JP2006296962A - Deodorizing device - Google Patents

Deodorizing device Download PDF

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JP2006296962A
JP2006296962A JP2005126869A JP2005126869A JP2006296962A JP 2006296962 A JP2006296962 A JP 2006296962A JP 2005126869 A JP2005126869 A JP 2005126869A JP 2005126869 A JP2005126869 A JP 2005126869A JP 2006296962 A JP2006296962 A JP 2006296962A
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fragrance
mist
deodorizing
peltier element
unit
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JP4925242B2 (en
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Shigeyuki Yamaguchi
重行 山口
Kazumasa Rokushima
一雅 六嶋
Masato Suzuki
眞人 鈴木
Noriyuki Kitachi
範行 北地
Yasunari Maeda
康成 前田
Hisanori Shibata
尚紀 柴田
Takeshi Sakai
武之 酒井
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Panasonic Electric Works Co Ltd
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Matsushita Electric Works Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P20/00Technologies relating to chemical industry
    • Y02P20/50Improvements relating to the production of bulk chemicals
    • Y02P20/52Improvements relating to the production of bulk chemicals using catalysts, e.g. selective catalysts

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  • Bidet-Like Cleaning Device And Other Flush Toilet Accessories (AREA)
  • Air Humidification (AREA)
  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
  • Electrostatic Spraying Apparatus (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a deodorizing device, capable of achieving deodorizing and aromatizing effect quickly and economically wholly in a target space such as a toilet room, and achieving simplicity and compactness of constitution to be favorably disposed in the target space. <P>SOLUTION: This device comprises a case 2, an electrostatic atomization means 3 to apply high voltage by a high voltage application part 8 between an atomization electrode 6, in which water is supplied to a tip, and a counter electrode 7 for electrostatic atomization so as to generate nanometer-sized mist, an aromatic agent transpiration means 4 comprising an aromatic agent and a heating part 9 for heating the aromatic agent, and a blow means 5 to issue the mist and transpired aroma out of the case 2. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、たとえばトイレルーム等の消臭空間に配設される消臭装置に関するものである。   The present invention relates to a deodorizing apparatus disposed in a deodorizing space such as a toilet room, for example.

一般にトイレルームには市販の活性炭等の消臭剤や芳香剤を配置することが行われている。つまり、消臭剤でトイレルームの消臭を行うと共に、芳香剤でトイレルームに芳香を放散させて使用者にトイレルームの良好な使用感を付与できるようにしている。   Generally, a deodorant such as commercially available activated carbon or a fragrance is placed in a toilet room. In other words, the deodorant is used to deodorize the toilet room, and the fragrance is diffused into the toilet room with the fragrance so that the user can have a good feeling of use of the toilet room.

しかしながら、消臭剤はトイレルームの空気中の臭気成分を吸着させて消臭するものであってトイレルームの壁面や便器等に付着している臭気成分の消臭はできるものではない。また、消臭剤の消臭範囲や芳香剤の芳香の放散範囲はトイレルームの空気流れに依存することから即効性を有するものではない。更に言うと、このような消臭剤や芳香剤はトイレルームに配置した後には常に消臭効果や芳香効果を作用させ続けるのであるから、トイレルーム使用後(用便後)の増大した臭気成分を強力に消臭するなどのメリハリをつけた消臭効果等の作用は不可能であると共に、トイレルームの不使用時にも消臭効果等を作用させ続けることから無駄が多くて不経済であるといった問題がある。   However, the deodorant adsorbs the odor component in the air of the toilet room and deodorizes it, and cannot deodorize the odor component adhering to the wall surface of the toilet room or the toilet. In addition, the deodorant range of the deodorant and the fragrance diffusion range of the fragrance are not immediately effective because they depend on the air flow in the toilet room. Furthermore, since such deodorizers and fragrances always have a deodorizing effect and aroma effect after they are placed in the toilet room, the increased odor component after using the toilet room (after stool) The effect of deodorizing such as powerful deodorizing is impossible, and it is wasteful and uneconomical because it keeps acting even when the toilet room is not used. There is a problem.

ところで、近年の研究によると、静電霧化装置で水に電圧を印加して生成されるナノサイズのミストは活性種を内在し、このミストが臭気成分に付着すると臭気成分を不活性化させて消臭できることが明らかになっている。しかして、この原理を応用して、たとえば特許文献1のように空気清浄機に静電霧化装置を付設することも行われている。特許文献1の空気清浄機は吸気口から排気口に至る空気路に静電霧化装置を付設して空気清浄機の空気路に流れる空気に含まれる臭気成分の消臭を図ったものであるが、たとえば静電霧化で生成するミストを送風手段にてトイレルームに放出すればトイレルーム全体の消臭を行う消臭装置を得ることができる。   By the way, according to recent research, nano-size mist generated by applying voltage to water with an electrostatic atomizer contains active species, and when this mist adheres to odor components, the odor components are inactivated. It is clear that it can be deodorized. Thus, by applying this principle, for example, Patent Document 1 discloses that an air atomizer is provided with an electrostatic atomizer. The air purifier of Patent Document 1 is provided with an electrostatic atomizer attached to the air path from the intake port to the exhaust port to deodorize odor components contained in the air flowing in the air path of the air purifier. However, if the mist produced | generated by electrostatic atomization is discharge | released to a toilet room by a ventilation means, the deodorizing apparatus which deodorizes the whole toilet room can be obtained.

このような消臭装置をトイレルームに配置して適宜のタイミングで静電霧化を行わせることで、トイレルーム全体の消臭を即効性且つ経済性をもたせて行うようにできるのであるが、トイレルームに芳香を放散させるには別個に芳香剤を置かねばならず、トイレルームが消臭装置や芳香剤といった配置物で雑然としてしまうといった問題があると共に、芳香剤の放散は依然として即効性且つ経済性を有さずに行われるのであった。
特開2001−96189号公報
By placing such a deodorization device in the toilet room and performing electrostatic atomization at an appropriate timing, it is possible to perform deodorization of the entire toilet room with immediate effect and economy, In order to dissipate the fragrance in the toilet room, it is necessary to place a separate fragrance, and there is a problem that the toilet room is cluttered with arrangements such as deodorizers and fragrances. It was done without economy.
JP 2001-96189 A

本発明は上記の従来の問題点に鑑みて為したものであって、トイレルームなどの消臭空間全体に消臭及び芳香効果を即効性且つ経済性をもたせて作用させると共に、消臭空間に収まり良く配置可能にするべく構成を簡略化して小型化を図った消臭装置を提供することを課題とするものである。   The present invention has been made in view of the above-mentioned conventional problems, and has the deodorizing and fragrance effect act on the entire deodorizing space such as a toilet room with immediate effect and economy, and in the deodorizing space. It is an object of the present invention to provide a deodorizing apparatus that is simplified in size and made compact in order to make it possible to fit and arrange.

