CN107261583A - 一种多功能陶罐过滤装置及其制作方法 - Google Patents
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Abstract
本发明公开了一种多功能陶罐过滤装置及其制作方法,所述多功能陶罐过滤装置包括镂空盖、外壳、扇叶支撑轴、扇叶和多孔过滤陶罐以及出水阀门;所述镂空盖与所述外壳配套,所述扇叶支撑轴上端连在所述镂空盖上,所述扇叶支撑轴下端与所述扇叶通过转动轴承相连接,所述多孔陶罐架在所述外壳上部,所述出水阀门位于所述外壳底端。所述多功能陶罐过滤装置的多孔陶罐具有过滤饮用水的作用,材料安全无害,成本较低,制备过程简单,便于操作。所述涂料可永久释放负离子,增加装置的负离子产生量。
Description
技术领域
本发明属于饮用水处理技术领域,涉及多孔陶罐过滤装置的制备方法,尤其涉及一种多功能陶罐过滤装置及其制作方法。
背景技术
水是生命之源,饮用水安全是人们身体健康的重要保障。然而,随着工农业的发展,各种污染物的排放导致很多地方的饮用水源遭到了不同程度的污染,供水系统对家庭供水的处理有时会因为多种因素无法达到直饮水的标准,根据多项调查结果显示,各地的饮用水源水中细菌指标达标率较低,增加了人群的发病概率。针对这种问题,目前市场上出现了多种类型的家庭饮用水处理装置,然而我国市场上出现的较为普遍的家庭饮用水处理装置价格较高,滤芯更换成本较高。国际上出现了成本较低的多孔陶罐过滤装置和载银多孔陶罐过滤装置,除菌效果明显,虽然成本较低,但功能较为单一,因此,难以满足更高要求,在我国市场上推广较为困难。
为了解决我国市场上较为普及净水装置高成本的问题,以及国际市场上出现的多孔陶罐过滤装置功能单一的问题,本发明提供了一种多功能陶罐过滤装置及其制作方法。本发明利用负载了电气石/氧化锌纳米复合物的多孔过滤陶罐起到杀菌过滤作用,同时利用扇叶涂层中含有电气石-载银氧化锌纳米复合物加强杀菌作用,镂空盖、扇叶支撑轴、扇叶涂层和多孔过滤陶罐的涂层中的含有的电气石均可产生负离子。扇叶通过转动在过滤的过程中提高杀菌效果,在过滤结束后提高产生负离子的效率,使本装置在杀菌的同时还可以通过负离子的产生净化装置附近的空气。
发明内容
针对现有技术的不足,本发明提供了一种多功能陶罐过滤装置,其包括镂空盖、扇叶支撑轴、扇叶和多孔过滤陶罐、外壳、充电电池、充电线、控速开关及出水阀门;所述镂空盖与所述外壳配套,放在所述外壳上方,与所述外壳相连接;
所述扇叶支撑轴上端连在所述镂空盖内部中心位置;所述扇叶支撑轴下端与所述扇叶通过转动轴承相连接;所述扇叶通过电路连接所述控速开关;所述扇叶和所述控速开关通过电路与充电电池相连接;所述充电电池与所述充电线相连;
所述多孔陶罐的上边缘架在所述外壳上开口边缘;所述出水阀门位于所述外壳外侧面底端;所述控速开关位于所述外壳外侧的所述出水阀门上方位置;所述充电电池与所述充电线位于所述外壳外侧的同一侧。所述镂空盖以铁丝作为骨架,外部包覆一层涂料。所述镂空盖中部下方连接着所述扇叶支撑轴,内部设置电线,所述电线与所述充电电池和所述控速开关相连。
所述扇叶支撑轴为圆柱形铁柱,所述圆柱形铁柱外部包覆一层涂料,底部连接所述转动轴承,所述转动轴承连接着所述扇叶。
所述扇叶由市场中常见的pvcu制成,所述pvcu表面包覆涂料。
所述镂空盖铁丝、扇叶支撑轴铁柱以及扇叶外包覆涂料。
上述多功能陶罐过滤装置中的涂料制作步骤如下:
一、将纳米电气石和纳米氧化锌粉按一定比例混合,混合物中纳米电气石的质量分数为50%~90%,纳米氧化锌的质量分数为10%-50%,再加入一定量的去离子水,保证纳米氧化锌和电气石粉的混合物在混合液中质量分数为1%-5%,向混合液中加入六偏磷酸钠,混合液中的六偏磷酸钠的质量分数为1%-5%,磁力搅拌1h后超声30min;
二、另取质量分数为1%的硝酸银溶液,加氨水形成银氨络合溶液,将其按照1:30的体积比加入步骤一中所得的混合液;
三、再加入葡萄糖溶液作为还原剂,混合后的葡萄糖质量分数为0.05%,继续搅拌2h;
四、对步骤三中得到的混合液经过离心洗涤烘干后以300-400℃为焙烧温度焙烧1h,制得了纳米级银掺杂氧化锌电气石复合物;
