CN111076323A - 一种空气净化空间快速扩大的空气净化系统 - Google Patents
一种空气净化空间快速扩大的空气净化系统 Download PDFInfo
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Abstract
本发明公开了一种空气净化空间快速扩大的空气净化系统,按照空气流经方向依次包括进风单元、初净化单元、TVOC脱除单元、复合污染物净化单元、除雾单元和出风单元,所述复合污染物净化单元和所述除雾单元之间设有水过滤还原单元;所述初净化单元包括净化外壳和安装于所述净化外壳的内部的纳米管和静电过滤网,若干所述进风管与所述净化外壳连通;述TVOC脱除单元包括等离子体发生结构,所述等离子体发生结构与所述净化外壳连通;所述复合污染物净化单元包括气动雾化结构,所述气动雾化结构与所述等离子体发生结构连通。本发明能够实现有效脱除室外污染物、避免室内新鲜空气自循环、扩大净化空间范围等技术问题。
Description
技术领域
本发明属于空气净化技术领域,特别是涉及一种空气净化空间快速扩大的空气净化系统。
背景技术
空气净化器作为一种能去除空气中的颗粒物、甲醛等所有污染物的家用电器,在日常家庭生活中得到越来越多的应用。
现有的空气净化器,仅有单一功能的已经逐步退出市场,目前向多功能化、智能控制且能显示净化效果的方向发展。但是由于空气扩散受空气流动场的限制,存在空气自循环、净化空间范围受限等问题。
发明内容
本发明主要解决的技术问题是提供一种空气净化空间快速扩大的空气净化系统,能够实现有效脱除室外污染物、避免室内新鲜空气自循环、扩大净化空间范围等技术问题。
为解决上述技术问题,本发明采用的一个技术方案是:一种空气净化空间快速扩大的空气净化系统,按照空气流经方向依次包括进风单元、初净化单元、TVOC脱除单元、复合污染物净化单元、除雾单元和出风单元,所述复合污染物净化单元和所述除雾单元之间设有水过滤还原单元;
所述进风单元包括若干进风管;
所述初净化单元包括净化外壳和安装于所述净化外壳的内部的纳米管和静电过滤网,若干所述进风管与所述净化外壳连通;
所述TVOC脱除单元包括等离子体发生结构,所述等离子体发生结构与所述净化外壳连通;
所述复合污染物净化单元包括气动雾化结构,所述气动雾化结构与所述等离子体发生结构连通;
所述出风单元包括若干出风管;
所述水过滤还原单元包括含有过滤网的过滤箱,所述过滤箱设有进水口和出水口,所述进水口通过凝结水回收管与所述除雾单元连通,所述出水口通过净化水回收管与所述气动雾化结构连通;
所述气动雾化结构和所述等离子体发生结构皆与控制面板电连接。
进一步地说,所述气动雾化结构包括空气压缩机、喷气管和水箱,所述水箱的进气口与所述等离子体发生结构连通,所述水箱的内部为气液混合室,所述喷气管位于所述水箱的内部且位于所述气液混合室的上方,所述喷气管与所述空气压缩机连通。
进一步地说,所述进风管和所述出风管皆为陶瓷微孔管。
进一步地说,所述等离子体发生结构为等离子体净化器。
进一步地说,所述纳米管为陶瓷纳米管。
进一步地说,所述净化外壳为多孔外壳。
进一步地说,所述除雾单元为电除雾器。
进一步地说,所述过滤网位于所述过滤箱靠近所述水箱的一端。
进一步地说,所述过滤箱中添加有还原剂和中和剂。
进一步地说,所述进风管和所述出风管皆安装于待净化室内的墙上。
本发明的有益效果:本发明利用复合污染物净化单元脱除甲醛、甲苯、NOX、SOX和细小颗粒物,室外一些污染物如细菌、NOX、SOX和细小颗粒物也可以被脱除,系统间各功能可以互相优势互补;能克服现有净化器远处空气净化速度慢、新鲜空气自循环、净化空间有限等弊端,最大限度扩大空气净化效率。
附图说明
图1是本发明的工艺设备结构示意图;
附图中各部分标记如下:
进风单元100、初净化单元200、净化外壳201、纳米管202、静电过滤网203、TVOC脱除单元300、复合污染物净化单元400、空气压缩机401、喷气管402、水箱403、除雾单元500、出风单元600、水过滤还原单元700、过滤箱701、凝结水回收管702和净化水回收管703。
具体实施方式
下面结合附图对本发明的较佳实施例进行详细阐述,以使本发明的优点和特征能更易于被本领域技术人员理解,从而对本发明的保护范围做出更为清楚明确的界定。
实施例:一种空气净化空间快速扩大的空气净化系统,如图1所示,按照空气流经方向依次包括进风单元100、初净化单元200、TVOC脱除单元300、复合污染物净化单元400、除雾单元500和出风单元600,所述复合污染物净化单元和所述除雾单元之间设有水过滤还原单元700;
所述进风单元包括若干进风管;
