WO2020248438A1 - 一种废水净化处理装置 - Google Patents

一种废水净化处理装置 Download PDF

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Publication number
WO2020248438A1
WO2020248438A1 PCT/CN2019/108805 CN2019108805W WO2020248438A1 WO 2020248438 A1 WO2020248438 A1 WO 2020248438A1 CN 2019108805 W CN2019108805 W CN 2019108805W WO 2020248438 A1 WO2020248438 A1 WO 2020248438A1
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Prior art keywords
cylinder
crushing
treatment device
purification treatment
wastewater purification
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PCT/CN2019/108805
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English (en)
French (fr)
Inventor
徐建国
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淄博创立机电科技有限公司
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Publication of WO2020248438A1 publication Critical patent/WO2020248438A1/zh

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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/001Processes for the treatment of water whereby the filtration technique is of importance
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F2001/007Processes including a sedimentation step
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2303/00Specific treatment goals
    • C02F2303/14Maintenance of water treatment installations
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2303/00Specific treatment goals
    • C02F2303/26Reducing the size of particles, liquid droplets or bubbles, e.g. by crushing, grinding, spraying, creation of microbubbles or nanobubbles

Definitions

  • the invention relates to the field of waste water purification treatment, in particular to a waste water purification treatment device.
  • a waste water purification treatment device includes a vertically arranged support installation cylinder, the upper end of the support installation cylinder is horizontally provided with a liquid inlet installation cylinder, and the upper left corner of the liquid inlet installation cylinder is inclinedly provided with a liquid inlet pipe to support the lower half of the inside of the installation cylinder
  • the installation baffle is horizontally arranged, and the support installation cylinder above the installation baffle is provided with a multi-stage filtrate cylinder and a static impurity removal cylinder on the left and right.
  • the bottom of the inlet installation cylinder is provided with a curved deflector, and the curved guide
  • the left half of the board is provided with a crushing groove.
  • the top of the liquid inlet installation cylinder opposite to the crushing groove is provided with a height adjustment column vertically downwards.
  • the lower end of the height adjustment column is provided with a crushing drum through the work mounting frame, and the outside of the crushing drum A number of crushing columns are evenly arranged, and the crushing columns are also arranged in the crushing grooves.
  • the crushing cylinders and the crushing columns on the crushing grooves are arranged in a staggered manner.
  • the upper right end of the static impurity removal drum is vertically arranged with a diversion drum
  • the upper end of the flow cylinder is connected to the liquid inlet installation cylinder
  • the lower end of the flow guide cylinder is provided with a fence slow flow cover
  • the inside of the multi-stage filtrate cylinder is provided with several layers of filters at equal intervals
  • the upper end of the multi-stage filtrate cylinder is horizontally provided with a porous buffer
  • the lower left corner of the multi-stage filtrate cylinder and the lower right corner of the supporting installation cylinder are both extended.
  • There is a drain pipe, and an oblique filter plate is arranged obliquely in the support installation cylinder under the installation partition.
  • the top of the liquid inlet installation cylinder on the left side of the height adjustment column is provided with a curved baffle downward.
  • a flow guide tube is arranged inside the curved baffle, and the upper end of the flow guide tube extends out of the liquid inlet mounting cylinder.
  • a plurality of jet tubes are arranged at equal intervals on the lower right side of the curved baffle, the outlet of the jet tube faces the crushing drum, and the jet tubes are all connected with the draft tube.
  • the lower end of the static cleaning cylinder is provided with a perforated arc panel obliquely, the right end of the perforated arc panel cooperates with the supporting installation cylinder and is provided with impurity removal pipes, and a number of diversion holes are uniformly provided on the perforated arc panel .
  • the supporting installation cylinder at the upper end of the decontamination pipe is provided with an electric control turntable to the left through the installation column, and a plurality of rotating scrapers are arranged at equal angles on the outer side of the electric control turntable.
  • a lifting arc panel is matched with the lower part of the porous arc panel, and a diversion column is provided at the upper end of the lifting arc panel in cooperation with the diversion hole.
  • the lower side of the lifting arc panel is symmetrically provided with electric control lifting columns in cooperation with the installation partition.
  • a rotating gate is provided at the lower left corner of the supporting installation cylinder through a rotating shaft.
  • the beneficial effects of the present invention are: through active crushing, as well as the cooperation of lifting adjustment and jet scouring, the impurities and insolubles in the waste liquid are quickly crushed, and the first stage is obtained by static diversion.
  • Figure 1 is a schematic structural diagram of a wastewater purification treatment device.
  • Fig. 2 is an enlarged schematic diagram of the position a in Fig. 1.
  • Fig. 3 is an enlarged schematic diagram of position b in Fig. 1.
  • Figure 5 is a three-dimensional schematic diagram of a curved baffle in a wastewater purification treatment device.
