CN108854482A - 厕卫用空气净化除臭装置 - Google Patents
厕卫用空气净化除臭装置 Download PDFInfo
- Publication number
- CN108854482A CN108854482A CN201810458042.8A CN201810458042A CN108854482A CN 108854482 A CN108854482 A CN 108854482A CN 201810458042 A CN201810458042 A CN 201810458042A CN 108854482 A CN108854482 A CN 108854482A
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- Prior art keywords
- air
- deodorization
- host
- negative pressure
- module
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Abstract
本发明公开一种厕卫用空气净化除臭装置,包括负压除臭主机以及吸风管道,所述负压除臭主机设置于室外,所述吸风管道一端与所述负压除臭主机相连,另一端延伸于室内,所述负压除臭主机包括控制柜、药箱、抽药泵、水箱、雾化装置、负压涡流风机、吸附分解模块、生物模块、湿气处理模块。与相关技术相比,本发明的厕卫用空气净化除臭装置其除臭、消毒、空气净化效果更好。
Description
技术领域
本发明涉及空气净化技术领域,尤其涉及一种厕卫用空气净化除臭装置。
背景技术
随着生活水平的日益提高,人们对居家和公共环境的空气质量要求也越来越高。在一些人流量较大的公共场合,厕所、卫生间因其用途的特殊性而成为空气质量问题亟待解决的重点区域。
目前在厕所、卫生间中为了掩盖难闻的气味,常用的几种方式包括燃香,喷空气清洁剂,设置飘香器、喷香罐、除臭剂,设置排风换气扇等。但采用上述手段仅能暂时掩盖臭味,而对于难闻气味的消除以及空气中一些有害浮游菌的消灭没有实质作用。同时,由于厕卫中的空气污浊给有害病菌和细菌的繁殖与传播创造了有利条件,再使用一些化学制剂,反而会造成二次污染。另外,一些人工合成的香剂对人体是有害的,有些甚至可能致癌。从而相关技术中的除臭方式存在消毒、除臭、净化效果较差的不足。
因此,有必要提供一种新的厕卫用空气净化除臭装置解决上述技术问题。
发明内容
本发明的目的是克服上述技术问题,提供一种厕卫用空气净化除臭装置。
本发明提供一种厕卫用空气净化除臭装置,包括负压除臭主机以及吸风管道,所述吸风管道一端与所述负压除臭主机相连,另一端延伸于室内,所述负压除臭主机包括控制柜、药箱、抽药泵、水箱、雾化装置、负压涡流风机、吸附分解模块、生物模块、湿气处理模块,所述药箱内容置有复合微生物除臭灭蝇菌剂,所述水箱容置有药液,药液为所述水箱内的水与自所述药箱按一定比例投入所述水箱内的复合微生物除臭灭蝇菌剂混合形成,所述抽药泵用于将所述药箱内的复合微生物除臭灭蝇菌剂抽入所述水箱,所述雾化装置用于将所述水箱内的药液雾化,形成雾化液,所述负压涡流风机用于将室内气体吸入所述吸风管道,所述吸附分解模块用于将吸入所述吸风管道内的室内气体吸附分解,所述吸附分解模块分解后的室内气体与雾化液混合形成湿化气体,所述生物模块用于将湿化气体生物分解,所述湿气处理模块用于将经生物分解后的湿化气体除湿。
优选的,所述雾化装置为雾化器,所述吸附分解模块为活性炭过滤网,所述生物模块为湿帘,所述湿气处理模块包括活性炭以及湿帘。