上記課題を解決するために本発明の請求項1に係る消臭装置は、ケース2内に、先端部に水が供給される霧化用電極6と対向電極7との間に高電圧印加部8にて高電圧を印加して静電霧化することでナノメータサイズのミストを生成させる静電霧化手段3と、芳香剤と芳香剤を加熱するための加熱部9とよりなる芳香剤蒸散手段4と、上記生成されたミストや蒸散された芳香をケース2外へ放散可能にする送風手段5と、をそれぞれ内装したことを特徴とする。これによると、適宜のタイミングで静電霧化手段3や芳香剤蒸散手段4を送風手段5と共に作動させることで、消臭装置1を配置したトイレルーム15などの消臭空間全体に消臭及び芳香効果を即効性且つ経済性をもたせて作用させることができ、また、静電霧化手段3で生成させたミストや芳香剤蒸散手段4で蒸散させた芳香を消臭空間に放散させるには同じ送風手段5で行うことができるから装置構成の簡略化が図られて消臭装置1の小型化を図ることができ、消臭装置1を消臭空間に収まり良く配置可能にできる。   In order to solve the above-mentioned problem, a deodorizing apparatus according to claim 1 of the present invention is a high-voltage applying unit between the atomizing electrode 6 and the counter electrode 7 in which water is supplied to the tip in the case 2. A fragrance transpiration comprising an electrostatic atomizing means 3 for generating a nanometer-size mist by applying a high voltage at 8 and electrostatic heating, and a heating unit 9 for heating the fragrance and the fragrance. It is characterized in that the means 4 and the air blowing means 5 for allowing the generated mist and the fragrant fragrance to be diffused out of the case 2 are respectively provided. According to this, by deactivating the electrostatic atomizing means 3 and the fragrance evaporating means 4 together with the air blowing means 5 at an appropriate timing, the deodorizing and deodorizing and the entire deodorizing space such as the toilet room 15 in which the deodorizing device 1 is disposed are provided. The fragrance effect can be made to act immediately and economically, and the mist generated by the electrostatic atomization means 3 and the fragrance evaporated by the fragrance transpiration means 4 can be diffused into the deodorant space. Since the same air blowing means 5 can be used, the structure of the apparatus can be simplified and the deodorizing apparatus 1 can be miniaturized, and the deodorizing apparatus 1 can be placed in the deodorizing space and can be arranged well.

また、請求項2に係る消臭装置は、請求項1において、ケース2内にペルチェ素子10を内装し、静電霧化手段3を、ペルチェ素子10の冷却部11で発生させた結露水を霧化用電極6の先端部に供給して静電霧化させてミストを生成させるように構成し、ペルチェ素子10の放熱部12を芳香剤蒸散手段4の加熱部9として構成したことを特徴とする。これによると、静電霧化させる水を結露水で自動的に賄うことができて消臭装置1に使用者が手動で水を供給する手間を省いて消臭装置1の利便性が高まると共に、結露水を発生させるためのペルチェ素子10の放熱部12を芳香剤蒸散手段4の加熱部9としたことで装置構成の簡略化が図られて消臭装置1の小型化を図ることができる。   Further, the deodorizing apparatus according to claim 2 is the deodorizing apparatus according to claim 1, wherein the Peltier element 10 is housed in the case 2, and the dew condensation water generated by the electrostatic atomizer 3 in the cooling part 11 of the Peltier element 10 is obtained. The mist generating electrode 6 is supplied to the tip of the atomizing electrode 6 and electrostatically atomized to generate mist, and the heat dissipation portion 12 of the Peltier element 10 is configured as the heating portion 9 of the fragrance transpiration means 4. And According to this, the water to be electrostatically atomized can be automatically covered with condensed water, and the convenience of the deodorizing apparatus 1 is increased by eliminating the need for the user to manually supply water to the deodorizing apparatus 1. Since the heat dissipating part 12 of the Peltier element 10 for generating dew condensation water is the heating part 9 of the fragrance transpiration means 4, the apparatus configuration can be simplified and the deodorizing apparatus 1 can be miniaturized. .

また、請求項3に係る消臭装置は、請求項2において、ケース2に人体検出センサ13を設け、消臭装置1の作動制御を行う制御部に、人体検出センサ13の人体検知時においてペルチェ素子10及び送風手段5を作動させ且つ静電霧化手段3の高電圧印加部8を作動させない芳香放散モードM2を設けると共に、人体検出センサ13の人体非検知時においてペルチェ素子10、送風手段5及び静電霧化手段3の高電圧印加部8を作動させるミスト放散モードM3を設けたことを特徴とする。これによると、消臭装置1を配置したトイレルーム15に使用者が居ることを人体検出センサ13で検知したときには、制御部の芳香放散モードM2によって、静電霧化手段3でのミストの生成を行わず、つまりミストで芳香を消臭してしまう事態を回避することができ、しかして芳香をトイレルーム15に効率良く放散させることができて芳香による使用者のトイレルーム15の使用感を高めることができる。また、トイレルーム15使用後(用便後)の使用者がトイレルーム15から出たなどしてトイレルーム15に使用者が居ないときには、制御部のミスト放散モードM3によって、トイレルーム15使用後(用便後)に増大する臭気成分に対してミストによる消臭効果を有効に作用させるようにできる。すなわち、この制御部によると、トイレルーム15の使用形態に合わせて消臭及び芳香効果を即効性且つ経済性をもたせて作用させることができ、トイレルーム15に用いるに適した消臭装置1にできる。   Further, the deodorizing apparatus according to claim 3 is provided with the human body detection sensor 13 in the case 2 according to claim 2, and the control unit for controlling the operation of the deodorization apparatus 1 includes a Peltier device when the human body detection sensor 13 detects the human body. A fragrance diffusion mode M2 is provided in which the element 10 and the air blowing means 5 are operated and the high voltage applying unit 8 of the electrostatic atomizing means 3 is not operated. When the human body detection sensor 13 is not detecting the human body, the Peltier element 10 and the air blowing means 5 are provided. And a mist diffusion mode M3 for operating the high voltage application section 8 of the electrostatic atomizing means 3 is provided. According to this, when the human body detection sensor 13 detects that there is a user in the toilet room 15 in which the deodorizing device 1 is disposed, the mist generation in the electrostatic atomizing means 3 is performed by the fragrance emission mode M2 of the control unit. , That is, the situation where the mist is deodorized by the mist can be avoided, and the fragrance can be efficiently diffused to the toilet room 15 so that the user can feel the use of the toilet room 15 by the fragrance. Can be increased. Further, when the user after using the toilet room 15 (after the toilet) has left the toilet room 15 because there is no user in the toilet room 15, the use of the toilet room 15 by the mist diffusion mode M3 of the control unit. The deodorizing effect by mist can be made to act effectively with respect to the odor component which increases (after stool). That is, according to this control unit, the deodorizing and fragrance effects can be made to act immediately and economically according to the usage pattern of the toilet room 15, and the deodorizing apparatus 1 suitable for use in the toilet room 15 is provided. it can.

