JP4046287B2 - Cleaning sterilizer - Google Patents

Cleaning sterilizer Download PDF

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JP4046287B2
JP4046287B2 JP2004278708A JP2004278708A JP4046287B2 JP 4046287 B2 JP4046287 B2 JP 4046287B2 JP 2004278708 A JP2004278708 A JP 2004278708A JP 2004278708 A JP2004278708 A JP 2004278708A JP 4046287 B2 JP4046287 B2 JP 4046287B2
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cleaning
ozone water
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cleaning liquid
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JP2005021718A (en
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昌已 清水
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IHI Shibaura Machinery Corp
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本発明は、医療器具などを洗浄殺菌する洗浄殺菌装置に関する。   The present invention relates to a cleaning and sterilizing apparatus for cleaning and sterilizing medical instruments and the like.

医療現場で使用されているハサミやメス等の医療器具は、使用後に洗浄と殺菌とを充分に行なう必要がある。ここで、医療器具の洗浄殺菌に用いられている従来の洗浄殺菌装置の一例を図3に基づいて説明する。この洗浄殺菌装置は被洗浄物である医療器具(図示せず)を収納する筐体1を有し、この筐体1内には、医療器具を入れたバスケットが載置される載置台2と、この載置台2の上下に位置する回転式のノズル3と、筐体1内の空気を温めるヒーター(図示せず)と、ヒーターで温められた空気を載置台2上に載置された医療器具に向けて送風するファン(図示せず)とが設けられている。   Medical instruments such as scissors and scalpels used at medical sites need to be sufficiently washed and sterilized after use. Here, an example of a conventional cleaning and sterilizing apparatus used for cleaning and sterilizing medical instruments will be described with reference to FIG. This cleaning and sterilizing apparatus has a housing 1 for storing a medical instrument (not shown) as an object to be cleaned, and a mounting table 2 on which a basket containing the medical instrument is placed. The rotary nozzle 3 positioned above and below the mounting table 2, a heater (not shown) for heating the air in the housing 1, and the medical device on which the air heated by the heater is mounted on the mounting table 2 A fan (not shown) that blows air toward the appliance is provided.

前記筐体1の側面部には、水道水を供給する水道水パイプ4と、熱水又は高温蒸気を供給する熱水パイプ5と、洗剤タンク(図示せず)から洗剤を供給する洗剤パイプ6とが接続されている。水道水パイプ4の途中には電磁弁4aが設けられ、熱水パイプ5の途中には電磁弁5aが設けられ、洗剤パイプ6の途中には洗剤供給ポンプ6aが設けられている。   A tap water pipe 4 that supplies tap water, a hot water pipe 5 that supplies hot water or high-temperature steam, and a detergent pipe 6 that supplies detergent from a detergent tank (not shown) are provided on the side surface of the housing 1. And are connected. An electromagnetic valve 4 a is provided in the middle of the tap water pipe 4, an electromagnetic valve 5 a is provided in the middle of the hot water pipe 5, and a detergent supply pump 6 a is provided in the middle of the detergent pipe 6.

前記筐体1の底面部には、筐体1内に供給された洗浄液である水道水、水道水と洗剤とが混合された洗浄液、熱水等を筐体1外へ流出させるための流出パイプ7が接続されている。この流出パイプ7はその先端部で二股に分岐され、一方は洗浄液や熱水等を前記ノズル3へ導く導水パイプ8とされ、他方は、洗浄液や熱水等を排水する排水パイプ9とされている。流出パイプ7の途中には、この流出パイプ7内を流れる洗浄液や熱水中に含まれるゴミを除去するフィルター7aが設けられ、導水パイプ8の途中には二個の電磁弁8a,8bと循環ポンプ8cとが設けられ、排水パイプ9の途中には電磁弁9aが設けられている。   On the bottom surface of the casing 1, an outflow pipe for allowing tap water, which is a cleaning liquid supplied into the casing 1, a cleaning liquid in which tap water and a detergent are mixed, hot water and the like to flow out of the casing 1. 7 is connected. This outflow pipe 7 is bifurcated at its tip, one is a water conduit 8 that guides cleaning liquid, hot water, etc. to the nozzle 3, and the other is a drain pipe 9 that drains the cleaning liquid, hot water, etc. Yes. In the middle of the outflow pipe 7, a filter 7 a that removes dust contained in the cleaning liquid and hot water flowing in the outflow pipe 7 is provided. In the middle of the water guide pipe 8, two electromagnetic valves 8 a and 8 b are circulated. A pump 8 c is provided, and an electromagnetic valve 9 a is provided in the middle of the drain pipe 9.

前記電磁弁4a,5a,8a,8b,9a、前記ポンプ6a,8c、筐体1内に溜まった洗浄液や熱水等が所定量に達したことを検知するレベルスイッチ10、ヒーター、ファンなどは、マイクロコンピュータを利用した制御部(図示せず)に接続されている。   The electromagnetic valves 4a, 5a, 8a, 8b, 9a, the pumps 6a, 8c, the level switch 10 for detecting that the cleaning liquid or hot water accumulated in the housing 1 has reached a predetermined amount, a heater, a fan, etc. , Connected to a control unit (not shown) using a microcomputer.

このような洗浄殺菌装置による医療器具の洗浄殺菌の手順を説明する。まず、筐体1の蓋(図示せず)を開け、医療器具を入れたバスケットを載置台2に載せ、蓋を閉める。なお、この状態では、全ての電磁弁4a,5a,8a,8b,9aは閉弁され、ポンプ6a,8cは停止している。   A procedure for cleaning and sterilizing a medical instrument using such a cleaning and sterilizing apparatus will be described. First, a lid (not shown) of the housing 1 is opened, a basket containing medical instruments is placed on the mounting table 2, and the lid is closed. In this state, all the solenoid valves 4a, 5a, 8a, 8b, 9a are closed and the pumps 6a, 8c are stopped.

