CN111494693A - 一种悬挂的教室消毒仪 - Google Patents

一种悬挂的教室消毒仪 Download PDF

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CN111494693A
CN111494693A CN202010333537.5A CN202010333537A CN111494693A CN 111494693 A CN111494693 A CN 111494693A CN 202010333537 A CN202010333537 A CN 202010333537A CN 111494693 A CN111494693 A CN 111494693A
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付振乾
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Abstract

本发明公开了一种悬挂的教室消毒仪,包括外壳体,所述外壳体内设有臭氧发生器,所述外壳体顶端设有安装板,所述臭氧发生器顶端对称安装有T型吊杆,所述T型吊杆与所述安装板表面的滑槽滑动配合,所述外壳体底部设有夹紧机构,所述夹紧机构包括双头螺杆,所述双头螺杆的左端贯穿所述外壳体的左侧面。有益效果是:教室内空气经过风机带动后进入进风口后,通过臭氧发生器以及催化板产生高浓度臭氧,去除空气中的病菌等,并通过臭氧浓度探测器可监测净化后的空气中臭氧浓度,通过臭氧分解模块消除过量臭氧,避免臭氧造成二次污染。

Description

一种悬挂的教室消毒仪
技术领域
本发明涉及消毒仪技术领域,尤其涉及一种悬挂的教室消毒仪。
背景技术
由于教室内学生聚集程度高、停留时间长,更加易受到室内空气中病原微生物的危害。而臭氧杀菌凭借良好的灭菌、除菌效果以及良好的扩散性成为室内消毒的重要选择之一。但是目前市场上大多数的室内甲醛消毒仪常常采用高压静电场作为臭氧发生源,不仅臭氧生成效率偏低,而且容易产生其他氮氧化物等二次污染气体危害学生身体健康,不能满足教室环境下杀灭病原体的要求。
发明内容
本发明的目的是提供一种悬挂的教室消毒仪,通过臭氧发生器以及催化板产生高浓度臭氧,去除空气中的病菌等,并通过臭氧浓度探测器可监测净化后的空气中臭氧浓度,通过臭氧分解模块消除过量臭氧,避免臭氧造成二次污染。
本发明的技术方案是这样实现的:
一种悬挂的教室消毒仪,包括外壳体,所述外壳体内设有臭氧发生器,所述外壳体顶端设有安装板,所述臭氧发生器顶端对称安装有T型吊杆,所述T型吊杆与所述安装板表面的滑槽滑动配合,所述外壳体底部设有夹紧机构,所述夹紧机构包括双头螺杆,所述双头螺杆的左端贯穿所述外壳体的左侧面,并连接有调节手轮,所述双头螺杆右端通过轴承与所述外壳体的右侧壁转动连接,所述双头螺杆的两端均内螺纹连接有夹紧板,所述夹紧板与所述臭氧发生器的侧面相抵接,所述臭氧发生器正面设置有出风口,所述出风口处安装有若干催化板,所述外壳体顶端设有臭氧探测器和臭氧分解模块,所述臭氧发生器、所述臭氧探测器及所述臭氧分解模块与控制器电性连接。
进一步的,所述外壳体左侧面设有通风口,所述通风口处安装有过滤网。
进一步的,所述臭氧发生器上设有与所述通风口相对应的进风口。
根据权利要求1所述催化板的制作方法,其特征在于,包括以下步骤
a、将催化板放入由水乙酸锰、六水硝酸镍、六水硝酸铈的混合溶液中浸渍;
b、将浸渍后的催化板放入到马弗炉中,并经程序梯度升温后自然冷却。
进一步的,所述水乙酸锰、六水硝酸镍、六水硝酸铈的摩尔比为1:1:1的60℃饱和溶液。
本发明的有益效果是:采用悬挂式设计,机体主要由外壳、进出风口、过滤网、臭氧发生器、催化板、臭氧分解模块及臭氧探测器组成。其中催化板事先经由水乙酸锰、六水硝酸镍、六水硝酸铈试剂按摩尔比为1:1:1的60℃饱和溶液中浸渍后经马弗炉程序梯度升温后自然冷却制得。教室内空气经过风机带动后进入进风口后,通过臭氧发生器以及催化板产生高浓度臭氧,去除空气中的病菌等,并通过臭氧浓度探测器可监测净化后的空气中臭氧浓度,通过臭氧分解模块消除过量臭氧,避免臭氧造成二次污染。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为一种悬挂的教室消毒仪的示意图;
图2为催化板的制作流程。
图中:
1、外壳体;2、T型吊杆;3、出风口;4、臭氧探测器;5、催化板;6、安装板;7、臭氧分解模块;8、通风口;9、调节手轮;10、臭氧发生器;11、夹紧机构;12、双头螺杆;13、夹紧板;14、过滤网;15、进风口。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。
在本发明的描述中,需要理解的是,术语“上”、“下”、“前”、“后”、“左”、“右”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
根据本发明的实施例,提供了一种悬挂的教室消毒仪。
参照图1-2,根据本发明实施例的悬挂的教室消毒仪,包括外壳体1,所述外壳体1内设有臭氧发生器10,所述外壳体1顶端设有安装板6,所述臭氧发生器10顶端对称安装有T型吊杆2,所述T型吊杆2与所述安装板6表面的滑槽滑动配合,所述外壳体1底部设有夹紧机构11,所述夹紧机构11包括双头螺杆12,所述双头螺杆12的左端贯穿所述外壳体1的左侧面,并连接有调节手轮9,所述双头螺杆12右端通过轴承与所述外壳体1的右侧壁转动连接,所述双头螺杆12的两端均内螺纹连接有夹紧板13,所述夹紧板13与所述臭氧发生器10的侧面相抵接,所述臭氧发生器10正面设置有出风口3,所述出风口3处安装有若干催化板5,所述外壳体1顶端设有臭氧探测器4和臭氧分解模块7,所述臭氧发生器10、所述臭氧探测器4及所述臭氧分解模块7与控制器电性连接。
在一个实施例中,所述外壳体1左侧面设有通风口8,所述通风口8处安装有过滤网14。
在一个实施例中,所述臭氧发生器10上设有与所述通风口8相对应的进风口15。
根据权利要求1所述催化板的制作方法,其特征在于,包括以下步骤
a、将催化板放入由水乙酸锰、六水硝酸镍、六水硝酸铈的混合溶液中浸渍;
b、将浸渍后的催化板放入到马弗炉中,并经程序梯度升温后自然冷却。
在一个实施例中,所述水乙酸锰、六水硝酸镍、六水硝酸铈的摩尔比为1:1:1的60℃饱和溶液。
在具体实施的过程中,教室内空气经过风机(图中未画出)带动后由所述通风口8进入,并通过所述进风口15与所述臭氧发生器10连通,通过所述臭氧发生器10以及所述催化板5产生高浓度臭氧,去除空气中的病菌等,并通过所述臭氧探测器4监测净化后的空气中臭氧浓度,并与预设定的臭氧安全浓度值对比(国家规定的臭氧安全浓度为0.1ppm,工业卫生标准为0.15ppm),当所述臭氧探测器4监测到教室内的臭氧浓度高于国家规定的臭氧浓度值时,此时说明教室内的空气已经被臭氧所覆盖,并对教室的空气进行了全面消毒,通过控制器,关闭所述臭氧发生器10,并通过控制器开启所述臭氧分解模块7,将教室内过多的臭氧进行分解,直到所述臭氧探测器4检测的浓度在规定的安全范围值内。
以上所述,仅为本发明较佳的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,根据本发明的技术方案及其发明构思加以等同替换或改变,都应涵盖在本发明的保护范围之内。