优选的,所述厕卫用空气净化除臭装置还包括新风主机以及与所述新风主机相连的送风管道,所述新风主机包括直流无刷电机、离心风机以及组合过滤网,所述直流无刷电机带动离心风机通过送风管道向室内输送室外气体,所述组合过滤网设置于所述离心风机的进气口处或送风管道的进气口处。
优选的,所述厕卫用空气净化除臭装置还包括净化主机,所述净化主机设有进气口与出气口,所述净化主机还包括流光能装置,以及于所述流光能装置的作用区域自所述净化主机的进气口朝靠近所述出气口的方向依次设置的初效过滤网、等离子发生器、HEPA高效过滤网、超细三维光催化复合网、植物除臭药芯。
优选的,所述厕卫用空气净化除臭装置还包括多媒体设备,所述多媒体设备包括过滤除臭模块以及位于所述过滤除臭模块一侧的多媒体播放模块,所述过滤除臭模块包括空气进口,空气出口,位于所述空气进口与空气出口之间的复合过滤网,位于所述复合过滤网与空气出口之间的通风机,以及植物除臭模块,所述复合过滤网包括自所述空气进口朝空气出口方向依次设置的初效过滤网、HEPA高效过滤网、活性炭过滤网,所述通风机靠近所述空气出口设置,所述植物除臭模块包括喷嘴以及供喷嘴喷洒的雾化植物液,所述多媒体播放模块包括多媒体播放屏。
优选的,所述控制柜、新风主机、净化主机、多媒体设备内均设有时间控制器。
优选的,所述厕卫用空气净化除臭装置还包括自动给药系统,所述自动给药系统包括设于所述水箱内的缺水信号球、满水信号球,以及与所述缺水信号球、满水信号球信号连通并控制所述抽药泵和所述水箱的控制模块。
优选的,所述吸风管道包括吸风主管道,以及自所述吸风主管道延伸出的若干吸风支管道,所述吸风支管道位于室内。
优选的,所述厕卫用空气净化除臭装置还包括远程控制终端以及分别设置于所述控制柜、新风主机、净化主机内的无线通信模块,所述远程控制终端通过所述无线通信模块控制所述负压除臭主机、新风主机以及净化主机。
优选的,所述负压除臭主机还包括进气口以及出气口,所述厕卫用空气净化除臭装置还包括设置于所述负压除臭主机进气口或出气口处的用于空气采样收集的吸附筒。
与相关技术相比,本发明的厕卫用空气净化除臭装置,负压除臭主机具备良好的消毒、除臭和净化效果;通过负压除臭主机与新风主机相结合,可形成新风流动场,优化室内空气循环,室外气体经过滤后送入室内,室内气体经负压除臭主机毒、杀菌、除臭后排出室外,再结合具备优良的消毒、除臭与空气净化性能的净化主机,三者形成整体,具备更好的消毒、除臭与空气净化效果。再辅以多媒体设备,可针对性的提升局部区域的消毒、除臭与空气净化效果。
附图说明
图1为本发明厕卫用空气净化除臭装置的负压除臭主机结构示意图;
图2为本发明厕卫用空气净化除臭装置的新风主机结构示意图;
图3为本发明厕卫用空气净化除臭装置的净化主机结构示意图;
图4为本发明厕卫用空气净化除臭装置的多媒体设备部分分解结构示意图。
具体实施方式
为了便于理解本发明,下面结合实施例对本发明进行更全面的描述。虽然给出了本发明的较佳的实施例。但是,本发明可以以许多不同的形式来实现,并不限于本文所描述的实施例。相反地,提供这些实施例的目的是使对本发明的公开内容的理解更加透彻全面。
参阅图1-图3,本发明提供一种厕卫用空气净化除臭装置,包括负压除臭主机1以及吸风管道13。
本实施方式中,负压除臭主机1设置于室外,便利于向室外排出经负压除臭主机处理的室内气体。室外是指需要对空气进行净化、除臭的场所外部,如厕所、卫生间外部;室内是指需要对空气进行净化、除臭的场所内部,如厕所、卫生间内部。吸风管道13一端与负压除臭主机1相连,另一端延伸于室内。当然,负压除臭主机亦可设置于室内,仅需确保经负压除臭主机处理的气体能排向室外即可。