また、請求項4に係る消臭装置は、請求項1において、芳香剤蒸散手段4の加熱部9を、静電霧化手段3と無関係に通電可能なヒータ14で構成したことを特徴とする。これによると、芳香の放散とミストの放散とを無関係に行わせることができ、消臭装置1の作動形態の多様化を図ることができると共に、芳香剤の加熱に適した出力のヒータ14を用いると芳香の蒸散効率を高めて消臭空間への芳香効果の即効性を向上できる。   Further, the deodorizing apparatus according to claim 4 is characterized in that, in claim 1, the heating section 9 of the fragrance transpiration means 4 is constituted by a heater 14 that can be energized independently of the electrostatic atomization means 3. . According to this, the emission of fragrance and the emission of mist can be performed independently, the operation mode of the deodorizing apparatus 1 can be diversified, and the heater 14 having an output suitable for heating the fragrance is provided. When used, the efficiency of fragrance evaporation can be increased and the immediate effect of the fragrance effect on the deodorant space can be improved.

本発明は、消臭装置を配置せるトイレルームなどの消臭空間全体に、消臭及び芳香効果を即効性且つ経済性をもたせて作用させると共に、消臭装置の装置構成を簡略化して小型化を図り消臭空間に消臭装置を収まり良く配置可能にするといった利点を有する。   The present invention allows the deodorizing and fragrance effects to act on the entire deodorizing space such as a toilet room in which the deodorizing device is arranged with immediate effect and economy, and simplifies the device configuration of the deodorizing device and reduces the size. Therefore, there is an advantage that the deodorizing device can be placed in the deodorizing space and can be arranged well.

以下、本発明を添付図面に示す実施形態に基いて説明する。   Hereinafter, the present invention will be described based on embodiments shown in the accompanying drawings.

図1乃至図6には本発明の実施の形態の例を示す。消臭装置1は、図1乃至図3のように、装置外殻となるケース2に、ナノメータサイズのミストを生成させる静電霧化手段3と、芳香剤を蒸散させる芳香剤蒸散手段4と、上記生成されたミスト及び蒸散された芳香剤をケース2外へ放散可能にする送風手段5とを内装して構成されており、たとえば図4のように消臭装置1を配置したトイレルーム15等の消臭空間に対して、生成させたミストによる消臭効果と蒸散させた芳香による芳香効果とをそれぞれ付与できるようにした装置である。   1 to 6 show examples of embodiments of the present invention. As shown in FIGS. 1 to 3, the deodorizing apparatus 1 includes an electrostatic atomizing means 3 for generating nanometer-size mist in a case 2 serving as an apparatus outer shell, and an fragrance evaporating means 4 for evaporating the fragrance. The toilet room 15 in which the generated mist and the evaporated fragrance can be diffused to the outside of the case 2 and the blower means 5 are provided, for example, as shown in FIG. The deodorizing space such as the deodorizing effect by the generated mist and the fragrance effect by the transcribed aroma can be imparted respectively.

詳しくは、消臭装置1は、ケース2の正面には図3のように人体検出センサ13が配置されると共に吸気口16及び排気口17が開口されており、図1のようにケース2の内部に吸気口16から排気口17に至る送風通路18が設けられている。この送風通路18の吸気口16近傍の部位には空気清浄フィルタ20、送風手段5を構成する送風ファン19が配置されており、送風通路18の排気口17近傍の部位には芳香剤蒸散手段4及び静電霧化手段3が配置されている。また、図示はしないが送風通路18以外のケース2の内部には各手段を作動させる給電部や人体検出センサ13に接続された制御部が配置されている。ここで、空気清浄フィルタ20は、吸気口16に亙って被着した微細網目から成るゴミ取りフィルタ21と、活性炭や酸化触媒から成る臭気取りフィルタ22とで構成されている。ゴミ取りフィルタ21によると空気中に浮遊するホコリや微粒子等のゴミを送風通路18内に入らせないように除去でき、臭気取りフィルタ22によると空気中に浮遊する臭気成分を吸着したり分解したりして除去できるようにされている。すなわち、空気清浄フィルタ20は、送風ファン19にて送風通路18に取込まれた空気の清浄を行い、後述する静電霧化手段3の静電霧化するための結露水に不快臭を溶存させないように図られているのである。   Specifically, in the deodorizing apparatus 1, a human body detection sensor 13 is disposed in front of the case 2 as shown in FIG. 3, and an intake port 16 and an exhaust port 17 are opened. As shown in FIG. A ventilation passage 18 extending from the intake port 16 to the exhaust port 17 is provided inside. An air purifying filter 20 and a blower fan 19 constituting the blower unit 5 are disposed in a portion of the blower passage 18 near the intake port 16, and the fragrance transpiration unit 4 is disposed in a portion of the blower passage 18 near the exhaust port 17. And the electrostatic atomization means 3 is arrange | positioned. Although not shown, a control unit connected to the power supply unit for operating each means and the human body detection sensor 13 is disposed inside the case 2 other than the air passage 18. Here, the air purifying filter 20 includes a dust removing filter 21 made of a fine mesh deposited over the intake port 16 and an odor removing filter 22 made of activated carbon or an oxidation catalyst. The dust removal filter 21 can remove dust and fine particles floating in the air so as not to enter the air passage 18, and the odor removal filter 22 absorbs and decomposes the odor component floating in the air. It can be removed. That is, the air purifying filter 20 cleans the air taken into the blower passage 18 by the blower fan 19 and dissolves unpleasant odors in the condensed water for electrostatic atomization of the electrostatic atomizer 3 to be described later. It is designed not to let it happen.

