WO2017173707A1 - 一种低臭氧的取暖及空气净化器组合器具 - Google Patents

一种低臭氧的取暖及空气净化器组合器具 Download PDF

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Publication number
WO2017173707A1
WO2017173707A1 PCT/CN2016/082397 CN2016082397W WO2017173707A1 WO 2017173707 A1 WO2017173707 A1 WO 2017173707A1 CN 2016082397 W CN2016082397 W CN 2016082397W WO 2017173707 A1 WO2017173707 A1 WO 2017173707A1
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Prior art keywords
air
ozone
heating
dust collecting
air purifier
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PCT/CN2016/082397
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English (en)
French (fr)
Inventor
苏祝友
袁新平
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区述培
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Publication of WO2017173707A1 publication Critical patent/WO2017173707A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/34Chemical or biological purification of waste gases
    • B01D53/46Removing components of defined structure
    • B01D53/66Ozone
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/80Self-contained air purifiers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B03SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03CMAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03C3/00Separating dispersed particles from gases or vapour, e.g. air, by electrostatic effect
    • B03C3/02Plant or installations having external electricity supply
    • B03C3/04Plant or installations having external electricity supply dry type
    • 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
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters
    • 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
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters
    • Y02A50/2351Atmospheric particulate matter [PM], e.g. carbon smoke microparticles, smog, aerosol particles, dust

Definitions

  • the utility model relates to the field of air purification, in particular to a low ozone heating and air purifier combination device.
  • the electrostatic dust-removing air purifier is a kind of air purifying and dust-removing equipment which is widely used at present. It is generally composed of ionization device, dust collecting device and power supply. The principle of anodic corona discharge is used to make the dust in the air bring positively. The charge is then trapped by the electric field force to collect the charged particle dust on the dust collecting device to achieve the purpose of dust removal and sterilization, and has the advantages of small wind resistance, low power consumption, high dust removal efficiency and repeated cleaning and recycling of consumables.
  • the dust removal and sterilization effect of the traditional electrostatic air purifier has a great relationship with the voltage and the output current.
  • Ozone is a strong oxidant, which can sterilize, deodorize and decompose some pollutants. However, when it exceeds a certain concentration, it will cause discomfort to the human body and affect human health. Therefore, in order to avoid excessive ozone concentration, the dust removal effect is greatly restricted. .
  • the utility model aims to solve the above-mentioned deficiencies of the prior art, and provides a low-oxygen heating and air purifier combination device with simple structure and reasonable structure, which has simple structure and convenient installation, and solves the dust removal of the electrostatic air purifier. Excessive ozone is easily generated during sterilization or the concentration of ozone is not exceeded to limit the dust removal effect of the air purifier.
  • the utility model relates to a low ozone heating and air purifier combination device, which comprises a casing, an air purifying chamber is arranged in the casing, and an air outlet and an air inlet connecting the air purifying chamber are opened on the shell, and the air purifying chamber is inserted into the air purifying chamber.
  • An electrostatic dust removing device and an ozone decomposing device are sequentially arranged in the direction of the air outlet, and a diversion channel is arranged between the electrostatic dust removing device and the ozone decomposing device, and the ozone concentration is minimized in the case of improving the indoor air purifying effect, thereby Reduce ozone emissions.
  • the electrostatic precipitator comprises a dust collecting bracket, a negative high voltage dust collecting sheet group and a positive high voltage electric line are installed between the dust collecting brackets, wherein one side of the dust collecting bracket is provided with a high voltage power supply box for providing unequal voltages,
  • the electrostatic precipitator saves components and can simplify the structure, reduce the overall volume of the electrostatic air purifier, and use electric ion dust collection to better reduce wind resistance, reduce volume and reduce noise.
  • the electrostatic precipitator comprises a dust collecting bracket, and a negative high voltage dust collecting sheet group, a positive high voltage sheet group and a positive high voltage electric line are installed between the dust collecting brackets, and the negative high voltage dust collecting sheet group and the positive high voltage sheet group are staggered.
  • the stacking is arranged at intervals, and since the negative high-voltage dust collecting sheet group and the positive high-voltage sheet group are alternately arranged up and down, the positive and negative electric field interactions form a vertical relationship with each other.