  • a waste water purification treatment device in an embodiment of the present invention, includes a support mounting cylinder 15 arranged vertically, the upper end of the support mounting cylinder 15 is horizontally provided with a liquid inlet mounting cylinder 18, and the liquid inlet mounting cylinder 18
  • the liquid inlet pipe 1 is arranged obliquely in the upper left corner of the support installation cylinder 15, the lower half of the support installation cylinder 15 is horizontally provided with an installation partition 8, and the support installation cylinder 15 above the installation partition 8 is provided with a multi-stage filtrate cylinder 5 and a standstill.
  • Trash removal cylinder 17 the bottom of the inlet installation cylinder 18 is provided with a curved deflector 19, the left half of the curved deflector 19 is provided with 32, and the top of the inlet installation cylinder 18 opposite to the crushing groove 32 is vertical.
  • a height adjustment column 28 is arranged straight down.
  • the lower end of the height adjustment column 28 is provided with a crushing drum 30 through the work mounting frame 29.
  • a number of crushing columns 31 are evenly arranged on the outside of the crushing drum 30, and a crushing column is also arranged in the crushing groove 32. 31.
  • the crushing drum 30 and the crushing column 31 on the crushing groove 32 are both staggered.
  • the top of the liquid inlet installation cylinder 18 on the left side of the height adjustment column 28 is provided with a curved baffle 26 and a curved baffle 26.
  • the jet tube 27 is in communication with the diversion tube 25, the upper right end of the static trash removal cylinder 17 is vertically provided with a diversion tube 16 and the upper end of the diversion tube 16 communicates with the liquid inlet mounting tube 18,
  • a fence slow-flow hood 14 is provided at the lower end, a perforated arc panel 13 is obliquely provided at the lower end of the stationary decontamination cylinder 17, and the right end of the perforated arc panel 13 is matched with the supporting installation cylinder 15 and is provided with an impurity removal pipe 24 and a
  • a number of rotating scrapers 21 are arranged at equal angles on the outside of the electric control turntable 20, and a porous arc
  • the lower side of the panel 13 is matched with a lifting arc panel 11, the upper end of the lifting arc panel 11 is equipped with a diversion hole 22 with a diversion column 23, and the lower side of the lifting arc panel 11 is matched with the installation partition 8 and is symmetrically provided with an electronically controlled lifting column 9.
  • the inside of the multi-stage filter cartridge 5 is provided with several layers of filter screens 6 at equal intervals, the upper end of the multi-stage filter cartridge 5 is horizontally provided with a porous slow flow plate 4, and the upper left corner of the static cleaning cartridge 17 is provided with a connecting pipe 3.
  • a solenoid valve 2 is installed inside the connecting duct 3 and the impurity removal pipe 24.
  • the lower left corner of the multi-stage filter cartridge 5 and the lower right corner of the support mounting cylinder 15 are both extended with a drain pipe 12, and the installation partition 8 is below
  • An oblique filter plate 10 is arranged obliquely in the supporting installation cylinder 15, and a rotating gate 7 is provided at the lower left corner of the supporting installation cylinder 15 through a rotating shaft.
  • the crushing drum 30 By starting the crushing drum 30, making it rotate and matching the dislocation of the crushing column 31 to achieve crushing, the waste liquid poured from the liquid inlet pipe 1 is filtered and crushed, and the working height of the crushing drum 30 is adjusted by the height adjustment column 28 to adapt to Different crushing requirements, and water is injected into the jet tube 27 through the diversion tube 25, so that the jet tube 27 sprays against the crushing drum 30, so that the probability of jamming during crushing is reduced, and the continuous and stable operation of the device is ensured, and the wastewater continues to pass through the diversion.
  • the cylinder 16 and the fence slow flow hood 14 enter the static decontamination cylinder 17, where the waste water is allowed to stand still, and the supernatant liquid enters the multi-stage filtrate cylinder 5 through the connecting pipe 3, and is filtered through the multi-layer filter 6 and then discharged. Impurities and insolubles in the waste liquid are deposited on the porous arc panel 13, and the rotating scraper 21 is controlled to rotate by the electric control dial 20, and a part of the impurities and insolubles are introduced into the impurity removal pipe 24 and discharged, and then the electric control lifting column 9 is started.
  • the lifting arc panel 11 descends to realize the separation of the diversion hole 22 and the diversion column 23, so that the impurities and insolubles on the porous arc panel 13 flow down with the diversion waste liquid and enter the inclined filter plate 10, and after filtering , Impurities and insoluble matter accumulate on the inclined filter plate 10, open the rotating gate 7 to collect, the waste liquid continues to flow down, and finally discharged from the drain pipe 12 below, through active crushing, and the cooperation of lifting adjustment and jet scouring, The impurities and insolubles in the waste liquid are quickly broken, and the first-level filtrate and sediment are obtained by standing and diversion, and through the lifting arc structure, the sediment can be completely exported and collected, which is convenient for recycling.
  • the waste liquid poured into the liquid inlet pipe 1 is uniformly diverted by the curved baffle 26, so that the waste liquid does not directly skip the crushing drum 30, so that the crushing operation is comprehensive and accurate.