五、取一定量的步骤四中所得银掺杂氧化锌电气石复合物,加入适量无水乙醇和油酸,用超声波分散30min;
六、加入用无水乙醇溶解的环氧树脂,边搅拌边超声30min;
七、加热蒸发过量的乙醇;
八、冷却后加入适量的环氧树脂固化剂并不停搅拌完成涂料的制备。
所述涂料喷涂在所述镂空盖铁丝、扇叶支撑轴铁柱以及扇叶外。
所述控速开关包括一个高速档开关和一个低速档开关,两个开关通过电线依次连接到电路控制装置和所述转动轴承,所述电路控制装置安装在所述控速开关和所述转动轴承之间。
所述外壳为市场上常见的普通塑料。
所述充电电池与所述充电线相连,充满电后可以在不接外接电源的情况下持续供电。
所述多孔陶罐负载了电气石/氧化锌纳米复合物。
所述多孔陶罐的制作步骤如下:
一、陶土和造孔剂粉碎后过80目的筛并按一定质量比混合,保证混合物中陶土的质量分数为60%-80%,将混合物倒入搅拌器中搅拌均匀,再其中加入一定量的水,加水量约占总重量的20%-35%,继续搅拌,直到所有粉末原料均被润湿并可以揉捏塑造成不同形状停止搅拌;
二、称取一定重量步骤一中所得到的混合物放入罐状模具中,利用压力机将其压制成罐状;
三、成型后将其置于阴凉干燥通风处彻底晾干;
四、放入炉窑中烧制950-1200℃得到用于负载电气石/氧化锌纳米复合物的多孔陶罐。
所述负载了纳米电气石/氧化锌复合物的多孔陶罐的内表面涂覆步骤如下:
一、将纳米电气石和纳米氧化锌粉按一定比例混合,混合物中纳米电气石的质量分数为50%~90%,纳米氧化锌的质量分数为10%-50%,再加入一定量的去离子水,保证纳米氧化锌和电气石粉的混合物质量分数为1%-5%,向混合液中加入六偏磷酸钠,混合液中的六偏磷酸钠的质量分数为1%-5%;
二、磁力搅拌1h后超声30min;
三、将混合液涂于所述多孔陶罐内表面;
四、冲洗烘干后,放入炉窑中经过100-400℃的高温处理1-4h,完成负载了纳米电气石/氧化锌复合物的多孔陶罐的制作。
本发明的有益效果:提供的多功能陶罐过滤装置包括镂空盖、扇叶支撑轴、扇叶和多孔过滤陶罐、外壳、充电电池、充电线、控速开关及出水阀门,可形成一个可控的整体装置。所述多孔陶罐具有过滤饮用水的作用,材料安全无害,成本较低,制备过程简单,便于操作。所述涂料可永久释放负离子,增加装置的负离子产生量。
附图说明
图1为本发明多功能陶罐过滤陶罐的结构示意图;
图2为镂空盖顶部的结构示意图;
图3为多孔陶罐的侧视图。
具体实施方式
下面结合附图和实施例,对本发明进一步详细说明。
图1中1-11号所指部件介绍如下:1.镂空盖:顶部镂空设计,便于进水,同时便于外部光线进入罐内,并有利于罐体内外空气的流通;2.支撑轴:用来固定下部的扇叶,表面包覆银掺杂氧化锌电气石复合物涂层;3.扇叶:扇叶表面包覆银掺杂氧化锌电气石复合物涂层,当罐内有水时可用于搅拌;当罐内无水时可用于加速空气流通,输送产生的负离子;4.低档开关:在罐内有水的情况下,控制扇叶低速旋转,起到搅拌作用;5.高档开关:当罐内无水的情况下,控制扇叶高速旋转,加速空气流通,向外输送产生的负离子,净化空气;6.罐体外壳:用于支撑陶罐和储存出水;7.出水阀门:根据需要控制出水;8.固定螺丝:用于固定盖子和罐体外壳接口,保证扇叶高速运转时的稳定性;9.多孔陶罐:内表层涂有电气石-纳米氧化锌复合物涂层;10.内置充电电池:充电后可以在不接通外接电源的情况下长时间持续供电;11.电线:充电电线,接通外接电源时,可为内置充电电池充电。
实施例1
所述涂料中电气石含量为60%,纳米氧化锌含量为20%,所述氧化锌多功能陶罐的设计容量为9-10L,取长江水9L,检测水中粪大肠菌的含量为16个/ml,将9L长江水样倒入图1中9号陶罐体,按下图1中4号低档开关,用灭菌容器放在出口阀门7处接取出水,9h后水样过滤完成,关闭图1中4号低档开关,并打开5号高档开关,此时,对出水进行检测,结果显示出水中的粪大肠菌指标达到饮用水标准,同时对罐体上方空气中的负离子含量进行检测,结果显示空气负离子含量达到2600个/cm3。
实施例2