  • the electric field enhances the adsorption capacity and achieves the effect of rapid dust removal and sterilization.
  • the ozone decomposing device comprises a heating element and a fixing bracket installed at two ends of the heating element.
  • the heating element heats and decomposes the ozone of the air, and uses the principle of heating and decomposing the ozone to heat the ozone to about 300 degrees, so that the ozone generated by the dust is completely eliminated.
  • Decomposition with the advantages of simple structure control, long service life, complete decomposition, safe and reliable use, and low investment and running costs.
  • the heating element is PTC, electric heating wire, electric heating tube, far infrared heating tube, mica heating sheet or ceramic heating sheet. Manufacturers can use heating elements of different materials according to the fluctuation of market price, further reduce the production cost of ozonolysis device and increase industrial profit. .
  • the flow guiding channel comprises a symmetrically mounted air guiding piece, and the air guiding piece forms a guiding channel.
  • One end of the guiding channel is connected with the electrostatic precipitator to form a diversion inlet, and the other end of the diversion channel and the ozone decomposing device
  • the communication constitutes a diversion outlet, and the diversion inlet is larger than the diversion outlet.
  • the housing is provided with an opening chamber corresponding to the position of the electrostatic precipitator, and a cover body adapted to the opening cavity is mounted on the opening cavity.
  • the structure is convenient for the user to open the cover body from the open cavity and the negative high voltage set after the electrostatic precipitator is used for a long time.
  • the dust sheet group is taken out and cleaned to ensure the dust removal effect of the electrostatic dust removing device, and the dust collecting effect is seriously affected.
  • a fan that accelerates the flow of air is installed in the air purifying chamber, and the fan can speed up the flow of the air, so that the air containing dust in the room can be more quickly purified.
  • the ozone decomposing device is often equipped with an ozone catalytic filter in the direction of the gas outlet, and an ozone catalytic filter is installed in front of the gas outlet.
  • an ozone catalytic filter is installed in front of the gas outlet.
  • the ozone which may be overflowed by the heating element can be decomposed for a second time. Decomposition to ensure safe use.
  • the utility model relates to a low ozone heating and air purifier combination device, which has the advantages of simple and reliable structure and convenient assembly and quick assembly.
  • the ozone decomposing device installed in the air purifier can decompose excessive ozone generated during dust removal of the electrostatic dust removing device, and prevent ozone oxygen from being discharged into the room. It can effectively avoid the secondary pollution of ozone to the air, so that the manufacturer can produce the electrostatic dust-removing air evolution device with better purification effect and the ozone quantity is completely safe.
  • the high-efficiency electrostatic dust removal air purifier will generate more ozone. Industry problems.
  • the electrostatic air purifier is added to the fan to provide power for the air flow, so that the air purifier purifies more air in the same volume, and improves the working efficiency of the air purifier.
  • 1 is a schematic cross-sectional view of the utility model.
  • FIG. 2 is a schematic structural view of a first embodiment of the air purifying device of the present invention.
  • FIG 3 is a schematic structural view of a second embodiment of the air purifying device of the present invention.
  • FIG. 4 is a cross-sectional view showing a second embodiment of the air purifying device of the present invention.
  • Figure 5 is a schematic view showing the structure of the ozone decomposing device of the present invention.
  • Figure 6 is a schematic cross-sectional view of the utility model.
  • Figure 7 is a schematic view of the structure of the housing of the present invention.
  • Figure 8 is a schematic view of a first embodiment of the fan of the present invention.
  • Figure 9 is a schematic view of a second embodiment of the fan of the present invention.
  • Figure 10 is a schematic view of a third embodiment of the fan of the present invention.
  • a low ozone heating and air purifier combination device includes a casing 1 , and an air purifying chamber 2 is disposed in the casing 1 , and an air outlet 101 connecting the air purifying chamber 2 is opened on the casing 1 .
  • An electrostatic precipitator 3 and an ozone decomposing device 4 are sequentially installed in the air purifying chamber 2 from the air inlet 102 to the air outlet 101 in the air purifying chamber 2, and a guide is disposed between the electrostatic precipitating device 3 and the ozone decomposing device 4.