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  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Filtration Of Liquid (AREA)

Abstract

一种废水净化处理装置,包括竖直设置的支撑安装筒(15),支撑安装筒(15)的上端水平设置有进液安装筒(18),支撑安装筒(15)内部下半段水平设置有安装隔板(8),安装隔板(8)上方的支撑安装筒(15)内左右分别设置有多级滤液筒(5)和静置除杂筒(17),进液安装筒(18)底部设置有弧面导流板(19),弧面导流板(19)的左半部分设置有破碎凹槽(32),破碎凹槽(32)正对的进液安装筒(18)顶部竖直向下设置有高度调节柱(28),高度调节柱(28)的下端通过作业安装架(29)设置有破碎滚筒(30),破碎滚筒(30)和破碎凹槽(32)上均设置破碎柱(31),且错位设置。

Description

一种废水净化处理装置 技术领域
本发明涉及废水净化处理领域,具体是一种废水净化处理装置。
背景技术
随着社会的不断发展,水污染的问题得到了人们非常高的关注度。为了解决水污染的问题,人们研发了很多废水处理装置,用来过滤净化废水。废水中含有很多夹杂着大块杂质的污泥,且污泥和大块杂质形成硬块结合在一起,容易堵塞废水处理设备中的过滤层。现有的废水处理装置中的搅拌组件大都是转轴上直接连接有搅拌桨,但是通过转轴旋转带动搅拌桨对废水中夹杂着污泥的大块杂质搅碎分离的效果差,有很多夹杂着污泥的大块杂质没有被搅碎,导致后续过滤效果差。
中国专利(公告号CN208829436U)公开了一种废水处理装置,虽然通过搅拌破碎进行处理,使得废水能够快速处理,但是结构分区不严谨,结构设计不合理,造成废水及其包含的物质无法有效的回收利用。
发明内容
本发明的目的在于提供一种废水净化处理装置,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:
一种废水净化处理装置,包括竖直设置的支撑安装筒,支撑安装筒的上端水平设置有进液安装筒,进液安装筒的左上角倾斜设置有进液管,支撑安装筒内部下半段水平设置有安装隔板,安装隔板上方的支撑安装筒内左右分别设置有多级滤液筒和静置除杂筒,所述进液安装筒底部设置有弧面导流板,弧面导流板的左半部分设置有破碎凹槽,破碎凹槽正对的进液安装筒顶部竖直向下设置有高度调节柱,高度调节柱的下端通过作业安装架设置有破碎滚筒,破碎滚筒的外侧均匀设置有若干破碎柱,破碎凹槽内也设置有破碎柱,破碎滚筒和破碎凹槽上的破碎柱均错位设置,所述静置除杂筒的右上端竖直设置有导流筒,导流筒的上端连通进液安装筒,导流筒的下端设置有栅栏缓流罩,所述多级滤液筒的内部等间距设置有若干层滤网,多级滤液筒的上端水平设置有多孔缓流板,静置除杂筒的左上角伸出设置有连接导管,连接导管和除杂管的内部均设置有电磁阀,多级滤液筒的左下 角和支撑安装筒的右下角均伸出设置有排液管,安装隔板下方的支撑安装筒内倾斜设置有斜滤流板。
作为本发明进一步的方案:所述高度调节柱左侧的进液安装筒顶部向下设置有弧面挡流板。