静電霧化手段3は、図1及び図2のように、先端部に水が供給される霧化用電極6と、この霧化用電極6の先端部に対向配置された対向電極7と、霧化用電極6と対向電極7との間に高電圧を印加させる高電圧印加部8とで構成されており、霧化用電極6の先端部に存在する水にレイリー***を起こさせて静電霧化することでナノメータサイズのミストが生成されるようにされている。生成されたミストは粒子径がナノメータサイズであって元々良好な拡散性を有するが、送風ファン19で生じさせた風に乗せて排気口17から消臭空間に放散することで、拡散性が更に良好になって消臭空間の隅々にまで即座に行き渡るようになる。ここで、静電霧化には水が必要であるが、この水は本例ではケース2内に内装されたペルチェ素子10の冷却部11で発生させた結露水を用いるようにされており、このように静電霧化させる水を空気中に含有する水分から結露水というかたちで自動的に賄えるようにしたことで、使用者が消臭装置1に手動で水を供給するという手間を省くことができ、消臭装置1の利便性が高められている。なお、ペルチェ素子10は通電させると素子間で熱移動が生じて一端に吸熱する冷却部11が現出され他端に発熱する放熱部12が現出されるものである。本例では、ペルチェ素子10の冷却部11には結露水を貯留可能にする皿形状の結露水受け部23が形成されており、この結露水受け部23の底部から突出するようにセラミック製の霧化用電極6が立設されており、冷却部11で発生した結露水を霧化用電極6の内部の毛細管現象等で霧化用電極6の先端部に搬送し、その途中で高電圧印加部8によって高電圧が印加され、霧化用電極6の先端部に達した水と対向電極7との間で放電を行わせることで、上記霧化用電極6の先端部に達する水に順次レイリー***を起こさせて静電霧化が順次行われるようにされている。無論、金属製の霧化用電極6を用いてペルチェ素子10の冷却部11と共に霧化用電極6自体に結露水を発生させるようにしても好ましく、また、霧化用電極6の内部に結露水を霧化用電極6の先端まで導く管路状の通水通路を設けても好ましい。一方、ペルチェ素子10の放熱部12には送風通路18に臨んで配置された放熱フィン24が設けられており、ペルチェ素子10の放熱部12からの放熱効率の向上、ひいてはペルチェ素子10の作動効率の向上が図られている。詳しくは、本例の放熱フィン24は、送風通路18における送風ファン19に比較的近い下流部分に配置され、送風ファン19で生じた空気流にロス無く当たるようにされて放熱効率の向上が図られている。なお、このペルチェ素子10の放熱部12には後述する芳香剤蒸散手段4の加熱部9を構成する伝熱部材25も設けられている。   As shown in FIGS. 1 and 2, the electrostatic atomizing means 3 includes an atomizing electrode 6 to which water is supplied to the tip portion, and a counter electrode 7 disposed to face the tip portion of the atomizing electrode 6. The high voltage applying unit 8 applies a high voltage between the atomizing electrode 6 and the counter electrode 7, and causes Rayleigh splitting in the water existing at the tip of the atomizing electrode 6. Nanometer-size mist is generated by electrostatic atomization. The generated mist has a nanometer size particle size and originally has good diffusibility. However, the generated mist is further diffused by being diffused from the exhaust port 17 to the deodorant space by being put on the wind generated by the blower fan 19. Becomes good and immediately spreads to every corner of the deodorant space. Here, water is required for electrostatic atomization, and in this example, this water is used as dew condensation water generated in the cooling unit 11 of the Peltier element 10 housed in the case 2. Thus, since the water to be electrostatically atomized is automatically provided in the form of condensed water from the moisture contained in the air, the user is not required to manually supply water to the deodorizing apparatus 1. Therefore, the convenience of the deodorizing apparatus 1 is enhanced. When the Peltier element 10 is energized, heat transfer occurs between the elements, a cooling part 11 that absorbs heat appears at one end, and a heat dissipation part 12 that generates heat appears at the other end. In this example, the cooling unit 11 of the Peltier element 10 is formed with a dish-shaped dew condensation water receiving portion 23 that can store dew condensation water, and is made of ceramic so as to protrude from the bottom of the dew condensation water receiving portion 23. The atomizing electrode 6 is erected, and the dew condensation water generated in the cooling unit 11 is conveyed to the tip of the atomizing electrode 6 by a capillary phenomenon or the like inside the atomizing electrode 6, and a high voltage is generated on the way. A high voltage is applied by the application unit 8, and discharge is performed between the water that has reached the tip of the atomizing electrode 6 and the counter electrode 7, so that the water that reaches the tip of the atomizing electrode 6 can be discharged. The electrostatic atomization is performed sequentially by causing Rayleigh splitting sequentially. Needless to say, it is preferable that condensed water is generated in the atomizing electrode 6 itself together with the cooling part 11 of the Peltier element 10 using the metal atomizing electrode 6. It is also preferable to provide a pipe-shaped water passage that guides water to the tip of the atomizing electrode 6. On the other hand, the heat radiating part 12 of the Peltier element 10 is provided with heat radiating fins 24 that face the air passage 18 so as to improve the heat radiating efficiency from the heat radiating part 12 of the Peltier element 10, and thus the operating efficiency of the Peltier element 10. Improvements are being made. Specifically, the heat dissipating fins 24 of the present example are disposed in the downstream portion of the air passage 18 that is relatively close to the air blowing fan 19 so that the air flow generated by the air blowing fan 19 can be applied without loss, thereby improving the heat dissipating efficiency. It has been. In addition, the heat transfer part 25 which comprises the heating part 9 of the fragrance | flavor evaporating means 4 mentioned later is also provided in the thermal radiation part 12 of this Peltier device 10.