本实施方式中,吸风管道13包括吸风主管道以及自吸风主管道延伸出的若干吸风支管道。由此,吸风主管道在室内的部分可设置于室内空间的顶部,吸风支管道的数目可根据室内蹲坑或小隔间的数目进行相应配置。从而,通过合理设置吸风支管道,不仅节约成本,还能将室内气体最大限度抽离处理,以提升除臭效果。
负压除臭主机1包括控制柜11、药箱16、抽药泵17、抽药管112、水箱15、雾化装置113、负压涡流风机12、吸附分解模块18、生物模块19、湿气处理模块110、负压除臭主机1的进气口114以及负压除臭主机1的出气口111。
药箱16内容置有复合微生物灭蝇菌剂,水箱15容置有水,抽药泵17通过抽药管112将药箱16内的复合微生物灭蝇菌剂按一定比例抽入水箱15内,与水箱15内的水混合,形成药液。通过设置药箱16、抽药泵17、水箱15,相比单一容器容置药液,可增加药液的储备量,有效延长负压除臭主机1的工作时长,降低运维成本。更进一步地,可设置容纳有复合微生物灭蝇菌剂的储药池,药箱11通过管道与储药池相连通,当药箱11内复合微生物灭蝇菌剂不足时,可通过储药池进行补充;水箱可与自来水管相连通,当水箱内水不足时,可通过外接自来水进行水量补充。从而,更进一步延长负压除臭系统的工作时长,降低运维成本。
雾化装置113用于将水箱15内的药液雾化,形成雾化液。本实施方式中,雾化装置113为雾化器,该雾化器通过震动的方式,使药液雾化,从而提供了较好的雾化效果。
负压涡流风机12用于将室内的气体如臭气等吸入吸风管道13,并使室内气体经负压除臭主机1的进气口114,依次流向吸附分解模块18、生物模块19、湿气处理模块110,最终通过出气口111排向室外。负压除臭主机1的进气口114位于负压除臭主机1与吸风管道13的连接处。
吸附分解模块18用于将吸入吸风管道13内的室内气体吸附分解。吸附分解模块18分解后的室内气体与雾化液混合形成湿化气体。本实施方式中,吸附分解模块17为活性炭过滤网,由于活性炭具备孔隙构造,其多孔结构更能增大其表面积,能与气体充分接触,有效吸附杂质,同时活性炭过滤网还能吸收一部分雾化液,以分解室内气体,进行除臭。
生物模块19用于将湿化气体生物分解。本实施方式中,生物模块19为设置于负压除臭主机内的湿帘,其可有效延长雾化液与室内气体的结合反应时间,进一步提升除臭效果。
湿气处理模块110用于将经生物分解后的湿化气体除湿,形成干燥气体。本实施方式中,湿气处理模块19包括活性炭以及湿帘,活性炭与湿帘均有良好的吸水性能,从而除湿效果较好。
复合微生物除臭灭蝇菌剂由植物乳杆菌发酵液和产朊假丝酵母液按体积1.5-2.0:1的比例混合形成。
如厕所、卫生间等室内气体中,氨、硫化氢、甲硫醇、甲硫二醇、乙胺等有害气体是产生异味的主要原因,未及时清理的污物也会经腐败细菌滋生异味。复合微生物除臭灭蝇菌剂中的大量有益微生物如益生菌等具有分解蛋白质、抑制氮的氨化和产生硫化氢的功能,并能抑制腐败细菌的生长,可有效防止异味的产生。经市环境监测站检测,硫化氢去除率96%以上,氨气去除率91%以上。蚊子、苍蝇繁殖能力极强,呈几何级数增长,并有较强的抗药性,使用化学药物消杀达不到应有的效果,且易造成二次污染。复合微生物除臭灭蝇菌剂通过有益微生物的大量繁殖,通过自身代谢活动降解垃圾中有机物质,从而破坏蚊蝇虫卵正常生长的生态平衡,使其不能孵化生成蛆蟠和成蝇。使用复合微生物除臭灭蝇菌剂,灭蝇效果可达到95%以上。
由此,室内气体经吸附后,与雾化液混合,被分解成CO2、H20、HNO3等简单无机物后排向室外。经过以上处理的室内气体无害、无臭,其排放高于国家标准。采用微生物除臭,复合微生物除臭灭蝇菌剂适应性强,不受室内气体温度、湿度波动影响。臭气去除率高,通过权威机构检测处理后排放的气体可达到二级排放标准。臭气抽离厕卫空间,对人体及公厕设施无任何不良影响,可避免公厕内有害气体累积。设备结构简单,无需专业人员操作,后期维护成本低,易于维护保养。从而,提供了良好的消毒、除臭和净化效果。