作为本发明进一步的方案:所述弧面挡流板的内部设置有导流管,导流管的上端伸出进液安装筒。
作为本发明进一步的方案:所述弧面挡流板的右下侧等间距设置有若干射流管,射流管出口正对破碎滚筒,射流管均与导流管连通。
作为本发明进一步的方案:所述静置除杂筒下端倾斜设置有多孔弧面板,多孔弧面板的右端配合支撑安装筒伸出设置有除杂管,多孔弧面板上均匀设置有若干导流孔。
作为本发明进一步的方案:所述除杂管上端的支撑安装筒通过安装柱向左设置有电控转盘,电控转盘的外侧等角度设置有若干转动刮板。
作为本发明进一步的方案:所述多孔弧面板的下方配合设置有升降弧面板,升降弧面板上端配合导流孔设置有导流柱。
作为本发明进一步的方案:所述升降弧面板的下侧配合安装隔板对称设置有电控升降柱。
作为本发明再进一步的方案:所述支撑安装筒的左下角通过转轴设置有转动闸门。
与现有技术相比,本发明的有益效果是:通过主动破碎,以及升降调节和射流冲刷的配合,使得废液内的杂质和不溶物被快速破碎,且通过静置导流,获得一级滤液和沉淀物,并通过升降的弧面结构,使得沉淀能够完全导出并收集,便于回收利用。
附图说明
图1为一种废水净化处理装置的结构示意图。
图2为图1中a处的放大示意图。
图3为图1中b处的放大示意图。
图4为一种废水净化处理装置中多孔弧面板的立体示意图。
图5为一种废水净化处理装置中弧面挡流板的立体示意图。
1-进液管、2-电磁阀、3-连接导管、4-多孔缓流板、5-多级滤液筒、6-滤网、7-转动闸门、8-安装隔板、9-电控升降柱、10-斜滤流板、11-升降弧面板、12-排液管、13-多孔弧面板、14-栅栏缓流罩、15-支撑安装筒、16-导流筒、17-静置除杂筒、18-进液安装筒、19-弧面导流板、20-电控转盘、21-转动刮板、22-导流孔、23-导流柱、24-除杂管、25-导流管、26-弧面挡流板、27-射流管、28-高度调节柱、29-作业安装架、30-破碎滚筒、31-破碎柱、32-破碎凹槽。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本发明,而不能理解为对本发明的限制。
下文的公开提供了许多不同的实施例或例子用来实现本发明的不同结构。为了简化本发明的公开,下文中对特定例子的部件和设置进行描述。当然,它们仅仅为示例,并且目的不在于限制本发明。此外,本发明可以在不同例子中重复参考数字和/或字母。这种重复是为了简化和清楚的目的,其本身不指示所讨论各种实施例和/或设置之间的关系。
实施例一
请参阅图1~5,本发明实施例中,一种废水净化处理装置,包括竖直设置的支撑安装筒15,支撑安装筒15的上端水平设置有进液安装筒18,进液安装筒18的左上角倾斜设置有进液管1,支撑安装筒15内部下半段水平设置有安装隔板8,安装隔板8上方的支撑安装筒15内左右分别设置有多级滤液筒5和静置除杂筒17,所述进液安装筒18底部设置有弧面导流板19,弧面导流板19的左半部分设置有32,破碎凹槽32正对的进液安装筒18顶部竖直向下设置有高度调节柱28,高度调节柱28的下端通过作业安装架29设置有破碎滚筒30,破碎滚筒30的外侧均匀设置有若干破碎柱31,破碎凹槽32内也设置有破碎柱31,破碎滚筒30和破碎凹槽32上的破碎柱31均错位设置,高度调节柱28左侧的进液安装筒18顶部向下设置有弧面挡流板26,弧面挡流板26的内部设置有导流管25,导流管25的上端伸出进液安装筒18,弧面挡流板26的右下侧等间距设置有若干射流管27,射流管27出口正对破碎滚筒30,射流管27均与导流管25连通,所 