芳香剤蒸散手段4は、図2のように、芳香剤を収めた芳香剤収容部26と、芳香剤収容部26に収容した芳香剤を加熱させる加熱部9とで構成されている。ここで、芳香剤には固体状または液体状のアロマオイルなどを用いることができる。また、本例の加熱部9は上述のように伝熱部材25、つまりペルチェ素子10の放熱部12によって構成されており、この伝熱部材25に芳香剤収容部26が付設されている。ペルチェ素子10を通電させると放熱部12で発熱現象が生じるのであり、このとき送風手段5を作動させずまたは低出力で作動させてペルチェ素子10の放熱部12に設けた放熱フィン24から送風通路18の空気に充分に放熱されない状態にすると、ペルチェ素子10の放熱部12に溜まった熱は伝熱部材25を伝って芳香剤収容部26に収容された芳香剤を加熱して蒸散させるようにされている。なお、本例では図示はしないが芳香剤収容部26に温度センサが設置され、温度センサの検知温度を基に制御部を介したペルチェ素子10への通電制御や放熱フィン24からの放熱を行う送風手段5の駆動制御が行われるようにされており、芳香剤蒸散に適した加熱部9の温度コントロールを可能としている(たとえば、50〜70℃)。蒸散された芳香は元々拡散性を有しているが、送風手段5で生じさせた風に乗せて排気口17から消臭空間に放散することで、拡散性が更に良好になって消臭空間の広い範囲に即座に行き渡るようになる。   As shown in FIG. 2, the fragrance transpiration unit 4 includes a fragrance storage unit 26 that stores a fragrance, and a heating unit 9 that heats the fragrance stored in the fragrance storage unit 26. Here, solid or liquid aroma oil etc. can be used for a fragrance | flavor. Moreover, the heating part 9 of this example is comprised by the heat-transfer member 25, ie, the thermal radiation part 12 of the Peltier element 10, as mentioned above, and the fragrance | flavor accommodating part 26 is attached to this heat-transfer member 25. FIG. When the Peltier element 10 is energized, a heat generation phenomenon occurs in the heat radiating portion 12. At this time, the air blowing passage 5 is not connected to the radiating section 24 of the Peltier element 10. When the heat is not sufficiently dissipated by the air 18, the heat accumulated in the heat radiating portion 12 of the Peltier element 10 is transmitted through the heat transfer member 25 so that the fragrance contained in the fragrance containing portion 26 is evaporated. Has been. Although not shown in the present example, a temperature sensor is installed in the fragrance containing unit 26, and energization control to the Peltier element 10 and heat radiation from the radiation fins 24 are performed via the control unit based on the temperature detected by the temperature sensor. Drive control of the air blowing means 5 is performed, and temperature control of the heating unit 9 suitable for fragrance transpiration is enabled (for example, 50 to 70 ° C.). Although the aroma that has been transpired originally has diffusibility, it is put on the wind generated by the air blowing means 5 and diffused from the exhaust port 17 to the deodorant space, thereby further improving the diffusibility and deodorizing space. Will immediately spread over a wide range of.

上記構成の消臭装置1は、配置させたトイレルーム15等の消臭空間に対して、静電霧化手段3によって生成させたミスト及び芳香剤蒸散手段4で蒸散させた芳香とを、同一の送風手段5によって放散可能にしたものである。したがって、従来の消臭剤や芳香剤のように配置後常に消臭及び芳香効果を作用させるものではなく、適宜のタイミングで静電霧化手段3や芳香剤蒸散手段4を送風手段5と共に作動させて送風手段5による風に乗せてミストや芳香を消臭空間全体にすばやく行き渡らせることができるものであり、消臭及び芳香効果を即効性且つ経済性をもたせて消臭空間全体に作用させることができるものである。ここで、静電霧化手段3で生成されたナノメータサイズのミストは、消臭空間の壁や消臭空間に内在する物体(たとえば消臭空間がトイレルーム15であれば便器27等)の表面からの浸透性も有するため、消臭空間の空気に含まれる臭気成分はもとより、消臭空間の壁面28や消臭空間に内在する物体(たとえば便器27)に付いた臭気成分に対しても、良好に消臭効果を作用させることができるのである。また、このミストによると、消臭空間の壁面28や消臭空間に内在する物体(たとえば便器27)に対するカビの発生も防止することができる。また、上記構成の消臭装置1では上述のようにミストや芳香が消臭空間に同一の送風手段5で放散可能にされたことから、兼用された送風手段5によって装置構成の簡略化がなされており、つまり消臭装置1の小型化が図られているので、消臭装置1の消臭空間への配置の容易化が図られているのである。更に言うと、静電霧化手段3で結露水を発生させるために用いたペルチェ素子10の放熱部12を芳香剤蒸散手段4の加熱部9として用いたことによっても、芳香剤蒸散手段4及び静電霧化手段3の構成物を同一のペルチェ素子10で兼用できて装置構成の簡略化が図られており、消臭装置1の小型化が図られているのである。たとえば図4では消臭空間であるトイレルーム15の壁面28に縦長の手洗いキャビネット29が埋設されているが、小型化の図られた消臭装置1は上記手洗いキャビネット29に付設可能であり、消臭装置1のトイレルーム15への配置を収まり良く行うことが可能にされている。   In the deodorizing apparatus 1 having the above-described configuration, the mist generated by the electrostatic atomizing means 3 and the fragrance evaporated by the fragrance transpiration means 4 are the same in the deodorizing space such as the toilet room 15 arranged. It can be dissipated by the air blowing means 5. Therefore, the deodorizing and fragrance effects do not always act after arrangement like conventional deodorants and fragrances, and the electrostatic atomizing means 3 and the fragrance transpiration means 4 are operated together with the blowing means 5 at an appropriate timing. The mist and the fragrance can be quickly spread over the entire deodorizing space by being put on the wind by the air blowing means 5, and the deodorizing and fragrance effect acts on the entire deodorizing space with immediate effect and economy. It is something that can be done. Here, the nanometer-size mist generated by the electrostatic atomizing means 3 is the surface of the wall of the deodorizing space or the object existing in the deodorizing space (for example, the toilet 27 if the deodorizing space is the toilet room 15). Therefore, not only the odor components contained in the air of the deodorant space, but also the odor components attached to the wall 28 of the deodorant space and the objects (for example, the toilet 27) in the deodorant space, The deodorizing effect can be made to work well. Moreover, according to this mist, generation | occurrence | production of the mold | fungi with respect to the wall surface 28 of a deodorizing space or the object (for example, toilet bowl 27) inherent in a deodorizing space can also be prevented. Further, in the deodorizing apparatus 1 having the above configuration, since the mist and the fragrance can be diffused in the deodorizing space by the same air blowing means 5, the apparatus structure is simplified by the combined air blowing means 5. That is, since the deodorizing apparatus 1 is downsized, the arrangement of the deodorizing apparatus 1 in the deodorizing space is facilitated. More specifically, the radiant transpiration means 4 and the radiant evaporation means 4 and the radiating part 12 of the Peltier element 10 used for generating condensed water as the heating part 9 of the fragrance transpiration means 4 are also used. The structure of the electrostatic atomizing means 3 can be shared by the same Peltier element 10 to simplify the structure of the apparatus, and the deodorizing apparatus 1 can be miniaturized. For example, in FIG. 4, a vertically long hand-washing cabinet 29 is embedded in the wall surface 28 of the toilet room 15 which is a deodorizing space. However, the deodorizing device 1 which is reduced in size can be attached to the hand-washing cabinet 29 and the The arrangement of the odor device 1 in the toilet room 15 can be carried out well.