本实施方式中,负压除臭主机1还包括设置于控制柜11内的时间控制器,通过该时间控制器可控制负压除臭主机在设定的时间内工作,优化工作效率。
本实施方式中,负压除臭主机1还包括自动给药系统。所述自动给药系统包括设于水箱15内的缺水信号球、满水信号球,以及与缺水信号球、满水信号球信号连通的控制模块。缺水信号球设于水箱底部,满水信号球浮于水箱15的药液液面,控制模块设置于控制柜11内。当水箱15内的药液不足时,缺水信号球会向控制模块发送缺水信号,由控制模块启动抽药泵17从药箱16往水箱15抽入复合微生物菌剂进行补给,同时往水箱15内补水;当水箱15内的药液将满时,满水信号球会向控制模块发送满水信号,由控制模块停止抽药泵17工作,同时停止往水箱15补水。由此实现了自动给药,且保持水箱内的药液在满足使用要求的百分比含量范围内,提升智能化效果。
本实施方式中,负压除臭主机1还包括用于空气采样收集的吸附筒,该吸附筒通过可拆卸的方式设置于负压除臭主机的进气口或出气口处。由此,可根据需要对室内空气进行处理前的采集监测或处理后的采集监测,拓展负压除臭主机的功能,便利于室内空气质量数据分析。
本实施方式中,厕卫用空气净化除臭装置还包括新风主机2以及与新风主机2相连的送风管道24。
新风主机2包括直流无刷电机21、离心风机22以及组合过滤网。送风管道24的一端与新风主机2相连通,另一端与室内相连通。直流无刷电机21带动离心风机22将室外气体导入送风管道24,并通过送风管道24向室内输送室外气体。
组合过滤网设置于离心风机21的进气口处,便利于对进入新风主机2内的室外气体进行直接过滤,以确保由室外向室内输送气体的空气质量。当然,组合过滤网还可设置于送风管道的进气口处。
本实施方式中,组合过滤网包括平行设置的活性炭过滤网17以及HERP过滤网232。活性炭过滤网以及HERP过滤网的组合保障了由室外输往室内的气体过滤效果。
本实施方式中,新风主机可与负压除臭主机相对设置,即可在厕所或卫生间等的一侧采用新风主机向室内送风,在厕所或卫生间等的另一侧采用负压除臭主机向室外排气,从而形成新风流动场。另外,在通过新风主机向室内送风时,还可搭配使用植物除臭剂,进一步提升除臭效果。植物除臭剂可设计成微雾挥发型,设置于新风主机内并靠近新风主机与送风管道的连接处。当新风系统向室内送风时,室外的新鲜气体与植物除臭剂自然挥发出的微雾气体混合,一并向室内输送,可进一步提升除臭效果。
该植物除臭剂由丝兰、银杏叶、茶多酚、樟科植物、鹿蹄草、松油、葡萄籽等植物提取物组成。该植物除臭剂中的樟属植物皮提取物能吸收空气中的二氧化硫、氨,并对产生的气荚膜梭菌,普通变形杆菌以及双叉乳杆菌有抑制作用,能有效的降低公厕中的氨气的产生。在吸收分解空气中的臭气时,还能从根源上减少臭味的产生;丝兰属提取物能吸收空气中的二氧化硫、氨,并抑制脲酶活性,减少公厕中的尿素分解成氨气降低尿液散发出来的臭气量;银杏叶提取物能吸收分解粪便散发出的硫化氢;茶多酚提取物能吸收分解氨、有机胺降低公厕中的臭味浓度;鹿蹄草提取液可以很好的消除烟草味等。能有效的净化公厕中的刺激性气味,改善公共环境。
本实施方式中,新风主机还包括时间控制器,由此,通过该时间控制器可控制新风主机在设定的时间内工作,优化工作效率。