  • the flow channel 5 in the case of improving the indoor air purification effect, enables the ozone to be decomposed in the machine to reduce the ozone emission concentration, thereby reducing ozone emission.
  • the first embodiment of the electrostatic precipitator 3 is as shown in FIG. 2, including two dust collecting brackets 301, and a negative high voltage dust collecting sheet set 302 and a positive high voltage electric offline line 303 are installed between the two dust collecting brackets 301, one of which is set.
  • One side of the dust rack 301 is provided with a high-voltage power supply box 304 that provides unequal voltages, and the electrostatic precipitator 3 saves components, which can simplify the structure, reduce the overall volume of the electrostatic air purifier, and use electric ions. Dust collection reduces wind resistance, reduces volume and reduces noise.
  • the second embodiment of the electrostatic precipitator 3 is as shown in FIG. 3 to FIG. 4, including two dust collecting brackets 3a, and a negative electrode high pressure dust collecting sheet group 3b, a positive electrode high voltage sheet group 3c, and a positive electrode are disposed between the two dust collecting brackets 3a.
  • the negative electrode high-pressure dust collecting sheet group 3b and the positive electrode high-pressure sheet group 3c are arranged at a staggered stacking interval, and the negative electrode high-pressure dust collecting sheet group 3b and the positive electrode high-pressure sheet group 3c are arranged at a staggered stacking interval.
  • the negative electrode high-pressure dust collecting sheet group 3b and the positive electrode high-pressure sheet group 3c are arranged in a staggered manner, the positive and negative electric fields interact to form a vertical electric field with each other, thereby enhancing the adsorption capacity and achieving the effect of rapid dust removal and sterilization.
  • the ozone decomposing device 4 includes a heating element 401 and is mounted on the heating element 401
  • the heating element 401 is a PTC, a heating wire, an electric heating tube, a far-infrared heating tube, a mica heating sheet or a ceramic heating sheet. Manufacturers can use heating elements of different materials according to fluctuations in market prices, further reducing the production cost of the ozonolysis device and improving the industry. profit.
  • the air guiding channel 5 includes two air guiding fins 501 which are symmetrically mounted.
  • the two air guiding fins 501 form a guiding channel 5, and one end of the guiding channel 5 communicates with the electrostatic precipitator 3 to form a diversion inlet 502.
  • the other end of the flow channel 5 communicates with the ozone decomposing device 4 to form a flow guiding outlet 503.
  • the flow guiding inlet 502 is larger than the flow guiding outlet 503.
  • the air enters the electrostatic precipitator 3 from the air inlet 102 at the bottom of the casing 1.
  • the dust and pollutants in the air are ionized when passing through the high-voltage DC electric field generated by the positive high-voltage electric line 303, changing the moving direction. Then, it is trapped and adsorbed by the negative electrode high-pressure dust collecting sheet group 302, thereby achieving the function of dust sterilization. Due to the high-voltage electric field of the electrostatic precipitator 3, ozone harmful to the human body is generated during adsorption purification.
  • the ozone-containing air is diverted into the ozone decomposing device 4 through the air guiding channel 5, and the heating element 401 in the ozone decomposing device 4 generates a high temperature environment of up to 300 degrees or more, so that the ozone can be rapidly decomposed into oxygen and passed through the static electricity.
  • the air of the dedusting device 3 and the ozone decomposing device 4 for removing ozone is released from the purifier through the air outlet 101 to circulate the air and comprehensively purify the environment.
  • the housing 1 is provided with an opening 103 corresponding to the position of the electrostatic precipitator 3, and the opening 103 is mounted with a cover 104 adapted to the opening 103.
  • the structure is convenient for the user to open the cover after the electrostatic precipitator 3 uses the accumulated dust for a long time.
  • the body 104 takes out the negative electrode high-pressure dust collecting sheet group 302 from the opening chamber 103, and ensures the dust removing effect of the electrostatic dust removing device, thereby preventing the dust collecting effect from seriously affecting the dust collecting effect.
