CN118526859A - Gas-liquid separation equipment for sodium hypochlorite generator - Google Patents

Gas-liquid separation equipment for sodium hypochlorite generator Download PDF

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Publication number
CN118526859A
CN118526859A CN202410589657.XA CN202410589657A CN118526859A CN 118526859 A CN118526859 A CN 118526859A CN 202410589657 A CN202410589657 A CN 202410589657A CN 118526859 A CN118526859 A CN 118526859A
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sodium hypochlorite
gas
flange
hypochlorite solution
separation
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陈俊
聂玮
刘彦余
丘贵龙
全伟强
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Fujian Fuhang Xinye Technology Co ltd
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Fujian Fuhang Xinye Technology Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D36/00Filter circuits or combinations of filters with other separating devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D19/00Degasification of liquids

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Abstract

本发明涉及分离设备技术领域,具体为一种次氯酸钠发生器用气液分离设备。本发明要解决的技术问题为:经过分离的次氯酸钠溶液中残留部分气体未与溶液进行分离,直接流出分离设备的内部,降低次氯酸钠与气体分离的程度。技术方案为:提供一种次氯酸钠发生器用气液分离设备,包括分离罐,所述分离罐的表面设置有回流机构。本发明的有益效果是:本发明利用回流单元,通过外接电源启动水泵,通过水泵将连接盒内部的次氯酸钠溶液从连接管输送至回流管,通过第二螺旋叶对次氯酸钠溶液的第二次的导向,进而实现对次氯酸钠溶液进行二次分离,使次氯酸钠溶液与气体之间的分离更加充分,从而能够进一步增加分离气体的效率和气体分离的浓度。

The present invention relates to the technical field of separation equipment, and specifically to a gas-liquid separation equipment for a sodium hypochlorite generator. The technical problem to be solved by the present invention is that the residual part of the gas in the separated sodium hypochlorite solution is not separated from the solution, and directly flows out of the interior of the separation equipment, thereby reducing the degree of separation between the sodium hypochlorite and the gas. The technical solution is: to provide a gas-liquid separation equipment for a sodium hypochlorite generator, including a separation tank, and a reflux mechanism is provided on the surface of the separation tank. The beneficial effects of the present invention are as follows: the present invention utilizes a reflux unit, starts a water pump through an external power supply, and transports the sodium hypochlorite solution inside the connecting box from the connecting pipe to the reflux pipe through the water pump, and guides the sodium hypochlorite solution for the second time through the second spiral blade, thereby realizing secondary separation of the sodium hypochlorite solution, making the separation between the sodium hypochlorite solution and the gas more sufficient, thereby being able to further increase the efficiency of separating the gas and the concentration of the gas separation.

Description

一种次氯酸钠发生器用气液分离设备A gas-liquid separation device for sodium hypochlorite generator

技术领域Technical Field

本发明涉及分离设备技术领域,具体为一种次氯酸钠发生器用气液分离设备。The invention relates to the technical field of separation equipment, in particular to gas-liquid separation equipment for a sodium hypochlorite generator.

背景技术Background Art

次氯酸钠发生器使用的气液分离设备主要用于将产生的气体和液体进行有效分离,确保系统的正常运行和产品质量的稳定性,这种分离设备通常具有高效、可靠的分离性能,能够有效地将气体从液体中分离出来,避免气体对液体质量的影响。The gas-liquid separation equipment used in the sodium hypochlorite generator is mainly used to effectively separate the generated gas and liquid to ensure the normal operation of the system and the stability of product quality. This separation equipment usually has efficient and reliable separation performance, and can effectively separate the gas from the liquid to avoid the impact of the gas on the quality of the liquid.

气液分离设备在对次氯酸钠溶液进行气液分离时,通常时通过进水管将液体输送至分离设备的内腔,通过螺旋叶产生的离心力实现次氯酸钠溶液与气体的分离,分离后的气体会从导向管流入出气管,实现对气体的排出收集,在在分离的过程中,经过分离的次氯酸钠溶液中残留部分气体未与溶液进行分离,就直接流出分离设备的内部,导致次氯酸钠溶液的分离效率降低,降低次氯酸钠与气体分离的程度。为此,我们提出一种次氯酸钠发生器用气液分离设备。When the gas-liquid separation equipment performs gas-liquid separation on the sodium hypochlorite solution, the liquid is usually transported to the inner cavity of the separation equipment through the water inlet pipe, and the centrifugal force generated by the spiral blades is used to separate the sodium hypochlorite solution from the gas. The separated gas will flow from the guide pipe into the gas outlet pipe to realize the discharge and collection of the gas. During the separation process, some of the gas remaining in the separated sodium hypochlorite solution is not separated from the solution and directly flows out of the separation equipment, resulting in a reduction in the separation efficiency of the sodium hypochlorite solution and a reduction in the degree of separation of the sodium hypochlorite and the gas. To this end, we propose a gas-liquid separation equipment for a sodium hypochlorite generator.

发明内容Summary of the invention

本发明的目的在于提供一种次氯酸钠发生器用气液分离设备,以解决上述背景技术中提出的问题。The object of the present invention is to provide a gas-liquid separation device for a sodium hypochlorite generator to solve the problems raised in the above-mentioned background technology.

为实现上述目的,本发明提供如下技术方案:一种次氯酸钠发生器用气液分离设备,,包括分离罐,所述分离罐的内壁固定安装有导向管,所述导向管的表面固定连通有出气管,所述出气管的一端贯穿至分离罐的外侧,所述分离罐的表面固定连通有进水管,所述导向管的表面固定安装第一螺旋叶,所述分离罐的内壁固定安装有分隔板,所述分离罐的表面设置有回流机构;To achieve the above object, the present invention provides the following technical solution: a gas-liquid separation device for a sodium hypochlorite generator, comprising a separation tank, a guide tube is fixedly installed on the inner wall of the separation tank, an air outlet pipe is fixedly connected to the surface of the guide tube, one end of the air outlet pipe penetrates to the outside of the separation tank, a water inlet pipe is fixedly connected to the surface of the separation tank, a first spiral blade is fixedly installed on the surface of the guide tube, a partition plate is fixedly installed on the inner wall of the separation tank, and a reflux mechanism is arranged on the surface of the separation tank;

所述回流机构包括过滤单元,所述过滤单元设置于分离罐的底部,所述过滤单元用于对分离后的次氯酸钠溶液进行过滤;The reflux mechanism includes a filtering unit, which is arranged at the bottom of the separation tank and is used to filter the separated sodium hypochlorite solution;

所述回流机构包括回流单元,所述回流单元设置于分离罐的表面,所述回流单元用于对分离后的次氯酸钠溶液进行二次分离;The reflux mechanism comprises a reflux unit, which is arranged on the surface of the separation tank and is used to perform secondary separation on the separated sodium hypochlorite solution;

所述分离罐的底部设置有搅拌机构,所述搅拌机构用于对过滤后的次氯酸钠溶液进行搅拌,所述搅拌机构与回流单元配合使用。A stirring mechanism is provided at the bottom of the separation tank, and the stirring mechanism is used to stir the filtered sodium hypochlorite solution, and the stirring mechanism is used in conjunction with a reflux unit.