本实施方式中,所述厕卫用空气净化除臭装置还包括净化主机3。净化主机3设有进气口31与出气口32。净化主机3还包括流光能装置30,以及于流光能装置30的作用区域自净化主机3的进气口31朝靠近出气口32的方向依次设置的初效过滤网33、等离子发生器34、HEPA高效过滤网35、超细三维光催化复合网36、植物除臭药芯37。
本实施方式中,净化主机悬挂于室内墙面上,距离地面高度在2.5米以上。由此,能提供较好的空气净化效果。
流光能装置30能产生大量高速电子,与空气中的氧氮元素结合生成具有氧化分解能力的活性物质,分解病毒表面的蛋白质,使病毒失去感染力。
初效过滤网33能过滤纤维颗粒物质如头发头皮、颗粒、粉尘等。
等离子发生器34能在杀菌的同时向空气中释放出负离子,达到消烟、除尘、消除异味、改善空气的结构,促进身心健康的目的,并能调节改善由自律神经失调所引起的头痛、失眠、忧郁等症状。
HEPA高效过滤网35能过滤可直接吸入肺部的微粒。如PM2.5、二手烟、油烟花粉、宠物毛、细菌等。
超细三维光催化复合网36可分解内毒素,并降解甲醛、苯、硫化氢氨氮氧化物等有机物
植物除臭药芯37通过自然散发,散发出植物除臭因子吸附空气中的异味分子使其立体构型发生改变,削弱异味分子中的化合键,使异味分子发生分解形成无味无毒的物质。植物除臭药芯是选用安全中药及天然植物研制而成,不含化学物质,药剂气味清新,可有效的降低人的烦躁感,营造一个轻松舒适的空气环境。
本实施方式中,净化主机3还包括时间控制器,由此,通过该时间控制器可控制新风主机在设定的时间内工作,优化工作效率。
参阅图4,本实施方式中,所述厕卫用空气净化除臭装置还包括多媒体设备4。
多媒体设备4包括过滤除臭模块以及位于过滤除臭模块顶部的多媒体播放模块。过滤除臭模块包括空气进口41,空气出口42,位于空气进口41与空气出口42之间的复合过滤网,位于复合过滤网与空气出口42之间的通风机44,以及植物除臭模块45。
复合过滤网包括自空气进口41朝空气出口42方向依次设置的初效过滤网431、HEPA高效过滤网432、活性炭过滤网17,通风机44靠近空气出口42设置。植物除臭模块45包括喷嘴451以及供喷嘴喷洒的雾化植物液,雾化植物液收容于植物除臭模块45内。多媒体播放模块包括多媒体播放屏46。
雾化植物液为所述植物除臭剂,其在经喷嘴喷出后呈雾化状。多媒体播放模块包括多媒体播放屏,用于播放时事新闻、广告宣传等。
所述多媒体设备可设置于室内空间的墙面上,亦可设置于室内分隔设置的小隔间,由此,通过初效过滤网、HEPA高效过滤网、活性炭过滤网的过滤组合,可加强对室内局部区域的空气净化、除臭效果,还兼具新闻、广告等推送效果。
所述多媒体设备4还包括时间控制器,由此,通过该时间控制器可控制多媒体设备在设定的时间内工作,优化工作效率。
本实施方式中,所述厕卫用空气净化除臭装置还包括远程控制终端以及分别设置于控制柜11、新风主机2、净化主机3内的无线通信模块,远程控制终端通过无线通信模块控制负压除臭主机1、新风主机2以及净化主机3。该远程控制终端可以是电脑终端、服务器、手持终端等终端设备中的一种。
与相关技术相比,本发明的厕卫用空气净化除臭装置,负压除臭主机具备良好的消毒、除臭和净化效果;通过负压除臭主机与新风主机相结合,可形成新风流动场,优化室内空气循环,室外气体经过滤后送入室内,室内气体经负压除臭主机毒、杀菌、除臭后排出室外,再结合具备优良的消毒、除臭与空气净化性能的净化主机,三者形成整体,具备更好的消毒、除臭与空气净化效果。再辅以多媒体设备,可针对性的提升局部区域的消毒、除臭与空气净化效果。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其它相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (10)
