filling operation for filling the bottles 4 starts through the downstream side pipe line section 7b.
(43) As shown with the thick line in
(44) It is to be noted that although the present invention is constructed as explained hereinabove, the present invention is not limited to the embodiment described above, and many other changes and modifications may be made within the scopes of the present invention. For example, in the above-described embodiment, although the SIP treatment for the upstream side pipe line section and the SIP treatment for the downstream side pipe line section are performed by using different fluids such as hot water and heated steam, both the SIP treatments may be performed with the same kind of fluid. Furthermore, it may be possible to perform the SIP treatment by releasing the manifold valve so as to establish the communication between the upstream side pipe line section and the downstream side pipe line section to thereby flow the fluid from the upstream side pipe line section to the downstream side pipe line section. Still furthermore, the time interval for the measurement and accumulation of the F-value may be set to one-minute interval or one-second interval, and such time interval may be changed in accordance with ability or like of a measurement equipment to be used.
REFERENCE NUMERAL
(45) 2 - - - filling machine 6 - - - upstream side return path 7 - - - drink supply pipe line 7a - - - upstream side pipe line section 7b - - - downstream side pipe line section 18 - - - heat sterilizing section