ところで、本例の消臭装置1の制御部にあっては、図5に示すような消臭装置1の作動制御ができるようにされ、これによってトイレルーム15での使用に適した消臭装置1にしている。ここで、ケース2の正面に設けた人体検出センサ13によると、消臭空間であるトイレルーム15内の使用者の有無を検知できるようにされている。また、制御部には、ペルチェ素子10を作動させ且つ送風手段5及び静電霧化手段3の高電圧印加部8を作動させない芳香蒸散モードM1、ペルチェ素子10及び送風手段5を作動させ且つ静電霧化手段3の高電圧印加部8を作動させない芳香放散モードM2、ペルチェ素子10及び送風手段5及び静電霧化手段3の高電圧印加部8を作動させるミスト放散モードM3が設定されている。   By the way, in the control part of the deodorizing apparatus 1 of this example, the operation control of the deodorizing apparatus 1 as shown in FIG. 5 can be performed, and thereby the deodorizing apparatus suitable for use in the toilet room 15 is provided. 1 Here, according to the human body detection sensor 13 provided in front of the case 2, the presence or absence of the user in the toilet room 15 which is a deodorizing space can be detected. The control unit operates the fragrance evaporation mode M1, which operates the Peltier element 10 and does not operate the blowing unit 5 and the high voltage application unit 8 of the electrostatic atomizing unit 3, operates the Peltier element 10 and the blowing unit 5, and operates statically. A fragrance diffusion mode M2 in which the high voltage application unit 8 of the electromisting means 3 is not activated, and a mist emission mode M3 in which the high voltage application unit 8 of the Peltier element 10 and the blowing means 5 and the electrostatic atomization means 3 are activated are set. Yes.

まず、使用者のトイレルーム15への入室を人体検出センサ13で検知すると、制御部は芳香蒸散モードM1になってペルチェ素子10に通電させる。なお、このときには送風手段5や静電霧化手段3の高電圧印加部8は未作動の状態にある。この状態では図6(a)のように、通電されたペルチェ素子10は冷却部11で吸熱して放熱部12で発熱するが、送風手段5が作動していない状態であるために放熱フィン24からの放熱がほとんど行われず、ペルチェ素子10の放熱部12での温度上昇が進んで伝達部材が芳香剤蒸散手段4の加熱部9として有効に機能する。すなわち、芳香剤蒸散手段4の芳香剤収容部26に収めた芳香剤は効率良く加熱されるのであり、使用者の入室後すぐに芳香を蒸散させることができる。また、このときペルチェ素子10の冷却部11で結露水が発生しても高電圧印加部8の通電がされていないから静電霧化手段3でのミストの生成は行われず、つまりミストで芳香を消臭してしまう事態が回避されている。   First, when the user's entry into the toilet room 15 is detected by the human body detection sensor 13, the control unit enters the fragrance transpiration mode M1 to energize the Peltier element 10. At this time, the blowing means 5 and the high voltage application section 8 of the electrostatic atomizing means 3 are not operated. In this state, as shown in FIG. 6A, the energized Peltier element 10 absorbs heat in the cooling unit 11 and generates heat in the heat radiating unit 12, but since the blower 5 is not in operation, the radiating fins 24 are used. Most of the heat is not radiated, and the temperature rises at the heat radiating portion 12 of the Peltier element 10, and the transmission member functions effectively as the heating portion 9 of the fragrance transpiration means 4. That is, the fragrance stored in the fragrance storage unit 26 of the fragrance transpiration means 4 is efficiently heated, and the fragrance can be evaporated immediately after the user enters the room. At this time, even if dew condensation water is generated in the cooling unit 11 of the Peltier element 10, the high voltage application unit 8 is not energized, so the mist is not generated in the electrostatic atomizing means 3, that is, the mist is aromatized. The situation that deodorizes is avoided.

次に、芳香剤収容部26に設置された温度センサによって芳香剤が蒸散する所定温度を検知すると、制御部は芳香放散モードM2に切り替わり、送風手段5を低風量が生じるように作動させる。ここでいう低風量とは、放熱フィン24から送風通路18の空気に充分な放熱が行われない程の風量をいう。本例では送風ファン19の間欠運転によって結果的に低風量を得るようにしているが、一定の低風量を生じるように低出力運転をしてもよい。この状態では図6(b)のように、送風ファン19にて生じた低風量の送風通路18の空気流によって、蒸散した芳香が排気口17からトイレルーム15へ放散されるのであり、トイレルーム15の使用中の使用者に対してトイレルーム15の使用感を高めることができるようになっている。なお、このときにはペルチェ素子10は通電状態を維持し、静電霧化手段3の高電圧印加部8は未作動の状態にある。したがって、ペルチェ素子10の冷却部11では結露水が発生しても静電霧化手段3でのミストの生成は行われず、つまりミストで芳香を消臭してしまう事態が回避されており、しかして芳香をトイレルーム15に効率良く放散させることが可能にされている。   Next, when a predetermined temperature at which the fragrance evaporates is detected by a temperature sensor installed in the fragrance containing section 26, the control section switches to the fragrance diffusion mode M2, and operates the blowing means 5 so that a low air volume is generated. Here, the low air volume means an air volume that does not sufficiently radiate heat from the heat radiation fins 24 to the air in the air passage 18. In this example, a low air flow is obtained as a result of intermittent operation of the blower fan 19, but a low output operation may be performed so as to generate a constant low air flow. In this state, as shown in FIG. 6 (b), the aroma that has transpired is diffused from the exhaust port 17 to the toilet room 15 by the air flow in the air passage 18 with a low air volume generated by the blower fan 19, and the toilet room The feeling of use of the toilet room 15 can be enhanced with respect to 15 users in use. At this time, the Peltier element 10 maintains the energized state, and the high voltage application unit 8 of the electrostatic atomizing means 3 is in an inoperative state. Therefore, in the cooling unit 11 of the Peltier element 10, mist is not generated in the electrostatic atomizing means 3 even if dew condensation water is generated, that is, a situation in which the mist is deodorized is avoided. Thus, the fragrance can be efficiently diffused into the toilet room 15.