  • a fan 6 for accelerating the flow of air is installed in the air purifying chamber 2, and the first embodiment of the fan is installed.
  • the air outlet 101 of the air purifying chamber 2 is opened above the side of the casing 1, and the air inlet 102 is opened.
  • an electrostatic precipitator 3, an ozone decomposing device 4, and a fan 6 are attached in order from the air inlet 102 to the air outlet 101, and the fan 6 is installed between the ozone decomposing device 4 and the air outlet 101.
  • the second embodiment of the installation fan is shown in FIG. 9.
  • the air outlet 101 of the air cleaning chamber 2 is opened below the side of the casing 1, and the air inlet 102 is opened at the top of the casing 1, and the air inlet 102 is connected to the air outlet.
  • Static electricity is installed in the direction of 101
  • the third embodiment of the installation fan is shown in FIG. 10: the air inlet 102 of the air cleaning chamber 2 is opened below the side of the casing 1, and the air outlet 101 is opened at the top of the casing 1, and the air inlet 101 is connected to the air outlet 101.
  • the fan 6, the electrostatic precipitator 3 and the ozone decomposing device 4 are sequentially installed in the direction, and the fan 6 of the third embodiment is installed between the electrostatic precipitator 3 and the air inlet 102.
  • the fan 6 can speed up the flow of air and make the air containing dust indoors more quickly purified.
  • the ozone decomposing device 4 is often provided with an ozone catalytic filter 7 in the direction of the gas outlet 101, and an ozone catalytic filter 7 is installed in front of the gas outlet 101.
  • the ozone which may be overflowed by the heating element 401 undergoes a second decomposition to increase the degree of decomposition and ensure safe use.

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  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