筐体1の蓋を閉めた後にスタート釦を押すと、電磁弁4aが開弁されて水道水が筐体1内に供給されるとともに、洗剤供給ポンプ6aが駆動されて洗剤が筐体1内に供給され、筐体1内には水道水と洗剤とが混合された洗浄液が溜まる。筐体1内に溜まった洗浄液が所定量に達したことがレベルスイッチ10で検知されると、この検知結果に基づいて電磁弁4aが閉弁され、洗剤供給ポンプ6aが停止され、電磁弁8a,8bが開弁され、循環ポンプ8cが駆動される。   When the start button is pressed after the lid of the casing 1 is closed, the electromagnetic valve 4a is opened and tap water is supplied into the casing 1, and the detergent supply pump 6a is driven so that the detergent is stored in the casing 1. And a cleaning liquid in which tap water and detergent are mixed is stored in the housing 1. When the level switch 10 detects that the cleaning liquid accumulated in the casing 1 has reached a predetermined amount, the electromagnetic valve 4a is closed based on the detection result, the detergent supply pump 6a is stopped, and the electromagnetic valve 8a. , 8b are opened, and the circulation pump 8c is driven.

これにより、筐体1内に溜まった洗浄液が流出パイプ7内と導水パイプ8内とを流れてノズル3から噴射され、筐体1内に収納されている医療器具が洗浄液により洗浄される。ノズル3から洗浄液が噴射されると、その反力によってノズル3が回転する。この洗浄が所定時間行なわれると、電磁弁8a,8bが閉弁されるとともに循環ポンプ8cの駆動が停止され、さらに、電磁弁9aが開弁される。これにより、医療器具の洗浄に用いられた洗浄液が流出パイプ7と排水パイプ9とを通って排水される。   As a result, the cleaning liquid accumulated in the housing 1 flows through the outflow pipe 7 and the water guide pipe 8 and is ejected from the nozzle 3, and the medical instrument stored in the housing 1 is cleaned with the cleaning liquid. When the cleaning liquid is ejected from the nozzle 3, the nozzle 3 is rotated by the reaction force. When this cleaning is performed for a predetermined time, the solenoid valves 8a and 8b are closed, the driving of the circulation pump 8c is stopped, and the solenoid valve 9a is opened. As a result, the cleaning liquid used for cleaning the medical instrument is drained through the outflow pipe 7 and the drain pipe 9.

なお、洗浄液による洗浄は、水道水と洗剤とを混合して洗浄液をつくるとき、水道水とともに熱水パイプ5から熱水を供給することにより洗浄液の温度を調節し、例えば40℃程度の低温水の洗浄液で主に蛋白質の凝固を防ぎながら血液などの蛋白質を除去する予備洗浄と、60℃程度の洗浄液で主に油脂を除去する本洗浄とに分けて二段階で行なう場合もある。また、洗浄液による洗浄後に、水道水のみをノズル3から噴射して医療器具のすすぎ洗浄を行なう場合もある。   In the cleaning with the cleaning liquid, when the tap water and the detergent are mixed to form the cleaning liquid, the temperature of the cleaning liquid is adjusted by supplying hot water from the hot water pipe 5 together with the tap water. In some cases, the pre-cleaning that removes proteins such as blood while preventing the coagulation of the protein with this cleaning solution and the main cleaning that mainly removes fats and oils with a cleaning solution of about 60 ° C. may be performed in two stages. In some cases, after cleaning with the cleaning liquid, only tap water is sprayed from the nozzle 3 to rinse the medical device.

洗浄液、又は、すすぎ水が排水され、電磁弁9aが閉弁された後、電磁弁5aが開弁されて熱水パイプ5から熱水又は高温蒸気が筐体1内に供給される。そして、筐体1内に供給された熱水が所定量に達したことがレベルスイッチ10により検知されると、電磁弁5aが閉弁されて熱水の供給が停止されるとともに電磁弁8a,8bが開弁され、循環ポンプ8cが駆動される。そして、筐体1内に溜まった熱水がノズル3から筐体1内に収納された医療器具に向けて回転を伴って噴射され、医療器具の殺菌が行なわれる。   After the cleaning liquid or the rinsing water is drained and the electromagnetic valve 9 a is closed, the electromagnetic valve 5 a is opened, and hot water or high-temperature steam is supplied from the hot water pipe 5 into the housing 1. When the level switch 10 detects that the hot water supplied into the housing 1 has reached a predetermined amount, the electromagnetic valve 5a is closed to stop the supply of hot water, and the electromagnetic valves 8a, 8b is opened, and the circulation pump 8c is driven. And the hot water collected in the housing | casing 1 is injected with rotation toward the medical device accommodated in the housing | casing 1 from the nozzle 3, and sterilization of a medical device is performed.

熱水の噴射による医療器具の殺菌が所定時間行なわれた後、循環ポンプ8cの駆動が停止され、熱水が排水パイプ9から排水される。熱水が排水された後、ヒーターとファンとが駆動され、ヒーターで加熱された空気が洗浄殺菌された医療器具に向けてファンにより送風され、医療器具が乾燥することにより一連の洗浄殺菌処理が終了する。   After the medical instrument is sterilized by hot water injection for a predetermined time, the driving of the circulation pump 8 c is stopped and the hot water is drained from the drain pipe 9. After the hot water is drained, the heater and fan are driven, and the air heated by the heater is blown by the fan toward the cleaned and sterilized medical device, and the medical device is dried to perform a series of cleaning and sterilization treatments. finish.