述静置除杂筒17的右上端竖直设置有导流筒16,导流筒16的上端连通进液安装筒18,导流筒16的下端设置有栅栏缓流罩14,所述静置除杂筒17下端倾斜设置有多孔弧面板13,多孔弧面板13的右端配合支撑安装筒15伸出设置有除杂管24,多孔弧面板13上均匀设置有若干导流孔22,除杂管24上端的支撑安装筒15通过安装柱向左设置有电控转盘20,电控转盘20的外侧等角度设置有若干转动刮板21,多孔弧面板13的下方配合设置有升降弧面板11,升降弧面板11上端配合导流孔22设置有导流柱23,升降弧面板11的下侧配合安装隔板8对称设置有电控升降柱9,所述多级滤液筒5的内部等间距设置有若干层滤网6,多级滤液筒5的上端水平设置有多孔缓流板4,静置除杂筒17的左上角伸出设置有连接导管3,连接导管3和除杂管24的内部均设置有电磁阀2,多级滤液筒5的左下角和支撑安装筒15的右下角均伸出设置有排液管12,安装隔板8下方的支撑安装筒15内倾斜设置有斜滤流板10,支撑安装筒15的左下角通过转轴设置有转动闸门7。
通过启动破碎滚筒30,使其转动并配合错位设置的破碎柱31实现破碎,将从进液管1倒入的废液过滤和破碎,通过高度调节柱28的调节破碎滚筒30的作业高度,适应不同的破碎要求,且通过导流管25向射流管27内注入水,实现射流管27对着破碎滚筒30喷射,使得破碎时卡壳的概率降低,确保了装置连续稳定作业,废水继续通过导流筒16和栅栏缓流罩14进入静置除杂筒17,废水在其中静置,上层清液通过连接导管3进入多级滤液筒5,并通过多层滤网6过滤后导出,破碎后的杂质和废液中的不溶物沉淀在多孔弧面板13上,通过电控转盘20控制转动刮板21旋转,将一部分杂质和不溶物导入除杂管24中排出,再启动电控升降柱9,此时升降弧面板11下降,实现导流孔22和导流柱23分离,使得多孔弧面板13上的杂质和不溶物随着导流的废液流下,进入斜滤流板10,通过过滤后,杂质和不溶物堆积在斜滤流板10上,打开转动闸门7收集,废液继续往下流,最后从下方的排液管12排出,通过主动破碎,以及升降调节和射流冲刷的配合,使得废液内的杂质和不溶物被快速破碎,且通过静置导流,获得一级滤液和沉淀物,并通过升降的弧面结构,使得沉淀能够完全导出并收集,便于回收利用。
实施例二
在实施例一的基础上,通过弧面挡流板26将进液管1内倒入的废液统一导流,使得废液不会直接跳过破碎滚筒30,使得破碎作业全面而准确。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不必须针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。
尽管已经示出和描述了本发明的实施例,本领域的普通技术人员可以理解:在不脱离本发明的原理和宗旨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,本发明的范围由权利要求及其等同物限定。

