CN204803125U - 一种水纯化及分类使用设备 - Google Patents
一种水纯化及分类使用设备 Download PDFInfo
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- CN204803125U CN204803125U CN201520503676.2U CN201520503676U CN204803125U CN 204803125 U CN204803125 U CN 204803125U CN 201520503676 U CN201520503676 U CN 201520503676U CN 204803125 U CN204803125 U CN 204803125U
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- 238000001223 reverse osmosis Methods 0.000 claims abstract description 29
- 239000002699 waste material Substances 0.000 claims abstract description 8
- 230000000630 rising Effects 0.000 claims description 26
- 238000000746 purification Methods 0.000 claims description 24
- 239000008399 tap water Substances 0.000 claims description 11
- 235000020679 tap water Nutrition 0.000 claims description 11
- 229920000742 Cotton Polymers 0.000 claims description 4
- OKTJSMMVPCPJKN-UHFFFAOYSA-N carbon Chemical compound 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Abstract
本实用新型公开了一种水纯化及分类使用设备,包括装置本体,装置本体上设有进水管、DI水取水管、RO水取水管、和浓水取水管,装置本体内设有过滤器组、反渗透装置、纯化柱组和浓水储存器,进水管一端连接自来水管,另一端连接至过滤器组的进水端,过滤器组的出水端连接至反渗透装置,反渗透装置连接浓水出水管和RO出水管,浓水出水管另一端连接至浓水储存器,RO出水管另一端分别连接至RO水取水管和纯化柱组;所述纯化柱组出水端连接DI水取水管;所述浓水存储器的出水端连接至浓水取水管;该水纯化及分类使用设备将产生的浓水供人们洗手或洗涤器皿,减少了水资源的浪费,达到节约用水的目的。
Description
技术领域
[0001] 本实用新型涉及一种水纯化装置,具体是一种水纯化及分类使用设备。
背景技术
[0002] 目前,实验室使用纯水机来进行纯水制备,通过把城市自来水进行各级过滤,即经过各级滤芯、膜、树脂的过滤、吸附、离子交换等方法,制备出适合于实验要求的纯水、超纯水。这种制备纯水或超纯水的设备以城市自来水为水源,自来水经纯化设备过滤后,一部分成了实验室所需的纯水或超纯水,而另一部分过滤分离出的浓水则成了 “废水”,直接排入了下水管道,弃之不用。这部分被直接排入下水道的浓水数量是制出的纯水或超纯水的1-3倍,这些浓水被直接排走是对水资源的极大浪费。由于各级医疗机构、科研院校、各级实验室均有使用到纯化水设备,有些大型的纯化水设备,一天的纯水产量达几吨,甚至几十吨,而排放的浓水数量更大,造成了巨大的水资源浪费。
实用新型内容
[0003] 本实用新型的目的在于提供一种水纯化及分类使用设备,以解决上述背景技术中提出的问题。
[0004] 为实现上述目的,本实用新型提供如下技术方案:
[0005] —种水纯化及分类使用设备,包括装置本体,其特征在于,所述装置本体上设有进水管、DI水取水管、RO水取水管、浓水取水管;所述装置本体内设有过滤器组、反渗透装置、纯化柱组和浓水储存器,进水管一端连接自来水管,另一端连接至过滤器组的进水端;所述过滤器组的出水端通过反渗透管道连接至反渗透装置,反渗透装置的浓水口连接至浓水出水管,RO水口连接至RO出水管,浓水出水管的另一端连接至浓水储存器,RO出水管的另一端分别连接至RO水取水管和纯化柱组;所述纯化柱组的出水端连接DI水取水管;所述浓水储存器的出水端连接至浓水取水管。
[0006] 作为本实用新型进一步的方案:所述过滤器组由三种串联的过滤器组成,三种过滤器内分别设有PP棉滤芯、颗粒炭滤芯和活性炭滤芯。
[0007] 作为本实用新型进一步的方案:所述反渗透管道上设有进水低压传感器、进水电磁阀和增压栗,增压栗对过滤器组过滤后的自来水进行增压并送入反渗透装置内。
[0008] 作为本实用新型进一步的方案:所述浓水出水管上设有废液比调节阀,RO水取水管上设有RO出水阀;所述DI水取水管上设有DI出水阀门;所述浓水取水管上设有浓水出水阀门。
[0009] 作为本实用新型进一步的方案:所述纯化柱组由一个或者多个串联的纯化柱组成。
[0010] 作为本实用新型进一步的方案:所述纯化柱组进水端与RO出水管之间的管道上还设有出水高压传感器。
[0011] 作为本实用新型进一步的方案:所述浓水储存器上端设有泄压口。
[0012] 与现有技术相比,本实用新型的有益效果是:该水纯化及分类使用设备对自来水进行处理,生产实验所需的RO水和DI水,而在此过程中产生的浓水则供人们洗手或洗涤器皿等作为生活用水使用(非饮用水),与传统的将浓水直接排放的方式相比,减少了水资源的浪费,达到节约用水的目的。
