WO2023159381A1 - 一种工业废水处理装置 - Google Patents

一种工业废水处理装置 Download PDF

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WO2023159381A1
WO2023159381A1 PCT/CN2022/077437 CN2022077437W WO2023159381A1 WO 2023159381 A1 WO2023159381 A1 WO 2023159381A1 CN 2022077437 W CN2022077437 W CN 2022077437W WO 2023159381 A1 WO2023159381 A1 WO 2023159381A1
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sewage
water
treatment
pipe
filter
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PCT/CN2022/077437
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English (en)
French (fr)
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吴清
韩易轩
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江苏中南乐透思环保科技有限公司
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Priority to PCT/CN2022/077437 priority Critical patent/WO2023159381A1/zh
Publication of WO2023159381A1 publication Critical patent/WO2023159381A1/zh

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  • Wastewater refers to the general term for water discharged from residents' activities and runoff rainwater. It includes domestic sewage, industrial wastewater, and other useless water such as primary rainwater that flows into drainage pipes and canals. It generally refers to water that cannot be recycled after certain technical treatment or that is difficult to purify after primary pollution and cannot meet a certain standard. The three major public hazards in nature: waste water, waste gas and noise pollution.
  • a water quality sensor is installed at the bottom of the processing inner cavity, and the water quality sensor is electrically connected to the control panel.
  • Fixed hooks are symmetrically installed on both sides of the top of the processing inner cavity, and limit blocks are symmetrically installed on both sides of the upper end of the processing inner cavity.
  • a filter frame is movably placed on the upper end of the limit block.
  • the sewage in the water storage tank will be introduced into the sewage treatment tank for treatment.
  • the sewage will first be filtered and purified through the filter frame.
  • the filter frame is movable on the limit block, and the upper end of the filter frame is connected with the The fixed hook is movably connected, and the personnel at the outer end can observe whether the filter frame is blocked through the observation window. If there is a blockage, the filter frame can be disassembled for cleaning. After the sewage is filtered and purified, the sewage will fall into the inner cavity of the treatment chamber. At this time, the water quality sensor can detect the filtered and purified sewage.
  • a grille opening is installed on the upper end of the water storage tank, and a water turbine is installed in the middle of the lower end of the water storage tank.
  • the solenoid valve is first opened, and the water turbine will pump the sewage out of the water storage tank through the water guide pipe, and then the sewage will be introduced into the inner chamber of the treatment through the water inlet pipe.
  • the water turbine When the water turbine is driving the water delivery, the water turbine will pass through simultaneously Its own central shaft drives the cutting blade to rotate. At this time, the cutting blade will stir and cut the sewage inside the water storage tank, so as to crush the impurities and garbage in the sewage and avoid blockage in the later treatment of sewage.
  • a drain valve is connected in the middle of the drain pipe.
  • the drain valve when the sewage treatment reaches the standard, the drain valve can be opened to discharge the treated water; if the sewage treatment is not up to the standard, the drain valve does not need to be opened.
  • a water pump is connected to one side of the sewage pipe, a water pipe is connected to the upper end of the water pipe, the other end of the water pipe is connected to a solenoid valve, and a filter is installed in the middle of the water pipe.
  • the suction pump when the sewage treatment does not meet the standard, it is necessary to start the suction pump. At this time, the suction pump will pump out the sewage that does not meet the standard through the sewage pipe, and then the sewage will be filtered through the water delivery pipe and the filter. At this time, it can be used again Open the solenoid valve, so that the sewage that does not meet the standard is returned to the water guide pipe and reintroduced into the sewage treatment tank for filtering treatment, until the sewage reaches the treatment discharge standard.