优选的,所述过滤单元包括连接盒,所述连接盒固定连通于分离罐的底部,所述连接盒的内壁固定安装有固定板,所述固定板的顶部开设有固定槽,所述固定槽的内腔滑动连接有滤网架,所述滤网架的内壁固定安装有滤芯,所述连接盒的顶部开设有转动槽,所述滤网架的表面固定安装有转动块,所述转动块的表面与转动槽的内腔滑动连接。Preferably, the filter unit includes a connecting box, which is fixedly connected to the bottom of the separation tank, a fixing plate is fixedly installed on the inner wall of the connecting box, a fixing groove is provided on the top of the fixing plate, a filter frame is slidably connected to the inner cavity of the fixing groove, a filter element is fixedly installed on the inner wall of the filter frame, a rotating groove is provided on the top of the connecting box, a rotating block is fixedly installed on the surface of the filter frame, and the surface of the rotating block is slidably connected to the inner cavity of the rotating groove.

优选的,所述回流单元包括放置板,所述放置板的表面固定安装有水泵,所述连接盒的一侧固定连通有连接管,所述连接管的一端与水泵的输入端固定连接,所述分离罐的表面固定连通有回流管,所述回流管的一端与水泵的输出端固定连接,所述导向管的表面固定安装有第二螺旋叶。Preferably, the reflux unit includes a placement plate, a water pump is fixedly installed on the surface of the placement plate, a connecting pipe is fixedly connected to one side of the connecting box, one end of the connecting pipe is fixedly connected to the input end of the water pump, a reflux pipe is fixedly connected to the surface of the separation tank, one end of the reflux pipe is fixedly connected to the output end of the water pump, and a second spiral blade is fixedly installed on the surface of the guide pipe.

优选的,所述搅拌机构包括连接板,所述连接板固定安装于连接盒的一侧,所述连接板的顶部开设有滑动槽,所述滑动槽的内腔滑动连接有滑动板,所述滑动板的顶部固定安装有电机,所述电机的输出端固定安装有搅拌杆,所述搅拌杆的一端贯穿至连接盒的内腔,所述连接板的内侧固定安装有电动伸缩杆,所述电动伸缩杆的一端与滑动板的一侧固定连接。Preferably, the stirring mechanism includes a connecting plate, which is fixedly installed on one side of the connecting box, a sliding groove is provided on the top of the connecting plate, and a sliding plate is slidably connected to the inner cavity of the sliding groove, a motor is fixedly installed on the top of the sliding plate, a stirring rod is fixedly installed on the output end of the motor, one end of the stirring rod passes through the inner cavity of the connecting box, an electric telescopic rod is fixedly installed on the inner side of the connecting plate, and one end of the electric telescopic rod is fixedly connected to one side of the sliding plate.

优选的,所述分离罐的底部固定安装有第一法兰,所述连接盒的顶部固定安装有第二法兰,所述第一法兰的底部与第二法兰的顶部相接触,所述第一法兰与第二法兰的内壁通过螺栓固定连接。Preferably, a first flange is fixedly mounted on the bottom of the separation tank, a second flange is fixedly mounted on the top of the connection box, the bottom of the first flange contacts the top of the second flange, and the first flange and the inner wall of the second flange are fixedly connected by bolts.

优选的,所述第一法兰的底部固定安装有连接环,所述连接环的内腔与第二法兰的内腔滑动连接。Preferably, a connecting ring is fixedly mounted on the bottom of the first flange, and the inner cavity of the connecting ring is slidably connected to the inner cavity of the second flange.

优选的,所述第二法兰的顶部开设有对接槽,所述第一法兰的底部固定安装有对接杆,所述对接杆的表面与对接槽的内腔滑动连接。Preferably, a docking groove is formed on the top of the second flange, a docking rod is fixedly mounted on the bottom of the first flange, and a surface of the docking rod is slidably connected to an inner cavity of the docking groove.

优选的,所述分离罐的表面固定安装有支撑板,所述支撑板的内壁与回流管的表面固定连接。Preferably, a support plate is fixedly mounted on the surface of the separation tank, and the inner wall of the support plate is fixedly connected to the surface of the reflux pipe.

优选的,所述滑动槽的内腔开设有导向槽,所述滑动板的表面固定安装有导向块,所述导向块与导向槽的内腔滑动连接。Preferably, a guide groove is provided in the inner cavity of the sliding groove, and a guide block is fixedly mounted on the surface of the sliding plate, and the guide block is slidably connected to the inner cavity of the guide groove.

优选的,所述第二法兰的顶部固定安装有密封圈,所述密封圈的表面与第一法兰的底部紧密接触。Preferably, a sealing ring is fixedly mounted on the top of the second flange, and the surface of the sealing ring is in close contact with the bottom of the first flange.

与现有技术相比,本发明的有益效果是:Compared with the prior art, the present invention has the following beneficial effects:

1.本发明利用过滤单元,能够对分离后的次氯酸钠溶液进行过滤,通过滤网架对分离后的次氯酸钠溶液进行第一过滤,对次氯酸钠溶液中较大的颗粒进行过滤,通过滤芯对次氯酸钠溶液中细小的颗粒进行过滤,实现对次氯酸钠溶液的第二次过滤,能够为后续的二次分离减少负担,使第二次分离更加充分。1. The present invention utilizes a filtering unit to filter the separated sodium hypochlorite solution, performs a first filtration on the separated sodium hypochlorite solution through a filter frame, filters larger particles in the sodium hypochlorite solution, and filters fine particles in the sodium hypochlorite solution through a filter element to achieve a second filtration of the sodium hypochlorite solution, which can reduce the burden on subsequent secondary separation and make the second separation more sufficient.