Claims (8)

  1. 一种废水净化处理装置,包括竖直设置的支撑安装筒(15),支撑安装筒(15)的上端水平设置有进液安装筒(18),进液安装筒(18)的左上角倾斜设置有进液管(1),支撑安装筒(15)内部下半段水平设置有安装隔板(8),安装隔板(8)上方的支撑安装筒(15)内左右分别设置有多级滤液筒(5)和静置除杂筒(17),其特征在于,所述进液安装筒(18)底部设置有弧面导流板(19),弧面导流板(19)的左半部分设置有破碎凹槽(32),破碎凹槽(32)正对的进液安装筒(18)顶部竖直向下设置有高度调节柱(28),高度调节柱(28)的下端通过作业安装架(29)设置有破碎滚筒(30),破碎滚筒(30)的外侧均匀设置有若干破碎柱(31),破碎凹槽(32)内也设置有破碎柱(31),破碎滚筒(30)和破碎凹槽(32)上的破碎柱(31)均错位设置,所述静置除杂筒(17)的右上端竖直设置有导流筒(16),导流筒(16)的上端连通进液安装筒(18),导流筒(16)的下端设置有栅栏缓流罩(14),所述多级滤液筒(5)的内部等间距设置有若干层滤网(6),多级滤液筒(5)的上端水平设置有多孔缓流板(4),静置除杂筒(17)的左上角伸出设置有连接导管(3),连接导管(3)和除杂管(24)的内部均设置有电磁阀(2),多级滤液筒(5)的左下角和支撑安装筒(15)的右下角均伸出设置有排液管(12),安装隔板(8)下方的支撑安装筒(15)内倾斜设置有斜滤流板(10)。
  2. 根据权利要求1所述的一种废水净化处理装置,其特征在于,所述高度调节柱(28)左侧的进液安装筒(18)顶部向下设置有弧面挡流板(26)。
  3. 根据权利要求2所述的一种废水净化处理装置,其特征在于,所述弧面挡流板(26)的内部设置有导流管(25),导流管(25)的上端伸出进液安装筒(18)。
  4. 根据权利要求2或3所述的一种废水净化处理装置,其特征在于,所述弧面挡流板(26)的右下侧等间距设置有若干射流管(27),射流管(27)出口正对破碎滚筒(30),射流管(27)均与导流管(25)连通。
  5. 根据权利要求1所述的一种废水净化处理装置,其特征在于,所述静置除杂筒(17)下端倾斜设置有多孔弧面板(13),多孔弧面板(13)的右端配合支撑安装筒(15)伸出设置有除杂管(24),多孔弧面板(13)上均匀设置有若干导流孔(22)。
  6. 根据权利要求5所述的一种废水净化处理装置,其特征在于,所述除杂管(24)上端的支撑安装筒(15)通过安装柱向左设置有电控转盘(20),电控转盘(20)的外侧等角度设置有若干转动刮板(21)。
  7. 根据权利要求5所述的一种废水净化处理装置,其特征在于,所述多孔弧面板(13)的下方配合设置有升降弧面板(11),升降弧面板(11)上端配合导流孔(22)设置有导流柱(23)。
  8. 根据权利要求7所述的一种废水净化处理装置,其特征在于,所述升降弧面板(11)的下侧配合安装隔板(8)对称设置有电控升降柱(9)。
    根据权利要求1所述的一种废水净化处理装置,其特征在于,所述支撑安装筒(15)的左下角通过转轴设置有转动闸门(7)。
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