実願平3−64473号(実開平5−15952号)のマイクロフィルムThe microfilm of Japanese Utility Model Application No. 3-64473 (Japanese Utility Model Application Publication No. 5-15952)

図3に示した洗浄殺菌装置では、医療器具の殺菌を熱水又は高温蒸気を用いて行なっているため、ゴム製又は樹脂製などの耐熱性が低い医療器具では、熱変形を起こしやすい。このような熱変形を防止するためには、熱水又は高温蒸気の温度を下げなければならず、熱水又は高温蒸気の温度を下げることにより殺菌性能が低下する。   In the cleaning and sterilization apparatus shown in FIG. 3, since the medical instrument is sterilized using hot water or high-temperature steam, a medical instrument having low heat resistance such as rubber or resin is likely to be thermally deformed. In order to prevent such thermal deformation, the temperature of hot water or high temperature steam must be lowered, and the sterilization performance is lowered by lowering the temperature of hot water or high temperature steam.

このため、ゴム製又は樹脂製の医療器具については、充分な殺菌を行なうためには手間がかかること、及び、充分な殺菌を行なうことが困難なことから、使い捨てにしている場合が多く、ゴム製又は樹脂製の医療器具の購入費用が膨大になっている。   For this reason, rubber or resin-made medical instruments are often disposable because it takes time and labor to perform sufficient sterilization, and it is difficult to perform sufficient sterilization. The purchase cost of a medical device made of plastic or resin is enormous.

本発明は、耐熱性の低い被洗浄物についても確実に洗浄殺菌することができる洗浄殺菌装置を提供することを目的とする。   An object of this invention is to provide the washing | cleaning sterilization apparatus which can wash | clean and sterilize reliably also to-be-washed | cleaned object with low heat resistance.

本発明の洗浄殺菌装置は、被洗浄物を収納する筐体と、前記筐体内に収納された被洗浄物に向けて洗浄液とオゾン水とを噴射させるためのノズルと、前記筐体内に洗浄水を供給し、供給された洗浄液を循環ポンプで循環させて前記ノズルから噴射させ、前記筐体内に収納された被洗浄物を洗浄液で洗浄する洗浄機構と、前記筐体内にオゾン水を供給し、供給されたオゾン水を前記循環ポンプで循環させて前記ノズルから噴射させ、前記筐体内に収納された被洗浄物をオゾン水で殺菌するオゾン水殺菌機構と、を備え、前記ノズルから噴射させるオゾン水の圧力を0.05Mpa以下であって、かつ、前記ノズルから噴射させる洗浄液の圧力よりも低くするようにした。 The cleaning and sterilizing apparatus of the present invention includes a housing for storing an object to be cleaned, a nozzle for injecting a cleaning liquid and ozone water toward the object to be cleaned housed in the housing, and a cleaning water in the housing. A cleaning mechanism that circulates the supplied cleaning liquid with a circulation pump and sprays it from the nozzle, and cleans an object to be cleaned contained in the casing with the cleaning liquid, and supplies ozone water into the casing. An ozone water sterilization mechanism that circulates the supplied ozone water with the circulation pump and injects it from the nozzle, and sterilizes the object to be cleaned contained in the housing with ozone water, and injects the ozone water from the nozzle The pressure of water was 0.05 Mpa or less and was made lower than the pressure of the cleaning liquid sprayed from the nozzle.

本発明の洗浄殺菌装置によれば、ノズルから噴射させるオゾン水の圧力を0.05Mpa以下であって、かつ、ノズルから噴射させる洗浄液の圧力よりも低くするようにしたので、オゾンがオゾン水から気液分離することによるオゾン水のオゾン濃度の低下を防止することができ、したがって、オゾン水による殺菌効果を維持することができる。
According to the cleaning and sterilizing apparatus of the present invention, there less 0.05Mpa pressure of the ozone water to be ejected from the nozzle, and, since the make lower so than the pressure of the cleaning liquid to be ejected from the nozzle, ozone ozone water Accordingly, it is possible to prevent the ozone concentration of ozone water from being lowered due to gas-liquid separation from the gas, and thus the bactericidal effect of ozone water can be maintained.

本発明の参考例を図1に基づいて説明する。なお、図3において説明した部分と同じ部分は同じ符号を用いて説明する。本参考例の洗浄殺菌装置は、被洗浄物である医療器具(図示せず)を洗浄殺菌する装置であり、洗浄殺菌する医療器具を収納する筐体11を有し、この筐体11内には、医療器具を入れたバスケットが載置される載置台2と、この載置台2の上下に位置する回転式のノズル3と、筐体1内の空気を温めるヒーター(図示せず)と、ヒーターで温められた空気を載置台2上に載置された医療器具に向けて送風するファン(図示せず)とが設けられている。   A reference example of the present invention will be described with reference to FIG. In addition, the same part as the part demonstrated in FIG. 3 is demonstrated using the same code | symbol. The cleaning and sterilizing apparatus of this reference example is an apparatus that cleans and sterilizes a medical instrument (not shown) that is an object to be cleaned. The cleaning and sterilizing apparatus includes a casing 11 that houses a medical instrument to be cleaned and sterilized. Is a mounting table 2 on which a basket containing medical instruments is mounted, a rotary nozzle 3 positioned above and below the mounting table 2, a heater (not shown) for heating the air in the housing 1, A fan (not shown) that blows air heated by the heater toward the medical instrument placed on the placement table 2 is provided.