2.本发明利用回流单元,经过对分离后的次氯酸钠溶液进行过滤后,次氯酸钠溶液会流向连接盒的底部,通过外接电源启动水泵,通过水泵将连接盒内部的次氯酸钠溶液从连接管输送至回流管,并由回流管将次氯酸钠溶液重新输送至分离罐的内腔,通过第二螺旋叶对次氯酸钠溶液的第二次的导向,产生离心力,进而实现对次氯酸钠溶液进行二次分离,使次氯酸钠溶液与气体之间的分离更加充分,从而能够进一步增加分离气体的效率和气体分离的浓度。2. The present invention utilizes a reflux unit. After filtering the separated sodium hypochlorite solution, the sodium hypochlorite solution will flow to the bottom of the connection box. The water pump is started by an external power supply. The sodium hypochlorite solution inside the connection box is transported from the connecting pipe to the reflux pipe by the water pump, and the sodium hypochlorite solution is re-transported to the inner cavity of the separation tank by the reflux pipe. The second spiral blade guides the sodium hypochlorite solution for the second time to generate centrifugal force, thereby realizing secondary separation of the sodium hypochlorite solution, making the separation between the sodium hypochlorite solution and the gas more complete, thereby further increasing the efficiency of gas separation and the concentration of gas separation.

3.本发明利用搅拌机构,通过电机带动搅拌杆在连接盒内腔的转动,带动底部的次氯酸钠溶液进行搅拌,有助于打破气液界面上的平衡状态,使气体分子更容易从次氯酸钠溶液中逸出,此外搅拌还可以增加气体与次氯酸钠溶液之间的接触面积,提高传质效率,通过电动伸缩杆带动滑动板在连接板的顶部保持水平的进行移动,从而带动搅拌杆在不同的位置进行角度,从而增加搅拌杆对次氯酸钠溶液搅拌的程度,能够进一步促进搅拌杆的工作效果。3. The present invention utilizes a stirring mechanism, and drives the stirring rod to rotate in the inner cavity of the connecting box through a motor, so as to drive the sodium hypochlorite solution at the bottom to stir, which helps to break the equilibrium state on the gas-liquid interface and makes it easier for gas molecules to escape from the sodium hypochlorite solution. In addition, stirring can also increase the contact area between the gas and the sodium hypochlorite solution, and improve the mass transfer efficiency. The sliding plate is driven by the electric telescopic rod to move horizontally on the top of the connecting plate, thereby driving the stirring rod to move at different positions, thereby increasing the degree to which the stirring rod stirs the sodium hypochlorite solution, and can further promote the working effect of the stirring rod.

附图说明BRIEF DESCRIPTION OF THE DRAWINGS

图1为本发明整体结构示意图;Fig. 1 is a schematic diagram of the overall structure of the present invention;

图2为本发明导向管与第一螺旋叶的结构示意图;FIG2 is a schematic structural diagram of a guide tube and a first spiral blade according to the present invention;

图3为本发明结构示意图过滤单元的结构分解图;FIG3 is a structural exploded view of a filter unit of the present invention;

图4为本发明图第一螺旋叶与第二螺旋叶的结构示意图;FIG4 is a schematic diagram of the structure of the first spiral leaf and the second spiral leaf of the present invention;

图5为本发明搅拌机构的结构示意图;FIG5 is a schematic structural diagram of a stirring mechanism of the present invention;

图6为本发明第一法兰与第二法兰的结构示意图。FIG. 6 is a schematic structural diagram of the first flange and the second flange of the present invention.

图中:1、分离罐;11、导向管;12、出气管;13、进水管;14、第一螺旋叶;15、分隔板;2、回流机构;21、过滤单元;2101、连接盒;2102、固定板;2103、固定槽;2104、滤网架;2105、滤芯;2106、转动槽;2107、转动块;2108、第一法兰;2109、第二法兰;2110、连接环;2111、对接槽;2112、对接杆;2113、密封圈;22、回流单元;2201、放置板;2202、水泵;2203、连接管;2204、回流管;2205、第二螺旋叶;2206、支撑板;3、搅拌机构;31、连接板;32、滑动槽;33、滑动板;34、电机;35、搅拌杆;36、电动伸缩杆;37、导向槽;38、导向块。In the figure: 1, separation tank; 11, guide pipe; 12, air outlet pipe; 13, water inlet pipe; 14, first spiral blade; 15, partition plate; 2, reflux mechanism; 21, filter unit; 2101, connection box; 2102, fixing plate; 2103, fixing groove; 2104, filter frame; 2105, filter element; 2106, rotating groove; 2107, rotating block; 2108, first flange; 2109, second flange; 2110, connecting ring; 2 111. docking groove; 2112. docking rod; 2113. sealing ring; 22. reflux unit; 2201. placement plate; 2202. water pump; 2203. connecting pipe; 2204. reflux pipe; 2205. second spiral blade; 2206. support plate; 3. stirring mechanism; 31. connecting plate; 32. sliding groove; 33. sliding plate; 34. motor; 35. stirring rod; 36. electric telescopic rod; 37. guide groove; 38. guide block.

具体实施方式DETAILED DESCRIPTION

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。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

实施例一Embodiment 1

请参阅图1-6,本发明提供一种技术方案:一种次氯酸钠发生器用气液分离设备,本发明针对背景技术中提到的技术问题进行相应的改进,包括分离罐1,分离罐1的内壁固定安装有导向管11,导向管11的表面固定连通有出气管12,出气管12的一端贯穿至分离罐1的外侧,分离罐1的表面固定连通有进水管13,导向管11的表面固定安装第一螺旋叶14,分离罐1的内壁固定安装有分隔板15,分离罐1的表面设置有回流机构2;Please refer to Figures 1-6. The present invention provides a technical solution: a gas-liquid separation device for a sodium hypochlorite generator. The present invention makes corresponding improvements to the technical problems mentioned in the background technology, including a separation tank 1, a guide tube 11 is fixedly installed on the inner wall of the separation tank 1, an air outlet pipe 12 is fixedly connected to the surface of the guide tube 11, one end of the air outlet pipe 12 penetrates to the outside of the separation tank 1, a water inlet pipe 13 is fixedly connected to the surface of the separation tank 1, a first spiral blade 14 is fixedly installed on the surface of the guide tube 11, a partition plate 15 is fixedly installed on the inner wall of the separation tank 1, and a reflux mechanism 2 is arranged on the surface of the separation tank 1;

回流机构2包括过滤单元21,过滤单元21设置于分离罐1的底部,过滤单元21用于对分离后的次氯酸钠溶液进行过滤;The reflux mechanism 2 includes a filtering unit 21, which is disposed at the bottom of the separation tank 1 and is used to filter the separated sodium hypochlorite solution;

过滤单元21包括连接盒2101,连接盒2101固定连通于分离罐1的底部,连接盒2101的内壁固定安装有固定板2102,固定板2102的顶部开设有固定槽2103,固定槽2103的内腔滑动连接有滤网架2104,滤网架2104的内壁固定安装有滤芯2105,连接盒2101的顶部开设有转动槽2106,滤网架2104的表面固定安装有转动块2107,转动块2107的表面与转动槽2106的内腔滑动连接;The filter unit 21 includes a connection box 2101, which is fixedly connected to the bottom of the separation tank 1, and a fixed plate 2102 is fixedly installed on the inner wall of the connection box 2101. A fixed groove 2103 is provided on the top of the fixed plate 2102. A filter frame 2104 is slidably connected to the inner cavity of the fixed groove 2103. A filter element 2105 is fixedly installed on the inner wall of the filter frame 2104. A rotating groove 2106 is provided on the top of the connection box 2101. A rotating block 2107 is fixedly installed on the surface of the filter frame 2104. The surface of the rotating block 2107 is slidably connected to the inner cavity of the rotating groove 2106.

