CN204648484U - 一种智能净化杀菌空气处理装置 - Google Patents
一种智能净化杀菌空气处理装置 Download PDFInfo
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- CN204648484U CN204648484U CN201520323141.7U CN201520323141U CN204648484U CN 204648484 U CN204648484 U CN 204648484U CN 201520323141 U CN201520323141 U CN 201520323141U CN 204648484 U CN204648484 U CN 204648484U
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- 230000001954 sterilising Effects 0.000 title claims abstract description 33
- 150000001450 anions Chemical class 0.000 claims abstract description 18
- 239000005433 ionosphere Substances 0.000 claims abstract description 18
- 210000002356 Skeleton Anatomy 0.000 claims abstract description 11
- 239000003054 catalyst Substances 0.000 claims abstract description 8
- 230000000875 corresponding Effects 0.000 claims description 4
- 238000004659 sterilization and disinfection Methods 0.000 abstract description 12
- 238000000746 purification Methods 0.000 abstract description 9
- 238000005265 energy consumption Methods 0.000 abstract description 4
- 239000000428 dust Substances 0.000 description 8
- 238000004140 cleaning Methods 0.000 description 7
- 230000000694 effects Effects 0.000 description 7
- 238000001914 filtration Methods 0.000 description 6
- 238000004378 air conditioning Methods 0.000 description 5
- CBENFWSGALASAD-UHFFFAOYSA-N ozone Chemical compound 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- OKTJSMMVPCPJKN-UHFFFAOYSA-N carbon Chemical compound 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O=[Si]=O VYPSYNLAJGMNEJ-UHFFFAOYSA-N 0.000 description 1
- 230000031068 symbiosis, encompassing mutualism through parasitism Effects 0.000 description 1
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Classifications
-
- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B30/00—Energy efficient heating, ventilation or air conditioning [HVAC]
- Y02B30/70—Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating
Abstract
本实用新型公开了一种智能净化杀菌空气处理装置,特点是骨架体上设有净化装置支承架和主控装置保护区;骨架体进风端面设有百叶进风装置;设置在净化装置支承架上的净化装置由初效过滤器、负离子电离圈通道装置板、电离正电子集尘板、冷触媒杀菌过滤网板构成;主控装置保护区设有主控装置,以及分别与主控装置线路连接的空气品质监控传感器、热敏风流传感器、轻触保护开关及正负高压发生装置;正负高压发生装置分别与电离正电子集尘板、负离子电离圈通道装置板线路连接;正负高压发生装置与电源连接的线路上设有限位开关与热敏风流传感器线路连接;空气品质监控传感器内置无线通讯系统与接收终端连接。本装置根据需要自动对室内空气进行高效净化杀菌处理,运行能耗低,易于操作和维护,安全环保。
Description
技术领域
[0001] 本实用新型属于一种空气净化装置,具体涉及一种能耗低、效率高的智能空气净化杀菌处理装置。
背景技术