前記筐体11の側面部には、水道水を供給する水道水パイプ4と、温水を供給する温水パイプ12と、洗剤タンク(図示せず)から洗剤を供給する洗剤パイプ6と、オゾン水製造装置13で製造されたオゾン水が供給されるオゾン水パイプ14が接続されている。前記オゾン水製造装置13へは、水道水を供給する水道水パイプ15と、酸素ガスタンク(図示せず)から酸素ガスを供給する酸素ガスパイプ16が接続されている。水道水パイプ4の途中には電磁弁15aが設けられ、水道水パイプ15の途中には電磁弁4aが設けられ、温水パイプ12の途中には電磁弁12aが設けられ、酸素ガスパイプ16の途中には電磁弁16aが設けられ、洗剤パイプ6の途中には洗剤供給ポンプ6aが設けられている。   A tap water pipe 4 for supplying tap water, a hot water pipe 12 for supplying hot water, a detergent pipe 6 for supplying detergent from a detergent tank (not shown), and ozone water production are provided on the side surface of the casing 11. An ozone water pipe 14 to which ozone water produced by the device 13 is supplied is connected. A tap water pipe 15 for supplying tap water and an oxygen gas pipe 16 for supplying oxygen gas from an oxygen gas tank (not shown) are connected to the ozone water production apparatus 13. An electromagnetic valve 15 a is provided in the middle of the tap water pipe 4, an electromagnetic valve 4 a is provided in the middle of the tap water pipe 15, an electromagnetic valve 12 a is provided in the middle of the hot water pipe 12, and in the middle of the oxygen gas pipe 16. Is provided with a solenoid valve 16a, and a detergent supply pump 6a is provided in the middle of the detergent pipe 6.

前記筐体11の底面部には、筐体11内に供給された水道水と温水と洗剤又は温水と洗剤とが混合された洗浄液、オゾン水等を筐体11外へ流出させるための流出パイプ7が接続されている。この流出パイプ7はその先端部で二股に分岐され、一方は洗浄液やオゾン水を前記ノズル3へ導く導水パイプ8とされ、他方は、洗浄液やオゾン水を排水する排水パイプ9とされている。流出パイプ7の途中には、この流出パイプ7内を流れる洗浄液やオゾン水中に含まれるゴミを除去するフィルター7aが設けられ、導水パイプ8の途中には二個の電磁弁8a,8bと循環ポンプ8cとが設けられ、排水パイプ9の途中には電磁弁9aが設けられている。   On the bottom surface of the casing 11, an outflow pipe for allowing tap water, hot water and detergent supplied in the casing 11, a cleaning liquid in which warm water and detergent are mixed, ozone water, or the like to flow out of the casing 11. 7 is connected. The outflow pipe 7 is bifurcated at its tip, one being a water guide pipe 8 that guides the cleaning liquid and ozone water to the nozzle 3, and the other being a drain pipe 9 that drains the cleaning liquid and ozone water. A filter 7a is provided in the middle of the outflow pipe 7 to remove the cleaning liquid flowing in the outflow pipe 7 and dust contained in the ozone water. Two electromagnetic valves 8a and 8b and a circulation pump are provided in the middle of the water guide pipe 8. 8c, and a solenoid valve 9a is provided in the middle of the drain pipe 9.

ここで、この洗浄殺菌装置には、載置台2上に載置された医療器具を洗浄液で洗浄する洗浄機構17と、洗浄された医療器具をオゾン水で殺菌するオゾン水殺菌機構18とが設けられている。洗浄機構17は、水道水パイプ4、温水パイプ12、洗剤パイプ6、流出パイプ7、導水パイプ8、ノズル3、電磁弁4a,12a,8a,8b、洗剤供給ポンプ6a、循環ポンプ8cにより構成されている。オゾン水殺菌機構18は、水道水パイプ15、酸素ガスパイプ16、オゾン水製造装置13、オゾン水パイプ14、電磁弁15a,16aにより構成されている。   Here, the cleaning sterilization apparatus is provided with a cleaning mechanism 17 for cleaning the medical instrument placed on the mounting table 2 with a cleaning liquid and an ozone water sterilization mechanism 18 for sterilizing the cleaned medical instrument with ozone water. It has been. The cleaning mechanism 17 includes a tap water pipe 4, a hot water pipe 12, a detergent pipe 6, an outflow pipe 7, a water guide pipe 8, a nozzle 3, electromagnetic valves 4a, 12a, 8a, and 8b, a detergent supply pump 6a, and a circulation pump 8c. ing. The ozone water sterilization mechanism 18 includes a tap water pipe 15, an oxygen gas pipe 16, an ozone water production apparatus 13, an ozone water pipe 14, and electromagnetic valves 15a and 16a.

前記電磁弁4a,8a,8b,9a,12a,15a、前記ポンプ6a,8c、前記ヒーター及びファン、筐体11内に溜まった洗浄液やオゾン水が所定量に達したことを検知するレベルスイッチ10,19などは、マイクロコンピュータを利用した制御部(図示せず)に接続されている。   Level switches 10 for detecting that the electromagnetic valves 4a, 8a, 8b, 9a, 12a, 15a, the pumps 6a, 8c, the heaters and fans, the cleaning liquid and ozone water accumulated in the casing 11 have reached a predetermined amount. , 19 are connected to a control unit (not shown) using a microcomputer.

このような構成において、この洗浄殺菌装置による医療器具の洗浄殺菌の手順を説明する。まず、筐体11の蓋(図示せず)を開け、医療器具を入れたバスケットを載置台2に載せ、蓋を閉める。なお、この状態では、全ての電磁弁4a,8a,8b,9a,12a,15a,16aは閉弁され、ポンプ6a,8c、ヒーター、ファン等は、停止している。   In such a configuration, a procedure for cleaning and sterilizing a medical instrument using the cleaning and sterilizing apparatus will be described. First, a lid (not shown) of the housing 11 is opened, a basket containing medical instruments is placed on the mounting table 2, and the lid is closed. In this state, all the electromagnetic valves 4a, 8a, 8b, 9a, 12a, 15a, 16a are closed, and the pumps 6a, 8c, the heater, the fan, etc. are stopped.