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  • General Engineering & Computer Science (AREA)
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Abstract

一种低臭氧的取暖及空气净化器组合器具,包括:壳体(1),壳体(1)内设有空气净化腔(2),壳体(1)上开设有连通空气净化腔(2)的出气口(101)与进气口(102),空气净化腔(2)内由进气口(102)往出气口(101)方向依次安装有静电除尘装置(3)和臭氧分解装置(4),静电除尘装置(3)和臭氧分解装置(4)之间设有导流通道(5)。上述结构在提升空气净化效果的情况下,可减少臭氧的排放。

Description

一种低臭氧的取暖及空气净化器组合器具 技术领域
本实用新型涉及空气净化领域,尤其是一种低臭氧的取暖及空气净化器组合器具。
背景技术
静电式除尘空气净化器,是目前应用较为广泛的一种空气净化除尘设备,一般由离子化装置、集尘装置和电源等部件构成,利用阳极电晕放电原理,使空气中的粉尘带上正电荷,然后借助电场力作用,将带电粒子粉尘捕集在集尘装置上,达到除尘杀菌净化空气的目的,具有风阻小、耗电量低、除尘效率高及耗材可反复清洗循环使用等优点。
传统的静电式空气净化器的除尘杀菌效果,与电压以及工作电流输出具有很大的关系,电压及电流越大,除尘效果越好,而因为其静电装置在工作的同时会产生臭氧,电压电流越大,臭氧浓度越大。臭氧是一种强氧化剂,它可以杀菌、除臭、分解一些污染物,但超过一定浓度时,会造成人体不适,影响人体健康,因此,为避免臭氧浓度超标,使除尘效果受到很大的限制。
实用新型内容
本实用新型的目的在于解决上述现有技术的不足,而提供一种结构简单、合理的一种低臭氧的取暖及空气净化器组合器具,结构简单,安装方便,解决静电式空气净化器在除尘杀菌时容易产生过量臭氧或避免臭氧浓度超标限制空气净化器的除尘效果问题。
本实用新型解决其技术问题所采用的技术方案是:
一种低臭氧的取暖及空气净化器组合器具,包括壳体,壳体内设有空气净化腔,壳体上开设有连通空气净化腔的出气口与进气口,所述空气净化腔内由进气口往出气口方向依次安装有静电除尘装置和臭氧分解装置,静电除尘装置与臭氧分解装置之间设有导流通道,在提升室内空气净化效果的情况下,尽量降低臭氧的产生浓度,从而减少臭氧的排放。
所述静电除尘装置包括集尘支架,集尘支架之间安装有负极高压集尘片组以及正极高压电离线,其中一集尘支架的一侧安装有提供不等电压的高压电源盒,采用静电除尘装置节省了部件,能够起到简化结构的目的,使静电空气净化器的整体体积减小,且采用电离子集尘更好地降低风阻、减小体积和降低噪音。
所述静电除尘装置包括集尘支架,集尘支架之间安装有负极高压集尘片组、正极高压片组以及正极高压电离线,所述负极高压集尘片组和正极高压片组呈交错堆叠间隔排布,由于负极高压集尘片组和正极高压片组呈上下交错排列,正负电场相互作用彼此间形成垂直 电场,增强了吸附能力,达到快速除尘杀菌的效果。
所述臭氧分解装置包括加热元件和安装在加热元件两端部的固定支架,加热元件将空气的臭氧加热分解,利用臭氧加热分解的原理,将臭氧加热至300度左右,使除尘产生的臭氧完全分解,具有结构控制简单、使用寿命长,分解完全、使用安全可靠以及投资、运行成本低等优点。
加热元件为PTC、电热丝、电热管、远红外发热管、云母发热片或陶瓷发热片,厂商能根据市场价格的波动采用不同材质的加热元件,进一步降低臭氧分解装置的生产成本,提高工业利润。
所述导流通道包括对称安装的空气导流片,空气导流片之间构成导流通道,导流通道的一端与静电除尘装置连通构成导流入口,导流通道的另一端与臭氧分解装置连通构成导流出口,导流入口大于导流出口,经过静电除尘装置除尘的空气和臭氧经过导流通道流向臭氧分解装置时,由于导流出口的出口面积收窄,使受压空气在经过臭氧分解装置提高流动的速度,在经过臭氧分解装置时,加热元件对空气进一步加热,空气受热向上流动从而推动空气循环流动。
所述壳体对应静电除尘装置位置开设有开腔,开腔上安装有与开腔适配的盖体,该结构便于使用者在静电除尘装置长时间使用积聚尘埃后,打开盖体从开腔将负极高压集尘片组取出清洗,确保静电除尘装置的除尘效果,避免集尘严重影响集尘效果。
所述空气净化腔内安装有加快空气流动的风机,风机能够加快空气的流动速度,使室内含有尘埃的空气得到更加快速的净化。