所述涂料中电气石粉含量为90%,纳米氧化锌含量为10%,混合后加去离子水,使得固体粉末混合物的质量分数为5%,加入5%的六偏磷酸钠,搅拌磁力搅拌1h后超声30min。另取质量分数为1%的硝酸银溶液,加氨水形成银氨络合溶液,将其按照1:30的体积比加入步骤一中所得的混合液,再加入葡萄糖溶液作为还原剂,混合后的葡萄糖质量分数为0.05%,继续搅拌2h,对得到的混合液经过离心洗涤烘干后以400℃为焙烧温度焙烧1h,制得了纳米级银掺杂氧化锌电气石复合物,取12g所得银掺杂氧化锌电气石复合物,加入150ml乙醇和油酸混合液中,用超声波分散30min,再加入质量分数为90%的用无水乙醇溶解的环氧树脂,边搅拌边超声30min后,加热蒸发过量的乙醇,冷却后加入适量的环氧树脂固化剂并不停搅拌完成涂料的制备。将其均匀喷涂于图1中1号镂空盖的铁丝、2号支撑轴表面和3号扇叶表面。
上述实施例对本发明的技术方案进行了详细说明。显然,本发明并不局限于所描述的实施例。基于本发明中的实施例,熟悉本技术领域的人员还可据此做出多种变化,但任何与本发明等同或相类似的变化都属于本发明保护的范围。
Claims (9)
1.一种多功能陶罐过滤装置,其特征在于,包括镂空盖、外壳、扇叶支撑轴、扇叶和多孔过滤陶罐以及出水阀门;所述镂空盖与所述外壳配套,所述扇叶支撑轴上端连在所述镂空盖上,所述扇叶支撑轴下端与所述扇叶通过转动轴承相连接,所述多孔陶罐架在所述外壳上部,所述出水阀门位于所述外壳底端。
2.根据权利要求1所述装置,其特征在于,所述镂空盖以铁丝作为骨架,外部包覆涂料;所述扇叶支撑轴和所述扇叶外部包覆涂料。
3.根据权利要求1所述装置,其特征在于,所述外壳为塑料外壳。
4.根据权利要求1所述装置,其特征在于,所述装置还带有充电电池、充电线和控速开关,所述充电电池和所述控速开关相连。
5.根据权利要求4所述装置,其特征在于,所述充电电池与所述充电线相连,充满电后在不接外接电源的情况下持续供电。
6.根据权利要求4所述装置,其特征在于,所述控速开关包括一个高速档开关和一个低速档开关,两个开关通过电线依次连接到电路控制装置和所述转动轴承,所述电路控制装置安装在所述控速开关和所述转动轴承之间。
7.根据权利要求1所述多功能陶罐过滤装置的制作方法,其特征在于,包括以下步骤:
1)制备多孔陶罐;
2)在多孔陶罐内表面涂覆纳米电气石/氧化锌复合物;
3)对镂空盖骨架、扇叶支撑轴和扇叶外部包覆涂料;
其中,多孔陶罐的制作步骤如下:
(1)将陶土和造孔剂粉碎后过80目筛混合,混合物中陶土的质量分数为60%-80%,将混合物搅拌后加水,搅拌,加水量占总重量的20%-35%;
(2)将步骤(1)所得混合物放入罐状模具中,压制成罐状;
(3)将步骤(2)所得成型罐干燥晾干;
(4)将步骤(3)所得物放入炉窑中烧制,温度为950-1200℃得到多孔陶罐。
8.根据权利要求7所述方法,其特征在于,所述多孔陶罐内表面的涂覆步骤如下:
(1)将纳米电气石和纳米氧化锌粉按一定比例混合,混合物中纳米电气石的质量分数为50%~90%,纳米氧化锌的质量分数为10%-50%,再加入去离子水,使混合物在混合液中的质量分数为1%-5%,向混合液中加入六偏磷酸钠,混合液中的六偏磷酸钠的质量分数为1%-5%;
(2)搅拌并超声分散步骤(1)所得混合液;
(3)将混合液涂于所述多孔陶罐内表面;
(4)冲洗烘干后,放入炉窑中经过100-400℃的高温处理1-4h。
9.根据权利要求7所述方法,其特征在于,所述涂料通过以下步骤配制:
1)将纳米电气石和纳米氧化锌粉混合,混合物中纳米电气石的质量分数为50%~90%,纳米氧化锌的质量分数为10%-50%,加入去离子水,使混合物质量分数为1%-5%,向混合液中加入六偏磷酸钠,混合液中的六偏磷酸钠的质量分数为1%-5%,搅拌并超声分散该混合液;
2)将1%硝酸银溶液,加氨水形成银氨络合溶液,将该溶液按1:30的体积比加入步骤1)所得混合液;
3)在步骤2)所得混合液中加入葡萄糖溶液作为还原剂,混合后的葡萄糖质量分数为0.05%;
4)将步骤3)得到的混合液离心、洗涤、烘干后以300-400℃焙烧,制得纳米级银掺杂氧化锌电气石复合物;
5)将步骤4)所得银掺杂氧化锌电气石复合物加入无水乙醇和油酸,超声波分散;
6)加入用无水乙醇溶解的环氧树脂,搅拌、超声分散;
7)加热蒸发过量的乙醇;
8)冷却后加入适量的环氧树脂固化剂并搅拌完成涂料的制备。
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