  • suspension rings are installed on both sides of the upper end of the filter frame, the suspension rings are movably connected to the fixed hooks, a filter screen is installed at the lower end of the inner cavity of the filter frame, and the upper end of the filter screen is filled with filter fillers.
  • the sewage when the sewage enters the inner cavity of the treatment chamber, the sewage will firstly be filtered and purified through the filter filler, and then filtered through the filter again to improve the treatment accuracy of the sewage.
  • the filter frame When the filter frame is used for a long time, personnel The inside of the filter frame can be replaced and cleaned by disassembling and assembling the lifting ring, so as to prevent the impurities in the sewage from clogging the inside of the filter frame.
  • the present invention has the following beneficial effects: when the sewage enters the water storage tank, the water turbine can be started to pump the sewage into the treatment inner cavity for treatment, and when the sewage enters the treatment inner cavity, the sewage will first pass through the filter packing Filter and purify, and then filter again through the filter to improve the treatment accuracy of the sewage. After the sewage is filtered and purified, the water quality sensor can detect the filtered and purified sewage. When the sewage treatment reaches the standard, the drain valve can be opened to drain the treated sewage. When the sewage treatment does not meet the standard, it is necessary to start the pump to extract the sewage that does not meet the standard, and then the sewage will be filtered through the water pipe and filter.
  • the solenoid valve can be opened again to make the sewage that does not meet the standard return to the guide
  • the water pipe is re-introduced to the inside of the sewage treatment tank for filtration treatment, and the direct sewage reaches the treatment discharge standard.
  • Fig. 1 is the overall structural representation of the present invention
  • Fig. 2 is an overall internal structure diagram of the present invention
  • Fig. 3 is a structural diagram of the filtering frame of the present invention.
  • Sewage treatment tank 2. Water storage tank; 21. Grille opening; 22. Water turbine; 221. Water guide pipe; 222. Solenoid valve; 223. Cutting blade; 224. Water inlet pipe; 3. Control panel; 4. Observation window ;5, drainage pipe; 51, drain valve; 6, sewage pipe; 61, water pump; 62, water pipe; 63, filter; 7, processing inner cavity; 71, water quality sensor; 72, fixed hook; 73, limit Bit block; 74, filter frame; 741, suspension ring; 742, filter screen; 743, filter filler.
  • a solenoid valve 222 is installed in the middle of the water guide pipe 221, a cutting blade 223 is connected to the upper end of the water turbine 22, and the cutting blade 223 is located on the inside of the water storage tank 2, and the side of the water turbine 22 away from the water guide pipe 221 is connected with a water inlet pipe 224,
  • the water pipe 224 is connected to the upper end of the sewage treatment tank 1, the front lower end of the sewage treatment tank 1 is equipped with a control panel 3, the front upper end of the sewage treatment tank 1 is equipped with an observation window 4, and the lower end side of the sewage treatment tank 1 is connected with a drain pipe 5
  • the middle of the drain pipe 5 is connected with a drain valve 51
  • the other side of the lower end of the sewage treatment tank 1 is connected with a sewage pipe 6
  • one side of the sewage pipe 6 is connected with a water pump 61
  • the upper end of the water pump 61 is connected with a water delivery pipe 62
  • the other end of the water delivery pipe 62 is
  • the cutting blade 223 will stir and cut the sewage inside the water storage tank 2, so that the impurities and garbage in the sewage can be crushed.
  • the sewage will first be filtered and purified through the filter filler 743, and then filtered again through the filter 742 to improve the treatment accuracy of the sewage. Observe through the observation window 4 whether the filter frame 74 is clogged. If there is a blockage, the filter frame 74 can be disassembled and cleaned up. After the sewage is filtered and purified, the sewage will fall to the inside of the processing cavity 7. The filtered and purified sewage can be detected.

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Abstract

本申请公开了一种工业废水处理装置,涉及废水处理技术领域,包括污水处理箱和储水箱,当污水进入储水箱后,可以启动水轮机将污水抽出到处理内腔内部进行处理,当污水进入处理内腔的内部后,污水将率先通过过滤填料进行过滤净化,随后再通过过滤网再次过滤处理,提高污水的处理精度,当污水过滤净化后,水质传感器可以对过滤净化后的污水进行检测,当污水处理达标后,可以打开排水阀将处理后的水排出,当污水处理未达标时,需要启动抽水泵将未达标的污水抽出,随后污水将通过输水管和过滤器输水过滤,这时可以再次打开电磁阀,使未达标的污水回流到导水管内重新导入到污水处理箱内部进行过滤处理,直达污水达到处理排放标准。