分离罐1的底部固定安装有第一法兰2108,连接盒2101的顶部固定安装有第二法兰2109,第一法兰2108的底部与第二法兰2109的顶部相接触,第一法兰2018与第二法兰2109的内壁通过螺栓固定连接;A first flange 2108 is fixedly installed at the bottom of the separation tank 1, and a second flange 2109 is fixedly installed at the top of the connection box 2101. The bottom of the first flange 2108 contacts the top of the second flange 2109, and the first flange 2108 is fixedly connected to the inner wall of the second flange 2109 by bolts;

第一法兰2108的底部固定安装有连接环2110,连接环2110的内腔与第二法兰2109的内腔滑动连接;A connecting ring 2110 is fixedly installed at the bottom of the first flange 2108, and the inner cavity of the connecting ring 2110 is slidably connected with the inner cavity of the second flange 2109;

第二法兰2109的顶部开设有对接槽2111,第一法兰2108的底部固定安装有对接杆2112,对接杆2112的表面与对接槽2111的内腔滑动连接;A docking groove 2111 is formed on the top of the second flange 2109, and a docking rod 2112 is fixedly installed on the bottom of the first flange 2108. The surface of the docking rod 2112 is slidably connected with the inner cavity of the docking groove 2111.

第二法兰2109的顶部固定安装有密封圈2113,密封圈2113的表面与第一法兰2108的底部紧密接触。A sealing ring 2113 is fixedly mounted on the top of the second flange 2109 , and the surface of the sealing ring 2113 is in close contact with the bottom of the first flange 2108 .

本实施例的具体实施方式为:使用时,将第一法兰2108与第二法兰2109进行对接,通过对接槽2111与对接杆2112的滑动连接,实现第一法兰2108与第二法兰2109的连接孔精准堆积,通过螺栓,使第一法兰2108与第二法兰2109进行紧密连接,通过连接环2110进入第二法兰2109的内腔,能够增加第一法兰2108与的人法兰之间的密封性,并通过密封垫能够进一步增加二者之间的密封性,保证了次氯酸钠溶液不会出现外溢,将与气体混合的次氯酸钠溶液从进水管13输送至分离罐1的内腔,次氯酸钠溶液在重力的作用下,会与导向管11表面的第一螺旋叶14的表面接触,通过第一螺旋叶14对次氯酸钠溶液的流向进行导向,通过在第一螺旋叶14的表面滑动,使溶液产生离心力,次氯酸钠溶液由于惯性作用会被甩向外侧,而气体则更倾向于停留在中心区域,实现了气液的分离,被甩向外侧的次氯酸钠溶液,会通过分隔板15进入分离罐1的底部,而分离的后的气体通过导向管11进入出气管12排出,完成气液的第一次分离,第一次分离后的次氯酸钠溶液会在自身重力的作用下,进入连接盒2101的内腔,并穿过滤网架2104与滤芯2105,通过滤网架2104对较大颗粒进行第一过滤,再次通过滤芯2105对溶液中细小的颗粒进行过滤,滤芯2105由聚丙烯材料制成,具有高强度的耐腐蚀性质,能够满足对次氯酸钠溶液的过滤,保证滤芯2105过滤的稳定性,能够对分离后的次氯酸钠溶液进行二次过滤进行准备,从而减轻二次过滤的负担,长时间的使用,滤芯2105和滤网架2104需要更换与清洗,使第一法兰2108与第二法兰2109进行分离,通过转动滤网架2104,通过转动块2107在转动槽2106的内腔滑动,使转动块2107与转动槽2106顶部的开口处重合,能够使滤网架2104移动出固定槽2103的内腔,完成固定板2102与滤网架2104的分离,实现滤网架2104与滤芯2105的取出更换,实现滤网架2104与滤芯2105的拆除与更换,能够减少滤网架2104与滤芯2105的更换时间。The specific implementation of this embodiment is as follows: when in use, the first flange 2108 is docked with the second flange 2109, and the connecting holes of the first flange 2108 and the second flange 2109 are accurately stacked through the sliding connection between the docking groove 2111 and the docking rod 2112. The first flange 2108 and the second flange 2109 are tightly connected through bolts, and the inner cavity of the second flange 2109 is entered through the connecting ring 2110, which can increase the sealing between the first flange 2108 and the second flange, and the sealing gasket can further increase the sealing between the two, thereby ensuring that the sodium hypochlorite solution will not overflow and the sodium hypochlorite solution mixed with the gas will not overflow. The sodium hypochlorite solution is transported from the water inlet pipe 13 to the inner cavity of the separation tank 1. Under the action of gravity, the sodium hypochlorite solution will contact the surface of the first spiral leaf 14 on the surface of the guide tube 11. The flow direction of the sodium hypochlorite solution is guided by the first spiral leaf 14. By sliding on the surface of the first spiral leaf 14, the solution generates centrifugal force. The sodium hypochlorite solution will be thrown outward due to inertia, while the gas is more inclined to stay in the central area, realizing the separation of gas and liquid. The sodium hypochlorite solution thrown outward will enter the bottom of the separation tank 1 through the partition plate 15, and the separated gas will enter the gas outlet pipe 12 through the guide tube 11 and be discharged, completing the gas-liquid separation. The first separation, the sodium hypochlorite solution after the first separation will enter the inner cavity of the connecting box 2101 under the action of its own gravity, and pass through the filter frame 2104 and the filter element 2105, and the larger particles will be filtered for the first time through the filter frame 2104, and the fine particles in the solution will be filtered again through the filter element 2105. The filter element 2105 is made of polypropylene material, which has high-strength corrosion resistance and can meet the filtering requirements of the sodium hypochlorite solution. The stability of the filtration of the filter element 2105 can be ensured, and the sodium hypochlorite solution after the separation can be prepared for secondary filtration, thereby reducing the burden of secondary filtration. After long-term use, the filter element 2105 The filter frame 2104 needs to be replaced and cleaned, so the first flange 2108 is separated from the second flange 2109. By rotating the filter frame 2104, the rotating block 2107 slides in the inner cavity of the rotating groove 2106, so that the rotating block 2107 coincides with the opening at the top of the rotating groove 2106, and the filter frame 2104 can be moved out of the inner cavity of the fixed groove 2103, completing the separation of the fixed plate 2102 and the filter frame 2104, and realizing the removal and replacement of the filter frame 2104 and the filter element 2105. The filter frame 2104 and the filter element 2105 can be removed and replaced, and the replacement time of the filter frame 2104 and the filter element 2105 can be reduced.