所述臭氧分解装置往往出气口方向安装有臭氧催化过滤网,在出气口前安装臭氧催化过滤网,为了使臭氧的分解更加充分,能够将经过加热元件可能溢出的臭氧进行第二次分解,提高分解程度,确保安全使用。
本实用新型的有益效果是:
本实用新型的一种低臭氧的取暖及空气净化器组合器具,结构简单可靠,装配方便快捷,空气净化器安装臭氧分解装置能分解静电除尘装置除尘时产生的过量臭氧,避免臭氧氧排出到室内,可有效避免出现臭氧对空气的二次污染,使厂家能够生产净化效果更好,臭氧量完全符合安全的静电除尘式空气进化器,解决高效的静电除尘空气净化器会产生更多的臭氧的行业难题。
在有效抑制臭氧排出室内的情况下,在静电式空气净化器加入风机为空气流动提供动力,使空气净化器在同等体积下净化更多空气,提高空气净化器的工作效率。
附图说明
图1是本实用新型的剖面结构示意图。
图2是本实用新型的空气净化装置第一实施例结构示意图。
图3是本实用新型的空气净化装置第二实施例结构示意图。
图4是本实用新型的空气净化装置第二实施例剖面示意图。
图5是本实用新型的臭氧分解装置结构示意图。
图6是本实用新型的剖面结构示意图。
图7是本实用新型的壳体结构示意图。
图8是本实用新型的风机第一实施例示意图。
图9是本实用新型的风机第二实施例示意图。
图10是本实用新型的风机第三实施例示意图。
具体实施方式
下面结合附图和实施例对本实用新型进一步说明:
如图1所示,一种低臭氧的取暖及空气净化器组合器具,包括壳体1,壳体1内设有空气净化腔2,壳体1上开设有连通空气净化腔2的出气口101与进气口102,所述空气净化腔2内由进气口102往出气口101方向依次安装有静电除尘装置3和臭氧分解装置4,静电除尘装置3与臭氧分解装置4之间设有导流通道5,在提升室内空气净化效果的情况下,使臭氧可以再机内实现分解,降低臭氧的排放浓度,从而减少臭氧的排放。
所述静电除尘装置3的第一实施例如图2所示:包括两集尘支架301,两集尘支架301之间安装有负极高压集尘片组302以及正极高压电离线303,其中一集尘支架301的一侧安装有提供不等电压的高压电源盒304,采用静电除尘装置3节省了部件,能够起到简化结构的目的,使静电空气净化器的整体体积减小,且采用电离子集尘更好地降低风阻、减小体积和降低噪音。
所述静电除尘装置3的第二实施例如图3至图4所示:包括两集尘支架3a,两集尘支架3a之间安装有负极高压集尘片组3b、正极高压片组3c以及正极高压电离线3d,所述负极高压集尘片组3b和正极高压片组3c呈交错堆叠间隔排布,所述负极高压集尘片组3b和正极高压片组3c呈交错堆叠间隔排布,由于负极高压集尘片组3b和正极高压片组3c呈上下交错排列,正负电场相互作用彼此间形成垂直电场,增强了吸附能力,达到快速除尘杀菌的效果。
如图5至图7所示:所述臭氧分解装置4包括加热元件401和安装在加热元件401 两端部的固定支架402,加热元件401将空气的臭氧加热分解,利用臭氧加热分解的原理,将臭氧加热至300度左右,使除尘产生的臭氧完全分解,具有结构控制简单、使用寿命长,分解完全、使用安全可靠以及投资、运行成本低等优点。
加热元件401为PTC、电热丝、电热管、远红外发热管、云母发热片或陶瓷发热片,厂商能根据市场价格的波动采用不同材质的加热元件,进一步降低臭氧分解装置的生产成本,提高工业利润。
所述导流通道5包括对称安装的两空气导流片501,两空气导流片501之间构成导流通道5,导流通道5的一端与静电除尘装置3连通构成导流入口502,导流通道5的另一端与臭氧分解装置4连通构成导流出口503,导流入口502大于导流出口503,经过静电除尘装置3除尘的空气和臭氧经过导流通道5流向臭氧分解装置4时,由于导流出口503的出口面积收窄,使受压空气在经过臭氧分解装置4提高流动的速度,在经过臭氧分解装置4时,加热元件401对空气进一步加热,空气受热向上流动从而推动空气循环流动。
产品通电工作,空气由壳体1底部进风口102进入静电除尘装置3,此时空气中的飘尘、污染物,在通过正极高压电离线303产生的高压直流电场时会被电离,改变运动方向而后被负极高压集尘片组302捕杀吸附,进而达到除尘灭菌的作用,由于静电除尘装置3高压电场的原因,在吸附净化时产生对人体有害的臭氧。
净化后含有臭氧的空气经导流风道5导流进入臭氧分解装置4,由于臭氧分解装置4中加热元件401产生高达300度以上的高温环境,可使臭氧迅速的分解转化成氧气,经过静电除尘装置3净化和臭氧分解装置4除臭氧后的空气,通过出风口101释放出净化器外,使空气循环流动,对环境进行全面的净化。