筐体11の蓋を閉めた後にスタート釦を押すと、電磁弁4a,12aが開弁されて水道水と温水とが筐体11内に供給されるとともに洗剤供給ポンプ6aが駆動されて洗剤が筐体11内に供給され、筐体11内には水道水と温水と洗剤とが混合された低温水(例えば、40℃)の洗浄液が溜まる。筐体11内に溜まった洗浄液が所定量に達したことがレベルスイッチ10で検知されると、この検知結果に基づいて電磁弁4a,12aが閉弁され、洗剤供給ポンプ6aが停止され、電磁弁8a,8bが開弁され、循環ポンプ8cが駆動される。   When the start button is pressed after the cover of the casing 11 is closed, the solenoid valves 4a and 12a are opened to supply tap water and hot water into the casing 11, and the detergent supply pump 6a is driven to move the detergent. A cleaning liquid of low-temperature water (for example, 40 ° C.) in which tap water, hot water, and a detergent are mixed is stored in the casing 11. When the level switch 10 detects that the cleaning liquid accumulated in the housing 11 has reached a predetermined amount, the electromagnetic valves 4a and 12a are closed based on the detection result, the detergent supply pump 6a is stopped, and the electromagnetic The valves 8a and 8b are opened, and the circulation pump 8c is driven.

これにより、筐体11内に溜まった低温水の洗浄液が流出パイプ7内と導水パイプ8内とを流れてノズル3から噴射されるとともにその噴射の反力でノズル3が水平面内で回転し、載置台2上に載置されている医療器具が洗浄される。この洗浄では、主に、医療器具に付着した血液などの蛋白質が除去される。この洗浄が所定時間行なわれると、電磁弁8a,8bが閉弁されるとともに循環ポンプ8cの駆動が停止され、さらに、電磁弁9aが開弁され、医療器具の洗浄に用いられた低温水の洗浄液が流出パイプ7内と排水パイプ9内とを流れて排水される。   As a result, the low-temperature water cleaning liquid accumulated in the casing 11 flows through the outflow pipe 7 and the water guide pipe 8 and is injected from the nozzle 3, and the nozzle 3 rotates in the horizontal plane by the reaction force of the injection, The medical instrument mounted on the mounting table 2 is washed. This cleaning mainly removes proteins such as blood adhering to the medical device. When this cleaning is performed for a predetermined time, the solenoid valves 8a and 8b are closed and the driving of the circulation pump 8c is stopped. Further, the solenoid valve 9a is opened, and the low-temperature water used for cleaning the medical instrument. The cleaning liquid flows through the outflow pipe 7 and the drain pipe 9 to be drained.

この洗浄工程で、オゾン水を使用してもよく、これにより、排水された洗浄液中に含まれる菌も殺菌でき、病院設備内の排水処理が軽減される。   In this cleaning process, ozone water may be used, whereby germs contained in the drained cleaning liquid can be sterilized, and wastewater treatment in the hospital facility is reduced.

低温水の洗浄液が排水された後、電磁弁12aが開弁されて温水が筐体11内に供給されるとともに洗剤供給ポンプ6aが駆動されて洗剤が筐体11内に供給され、筐体11内には温水と洗剤とが混合された高温(例えば、60℃)の洗浄液が溜まる。筐体11内に溜まった洗浄液が所定量に達したことがレベルスイッチ10で検知されると、この検知結果に基づいて電磁弁12aが閉弁され、洗剤供給ポンプ6aが停止され、電磁弁8a,8bが開弁され、循環ポンプ8cが駆動される。   After the low-temperature water cleaning liquid is drained, the solenoid valve 12a is opened to supply hot water into the casing 11, and the detergent supply pump 6a is driven to supply the detergent into the casing 11. A high temperature (for example, 60 ° C.) cleaning liquid in which hot water and a detergent are mixed is accumulated in the inside. When the level switch 10 detects that the cleaning liquid accumulated in the housing 11 has reached a predetermined amount, the electromagnetic valve 12a is closed based on the detection result, the detergent supply pump 6a is stopped, and the electromagnetic valve 8a. , 8b are opened, and the circulation pump 8c is driven.

これにより、筐体11内に溜まった高温の洗浄液が流出パイプ7内と導水パイプ8内とを流れてノズル3から噴射されるとともにその噴射の反力でノズル3が水平面内で回転し、載置台2上に載置されている医療器具が洗浄される。この洗浄では、主に、医療器具に付着した油脂が除去される。この洗浄が所定時間行なわれると、電磁弁8a,8bが閉弁されるとともに循環ポンプ8cの駆動が停止され、さらに、電磁弁9aが開弁され、医療器具の洗浄に用いられた高温の洗浄液が流出パイプ7内と排水パイプ9内とを流れて排水される。   As a result, the high-temperature cleaning liquid accumulated in the casing 11 flows through the outflow pipe 7 and the water guide pipe 8 and is injected from the nozzle 3, and the nozzle 3 is rotated in the horizontal plane by the reaction force of the injection. The medical instrument placed on the table 2 is washed. In this cleaning, mainly the oil and fat adhering to the medical instrument is removed. When this cleaning is performed for a predetermined time, the solenoid valves 8a and 8b are closed and the driving of the circulation pump 8c is stopped. Further, the solenoid valve 9a is opened, and the high-temperature cleaning liquid used for cleaning the medical instrument is used. Is discharged through the outflow pipe 7 and the drainage pipe 9.

以上のようにして温度の異なる洗浄液で二段階の洗浄を行なった後、オゾン水殺菌機構18による殺菌を行なう。この殺菌工程では、電磁弁15a,16aが開弁されてオゾン水製造装置13内に水道水と酸素ガスとが供給され、オゾン水製造装置13内でオゾン水が製造され、製造されたオゾン水が筐体11内へ供給される。   After performing two-stage cleaning with cleaning liquids having different temperatures as described above, sterilization by the ozone water sterilization mechanism 18 is performed. In this sterilization process, the electromagnetic valves 15a and 16a are opened, tap water and oxygen gas are supplied into the ozone water production apparatus 13, ozone water is produced in the ozone water production apparatus 13, and produced ozone water. Is supplied into the housing 11.