Description

一种工业废水处理装置 技术领域
本发明涉及废水处理技术领域,尤其是涉及一种工业废水处理装置。
背景技术
废水是指居民活动过程中排出的水及径流雨水的总称。它包括生活污水、工业废水和初雨径流入排水管渠等其它无用水,一般指经过一定技术处理后不能再循环利用或者一级污染后制纯处理难度达不到一定标准的水。自然界三大公害:废水废气和噪声污染。
现有的工业废水在使用之后不方便处理,直接将废水倒入下水道,废水中的杂质可能对下水道进行堵塞,影响居民的正常生活,且工业废水难以集中处理,由于后期管理不善,很容易导致处理后的水不达标。
发明内容
为了改善上述提到的问题,本发明提供一种工业废水处理装置。
本发明提供一种工业废水处理装置,采用如下的技术方案:
一种工业废水处理装置,包括污水处理箱和储水箱,所述储水箱位于污水处理箱的上端,污水处理箱的正面下端安装有控制面板,污水处理箱的正面上端安装有观察窗,污水处理箱的下端一侧连接有排水管,污水处理箱的下端另一侧连接有污水管,而污水处理箱的内腔则开设有处理内腔;
所述处理内腔的内腔底端安装有水质传感器,水质传感器与控制面板电连接,处理内腔的顶端两侧对称安装有固定挂钩,处理内腔上端的两侧对称安装有限位块,而限位块的上端则活动放置有过滤框。
通过采用上述技术方案,储水箱内的污水将导入到污水处理箱内部进 行处理,这时污水将率先通过过滤框进行过滤净化,过滤框活动放置在限位块上,而过滤框的上端则与固定挂钩活动连接,外端人员可以通过观察窗观察过滤框内是否堵塞,若出现堵塞时,可以将过滤框活动拆装进行清理,当污水过滤净化后,污水将下落到处理内腔的内部,这时水质传感器可以对过滤净化后的污水进行检测,水质传感器可以根据不同的需要安装不同类型的传感器,如余氯传感器、电导率传感器、ORP传感器、PH传感器、浊度传感器等,都属于水质传感器的一种,人员可以通过安装不同类型的水质传感器对污水进行检测,当污水处理达标时,可以将污水直接通过排水管排出,当污水未达标时,可以打开污水管,使未达标的污水重新被抽出再次过滤净化。
可选的,所述储水箱的上端安装有格栅口,储水箱的下端中间则安装有水轮机。
通过采用上述技术方案,当污水导入储水箱的内部时,格栅口将率先对污水进行过滤,避免水质中含有较大的杂质垃圾,在污水过滤处理时造成管道堵塞,当污水进入储水箱后,可以启动水轮机将污水抽出进行处理。
可选的,所述水轮机的一侧连接有导水管,导水管的另一侧与储水箱的下端一侧相连接,导水管的中间安装有电磁阀,水轮机的上端连接有切割刀片,切割刀片位于储水箱的内侧,水轮机远离导水管的一侧连接有进水管,进水管连接在污水处理箱的上端。
通过采用上述技术方案,率先打开电磁阀,水轮机将通过导水管将污水从储水箱内部抽出,随后污水将通过进水管导入到处理内腔的内部,当水轮机在驱动输水时,水轮机将同步通过自身的中心转轴带动切割刀片进 行旋转,这时切割刀片将对储水箱内部的污水进行搅拌切割,从而可以对污水中的杂质垃圾进行搅碎,避免后期处理污水时发生堵塞。
可选的,所述排水管的中间连接有排水阀。
通过采用上述技术方案,当污水处理达标后,可以打开排水阀将处理后的水排出,若污水处理未达标时,则无需打开排水阀。
可选的,所述污水管的一侧连接有抽抽水泵,抽抽水泵的上端连接有输水管,输水管的另一端与电磁阀相连接,并且输水管的中间还安装有过滤器。
通过采用上述技术方案,当污水处理未达标时,需要启动抽水泵,这时抽水泵将通过污水管将未达标的污水抽出,随后污水将通过输水管和过滤器输水过滤,这时可以再次打开电磁阀,使未达标的污水回流到导水管内重新导入到污水处理箱内部进行过滤处理,直达污水达到处理排放标准。
可选的,所述过滤框的上端两侧安装有吊环,吊环与固定挂钩活动连接,过滤框的内腔下端安装有过滤网,过滤网的上端填充有过滤填料。
通过采用上述技术方案,当污水进入处理内腔的内部后,污水将率先通过过滤填料进行过滤净化,随后再通过过滤网再次过滤处理,提高污水的处理精度,当过滤框长时间使用后,人员可以通过吊环活动拆装过滤框对其内部进行更换清理,避免污水中的杂质在过滤框的内部造成堵塞。