次に、トイレルーム15使用後(用便後)の使用者がトイレルーム15から退出したことを人体検出センサ13で検知すると、制御部はミスト放散モードM3に切り替わり、送風手段5を通常風量で作動させると共に、静電霧化手段3の高電圧印加部8を作動させる。なお、このときにはペルチェ素子10は通電状態に維持される。この状態では図6(c)のように、ペルチェ素子10の放熱部12では、送風ファン19で生じさせた通風通路の空気流によって放熱フィン24が空冷されるのであり、つまり芳香剤蒸散手段4の加熱部9となる伝熱部材25で芳香剤を加熱する以前に放熱フィン24からの放熱が効率良く行われ、ペルチェ素子10の冷却部11での結露水の発生が促進されて静電霧化手段3でのミストの生成が安定して行われ、送風ファン19で生じさせた空気流に乗せてミストがトイレルーム15の隅々にまで即座に放散されるのであり、トイレルーム15使用後(用便後)に増大する臭気成分に対してミストによる消臭効果を有効に作用させるようになっている。なお、本例では図示はしないが結露水受け部23に結露水貯留量を検知する結露水貯留センサが設けられており、結露水貯留センサで結露水貯留量が所定量以上になったことを検知した場合にはペルチェ素子10の通電を止めて省電力化が図られており、また結露水貯留センサで結露水貯留量が所定量以下になったことを検知した場合には適宜ペルチェ素子10の通電を行って静電霧化手段3でのミストの安定生成を確保するようにしている。また、このミスト放散モードM3による消臭装置1の作動は使用者がトイレルーム15から退出後の一定時間行われるようにされており、その後の消臭装置1は作動停止状態にされる。   Next, when the human body detection sensor 13 detects that the user after using the toilet room 15 (after the toilet) has left the toilet room 15, the control unit switches to the mist diffusion mode M3, and the air blowing means 5 is switched to the normal air volume. While operating, the high voltage application part 8 of the electrostatic atomization means 3 is operated. At this time, the Peltier element 10 is maintained in an energized state. In this state, as shown in FIG. 6C, in the heat radiating portion 12 of the Peltier element 10, the heat radiating fins 24 are air-cooled by the air flow in the ventilation passage generated by the blower fan 19, that is, the fragrance transpiration means 4. Before the fragrance is heated by the heat transfer member 25 serving as the heating unit 9, the heat radiation from the radiation fins 24 is efficiently performed, and the generation of condensed water in the cooling unit 11 of the Peltier element 10 is promoted, thereby generating electrostatic fog. The mist is stably generated in the activating means 3 and is immediately dissipated to every corner of the toilet room 15 by being put on the air flow generated by the blower fan 19. The deodorizing effect by mist is made to act effectively with respect to the odor component which increases (after stool). In this example, although not shown in the figure, a condensed water storage sensor for detecting the condensed water storage amount is provided in the condensed water receiving portion 23, and the condensed water storage amount has reached a predetermined amount or more by the condensed water storage sensor. When detected, the Peltier element 10 is deenergized to save power, and when the condensed water storage sensor detects that the amount of condensed water storage is below a predetermined amount, the Peltier element 10 is appropriately selected. In order to secure stable generation of mist in the electrostatic atomizing means 3. In addition, the operation of the deodorizing apparatus 1 in the mist diffusion mode M3 is performed for a certain period of time after the user leaves the toilet room 15, and the subsequent deodorizing apparatus 1 is put into an operation stop state.

上述した制御部の作動制御によると、消臭装置1は、ミストによる消臭効果と芳香効果とが相殺される状態を防止して、トイレルーム15使用中の使用者には芳香効果を施して良好な使用感を付与すると共にトイレルーム15使用後に増大する臭気成分に対しては消臭効果を施すことができ、つまり、トイレルーム15の使用形態に合わせた適宜のタイミングで消臭効果や芳香効果をトイレルーム15に対して即効性且つ経済性をもたせて作用させることができたものであり、トイレルーム15への使用に適した消臭装置1にできたものである。   According to the operation control of the control unit described above, the deodorizing apparatus 1 prevents a state where the deodorizing effect and the fragrance effect due to the mist are offset, and gives the fragrance effect to the user who is using the toilet room 15. A deodorizing effect can be applied to odor components that give a good feeling of use and increase after the use of the toilet room 15, that is, the deodorizing effect and fragrance at an appropriate timing according to the usage form of the toilet room 15. The effect can be applied to the toilet room 15 with immediate effect and economy, and the deodorizing apparatus 1 suitable for use in the toilet room 15 can be achieved.