筐体11内に溜まったオゾン水が所定量に達したことがレベルスイッチ19で検知されると、その検知結果に基づいて電磁弁15a,16aが閉弁され、オゾン水の供給が停止される。オゾン水がレベルスイッチ19で検知されたときには、載置台2上に載置された医療器具は筐体11内に溜まったオゾン水に浸漬されており、医療器具がオゾン水に浸漬された状態を所定時間(例えば、10〜20分)維持することによりオゾン水による医療器具の殺菌を行なう。このオゾン水による医療器具の殺菌を、医療器具をオゾン水中に浸漬させることにより行なうため、オゾン水が医療器具の隅々まで入り込み、医療器具の隅々まで殺菌を行なえる。   When the level switch 19 detects that the ozone water accumulated in the casing 11 has reached a predetermined amount, the electromagnetic valves 15a and 16a are closed based on the detection result, and the supply of ozone water is stopped. . When ozone water is detected by the level switch 19, the medical instrument placed on the mounting table 2 is immersed in the ozone water accumulated in the housing 11, and the medical instrument is immersed in the ozone water. By maintaining for a predetermined time (for example, 10 to 20 minutes), the medical instrument is sterilized with ozone water. Since the medical device is sterilized with the ozone water by immersing the medical device in the ozone water, the ozone water enters every corner of the medical device and can sterilize every corner of the medical device.

オゾン水による医療器具の殺菌が所定時間行なわれた後、電磁弁9aが開弁され、オゾン水が排水パイプ9から排水される。オゾン水が排水された後、ヒーターとファンとが駆動され、ヒーターで加熱された空気が洗浄殺菌された医療器具に向けてファンにより送風され、医療器具が乾燥することにより一連の洗浄殺菌処理が終了する。   After the medical instrument is sterilized with ozone water for a predetermined time, the electromagnetic valve 9 a is opened and the ozone water is drained from the drain pipe 9. After the ozone water is drained, the heater and fan are driven, and the air heated by the heater is blown by the fan toward the medical instrument that has been cleaned and sterilized. finish.

なお、本参考例では、温水を供給する温水パイプ12を備えた洗浄殺菌装置を例に挙げて説明したが、このような温水パイプ12を設けず、筐体11内に水道水を加熱するヒーターを設け、このヒーターで水道水を加熱することにより洗浄液の温度を適宜調節するようにしてもよい。   In this reference example, the cleaning and sterilization apparatus provided with the hot water pipe 12 for supplying hot water has been described as an example. However, such a hot water pipe 12 is not provided, and a heater for heating tap water in the housing 11 is provided. And the temperature of the cleaning liquid may be appropriately adjusted by heating the tap water with this heater.

また、本参考例において、オゾン水による殺菌を行なう直前に、水道水のみをノズル3から噴射して医療器具のすすぎ洗浄を行なうようにしてもよい。   Moreover, in this reference example, just before performing sterilization with ozone water, only tap water may be jetted from the nozzle 3 to rinse the medical device.

さらに、オゾン水による殺菌を終了して乾燥工程に移る前に、医療器具に対してノズル3から防錆剤を散布する機構を設けることも有効である。   Furthermore, it is also effective to provide a mechanism for spraying a rust preventive agent from the nozzle 3 to the medical device before the sterilization with ozone water is completed and the drying process is started.

つぎに、本発明の実施の一形態を図2に基づいて説明する。なお、図1において説明した部分と同じ部分は同じ符号で示し、説明も省略する。本実施の形態の洗浄殺菌装置は、基本的な構造は図1に示した洗浄殺菌装置と同じであり、洗浄後の医療器具をオゾン水で殺菌するオゾン水殺菌機構20の構成が異なる。   Next, an embodiment of the present invention will be described with reference to FIG. In addition, the same part as the part demonstrated in FIG. 1 is shown with the same code | symbol, and description is also abbreviate | omitted. The basic structure of the cleaning and sterilizing apparatus of the present embodiment is the same as that of the cleaning and sterilizing apparatus shown in FIG. 1, and the configuration of an ozone water sterilizing mechanism 20 that sterilizes a cleaned medical instrument with ozone water is different.

筐体11の底面部には流出パイプ7が接続され、流出パイプ7の先端部は導水パイプ8と排水パイプ9とに分岐されている。導水パイプ8の途中には二個の電磁弁8a,8bと循環ポンプ8cとが設けられ、さらに、循環ポンプ8cの回転数を下げるためのインバータ21が設けられている。   An outflow pipe 7 is connected to the bottom surface of the housing 11, and the tip of the outflow pipe 7 is branched into a water guide pipe 8 and a drain pipe 9. Two solenoid valves 8a and 8b and a circulation pump 8c are provided in the middle of the water guide pipe 8, and an inverter 21 for reducing the rotational speed of the circulation pump 8c is provided.

ここで、この洗浄殺菌装置には、載置台2上に載置された医療器具を洗浄液で洗浄する洗浄機構17と、洗浄された医療器具をオゾン水で殺菌するオゾン水殺菌機構20とが設けられている。洗浄機構17は、参考例と同じように、水道水パイプ4、温水パイプ12、洗剤パイプ6、流出パイプ7、導水パイプ8、ノズル3、電磁弁4a,12a,8a,8b、洗剤供給ポンプ6a、循環ポンプ8cにより構成されている。オゾン水殺菌機構20は、水道水パイプ15、酸素ガスパイプ16、オゾン水製造装置13、オゾン水パイプ14、流出パイプ7、導水パイプ8、電磁弁8a,8b,15a,16a、循環ポンプ8c、インバータ21により構成されている。   Here, the cleaning sterilization apparatus is provided with a cleaning mechanism 17 for cleaning the medical instrument placed on the mounting table 2 with a cleaning liquid and an ozone water sterilization mechanism 20 for sterilizing the cleaned medical instrument with ozone water. It has been. As in the reference example, the cleaning mechanism 17 includes a tap water pipe 4, a hot water pipe 12, a detergent pipe 6, an outflow pipe 7, a water guide pipe 8, a nozzle 3, electromagnetic valves 4a, 12a, 8a, 8b, and a detergent supply pump 6a. The circulation pump 8c is used. The ozone water sterilization mechanism 20 includes a tap water pipe 15, an oxygen gas pipe 16, an ozone water production device 13, an ozone water pipe 14, an outflow pipe 7, a water pipe 8, electromagnetic valves 8 a, 8 b, 15 a and 16 a, a circulation pump 8 c, and an inverter. 21.