Claims (5)

1.一种悬挂的教室消毒仪,其特征在于,包括外壳体(1),所述外壳体(1)内设有臭氧发生器(10),所述外壳体(1)顶端设有安装板(6),所述臭氧发生器(10)顶端对称安装有T型吊杆(2),所述T型吊杆(2)与所述安装板(6)表面的滑槽滑动配合,所述外壳体(1)底部设有夹紧机构(11),所述夹紧机构(11)包括双头螺杆(12),所述双头螺杆(12)的左端贯穿所述外壳体(1)的左侧面,并连接有调节手轮(9),所述双头螺杆(12)右端通过轴承与所述外壳体(1)的右侧壁转动连接,所述双头螺杆(12)的两端均内螺纹连接有夹紧板(13),所述夹紧板(13)与所述臭氧发生器(10)的侧面相抵接,所述臭氧发生器(10)正面设置有出风口(3),所述出风口(3)处安装有若干催化板(5),所述外壳体(1)顶端设有臭氧探测器(4)和臭氧分解模块(7),所述臭氧发生器(10)、所述臭氧探测器(4)及所述臭氧分解模块(7)与控制器电性连接。
2.根据权利要求1所述的一种悬挂的教室消毒仪,其特征在于,所述外壳体(1)左侧面设有通风口(8),所述通风口(8)处安装有过滤网(14)。
3.根据权利要求2所述的一种悬挂的教室消毒仪,其特征在于,所述臭氧发生器(10)上设有与所述通风口(8)相对应的进风口(15)。
4.根据权利要求1所述催化板的制作方法,其特征在于,包括以下步骤
a、将催化板放入由水乙酸锰、六水硝酸镍、六水硝酸铈的混合溶液中浸渍;
b、将浸渍后的催化板放入到马弗炉中,并经程序梯度升温后自然冷却。
5.根据权利要求4所述催化板的制作方法,其特征在于,所述水乙酸锰、六水硝酸镍、六水硝酸铈的摩尔比为1:1:1的60℃饱和溶液。
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