図7には本発明の実施の形態の他例を示す。本例は先例と比べて芳香剤蒸散手段4の加熱部9を変更した例であるから、先例同様のその余の構成においては同符号を付して説明を省き、上記変更部分についてのみ説明する。つまり、先例の芳香剤蒸散手段4の加熱部9は、静電霧化手段3での結露水の発生に用いるペルチェ素子10の放熱部12での発熱を利用するものであったが、本例の芳香剤蒸散手段4の加熱部9は、静電霧化手段3と無関係に通電可能なヒータ14で構成されている。なお詳しくは、本例の芳香剤蒸散手段4は送風通路18に臨んで隣接するようにケース2内に形成された収納室30に収容配置されており、芳香剤蒸散手段4と静電霧化手段3との電源を異ならせている。これによると、芳香の放散をミストの放散と同時に行わせたり、芳香の放散のみを行わせたり等、芳香剤蒸散手段4の作動を静電霧化手段3の作動と無関係に行わせることができ、消臭装置1の作動形態の多様化を図ることができる。また、芳香剤の蒸散性能がペルチェ素子10の性能の制約を受けないことから、たとえば加熱部9のヒータ14を高出力にして芳香の蒸散効率を高めて消臭空間への芳香効果の増大や即効性を向上したり等、目的に応じた消臭装置1の装置設計の幅を広げることができるのである。   FIG. 7 shows another example of the embodiment of the present invention. Since this example is an example in which the heating unit 9 of the fragrance transpiration means 4 is changed as compared with the previous example, in the remaining configuration similar to the previous example, the same reference numerals are given and description is omitted, and only the changed part will be described. . That is, the heating unit 9 of the fragrance transpiration unit 4 of the previous example uses heat generated in the heat radiating unit 12 of the Peltier element 10 used for generation of condensed water in the electrostatic atomization unit 3. The heating unit 9 of the fragrance transpiration unit 4 is composed of a heater 14 that can be energized independently of the electrostatic atomization unit 3. More specifically, the fragrance transpiration unit 4 of the present example is accommodated and disposed in a storage chamber 30 formed in the case 2 so as to face and be adjacent to the air passage 18, and the fragrance transpiration unit 4 and electrostatic atomization. The power supply for the means 3 is different. According to this, the operation of the fragrance evaporating means 4 can be performed independently of the operation of the electrostatic atomizing means 3, such as causing the fragrance to be diffused at the same time as the mist, or only fragrance to be diffused. In addition, the operation mode of the deodorizing apparatus 1 can be diversified. In addition, since the transpiration performance of the fragrance is not limited by the performance of the Peltier element 10, for example, the heater 14 of the heating unit 9 has a high output to increase the fragrance evaporation efficiency, The range of the apparatus design of the deodorizing apparatus 1 according to the objective, such as improving an immediate effect, can be expanded.

本発明の実施の形態の例の消臭装置の概略断面図である。It is a schematic sectional drawing of the deodorizing apparatus of the example of embodiment of this invention. 同上の要部の拡大図である。It is an enlarged view of the principal part same as the above. 同上の消臭装置の前方から見た斜視図である。It is the perspective view seen from the front of a deodorizing apparatus same as the above. 同上の消臭装置を配置したトイレルームの斜視図である。It is a perspective view of the toilet room which has arranged a deodorizing device same as the above. 同上の消臭装置の作動を説明するタイムチャートである。It is a time chart explaining the action | operation of a deodorizing apparatus same as the above. (a)(b)(c)は同上の消臭装置の作動状態を説明する概略断面図である。(A) (b) (c) is a schematic sectional drawing explaining the operating state of a deodorizing apparatus same as the above. 本発明の実施の形態の他例の消臭装置の概略断面図である。It is a schematic sectional drawing of the deodorizing apparatus of the other example of embodiment of this invention.

符号の説明Explanation of symbols

1 消臭装置
2 ケース
3 静電霧化手段
4 芳香剤蒸散手段
5 送風手段
6 霧化用電極
7 対向電極
8 高電圧印加部
9 加熱部
10 ペルチェ素子
11 冷却部
12 放熱部
13 人体検知センサ
14 ヒータ
DESCRIPTION OF SYMBOLS 1 Deodorizing device 2 Case 3 Electrostatic atomization means 4 Fragrance evaporating means 5 Air blowing means 6 Atomization electrode 7 Counter electrode 8 High voltage application part 9 Heating part 10 Peltier element 11 Cooling part 12 Heat radiation part 13 Human body detection sensor 14 heater

Claims (4)

ケース内に、先端部に水が供給される霧化用電極と対向電極との間に高電圧印加部にて高電圧を印加して静電霧化することでナノメータサイズのミストを生成させる静電霧化手段と、芳香剤と芳香剤を加熱するための加熱部とよりなる芳香剤蒸散手段と、上記生成されたミスト及び蒸散された芳香をケース外へ放散可能にする送風手段と、をそれぞれ内装したことを特徴とする消臭装置。   Static electricity that generates nanometer-size mist by applying high voltage at the high-voltage application unit between the atomizing electrode to which water is supplied to the tip and the counter electrode in the case and electrostatic atomization. An air atomizing means, an air freshener evaporating means comprising an air freshener and a heating unit for heating the air freshener, and an air blowing means for allowing the generated mist and the evaporated air to be diffused out of the case. A deodorizing device characterized by the interior. ケース内にペルチェ素子を内装し、静電霧化手段を、ペルチェ素子の冷却部で発生させた結露水を霧化用電極の先端部に供給して静電霧化させてミストを生成させるように構成し、ペルチェ素子の放熱部を芳香剤蒸散手段の加熱部として構成したことを特徴とする請求項1記載の消臭装置。   A Peltier element is housed in the case, and the electrostatic atomizing means supplies the condensed water generated in the cooling part of the Peltier element to the tip of the atomizing electrode so as to cause electrostatic atomization to generate mist. The deodorizing apparatus according to claim 1, wherein the heat dissipation part of the Peltier element is configured as a heating part of the fragrance transpiration unit. ケースに人体検知センサーを設け、消臭装置の作動制御を行う制御部に、人体検知センサーの人体検知時においてペルチェ素子及び送風手段を作動させ且つ静電霧化手段の高電圧印加部を作動させない芳香放散モードを設けると共に、人体検知センサーの人体非検知時においてペルチェ素子、送風手段及び静電霧化手段の高電圧印加部を作動させるミスト放散モードを設けたことを特徴とする請求項2記載の消臭装置。   A human body detection sensor is provided in the case, and the Peltier element and the air blowing means are activated and the high voltage application unit of the electrostatic atomizing means is not activated when the human body is detected by the human body detection sensor. 3. A mist radiating mode is provided, and a mist radiating mode is provided for operating a high voltage application unit of the Peltier element, the air blowing means and the electrostatic atomizing means when the human body detection sensor is not detecting the human body. Deodorization equipment. 芳香剤蒸散手段の加熱部を、静電霧化手段と無関係に通電可能なヒータで構成したことを特徴とする請求項1記載の消臭装置。   2. The deodorizing apparatus according to claim 1, wherein the heating part of the fragrance transpiration unit is constituted by a heater that can be energized irrespective of the electrostatic atomization unit.
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