[0002]目前,随着工业的快速发展,而造成的空气环境越来越恶化,雾霾肆虐,严重威胁着人们的生活和健康。特别是医院病房等风险环境隐患较大的地方,空气污浊病菌交叉感染,严重影响病人的康复及身心健康。
[0003] 传统的医院病房消毒系统,主要是由紫外线杀菌灯组成,由紫外线灯管对病房进行照射杀菌,在杀菌消毒的过程中紫外线灯释放浓度很大臭氧利用臭氧分解和杀灭病房空气中的病毒。但在杀菌消毒时病人需要离开病房,过量的臭氧对人体有一定损害。只有消毒完成后,病房重新通风,臭氧浓度降到安全范围内时,病人方可进入病房。但开窗通风时,外面没有消毒的空气会带着病菌和粉尘再次进入病房,故此种方式对病房的实际杀菌消毒的效果非常有限,并且对病房内粉尘浓度没有有效解决。
[0004]目前对于普通病房的空气净化还采用家用空气净化器配合紫外线杀菌的方式,从一定意义上讲对病房的空气净化和杀菌能起到一定的效果,但也存在着不少技术缺陷:
[0005] 1、在病房杀菌消毒时紫外灯释放出大量臭氧是可以杀死细菌,但对人体也有害处,所以在病房消毒时需要病人尚开病房。
[0006] 2、紫外线消毒完的房间,需要通风换气后病人才能进入使用,这样会造成污染的空气会再次重新进入病房,消毒净化的实际效果大打折扣,并增加交叉感染的可能。
[0007] 3、过滤净化:传统的净化机系统,只是放置室内做内部空气净化循环,需要有单独的占用空间。
[0008] 4.过滤耗材:传统的物理过滤式空气净化机大多使用HAPA过滤网过滤粉尘,需要定期更换过滤耗材,使用成本高。
[0009] 5、净化过滤效率:使用HAPA物理过滤器,其净化过滤效率相对较低,一般净化器的过滤级别只能做到中效或亚高效的过滤,只能对PM2.5以上的颗粒进行部分拦截,对ΡΜ0.3可直接融入血液的细微颗粒物则无法过滤。
[0010] 6、使用成本:传统的医院病房杀菌和单独配置小型的净化的病房杀菌净化处理系统,每次需要专门人员定时管理,需要单独开启和运行机器,能量消耗较高,需要定期频繁更换耗品,使用成本高。
[0011] 综上所述,现有的病房消毒和净化装置,虽然使用功能上做了控制,但仍然存在着一定的缺陷,如不能解决人机共存,不能有效控制交叉污染,使用能耗和使用成本偏高的问题等。
实用新型内容
[0012] 本实用新型的目的就是提供一种设在空调回风进口处的智能控制空气净化装置,根据需要自动对室内空气进行高效净化、杀菌处理,运行能耗低,易于操作和维护,安全环保。
[0013] 本实用新型解决技术问题所采用的技术方案是:
[0014] 一种智能净化杀菌空气处理装置,包括骨架体,骨架体上设有净化装置支承架和主控装置保护区;骨架体进风端面设有百叶进风装置;净化装置支承架上设有相对应净化装置的固定槽和插拔口,净化装置与百叶进风装置平行设置在固定槽内,净化装置由与百叶进风装置由近及远依次间接排列的初效过滤器、负离子电离圈通道装置板、电离正电子集尘板、冷触媒杀菌过滤网板构成;
[0015] 所述主控装置保护区设有主控装置,以及分别与主控装置线路连接的空气品质监控传感器、热敏风流传感器、轻触保护开关、正负高压发生装置;正负高压发生装置与电离正电子集尘板、负离子电离圈通道装置板分别线路连接;正负高压发生装置与电源连接的线路上设有轻触保护开关及限位开关;热敏风流传感器与限位开关线路连接;空气品质监控传感器内置无线通讯系统与接收终端连接。
[0016] 本装置的有益效果是:本装置设置在空调回风进口处,当热敏风流传感器探测到有风流通过该装置或通过该装置的风有温度变化时,主控装置启动正负高压发生装置,使电离正电子集尘板、负离子电离圈通道装置板处于工作状态;此时,空调回风经过百叶进风装置先经初效过滤器有效阻止直径较大的灰尘颗粒,再经过负离子电离圈通道装置板,使得经过该处的空气中的细微粉尘带有负电子,再经过电离正电子集尘板,正负相互吸引达到高效捕获粉尘颗粒及杀灭病毒的目的,最后经过冷触媒杀菌过滤网板进一步杀菌后得到洁净的空气,进入风机盘管送入室内;当通过该装置的气流停止流动时,正负高压发生装置切断工作电源,停止工作。依次循环重复工作。
[0017] 本装置负离子电离圈通道装置板以改以往的碳刷直接放电式和探针式放电。负离子电离圈通道式电离放电,能更精准地对经过该通道中粉尘及细菌进行负电电离,使得电离区域更大,电离效果更充分。
[0018] 空气品质监控传感器内置无线通讯系统与接收终端连接,通过软件设置可以监测监控病房的温度、湿度、PM2.5浓度、二氧化碳浓度、有机物挥发浓度等,空气品质监控传感器将探测到空气中设定物质的含量数值传送至管理者的手机或其他接收终端,便于管理者时刻监测病房的空气环境状态。
[0019] 正负高压发生装置与电源连接的线路上设有轻触保护开关,在进行维护时可以确保断电安全操作。
[0020] 净化装置支承架上设有相对应净化装置的固定槽和插拔口,当构成净化装置的初效过滤器、负离子电离圈通道装置板、电离正电子集尘板、冷触媒杀菌过滤网板之中的某一部件需要清洗维护或更换时,只需从插拔口处将其从固定槽中拔或插入即可,维护操作简单方便。
[0021] 本实用新型能在不改变病房装修格局的前提下,同时实现病房高效净化过滤、在线杀菌等功能;净化装置可反复清洗多次循环使用,使用能耗低。智能化的监测传感器的联合使用,既能实现控制功能模块的高度集成、降低综合能耗,实现智能化控制,并且只需一台设备就能解决目前需要多台设备才能完成的功能。
附图说明
[0022] 下面结合附图和实例对本实用新型作进一步说明。
[0023] 图1为本实用新型结构示意图;