综上所述,本发明包括以下有益效果:当污水进入储水箱后,可以启动水轮机将污水抽出到处理内腔内部进行处理,当污水进入处理内腔的内部后,污水将率先通过过滤填料进行过滤净化,随后再通过过滤网再次过滤处理,提高污水的处理精度,当污水过滤净化后,水质传感器可以对过 滤净化后的污水进行检测,当污水处理达标后,可以打开排水阀将处理后的水排出,当污水处理未达标时,需要启动抽水泵将未达标的污水抽出,随后污水将通过输水管和过滤器输水过滤,这时可以再次打开电磁阀,使未达标的污水回流到导水管内重新导入到污水处理箱内部进行过滤处理,直达污水达到处理排放标准。
附图说明
图1是本发明的整体结构示意图;
图2是本发明的整体内部结构图;
图3是本发明的过滤框结构图。
附图标记说明:
1、污水处理箱;2、储水箱;21、格栅口;22、水轮机;221、导水管;222、电磁阀;223、切割刀片;224、进水管;3、控制面板;4、观察窗;5、排水管;51、排水阀;6、污水管;61、抽抽水泵;62、输水管;63、过滤器;7、处理内腔;71、水质传感器;72、固定挂钩;73、限位块;74、过滤框;741、吊环;742、过滤网;743、过滤填料。
具体实施方式
以下结合附图1-3对本发明作进一步详细说明。
请参阅图1、图2和图3,本发明提供的一种实施例:一种工业废水处理装置,包括污水处理箱1和储水箱2,所述储水箱2位于污水处理箱1的上端,储水箱2的上端安装有格栅口21,储水箱2的下端中间则安装有水轮机22,水轮机22的一侧连接有导水管221,导水管221的另一侧与储水箱2的下端一侧相连接,导水管221的中间安装有电磁阀222,水轮机 22的上端连接有切割刀片223,切割刀片223位于储水箱2的内侧,水轮机22远离导水管221的一侧连接有进水管224,进水管224连接在污水处理箱1的上端,污水处理箱1的正面下端安装有控制面板3,污水处理箱1的正面上端安装有观察窗4,污水处理箱1的下端一侧连接有排水管5,排水管5的中间连接有排水阀51,污水处理箱1的下端另一侧连接有污水管6,污水管6的一侧连接有抽抽水泵61,抽抽水泵61的上端连接有输水管62,输水管62的另一端与电磁阀222相连接,并且输水管62的中间还安装有过滤器63,而污水处理箱1的内腔则开设有处理内腔7,处理内腔7的内腔底端安装有水质传感器71,水质传感器71与控制面板3电连接,处理内腔7的顶端两侧对称安装有固定挂钩72,处理内腔7上端的两侧对称安装有限位块73,而限位块73的上端则活动放置有过滤框74,过滤框74的上端两侧安装有吊环741,吊环741与固定挂钩72活动连接,过滤框74的内腔下端安装有过滤网742,过滤网742的上端填充有过滤填料743。
当污水导入储水箱2的内部时,格栅口21将率先对污水进行过滤,避免水质中含有较大的杂质垃圾,在污水过滤处理时造成管道堵塞,当污水进入储水箱2后,可以启动水轮机22将污水抽出进行处理,率先打开电磁阀222,水轮机22将通过导水管221将污水从储水箱2内部抽出,随后污水将通过进水管224导入到处理内腔7的内部,当水轮机22在驱动输水时,水轮机22将同步通过自身的中心转轴带动切割刀片223进行旋转,这时切割刀片223将对储水箱2内部的污水进行搅拌切割,从而可以对污水中的杂质垃圾进行搅碎,避免后期处理污水时发生堵塞,当污水进入处理内腔7的内部后,污水将率先通过过滤填料743进行过滤净化,随后再通过过 滤网742再次过滤处理,提高污水的处理精度,外端人员可以通过观察窗4观察过滤框74内是否堵塞,若出现堵塞时,可以将过滤框74活动拆装进行清理,当污水过滤净化后,污水将下落到处理内腔7的内部,这时水质传感器71可以对过滤净化后的污水进行检测,水质传感器71可以根据不同的需要安装不同类型的传感器,如余氯传感器、电导率传感器、ORP传感器、PH传感器、浊度传感器等,都属于水质传感器71的一种,人员可以通过安装不同类型的水质传感器71对污水进行检测,当污水处理达标后,可以打开排水阀51将处理后的水排出,当污水处理未达标时,需要启动抽水泵61,这时抽水泵61将通过污水管6将未达标的污水抽出,随后污水将通过输水管62和过滤器63输水过滤,这时可以再次打开电磁阀222,使未达标的污水回流到导水管221内重新导入到污水处理箱1内部进行过滤处理,直达污水达到处理排放标准。
以上均为本发明的较佳实施例,并非依此限制本发明的保护范围,故:凡依本发明的结构、形状、原理所做的等效变化,均应涵盖于本发明的保护范围之内。