利用过滤单元21,能够对分离后的次氯酸钠溶液进行过滤,通过滤网架2104对分离后的次氯酸钠溶液进行第一过滤,对次氯酸钠溶液中较大的颗粒进行过滤,通过滤芯2105对次氯酸钠溶液中细小的颗粒进行过滤,实现对次氯酸钠溶液的第二次过滤,能够为后续的二次分离减少负担,使第二次分离更加充分。The filter unit 21 can be used to filter the separated sodium hypochlorite solution. The separated sodium hypochlorite solution is first filtered through the filter frame 2104 to filter larger particles in the sodium hypochlorite solution. The fine particles in the sodium hypochlorite solution are filtered through the filter element 2105 to achieve a second filtration of the sodium hypochlorite solution, which can reduce the burden on the subsequent secondary separation and make the second separation more complete.

实施例二Embodiment 2

请参阅图1-6,本发明提供一种技术方案:一种次氯酸钠发生器用气液分离设备,本发明针对背景技术中提到的技术问题进行相应的改进,回流机构2包括回流单元22,回流单元22设置于分离罐1的表面,回流单元22用于对分离后的次氯酸钠溶液进行二次分离;Please refer to Figures 1-6. The present invention provides a technical solution: a gas-liquid separation device for a sodium hypochlorite generator. The present invention makes corresponding improvements to the technical problems mentioned in the background technology. The reflux mechanism 2 includes a reflux unit 22, which is arranged on the surface of the separation tank 1. The reflux unit 22 is used to perform secondary separation on the separated sodium hypochlorite solution;

回流单元22包括放置板2201,放置板2201的表面固定安装有水泵2202,连接盒2101的一侧固定连通有连接管2203,连接管2203的一端与水泵2202的输入端固定连接,分离罐1的表面固定连通有回流管2204,回流管2204的一端与水泵2202的输出端固定连接,导向管11的表面固定安装有第二螺旋叶2205;The reflux unit 22 includes a placement plate 2201, a water pump 2202 is fixedly installed on the surface of the placement plate 2201, a connecting pipe 2203 is fixedly connected to one side of the connection box 2101, one end of the connecting pipe 2203 is fixedly connected to the input end of the water pump 2202, a reflux pipe 2204 is fixedly connected to the surface of the separation tank 1, one end of the reflux pipe 2204 is fixedly connected to the output end of the water pump 2202, and a second spiral blade 2205 is fixedly installed on the surface of the guide pipe 11;

分离罐1的表面固定安装有支撑板2206,支撑板2206的内壁与回流管2204的表面固定连接。A support plate 2206 is fixedly mounted on the surface of the separation tank 1 , and an inner wall of the support plate 2206 is fixedly connected to the surface of the reflux pipe 2204 .

本实施例的具体实施方式为:经过对分离后的次氯酸钠溶液进行过滤后,次氯酸钠溶液会流向连接盒2101的底部,通过外接电源启动水泵2202,通过水泵2202将连接盒2101内部的次氯酸钠溶液从连接管2203输送至回流管2204,并由回流管2204将次氯酸钠溶液重新输送至分离罐1的内腔,同时通过回流管2204的导向,使回流后的次氯酸钠溶液能够与第二螺旋叶2205进行接触,通过第二螺旋叶2205对次氯酸钠溶液的第二次的导向,产生离心力,进而实现对次氯酸钠溶液进行二次分离,在工作的过程中,通过支撑板2206对回流管2204的支撑,保证回流管2204工作的稳定性,实现将过滤后的次氯酸钠溶液中剩余的气体进行分离,使次氯酸钠溶液与气体之间的分离更加充分,从而能够进一步增加分离气体的效率和气体分离的浓度。The specific implementation of this embodiment is as follows: after filtering the separated sodium hypochlorite solution, the sodium hypochlorite solution will flow to the bottom of the connection box 2101, and the water pump 2202 will be started by an external power supply, and the sodium hypochlorite solution in the connection box 2101 will be transported from the connection pipe 2203 to the return pipe 2204 by the water pump 2202, and the return pipe 2204 will transport the sodium hypochlorite solution back to the inner cavity of the separation tank 1, and at the same time, the return pipe 2204 will guide the return pipe 2204 to allow the refluxed sodium hypochlorite solution to flow to the second spiral The second spiral blade 2205 contacts the sodium hypochlorite solution, and the second spiral blade 2205 guides the sodium hypochlorite solution for the second time, thereby generating centrifugal force, thereby realizing secondary separation of the sodium hypochlorite solution. During the operation, the support plate 2206 supports the reflux pipe 2204 to ensure the stability of the reflux pipe 2204, so as to separate the remaining gas in the filtered sodium hypochlorite solution, so as to make the separation between the sodium hypochlorite solution and the gas more complete, thereby further increasing the efficiency of separating the gas and the concentration of the gas separation.

利用回流单元22,经过对分离后的次氯酸钠溶液进行过滤后,次氯酸钠溶液会流向连接盒2101的底部,通过外接电源启动水泵2202,通过水泵2202将连接盒2101内部的次氯酸钠溶液从连接管2203输送至回流管2204,并由回流管2204将次氯酸钠溶液重新输送至分离罐1的内腔,通过第二螺旋叶2205对次氯酸钠溶液的第二次的导向,产生离心力,进而实现对次氯酸钠溶液进行二次分离,使次氯酸钠溶液与气体之间的分离更加充分,从而能够进一步增加分离气体的效率和气体分离的浓度。By using the reflux unit 22, after filtering the separated sodium hypochlorite solution, the sodium hypochlorite solution will flow to the bottom of the connection box 2101, and the water pump 2202 will be started by an external power supply. The sodium hypochlorite solution inside the connection box 2101 will be transported from the connecting pipe 2203 to the reflux pipe 2204 by the water pump 2202, and the sodium hypochlorite solution will be transported back to the inner cavity of the separation tank 1 by the reflux pipe 2204. The second spiral blade 2205 guides the sodium hypochlorite solution for the second time to generate centrifugal force, thereby realizing secondary separation of the sodium hypochlorite solution, making the separation between the sodium hypochlorite solution and the gas more complete, thereby further increasing the efficiency of gas separation and the concentration of gas separation.