所述壳体1对应静电除尘装置3位置开设有开腔103,开腔103上安装有与开腔103适配的盖体104,该结构便于使用者在静电除尘装置3长时间使用积聚尘埃后,打开盖体104从开腔103将负极高压集尘片组302取出清洗,确保静电除尘装置的除尘效果,避免集尘严重影响集尘效果。
所述空气净化腔2内安装有加快空气流动的风机6,加装风机第一实施例如图8所示:空气净化腔2的出气口101开设在壳体1侧面的上方,进气口102开设在壳体1的底部,由进气口102往出气口101方向依次安装有静电除尘装置3,臭氧分解装置4和风机6,风机6安装在臭氧分解装置4与出气口101之间。
加装风机第二实施例如图9所示:空气净化腔2的出气口101开设在壳体1侧面的下方,进气口102开设在壳体1的顶部,,由进气口102往出气口101方向依次安装有静电 除尘装置3,臭氧分解装置4和风机6,同样地风机6安装在臭氧分解装置4与出气口101之间。
加装风机第三实施例如图10所示:空气净化腔2的进气口102开设在壳体1侧面的下方,出气口101开设在壳体1的顶部,由进气口102往出气口101方向依次安装有风机6,静电除尘装置3和臭氧分解装置4,第三实施例风机6安装在静电除尘装置3和进风口102之间。
风机6能够加快空气的流动速度,使室内含有尘埃的空气得到更加快速的净化。
如图8至图10所示:为了使臭氧的分解更加充分,所述臭氧分解装置4往往出气口101方向安装有臭氧催化过滤网7,在出气口101前安装臭氧催化过滤网7,能够将经过加热元件401可能溢出的臭氧进行第二分解,提高分解程度,确保安全使用。
以上所述的具体实施例,仅为本实用新型较佳的实施例而已,举凡依本实用新型申请专利范围所做的等同设计,均应为本实用新型的技术所涵盖。

Claims (9)

  1. 一种低臭氧的取暖及空气净化器组合器具,包括壳体(1),壳体(1)内设有空气净化腔(2),壳体(1)上开设有连通空气净化腔(2)的出气口(101)与进气口(102),其特征在于:所述空气净化腔(2)内由进气口(102)往出气口(101)方向依次安装有静电除尘装置(3)和臭氧分解装置(4),静电除尘装置(3)与臭氧分解装置(4)之间设有导流通道(5)。
  2. 根据权利要求1所述一种低臭氧的取暖及空气净化器组合器具,其特征在于:所述静电除尘装置(3)包括集尘支架(301),集尘支架(301)之间安装有负极高压集尘片组(302)以及正极高压电离线(303),其中一集尘支架(301)的一侧安装有提供不等电压的高压电源盒(304)。
  3. 根据权利要求1所述一种低臭氧的取暖及空气净化器组合器具,其特征在于:所述静电除尘装置(3)包括集尘支架(3a),集尘支架(3a)之间安装有负极高压集尘片组(3b)、正极高压片组(3c)以及正极高压电离线(3d),所述负极高压集尘片组(3b)和正极高压片组(3c)呈交错堆叠间隔排布。
  4. 根据权利要求1所述一种低臭氧的取暖及空气净化器组合器具,其特征在于:所述臭氧分解装置(4)包括加热元件(401)和安装在加热元件(401)两端部的固定支架(402),加热元件(401)将空气的臭氧加热分解。
  5. 根据权利要求4所述一种低臭氧的取暖及空气净化器组合器具,其特征在于:加热元件(401)为PTC、电热丝、电热管、远红外发热管、云母发热片或陶瓷发热片。
  6. 根据权利要求1所述一种低臭氧的取暖及空气净化器组合器具,其特征在于:所述导流通道(5)包括空气导流片(501),空气导流片(501)之间构成导流通道(5),导流通道(5)的一端与静电除尘装置(3)连通构成导流入口(502),导流通道(5)的另一端与臭氧分解装置(4)连通构成导流出口(503),导流入口(502)大于导流出口(503)。
  7. 根据权利要求1所述一种低臭氧的取暖及空气净化器组合器具,其特征在于:所述壳体(1)对应静电除尘装置(3)位置开设有开腔(103),开腔(103)上安装有与开腔(103)适配的盖体(104)。
  8. 根据权利要求1所述一种低臭氧的取暖及空气净化器组合器具,其特征在于:所述空气净化腔(2)内安装有加快空气流动的风机(6)。
  9. 根据权利要求1所述一种低臭氧的取暖及空气净化器组合器具,其特征在于:所述臭氧分解装置(4)往出气口(101)方向安装有臭氧催化过滤网(7)。
PCT/CN2016/082397 2016-04-07 2016-05-17 一种低臭氧的取暖及空气净化器组合器具 WO2017173707A1 (zh)

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