前記電磁弁4a,8a,8b,9a,12a,15a、前記ポンプ6a,8c、前記ヒーター及びファン、筐体11内に溜まった洗浄液やオゾン水が所定量に達したことを検知するレベルスイッチ10、インバータ21などは、マイクロコンピュータを利用した制御部(図示せず)に接続されている。   Level switches 10 for detecting that the electromagnetic valves 4a, 8a, 8b, 9a, 12a, 15a, the pumps 6a, 8c, the heaters and fans, the cleaning liquid and ozone water accumulated in the casing 11 have reached a predetermined amount. The inverter 21 and the like are connected to a control unit (not shown) using a microcomputer.

このような構成において、この洗浄殺菌装置による医療器具の洗浄殺菌の手順は、上述した参考例の洗浄殺菌装置による洗浄殺菌の手順とほぼ同じである。異なる点は、オゾン水を用いた殺菌工程であり、この殺菌工程についてのみ説明する。   In such a configuration, the procedure for cleaning and sterilizing a medical instrument using the cleaning and sterilizing apparatus is substantially the same as the procedure for cleaning and sterilizing using the cleaning and sterilizing apparatus of the reference example described above. A different point is a sterilization process using ozone water, and only this sterilization process will be described.

筐体11内の載置台2上に洗浄殺菌しようとする医療器具を載置し、温度の異なる洗浄液で二段階の洗浄を行ない、この洗浄後にオゾン水殺菌機構20による殺菌を行なう。この殺菌工程では、電磁弁15a,16aが開弁されてオゾン水製造装置13内に水道水と酸素ガスとが供給され、オゾン水製造装置13内でオゾン水が製造され、製造されたオゾン水が筐体11内へ供給される。   A medical instrument to be cleaned and sterilized is placed on the mounting table 2 in the housing 11, and two-stage cleaning is performed with cleaning liquids having different temperatures. After this cleaning, the ozone water sterilization mechanism 20 performs sterilization. In this sterilization process, the electromagnetic valves 15a and 16a are opened, tap water and oxygen gas are supplied into the ozone water production apparatus 13, ozone water is produced in the ozone water production apparatus 13, and produced ozone water. Is supplied into the housing 11.

筐体11内に溜まったオゾン水が所定量に達したことがレベルスイッチ10で検知されると、その検知結果に基づいて電磁弁15a,16aが閉弁され、オゾン水の供給が停止される。さらに、電磁弁8a,8bが開弁され、循環ポンプ8cが駆動される。   When the level switch 10 detects that the amount of ozone water accumulated in the housing 11 has reached a predetermined amount, the solenoid valves 15a and 16a are closed based on the detection result, and the supply of ozone water is stopped. . Further, the electromagnetic valves 8a and 8b are opened, and the circulation pump 8c is driven.

これにより、筐体11内に溜まったオゾン水が流出パイプ7内と導水パイプ8内とを流れてノズル3から噴射されるとともにその噴射の反力でノズル3が水平面内で回転し、載置台2上に載置されている医療器具が殺菌される。なお、このときの循環ポンプ8cは、ノズル3から洗浄液を噴射する場合と比較してインバータ21により回転数が下げられており、ノズル3から噴射されるオゾン水の圧力が0.05Mpa以下にされている。ノズル3からオゾン水を噴射させることによる医療器具の殺菌が所定時間行なわれた後、電磁弁8a,8bが閉弁されるとともに循環ポンプ8cの回転とが停止され、さらに、電磁弁9aが開弁され、オゾン水が流出パイプ7内と排水パイプ9内とを流れて排水される。   Thereby, the ozone water accumulated in the casing 11 flows through the outflow pipe 7 and the water guide pipe 8 and is injected from the nozzle 3, and the nozzle 3 rotates in the horizontal plane by the reaction force of the injection, and the mounting table 2 is sterilized. In this case, the circulation pump 8c has a rotational speed reduced by the inverter 21 as compared with the case where the cleaning liquid is injected from the nozzle 3, and the pressure of the ozone water injected from the nozzle 3 is set to 0.05 Mpa or less. ing. After the medical instrument is sterilized by injecting ozone water from the nozzle 3, the electromagnetic valves 8a and 8b are closed, the rotation of the circulation pump 8c is stopped, and the electromagnetic valve 9a is opened. The ozone water is drained by flowing through the outflow pipe 7 and the drain pipe 9.

オゾン水が排水された後、ヒーターとファンとが駆動され、ヒーターで加熱された空気が洗浄殺菌された医療器具に向けてファンにより送風され、医療器具が乾燥することにより一連の洗浄殺菌処理が終了する。   After the ozone water is drained, the heater and fan are driven, and the air heated by the heater is blown by the fan toward the medical instrument that has been cleaned and sterilized. finish.