1.一种厕卫用空气净化除臭装置,用于处理室内气体并排向室外,其特征在于,包括负压除臭主机以及吸风管道,所述吸风管道一端与所述负压除臭主机相连,另一端延伸于室内,所述负压除臭主机包括控制柜、药箱、抽药泵、水箱、雾化装置、负压涡流风机、吸附分解模块、生物模块、湿气处理模块,所述药箱内容置有复合微生物除臭灭蝇菌剂,所述水箱容置有药液,药液为所述水箱内的水与自所述药箱按一定比例投入所述水箱内的复合微生物除臭灭蝇菌剂混合形成,所述抽药泵用于将所述药箱内的复合微生物除臭灭蝇菌剂抽入所述水箱,所述雾化装置用于将所述水箱内的药液雾化,形成雾化液,所述负压涡流风机用于将室内气体吸入所述吸风管道,所述吸附分解模块用于将吸入所述吸风管道内的室内气体吸附分解,所述吸附分解模块分解后的室内气体与雾化液混合形成湿化气体,所述生物模块用于将湿化气体生物分解,所述湿气处理模块用于将经生物分解后的湿化气体除湿。
2.根据权利要求1所述的厕卫用空气净化除臭装置,其特征在于,还包括自动给药系统,所述自动给药系统包括设于所述水箱内的缺水信号球、满水信号球,以及与所述缺水信号球、满水信号球信号连通并控制所述抽药泵和所述水箱的控制模块。
3.根据权利要求1所述的厕卫用空气净化除臭装置,其特征在于,所述吸风管道包括吸风主管道,以及自所述吸风主管道延伸出的若干吸风支管道,所述吸风支管道位于室内。
4.根据权利要求1所述的厕卫用空气净化除臭装置,其特征在于,所述负压除臭主机还包括进气口以及出气口,所述厕卫用空气净化除臭装置还包括设置于所述负压除臭主机进气口或出气口处的用于空气采样收集的吸附筒。
5.根据权利要求1所述的厕卫用空气净化除臭装置,其特征在于,所述雾化装置为雾化器,所述吸附分解模块为活性炭过滤网,所述生物模块为湿帘,所述湿气处理模块包括活性炭以及湿帘。
6.根据权利要求5所述的厕卫用空气净化除臭装置,其特征在于,还包括新风主机以及与所述新风主机相连的送风管道,所述新风主机包括直流无刷电机、离心风机以及组合过滤网,所述直流无刷电机带动离心风机通过送风管道向室内输送室外气体,所述组合过滤网设置于所述离心风机的进气口处或送风管道的进气口处。
7.根据权利要求6所述的厕卫用空气净化除臭装置,其特征在于,还包括净化主机,所述净化主机设有进气口与出气口,所述净化主机还包括流光能装置,以及于所述流光能装置的作用区域自所述净化主机的进气口朝靠近所述出气口的方向依次设置的初效过滤网、等离子发生器、HEPA高效过滤网、超细三维光催化复合网、植物除臭药芯。
8.根据权利要求7所述的厕卫用空气净化除臭装置,其特征在于,还包括多媒体设备,所述多媒体设备包括过滤除臭模块以及位于所述过滤除臭模块一侧的多媒体播放模块,所述过滤除臭模块包括空气进口,空气出口,位于所述空气进口与空气出口之间的复合过滤网,位于所述复合过滤网与空气出口之间的通风机,以及植物除臭模块,所述复合过滤网包括自所述空气进口朝空气出口方向依次设置的初效过滤网、HEPA高效过滤网、活性炭过滤网,所述通风机靠近所述空气出口设置,所述植物除臭模块包括喷嘴以及供喷嘴喷洒的雾化植物液,所述多媒体播放模块包括多媒体播放屏。
9.根据权利要求8所述的厕卫用空气净化除臭装置,其特征在于,还包括远程控制终端以及分别设置于所述控制柜、新风主机、净化主机内的无线通信模块,所述远程控制终端通过所述无线通信模块控制所述负压除臭主机、新风主机以及净化主机。
10.根据权利要求9所述的厕卫用空气净化除臭装置,其特征在于,所述控制柜、新风主机、净化主机、多媒体设备内均设有时间控制器。
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