实施例三Embodiment 3

请参阅图1-6,本发明提供一种技术方案:一种次氯酸钠发生器用气液分离设备,本发明针对背景技术中提到的技术问题进行相应的改进,搅拌机构3用于对过滤后的次氯酸钠溶液进行搅拌,搅拌机构3与回流单元22配合使用;Please refer to Figures 1-6. The present invention provides a technical solution: a gas-liquid separation device for a sodium hypochlorite generator. The present invention makes corresponding improvements to the technical problems mentioned in the background technology. The stirring mechanism 3 is used to stir the filtered sodium hypochlorite solution. The stirring mechanism 3 is used in conjunction with the reflux unit 22.

搅拌机构3包括连接板31,连接板31固定安装于连接盒2101的一侧,连接板31的顶部开设有滑动槽32,滑动槽32的内腔滑动连接有滑动板33,滑动板33的顶部固定安装有电机34,电机34的输出端固定安装有搅拌杆35,搅拌杆35的一端贯穿至连接盒2101的内腔,连接板31的内侧固定安装有电动伸缩杆36,电动伸缩杆36的一端与滑动板33的一侧固定连接;The stirring mechanism 3 includes a connecting plate 31, which is fixedly installed on one side of the connecting box 2101. A sliding groove 32 is provided on the top of the connecting plate 31. A sliding plate 33 is slidably connected to the inner cavity of the sliding groove 32. A motor 34 is fixedly installed on the top of the sliding plate 33. A stirring rod 35 is fixedly installed on the output end of the motor 34. One end of the stirring rod 35 passes through the inner cavity of the connecting box 2101. An electric telescopic rod 36 is fixedly installed on the inner side of the connecting plate 31. One end of the electric telescopic rod 36 is fixedly connected to one side of the sliding plate 33.

滑动槽32的内腔开设有导向槽37,滑动板33的表面固定安装有导向块38,导向块38与导向槽37的内腔滑动连接。A guide groove 37 is formed in the inner cavity of the sliding groove 32 , and a guide block 38 is fixedly mounted on the surface of the sliding plate 33 . The guide block 38 is slidably connected to the inner cavity of the guide groove 37 .

本实施例的具体实施方式为:在次氯酸钠溶液流向连接盒2101的底部时,通过外接电源启动电机34,通过电机34带动搅拌杆35在连接盒2101内腔的转动,带动底部的次氯酸钠溶液进行搅拌,在搅拌的过程中,增加次氯酸钠溶液中的湍流和扰动,有助于打破气液界面上的平衡状态,使气体分子更容易从次氯酸钠溶液中逸出,此外搅拌还可以增加气体与次氯酸钠溶液之间的接触面积,提高传质效率,从而进一步促进气体的分离,在搅拌的过程中,通过外接电源启动电动伸缩杆36,通过电动伸缩杆36带动滑动板33在滑动槽32的内腔滑动,通过导向块38与导向槽37的滑动连接,能够时滑动板33在连接板31的顶部保持水平的进行移动,从而带动搅拌杆35在不同的位置进行角度,从而增加搅拌杆35对次氯酸钠溶液搅拌的程度,能够进一步促进搅拌杆35的工作效果。The specific implementation of this embodiment is as follows: when the sodium hypochlorite solution flows to the bottom of the connection box 2101, the motor 34 is started by an external power supply, and the motor 34 drives the stirring rod 35 to rotate in the inner cavity of the connection box 2101, so as to drive the sodium hypochlorite solution at the bottom to be stirred. During the stirring process, the turbulence and disturbance in the sodium hypochlorite solution are increased, which helps to break the equilibrium state on the gas-liquid interface, so that the gas molecules can escape from the sodium hypochlorite solution more easily. In addition, stirring can also increase the contact area between the gas and the sodium hypochlorite solution, improve the mass transfer efficiency, and further promote the separation of the gas. During the stirring process, the electric telescopic rod 36 is started by an external power supply, and the electric telescopic rod 36 drives the sliding plate 33 to slide in the inner cavity of the sliding groove 32. Through the sliding connection between the guide block 38 and the guide groove 37, the sliding plate 33 can be kept horizontally moving at the top of the connection plate 31, thereby driving the stirring rod 35 to move at different positions, thereby increasing the degree of stirring of the sodium hypochlorite solution by the stirring rod 35, and further promoting the working effect of the stirring rod 35.

利用搅拌机构3,通过电机34带动搅拌杆35在连接盒2101内腔的转动,带动底部的次氯酸钠溶液进行搅拌,有助于打破气液界面上的平衡状态,使气体分子更容易从次氯酸钠溶液中逸出,此外搅拌还可以增加气体与次氯酸钠溶液之间的接触面积,提高传质效率,通过电动伸缩杆36带动滑动板33在连接板31的顶部保持水平的进行移动,从而带动搅拌杆35在不同的位置进行角度,从而增加搅拌杆35对次氯酸钠溶液搅拌的程度,能够进一步促进搅拌杆35的工作效果。By utilizing the stirring mechanism 3, the stirring rod 35 is driven by the motor 34 to rotate in the inner cavity of the connecting box 2101, driving the sodium hypochlorite solution at the bottom to stir, which helps to break the equilibrium state on the gas-liquid interface and make it easier for gas molecules to escape from the sodium hypochlorite solution. In addition, stirring can also increase the contact area between the gas and the sodium hypochlorite solution and improve the mass transfer efficiency. The sliding plate 33 is driven by the electric telescopic rod 36 to move horizontally on the top of the connecting plate 31, thereby driving the stirring rod 35 to adjust the angle at different positions, thereby increasing the degree to which the stirring rod 35 stirs the sodium hypochlorite solution, which can further promote the working effect of the stirring rod 35.