所述初净化单元包括净化外壳201和安装于所述净化外壳的内部的纳米管202和静电过滤网203,若干所述进风管与所述净化外壳连通;纳米管和静电过滤网可以脱除空气中的PM2.5;
所述TVOC脱除单元包括等离子体发生结构,所述等离子体发生结构与所述净化外壳连通;
所述复合污染物净化单元包括气动雾化结构,所述气动雾化结构与所述等离子体发生结构连通;
所述出风单元包括若干出风管;
所述水过滤还原单元包括含有过滤网的过滤箱701,所述过滤箱设有进水口和出水口,所述进水口通过凝结水回收管702与所述除雾单元连通,所述出水口通过净化水回收管703与所述气动雾化结构连通;
所述气动雾化结构和所述等离子体发生结构皆与控制面板电连接。
所述气动雾化结构包括空气压缩机401、喷气管402和水箱403,所述水箱的进气口与所述等离子体发生结构连通,所述水箱的内部为气液混合室,所述喷气管位于所述水箱的内部且位于所述气液混合室的上方,所述喷气管与所述空气压缩机连通。
所述进风管和所述出风管皆为陶瓷微孔管。
所述等离子体发生结构为等离子体净化器。
所述纳米管为陶瓷纳米管。
所述净化外壳为多孔外壳。
所述除雾单元为电除雾器。
所述过滤网位于所述过滤箱靠近所述水箱的一端。
所述过滤箱中添加有还原剂和中和剂。用还原剂尿素还原硝酸、有机酸等含氧物质,用中和剂过氧化钙中和水至中性。
所述进风管和所述出风管皆安装于待净化室内的墙上。
本发明的工作原理如下:
启动压缩机,将空气通过微孔进气管吸入初净化单元,空气经纳米管和静电过滤网除掉较粗颗粒物,然后进入TVOC脱除单元、复合污染物净化单元,将甲醛、甲苯、VOC、NOX、SOX、细菌、病毒及其微细颗粒物等污染物脱除,净化后的空气除去水雾后经微孔出气管分布到外部,实现空气的快速净化;其中电除雾器中的凝结水经水过滤还原单元,用还原剂尿素还原硝酸、有机酸等含氧物质,用中和剂过氧化钙中和水至中性后进入复合污染物净化单元循环使用。
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变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (10)
1.一种空气净化空间快速扩大的空气净化系统,其特征在于:按照空气流经方向依次包括进风单元、初净化单元、TVOC脱除单元、复合污染物净化单元、除雾单元和出风单元,所述复合污染物净化单元和所述除雾单元之间设有水过滤还原单元;
所述进风单元包括若干进风管;
所述初净化单元包括净化外壳和安装于所述净化外壳的内部的纳米管和静电过滤网,若干所述进风管与所述净化外壳连通;
所述TVOC脱除单元包括等离子体发生结构,所述等离子体发生结构与所述净化外壳连通;
所述复合污染物净化单元包括气动雾化结构,所述气动雾化结构与所述等离子体发生结构连通;
所述出风单元包括若干出风管;
所述水过滤还原单元包括含有过滤网的过滤箱,所述过滤箱设有进水口和出水口,所述进水口通过凝结水回收管与所述除雾单元连通,所述出水口通过净化水回收管与所述气动雾化结构连通;
所述气动雾化结构和所述等离子体发生结构皆与控制面板电连接。
2.根据权利要求1所述的一种空气净化空间快速扩大的空气净化系统,其特征在于:所述气动雾化结构包括空气压缩机、喷气管和水箱,所述水箱的进气口与所述等离子体发生结构连通,所述水箱的内部为气液混合室,所述喷气管位于所述水箱的内部且位于所述气液混合室的上方,所述喷气管与所述空气压缩机连通。
3.根据权利要求1所述的一种空气净化空间快速扩大的空气净化系统,其特征在于:所述进风管和所述出风管皆为陶瓷微孔管。
4.根据权利要求1所述的一种空气净化空间快速扩大的空气净化系统,其特征在于:所述等离子体发生结构为等离子体净化器。
5.根据权利要求1所述的一种空气净化空间快速扩大的空气净化系统,其特征在于:所述纳米管为陶瓷纳米管。
6.根据权利要求1所述的一种空气净化空间快速扩大的空气净化系统,其特征在于:所述净化外壳为多孔外壳。
7.根据权利要求1所述的一种空气净化空间快速扩大的空气净化系统,其特征在于:所述除雾单元为电除雾器。
8.根据权利要求1所述的一种空气净化空间快速扩大的空气净化系统,其特征在于:所述过滤网位于所述过滤箱靠近所述水箱的一端。
9.根据权利要求1所述的一种空气净化空间快速扩大的空气净化系统,其特征在于:所述过滤箱中添加有还原剂和中和剂。
10.根据权利要求1所述的一种空气净化空间快速扩大的空气净化系统,其特征在于:所述进风管和所述出风管皆安装于待净化室内的墙上。
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