[0024] 附图标记说明:净化装置支承架;11:初效过滤网;12:负离子电离圈通道装置板;13:电离正电子集尘板;14:冷触媒杀菌过滤网板;2:主控装置保护区;21:空气品质监控传感器;22:热敏风流传感器;23:轻触保护开关;24:正负高压发生装置;3:百叶进风
目.ο
[0025] 具体实施方式:
[0026] 如图1所示,
[0027] 一种智能净化杀菌空气处理装置,包括骨架体,骨架体上设有净化装置支承架I和主控装置保护区2 ;骨架体进风端面设有百叶进风装置3 ;净化装置支承架I上设有相对应净化装置的固定槽和插拔口,净化装置与百叶进风装置3平行设置在固定槽内,净化装置由与百叶进风装置3由近及远依次间接排列的初效过滤器11、负离子电离圈通道装置板12、电离正电子集尘板13、冷触媒杀菌过滤网板14构成,当净化装置的某一部件需要清洗维护或更换时,只需从插拔口处将其从固定槽中拔或插入即可,维护操作简单方便;负离子电离圈通道装置板12以改以往的碳刷直接放电式和探针式放电,负离子电离圈通道式电离放电,能更精准地对经过该通道中粉尘及细菌进行负电电离,使得电离区域更大,电离效果更充分;
[0028] 所述主控装置保护区设有主控装置,以及分别与主控装置线路连接的空气品质监控传感器21、热敏风流传感器22、轻触保护开关23及正负高压发生装置24 ;正负高压发生装置24分别与电离正电子集尘板13、负离子电离圈通道装置板12线路连接;正负高压发生装置24与电源连接的线路上设有轻触保护开关23及限位开关;轻触保护开关23设置在正负高压发生装置24与电源连接的线路上,在进行设备维护时,通过轻触保护开关23切断供电可以确保断电安全操作;热敏风流传感器21与主控装置限位开关线路连接,将探测到的温度数值传送至主控装置后,由主控装置CPU计算判定是否具有开启该装置的条件,当经过该装置的空气有强制流动的情况下,该装置自动开启;
[0029] 空气品质监控传感器21内置无线通讯系统与接收终端连接。空气品质监控传感器21内置无线通讯系统与接收终端连接,通过软件设置可以监测监控病房的温度、湿度、PM2.5浓度、二氧化碳浓度、有机物挥发浓度等,空气品质监控传感器21将探测到空气中设定物质的含量数值传送至管理者的手机或其他接收终端,便于管理者时刻监测病房的空气环境状态。
[0030] 在装置在使用时,设置在空调回风进口处,当热敏风流传感器22探测到有风流通过该装置或通过该装置的风有细微的温度变化时,主控装置启动正负高压发生装置,使电离正电子集尘板、负离子电离圈通道装置板处于工作状态;此时,空调回风经过百叶进风装置先经初效过滤器有效阻止PMlO以上细微颗粒,再经过负离子电离圈通道装置板,使得经过该处的空气中的细微粉尘带有负电子,再经过电离正电子集尘板,正负相互吸引达到高效捕获粉尘颗粒及杀灭病毒的目的,最后经过冷触媒杀菌过滤网板进一步杀菌后得到洁净的空气,进入风机盘管送入室内;当通过该装置的气流停止流动时,正负高压发生装置的工作电源切断,停止工作。依次循环重复工作。
Claims (3)
1.一种智能净化杀菌空气处理装置,其特征是:包括骨架体,骨架体上设有净化装置支承架和主控装置保护区;骨架体进风端面设有百叶进风装置;净化装置支承架上设有相对应净化装置的固定槽和插拔口,净化装置与百叶进风装置平行设置在固定槽内,净化装置由与百叶进风装置由近及远依次间接排列的初效过滤器、负离子电离圈通道装置板、电离正电子集尘板、冷触媒杀菌过滤网板构成; 所述主控装置保护区设有主控装置,以及分别与主控装置线路连接的空气品质监控传感器、热敏风流传感器、轻触保护开关、正负高压发生装置;正负高压发生装置与电离正电子集尘板、负离子电离圈通道装置板分别线路连接;正负高压发生装置与电源连接的线路上设有限位开关与热敏风流传感器线路连接。
2.根据权利要求1所述的一种智能净化杀菌空气处理装置,其特征是:所述的轻触保护开关设置在正负高压发生装置与电源连接的线路上。
3.根据权利要求1所述的一种智能净化杀菌空气处理装置,其特征是:所述的空气品质监控传感器内置无线通讯系统与接收终端连接。
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CN106705289A (zh) * | 2017-01-17 | 2017-05-24 | 北京世纪佰特节能技术有限公司 | 一种可去除室内pm2.5和甲醛的空调净化系统 |
CN109028378A (zh) * | 2018-07-17 | 2018-12-18 | 广东美的制冷设备有限公司 | 空气净化装置及空调器 |
CN109028383A (zh) * | 2018-07-17 | 2018-12-18 | 广东美的制冷设备有限公司 | 高压包组件及空气处理装置 |
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CN106705289A (zh) * | 2017-01-17 | 2017-05-24 | 北京世纪佰特节能技术有限公司 | 一种可去除室内pm2.5和甲醛的空调净化系统 |
CN109028378A (zh) * | 2018-07-17 | 2018-12-18 | 广东美的制冷设备有限公司 | 空气净化装置及空调器 |
CN109028383A (zh) * | 2018-07-17 | 2018-12-18 | 广东美的制冷设备有限公司 | 高压包组件及空气处理装置 |
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