工作原理:使用时,将第一法兰2108与第二法兰2109进行对接,通过对接槽2111与对接杆2112的滑动连接,实现第一法兰2108与第二法兰2109的连接孔精准堆积,通过螺栓,使第一法兰2108与第二法兰2109进行紧密连接,通过连接环2110进入第二法兰2109的内腔,能够增加第一法兰2108与的人法兰之间的密封性,并通过密封垫能够进一步增加二者之间的密封性,保证了次氯酸钠溶液不会出现外溢,将与气体混合的次氯酸钠溶液从进水管13输送至分离罐1的内腔,次氯酸钠溶液在重力的作用下,会与导向管11表面的第一螺旋叶14的表面接触,通过第一螺旋叶14对次氯酸钠溶液的流向进行导向,通过在第一螺旋叶14的表面滑动,使溶液产生离心力,次氯酸钠溶液由于惯性作用会被甩向外侧,而气体则更倾向于停留在中心区域,实现了气液的分离,被甩向外侧的次氯酸钠溶液,会通过分隔板15进入分离罐1的底部,而分离的后的气体通过导向管11进入出气管12排出,完成气液的第一次分离,第一次分离后的次氯酸钠溶液会在自身重力的作用下,进入连接盒2101的内腔,并穿过滤网架2104与滤芯2105,通过滤网架2104对较大颗粒进行第一过滤,再次通过滤芯2105对溶液中细小的颗粒进行过滤,滤芯2105由聚丙烯材料制成,具有高强度的耐腐蚀性质,能够满足对次氯酸钠溶液的过滤,保证滤芯2105过滤的稳定性,能够对分离后的次氯酸钠溶液进行二次过滤进行准备,从而减轻二次过滤的负担,经过对分离后的次氯酸钠溶液进行过滤后,次氯酸钠溶液会流向连接盒2101的底部,通过外接电源启动水泵2202,通过水泵2202将连接盒2101内部的次氯酸钠溶液从连接管2203输送至回流管2204,并由回流管2204将次氯酸钠溶液重新输送至分离罐1的内腔,同时通过回流管2204的导向,使回流后的次氯酸钠溶液能够与第二螺旋叶2205进行接触,通过第二螺旋叶2205对次氯酸钠溶液的第二次的导向,产生离心力,进而实现对次氯酸钠溶液进行二次分离,在工作的过程中,通过支撑板2206对回流管2204的支撑,保证回流管2204工作的稳定性,实现将过滤后的次氯酸钠溶液中剩余的气体进行分离,使次氯酸钠溶液与气体之间的1分离更加充分,从而能够进一步增加分离气体的效率和气体分离的浓度,在次氯酸钠溶液流向连接盒2101的底部时,通过外接电源启动电机34,通过电机34带动搅拌杆35在连接盒2101内腔的转动,带动底部的次氯酸钠溶液进行搅拌,在搅拌的过程中,增加次氯酸钠溶液中的湍流和扰动,有助于打破气液界面上的平衡状态,使气体分子更容易从次氯酸钠溶液中,此外,搅拌还可以增加气体与次氯酸钠溶液之间的接触面积,提高传质效率,从而进一步促进气体的分离,在搅拌的过程中,通过外接电源启动电动伸缩杆36,通过电动伸缩杆36带动滑动板33在滑动槽32的内腔滑动,通过导向块38与导向槽37的滑动连接,能够时滑动板33在连接板31的顶部保持水平的进行移动,从而带动搅拌杆35在不同的位置进行角度,从而增加搅拌杆35对次氯酸钠溶液搅拌的程度,能够进一步促进搅拌杆35的工作效果。Working principle: when in use, the first flange 2108 is docked with the second flange 2109, and the connecting holes of the first flange 2108 and the second flange 2109 are accurately stacked through the sliding connection between the docking groove 2111 and the docking rod 2112. The first flange 2108 and the second flange 2109 are tightly connected through bolts, and the inner cavity of the second flange 2109 is entered through the connecting ring 2110, which can increase the sealing between the first flange 2108 and the inner cavity of the second flange 2109, and the sealing gasket can further increase the sealing between the two, ensuring that the sodium hypochlorite solution will not overflow. The sodium hypochlorite solution mixed with the gas is transported from the water inlet pipe 13 to the inner cavity of the separation tank 1. Under the action of gravity, the sodium hypochlorite solution will contact the surface of the first spiral leaf 14 on the surface of the guide pipe 11, and the flow direction of the sodium hypochlorite solution will be guided by the first spiral leaf 14. By sliding on the surface of the first spiral leaf 14, the solution generates centrifugal force, and the sodium hypochlorite solution is inertial. The sodium hypochlorite solution thrown to the outside will enter the bottom of the separation tank 1 through the partition plate 15, and the separated gas will enter the outlet pipe 12 through the guide pipe 11 and be discharged, completing the first separation of gas and liquid. The sodium hypochlorite solution after the first separation will enter the inner cavity of the connecting box 2101 under the action of its own gravity, and pass through the filter frame 2104 and the filter element 2105. The larger particles will be first filtered by the filter frame 2104, and the fine particles in the solution will be filtered again by the filter element 2105. The filter element 2105 is made of polypropylene material and has high-strength corrosion resistance. It can meet the filtering requirements of the sodium hypochlorite solution and ensure the filtration stability of the filter element 2105. It can prepare for the secondary filtration of the separated sodium hypochlorite solution, thereby reducing the burden of the secondary filtration. After filtering the separated sodium hypochlorite solution, the sodium hypochlorite solution will flow to At the bottom of the connection box 2101, the water pump 2202 is started by an external power supply, and the sodium hypochlorite solution in the connection box 2101 is transported from the connection pipe 2203 to the reflux pipe 2204 by the water pump 2202, and the sodium hypochlorite solution is re-transported to the inner cavity of the separation tank 1 by the reflux pipe 2204. At the same time, the reflux pipe 2204 guides the refluxed sodium hypochlorite solution to contact with the second spiral blade 2205. The second spiral blade 2205 guides the sodium hypochlorite solution for the second time, generating centrifugal force, thereby realizing secondary separation of the sodium hypochlorite solution. During the operation, the reflux pipe 2204 is supported by the support plate 2206 to ensure the stability of the reflux pipe 2204, so as to realize the separation of the remaining gas in the filtered sodium hypochlorite solution, so that the separation between the sodium hypochlorite solution and the gas is more complete, thereby further increasing the efficiency of gas separation and the concentration of gas separation. When the bottom of the connecting box 2101 is reached, the motor 34 is started by an external power supply, and the motor 34 drives the stirring rod 35 to rotate in the inner cavity of the connecting box 2101, so as to drive the sodium hypochlorite solution at the bottom to be stirred. During the stirring process, the turbulence and disturbance in the sodium hypochlorite solution are increased, which helps to break the equilibrium state on the gas-liquid interface, so that the gas molecules are more easily separated from the sodium hypochlorite solution. In addition, stirring can also increase the contact area between the gas and the sodium hypochlorite solution, improve the mass transfer efficiency, and further promote the separation of the gas. During the stirring process, the electric telescopic rod 36 is started by an external power supply, and the electric telescopic rod 36 drives the sliding plate 33 to slide in the inner cavity of the sliding groove 32. Through the sliding connection between the guide block 38 and the guide groove 37, the sliding plate 33 can be kept horizontally moving at the top of the connecting plate 31, thereby driving the stirring rod 35 to move at different positions, thereby increasing the degree of stirring of the sodium hypochlorite solution by the stirring rod 35, and further promoting the working effect of the stirring rod 35.