ここで、本実施の形態の洗浄殺菌装置では、洗浄液をノズル3から医療器具に噴射することにより医療器具の洗浄を行なっているため、ノズル3から噴射された洗浄液が医療器具に勢い良く当たることにより医療器具に付着した汚れをノズル水圧で除去でき、洗浄液による洗浄効果が高くなる。また、オゾン水をノズル3から噴射するとき、インバータ21で循環ポンプ8cの回転数を下げ、ノズル3から噴射されるオゾン水の圧力を0.05Mpa以下とすることにより、オゾンがオゾン水から気液分離することによるオゾン水のオゾン濃度の低下を防止でき、オゾン水による殺菌効果を維持できる。   Here, in the cleaning and sterilizing apparatus according to the present embodiment, the cleaning liquid is sprayed from the nozzle 3 onto the medical instrument, so that the cleaning liquid sprayed from the nozzle 3 strikes the medical instrument vigorously. As a result, dirt attached to the medical device can be removed by nozzle water pressure, and the cleaning effect by the cleaning liquid is enhanced. In addition, when ozone water is injected from the nozzle 3, the inverter 21 reduces the rotational speed of the circulation pump 8c, and the pressure of the ozone water injected from the nozzle 3 is set to 0.05 Mpa or less, so that ozone is removed from the ozone water. A decrease in the ozone concentration of ozone water due to liquid separation can be prevented, and the bactericidal effect of ozone water can be maintained.

なお、本実施の形態では、ノズル3からオゾン水を噴射するときには、インバータ21で循環ポンプ8cの回転数を下げる場合を例に挙げて説明したが、循環ポンプ8cにバイパスラインを設け、このバイパスラインを電磁弁でオン・オフさせ、循環ポンプ8cの吐出圧を変化させるようにしてもよい。   In this embodiment, the case where ozone water is injected from the nozzle 3 has been described by taking as an example the case where the rotation speed of the circulation pump 8c is lowered by the inverter 21, but a bypass line is provided in the circulation pump 8c. The line may be turned on / off with an electromagnetic valve to change the discharge pressure of the circulation pump 8c.

また、本実施の形態では、洗浄液の噴射とオゾン水の噴射とを同じノズル3を共用して行なう場合を例に挙げて説明したが、洗浄液を噴射するノズルとオゾン水を噴射するノズルとを別個に設けてもよい。   Further, in the present embodiment, the case of performing the cleaning liquid injection and the ozone water injection using the same nozzle 3 has been described as an example. However, the nozzle for injecting the cleaning liquid and the nozzle for injecting the ozone water are provided. It may be provided separately.

本発明の参考例を示す概略図である。It is the schematic which shows the reference example of this invention. 本発明の実施の一形態を示す概略図である。It is the schematic which shows one Embodiment of this invention. 従来例を示す概略図である。It is the schematic which shows a prior art example.

符号の説明Explanation of symbols

3 ノズル
11 筐体
17 洗浄機構
18,20 オゾン水殺菌機構
3 Nozzle 11 Housing 17 Cleaning mechanism 18, 20 Ozone water sterilization mechanism

Claims (3)

被洗浄物を収納する筐体と、
前記筐体内に収納された被洗浄物に向けて洗浄液とオゾン水とを噴射させるためのノズルと、
前記筐体内に洗浄水を供給し、供給された洗浄液を循環ポンプで循環させて前記ノズルから噴射させ、前記筐体内に収納された被洗浄物を洗浄液で洗浄する洗浄機構と、
前記筐体内にオゾン水を供給し、供給されたオゾン水を前記循環ポンプで循環させて前記ノズルから噴射させ、前記筐体内に収納された被洗浄物をオゾン水で殺菌するオゾン水殺菌機構と、
を備え、前記ノズルから噴射させるオゾン水の圧力を0.05Mpa以下であって、かつ、前記ノズルから噴射させる洗浄液の圧力よりも低くするようにした、ことを特徴とする洗浄殺菌装置。
A housing for storing objects to be cleaned;
A nozzle for injecting a cleaning liquid and ozone water toward an object to be cleaned housed in the housing;
A cleaning mechanism that supplies cleaning water into the housing, circulates the supplied cleaning liquid through a circulation pump and sprays it from the nozzle, and cleans an object to be cleaned contained in the housing with the cleaning liquid;
An ozone water sterilization mechanism that supplies ozone water into the housing, circulates the supplied ozone water by the circulation pump and sprays the ozone water from the nozzle, and sterilizes an object to be cleaned contained in the housing with ozone water; ,
Wherein the a pressure of ozone water to be ejected from the nozzle at 0.05Mpa or less, than the pressure of the cleaning liquid to be ejected from the nozzle was make lower so, cleaning and sterilizing device, characterized in that.
洗浄液を循環させるときの前記循環ポンプの回転数よりもオゾン水を循環させるときの前記循環ポンプの回転数を下げ、これによって、前記ノズルから噴射させる洗浄液の圧力よりも前記ノズルから噴射させるオゾン水の圧力を低くするようにした、ことを特徴とする請求項1記載の洗浄殺菌装置。   The rotation speed of the circulation pump when circulating the ozone water is lower than the rotation speed of the circulation pump when circulating the cleaning liquid, and thereby the ozone water ejected from the nozzle rather than the pressure of the cleaning liquid ejected from the nozzle 2. The cleaning and sterilizing apparatus according to claim 1, wherein the pressure of the apparatus is reduced. 前記循環ポンプにバイパスラインを設け、このバイパスラインを電磁弁でオン・オフさせて前記循環ポンプの吐出圧を変化させ、これによって、前記ノズルから噴射させる洗浄液の圧力よりも前記ノズルから噴射させるオゾン水の圧力を低くするようにした、ことを特徴とする請求項1記載の洗浄殺菌装置。   The bypass pump is provided with a bypass line, and the bypass line is turned on / off by a solenoid valve to change the discharge pressure of the circulating pump, whereby the ozone injected from the nozzle rather than the pressure of the cleaning liquid injected from the nozzle 2. The cleaning and sterilizing apparatus according to claim 1, wherein the water pressure is lowered.
JP2004278708A 2004-09-27 2004-09-27 Cleaning sterilizer Expired - Fee Related JP4046287B2 (en)

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