附图说明
[0013] 图1为水纯化及分类使用设备的结构示意图。
[0014] 图中:1-进水管、2-过滤器组、3-进水低压传感器、4-进水电磁阀、5-增压栗、6-反渗透装置、7-R0出水管、8-浓水出水管、9-废液比调节阀、10-出水高压传感器、I1-RO出水阀、12-DI出水阀门、13-纯化柱组、14-DI水取水管、15-R0水取水管、18-泄压口、19-浓水储存器、21-浓水出水阀门、22-浓水取水管、23-装置本体。
具体实施方式
[0015] 下面结合具体实施方式对本专利的技术方案作进一步详细地说明。
[0016] 请参阅图1,一种水纯化及分类使用设备,包括装置本体23,装置本体23上设有进水管1、DI水取水管14、R0水取水管15、和浓水取水管22 ;所述装置本体23内设有过滤器组2、反渗透装置6、纯化柱组13和浓水储存器19,进水管I 一端连接自来水管,另一端连接至过滤器组2的进水端,过滤器组2由三种串联的过滤器组成,三种过滤器内分别设有PP棉滤芯、颗粒炭滤芯和活性炭滤芯;所述过滤器组2的出水端通过反渗透管道连接至反渗透装置6,反渗透管道上设有进水低压传感器3、进水电磁阀4和增压栗5,增压栗5对过滤器组过滤后的自来水进行增压并送入反渗透装置6内,反渗透装置6的浓水口连接至浓水出水管8,RO水口连接至RO出水管7,反渗透装置6对自来水进行处理,并将产生的浓水送入浓水出水管8内,产生的RO水送入RO出水管7内,浓水出水管8的另一端连接至浓水储存器19,RO出水管7的另一端分别连接至RO水取水管15和纯化柱组13,反渗透装置6产生的浓水送入浓水储存器19内,通过浓水取水管22直接取用。反渗透装置6产生的RO水一部分直接通过RO水取水管15直接取用,另一部分送入纯化柱组13内进一步纯化;
[0017] 所述浓水出水管8上设有废液比调节阀9,RO水取水管15上设有RO出水阀11 ;所述纯化柱组13由一个或者多个串联的纯化柱组成,纯化柱组13进水端与RO出水管7之间的管道上还设有出水高压传感器10,纯化柱组13的出水端连接DI水取水管14,DI水取水管14上设有DI出水阀门12 ;
[0018] 所述浓水储存器19的出水端连接至浓水取水管22,浓水取水管22上设有浓水出水阀门21 ;所述浓水储存器19上端设有泄压口 18,用于对浓水储存器19进行泄压,避免浓水储存器19内压力过大。
[0019] 本实用新型的工作原理是:所述水纯化及分类使用设备,自来水经进水管I送入过滤器组2,并依次经过过滤器组2的PP棉滤芯过滤器、颗粒炭滤芯过滤器和活性炭滤芯过滤器过滤后,送入反渗透管道,并经增压栗5增压后并送入反渗透装置6内,反渗透装置6对自来水进行处理,将产生的RO水送入RO出水管7内,并经RO出水管7后,一部分直接通过RO水取水管15取用,供实验所需,另一部分送入纯化柱组13内进一步纯化,经纯化柱组13纯化后的水送入DI水取水管14,供人们实验取用。反渗透装置6产生的浓水送入浓水出水管8内,浓水经过浓水出水管8后,送入浓水储存器19内。浓水储存器19内的浓水送入浓水取水管22供人们洗手或洗涤器皿等使用。
[0020] 所述水纯化及分类使用设备对自来水进行处理,生产实验所需的RO水和DI水,而在此过程中产生的浓水则供人们洗手或洗涤器皿,或存入浓水储存器19,供人们洗手、洗涤器皿或其他日常所需,与传统的将浓水直接排放的方式相比,减少了水资源的浪费,达到节约用水的目的。
[0021] 上面对本专利的较佳实施方式作了详细说明,但是本专利并不限于上述实施方式,在本领域的普通技术人员所具备的知识范围内,还可以在不脱离本专利宗旨的前提下作出各种变化。
Claims (7)
1.一种水纯化及分类使用设备,包括装置本体(23),其特征在于,所述装置本体(23)上设有进水管(I)、DI水取水管(14)、RO水取水管(15)、浓水取水管(22);所述装置本体(23)内设有过滤器组(2)、反渗透装置(6)、纯化柱组(13)和浓水储存器(19),进水管(I) 一端连接自来水管,另一端连接至过滤器组(2)的进水端;所述过滤器组(2)的出水端通过反渗透管道连接至反渗透装置(6),反渗透装置(6)的浓水口连接至浓水出水管(8),RO水口连接至RO出水管(7),浓水出水管(8)的另一端连接至浓水储存器(19),RO出水管(7)的另一端分别连接至RO水取水管(15)和纯化柱组(13);所述纯化柱组(13)的出水端连接DI水取水管(14);所述浓水储存器(19)的出水端连接至浓水取水管(22)。
2.根据权利要求1所述的水纯化及分类使用设备,其特征在于,所述过滤器组(2)由三种串联的过滤器组成,三种过滤器内分别设有PP棉滤芯、颗粒炭滤芯和活性炭滤芯。
3.根据权利要求1或2所述的水纯化及分类使用设备,其特征在于,所述反渗透管道上设有进水低压传感器(3 )、进水电磁阀(4 )和增压栗(5 ),增压栗(5 )对过滤器组(2 )过滤后的自来水进行增压并送入反渗透装置(6)内。
4.根据权利要求3所述的水纯化及分类使用设备,其特征在于,所述浓水出水管(8)上设有废液比调节阀(9),RO水取水管(15)上设有RO出水阀(11);所述DI水取水管(14)上设有DI出水阀门(12);所述浓水取水管(22)上设有浓水出水阀门(21)。
5.根据权利要求1或2或4所述的水纯化及分类使用设备,其特征在于,所述纯化柱组(13)由一个或者多个串联的纯化柱组成。
6.根据权利要求5所述的水纯化及分类使用设备,其特征在于,所述纯化柱组进水端与RO出水管(7 )之间的管道上还设有出水高压传感器(10 )。
7.根据权利要求1或6所述的水纯化及分类使用设备,其特征在于,所述浓水储存器(19)上端设有泄压口(18)。
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