需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims (10)

1. Gas-liquid separation equipment for sodium hypochlorite generator, including knockout drum (1), its characterized in that: the device comprises a separation tank (1), wherein a guide pipe (11) is fixedly arranged on the inner wall of the separation tank (1), an air outlet pipe (12) is fixedly communicated with the surface of the guide pipe (11), one end of the air outlet pipe (12) penetrates through the outer side of the separation tank (1), a water inlet pipe (13) is fixedly communicated with the surface of the separation tank (1), a first spiral blade (14) is fixedly arranged on the surface of the guide pipe (11), a separation plate (15) is fixedly arranged on the inner wall of the separation tank (1), and a backflow mechanism (2) is arranged on the surface of the separation tank (1);
The reflux mechanism (2) comprises a filtering unit (21), the filtering unit (21) is arranged at the bottom of the separation tank (1), and the filtering unit (21) is used for filtering the separated sodium hypochlorite solution;
the reflux mechanism (2) comprises a reflux unit (22), wherein the reflux unit (22) is arranged on the surface of the separation tank (1), and the reflux unit (22) is used for carrying out secondary separation on the separated sodium hypochlorite solution;
The bottom of knockout drum (1) is provided with rabbling mechanism (3), rabbling mechanism (3) are used for stirring the sodium hypochlorite solution after filtering, rabbling mechanism (3) and reflux unit (22) cooperation use.
2. The gas-liquid separation apparatus for sodium hypochlorite generator according to claim 1, wherein: the utility model provides a filter unit (21) is including connecting box (2101), the bottom in knockout drum (1) is connected in fixed intercommunication to connecting box (2101), the inner wall fixed mounting of connecting box (2101) has fixed plate (2102), fixed slot (2103) have been seted up at the top of fixed plate (2102), the inner chamber sliding connection of fixed slot (2103) has filter screen frame (2104), the inner wall fixed mounting of filter screen frame (2104) has filter core (2105), rotation groove (2106) have been seted up at the top of connecting box (2101), the fixed surface of filter screen frame (2104) installs rotating block (2107), the surface of rotating block (2107) and the inner chamber sliding connection of rotation groove (2106).
3. The gas-liquid separation apparatus for sodium hypochlorite generator according to claim 2, wherein: the backflow unit (22) comprises a placement plate (2201), a water pump (2202) is fixedly arranged on the surface of the placement plate (2201), a connecting pipe (2203) is fixedly connected to one side of the connecting box (2101), one end of the connecting pipe (2203) is fixedly connected with the input end of the water pump (2202), a backflow pipe (2204) is fixedly connected to the surface of the separation tank (1), one end of the backflow pipe (2204) is fixedly connected with the output end of the water pump (2202), and a second spiral blade (2205) is fixedly arranged on the surface of the guide pipe (11).
4. The gas-liquid separation apparatus for sodium hypochlorite generator according to claim 1, wherein: the stirring mechanism (3) comprises a connecting plate (31), the connecting plate (31) is fixedly arranged on one side of a connecting box (2101), a sliding groove (32) is formed in the top of the connecting plate (31), a sliding plate (33) is slidably connected with an inner cavity of the sliding groove (32), a motor (34) is fixedly arranged on the top of the sliding plate (33), a stirring rod (35) is fixedly arranged at the output end of the motor (34), one end of the stirring rod (35) penetrates through the inner cavity of the connecting box (2101), an electric telescopic rod (36) is fixedly arranged on the inner side of the connecting plate (31), and one end of the electric telescopic rod (36) is fixedly connected with one side of the sliding plate (33).
5. The gas-liquid separation apparatus for sodium hypochlorite generator according to claim 2, wherein: the bottom fixed mounting of knockout drum (1) has first flange (2108), the top fixed mounting of connecting box (2101) has second flange (2109), the bottom of first flange (2108) contacts with the top of second flange (2109), the inner wall of first flange (2108) and second flange (2109) passes through bolt fixed connection.
6. The gas-liquid separation apparatus for sodium hypochlorite generator according to claim 5, wherein: the bottom of the first flange (2108) is fixedly provided with a connecting ring (2110), and the inner cavity of the connecting ring (2110) is in sliding connection with the inner cavity of the second flange (2109).
7. The gas-liquid separation apparatus for sodium hypochlorite generator according to claim 5, wherein: the top of second flange (2109) has seted up docking groove (2111), docking rod (2112) are fixed mounting in the bottom of first flange (2108), the surface and the inner chamber sliding connection of docking groove (2111) of docking rod (2112).
8. A gas-liquid separation apparatus for sodium hypochlorite generator according to claim 3, wherein: the surface of the separation tank (1) is fixedly provided with a supporting plate (2206), and the inner wall of the supporting plate (2206) is fixedly connected with the surface of the return pipe (2204).
9. The gas-liquid separation apparatus for sodium hypochlorite generator according to claim 4, wherein: the inner cavity of the sliding groove (32) is provided with a guide groove (37), the surface of the sliding plate (33) is fixedly provided with a guide block (38), and the guide block (38) is in sliding connection with the inner cavity of the guide groove (37).
10. The gas-liquid separation apparatus for sodium hypochlorite generator according to claim 5, wherein: a sealing ring (2113) is fixedly arranged at the top of the second flange (2109), and the surface of the sealing ring (2113) is in close contact with the bottom of the first flange (2108).
CN202410589657.XA 2024-05-13 2024-05-13 Gas-liquid separation equipment for sodium hypochlorite generator Pending CN118526859A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118949611A (en) * 2024-10-12 2024-11-15 陕西铭泽易昇能源技术有限公司 A gas methane value regulating device and regulating process

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118949611A (en) * 2024-10-12 2024-11-15 陕西铭泽易昇能源技术有限公司 A gas methane value regulating device and regulating process
CN118949611B (en) * 2024-10-12 2025-01-03 陕西铭泽易昇能源技术有限公司 A gas methane value regulating device and regulating process

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