CN108317646B - 基于空气源热泵的空气净化装置 - Google Patents
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Abstract
本发明提供基于空气源热泵的空气净化装置,包括热泵系统、第一风道、第二风道和第三风道,第二风道与第三风道的进口均与第一风道的出口连通,热泵系统包括室内换热器,室内换热器设于第一风道中,第一风道的进口与室内换热器间设有粗效过滤器、静电除尘器、活性炭吸附器和氧化锌过滤层,第二风道设有通向室内的出气口,第三风道上设有与外界连通的进气口,第二风道中设有第一离心风机,第一离心风机的抽气口朝向第二风道的进口,第三风道中设有第二离心风机,第二离心风机的抽气口朝向第三风道上的进气口。本发明的有益效果是集调节温度、空气净化和活性炭吸附剂原位再生的多功能于一体,空气处理性能更佳,使室内环境舒适度更高。
Description
技术领域
本发明涉及空气净化设备领域,尤其是涉及基于空气源热泵的空气净化装置。
背景技术
随着外界环境污染情况的加重与人们对生活环境的关注,室内空气质量逐渐引起了公众的广泛关注。为了改善室内空气质量,市场上有各种各样的空气净化装置出现,小型的空气净化器只能净化局部空间的空气,且不能改善空气的温度。因此有人发明了用于整个室内的带有空气源热泵的空气净化装置,净化空气范围广,且得到清洁空气的过程中,空气源热泵也对清洁空气的温度进行了调节,夏天制冷、冬天制热,大大提高了人们室内环境的舒适度。
这种空气净化装置中常用到活性炭对空气中的污染物质进行吸附,但是活性炭具有饱和吸附容量,使用一段时间后,活性炭会吸附饱和,不再具备吸附能力,甚至开始脱附有害成分,对室内环境造成一定程度的危害。而该大型的空气净化装置更换活性炭不方便,且更换费用高。
发明内容
本发明要解决的问题是提供基于空气源热泵的空气净化装置,可以不用经常更换净化装置中的活性炭,其可在净化装置中原位脱附,实现活性炭的再生,重复利用。
为解决上述技术问题,本发明采用的技术方案是:基于空气源热泵的空气净化装置,包括热泵系统、第一风道、第二风道和第三风道,第二风道与第三风道的进口均与第一风道的出口连通,热泵系统包括室内换热器,室内换热器设于第一风道中,第一风道的进口与室内换热器间设有粗效过滤器、静电除尘器、活性炭吸附器和氧化锌过滤层,第二风道设有通向室内的出气口,第三风道上设有与外界连通的进气口,第二风道中设有第一离心风机,第一离心风机的抽气口朝向第二风道的进口,第三风道中设有第二离心风机,第二离心风机的抽气口朝向第三风道上的进气口。
技术方案中,优选的,热泵系统还包括室外换热器、压缩机、膨胀阀,压缩机、室内换热器、膨胀阀和室外换热器通过管路依次连接。
技术方案中,优选的,第三风道上的进气口处设有开关装置。
技术方案中,优选的,第一离心风机设于第二风道的中部或尾部。
技术方案中,优选的,第二离心风机设于第三风道的中部或尾部。
技术方案中,优选的,第一风道的进口与室内换热器间还设有负氧离子生成器。
本发明具有的优点和积极效果是:本发明基于空气源热泵的空气净化装置可实现夏天制冷、冬天制热、空气净化,消菌杀毒的功能,集改善室内空气温度与质量多功能于一体,同时还可在活性炭吸附器吸附饱和后对其进行原位再生,提高空气净化能力与效果,无需经常拆换活性炭吸附器,实现对活性炭的重复利用,省时省力,节约成本。
附图说明
图1是本发明基于空气源热泵的空气净化装置的结构示意图。
图中:
1、风道 2、风道 3、风道
4、室内换热器 5、室外换热器 6、压缩机
7、膨胀阀 8、离心风机 9、粗效过滤器
10、静电除尘器 11、活性炭吸附器 12、氧化锌过滤层
13、负氧离子生成器 14、离心风机 21、出气口
31、进气口
具体实施方式
下面结合附图对本发明实施例做进一步描述:
如图1所示,本实施例所述的基于空气源热泵的空气净化装置,包括热泵系统、风道1、风道2和风道3,其中热泵系统包括放于室内的室内换热器4,放于室外的室外换热器5,压缩机6和膨胀阀7,室内换热器4、压缩机6、室外换热器5和膨胀阀7通过铜管依次连接,风道2和风道3的入口均与风道1的出口连通,室内换热器4设于风道1中,风道2上设有通向室内的出气口21,风道2的尾端设有离心风机8,离心风机8的抽气口朝向风道2的进气口端,即与风道1相连的一端。夏季制冷剂经压缩机6被压缩,变成高温高压的气体,气体流经室外换热器5,冷却下来变为液态,经膨胀阀7后进入室内换热器4,由于进入室内换热器4中压力骤然降低,液态的制冷剂迅速蒸发为气态,吸收大量热量,使由离心风机8抽进的外界空气被冷却,向室内吹冷气。冬季则相反,由室外取热,提高室内温度。从而实现了该空气净化装置调节室内空气温度的效果。
风道1的进口与室内换热器4之间依次设有粗效过滤器9,静电除尘器10,活性炭吸附器11和氧化锌过滤层12,对由室外经风道1进入的空气依次进行过滤,除尘灭菌,除甲醛、苯、氨气等有毒气体,净化防霉等,使最终进入室内的气体清洁。在风道1的进口与室内换热器4之间还可以加设负氧离子生成器13,为进入室内的空气提供负氧离子,负氧离子作为“空气维生素”具有抗氧化防衰老的突出作用,能够提供更高的环境舒适度与健康程度。
风道3上设有与外界连通的进气口31,风道3中设有离心风机14,离心风机14的抽风口朝向进气口31,进气口31上设有开关装置,可以打开或者关闭进气口31。当该空气净化装置使用一段时间后,净化装置中的活性炭吸附器11已吸附饱和,无法再吸附有毒气体,可以通过热泵装置对活性炭吸附器11周边环境升温,同时打开离心风机14,打开进气口31上的开关,离心风机14从外界抽气吹向室内换热器4,室内换热器4将空气加热,吹扫过活性炭吸附器11,高温使活性炭吸附器11吸附的有毒气体脱附,在气体的带动下脱离活性炭,排入外界,即无需经常拆卸活性炭吸附器11,实现活性炭吸附器的原位再生,多次利用,节约成本。
本发明基于空气源热泵的空气净化装置可实现夏天制冷、冬天制热、空气净化,消菌杀毒的功能,集改善室内空气温度与质量多功能于一体,同时还可在活性炭吸附器吸附饱和后对其进行原位再生,提高空气净化能力与效果,无需经常拆换活性炭吸附器,实现对活性炭的重复利用,省时省力,节约成本。
以上对本发明的一个实施例进行了详细说明,但所述内容仅为本发明的较佳实施例,不能被认为用于限定本发明的实施范围。凡依本发明申请范围所作的均等变化与改进等,均应仍归属于本发明的专利涵盖范围之内。
Claims (5)
1.基于空气源热泵的空气净化装置,其特征在于:包括热泵系统、第一风道、第二风道和第三风道,所述第二风道与第三风道的进口均与所述第一风道的出口连通,所述热泵系统包括室内换热器,所述室内换热器设于所述第一风道中,所述第一风道的进口与所述室内换热器间依次设有粗效过滤器、静电除尘器、活性炭吸附器和氧化锌过滤层,对由室外经所述第一风道进入的空气依次进行过滤;所述第二风道设有通向室内的出气口,所述第三风道上设有与外界连通的进气口,所述第二风道中设有第一离心风机,所述第一离心风机的抽气口朝向所述第二风道的进口,所述第三风道中设有第二离心风机,所述第二离心风机的抽气口朝向所述第三风道上的所述进气口;所述第三风道上的所述进气口处设有开关装置。
2.根据权利要求1所述的基于空气源热泵的空气净化装置,其特征在于:所述热泵系统还包括室外换热器、压缩机、膨胀阀,所述压缩机、所述室内换热器、所述膨胀阀和所述室外换热器通过管路依次连接。
3.根据权利要求1所述的基于空气源热泵的空气净化装置,其特征在于:所述第一离心风机设于所述第二风道的中部或尾部。
4.根据权利要求1所述的基于空气源热泵的空气净化装置,其特征在于:所述第二离心风机设于所述第三风道的中部或尾部。
5.根据权利要求1所述的基于空气源热泵的空气净化装置,其特征在于:所述第一风道的进口与所述室内换热器间还设有负氧离子生成器。
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