Claims (6)

  1. 一种工业废水处理装置,包括污水处理箱(1)和储水箱(2),其特征在于:所述储水箱(2)位于污水处理箱(1)的上端,污水处理箱(1)的正面下端安装有控制面板(3),污水处理箱(1)的正面上端安装有观察窗(4),污水处理箱(1)的下端一侧连接有排水管(5),污水处理箱(1)的下端另一侧连接有污水管(6),而污水处理箱(1)的内腔则开设有处理内腔(7);
    所述处理内腔(7)的内腔底端安装有水质传感器(71),水质传感器(71)与控制面板(3)电连接,处理内腔(7)的顶端两侧对称安装有固定挂钩(72),处理内腔(7)上端的两侧对称安装有限位块(73),而限位块(73)的上端则活动放置有过滤框(74)。
  2. 根据权利要求1所述的一种工业废水处理装置,其特征在于:所述储水箱(2)的上端安装有格栅口(21),储水箱(2)的下端中间则安装有水轮机(22)。
  3. 根据权利要求2所述的一种工业废水处理装置,其特征在于:所述水轮机(22)的一侧连接有导水管(221),导水管(221)的另一侧与储水箱(2)的下端一侧相连接,导水管(221)的中间安装有电磁阀(222),水轮机(22)的上端连接有切割刀片(223),切割刀片(223)位于储水箱(2)的内侧,水轮机(22)远离导水管(221)的一侧连接有进水管(224),进水管(224)连接在污水处理箱(1)的上端。
  4. 根据权利要求1所述的一种工业废水处理装置,其特征在于:所述排水管(5)的中间连接有排水阀(51)。
  5. 根据权利要求1所述的一种工业废水处理装置,其特征在于:所述 污水管(6)的一侧连接有抽抽水泵(61),抽抽水泵(61)的上端连接有输水管(62),输水管(62)的另一端与电磁阀(222)相连接,并且输水管(62)的中间还安装有过滤器(63)。
  6. 根据权利要求1所述的一种工业废水处理装置,其特征在于:所述过滤框(74)的上端两侧安装有吊环(741),吊环(741)与固定挂钩(72)活动连接,过滤框(74)的内腔下端安装有过滤网(742),过滤网(742)的上端填充有过滤填料(743)。
PCT/CN2022/077437 2022-02-23 2022-02-23 一种工业废水处理装置 WO2023159381A1 (zh)

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CN116986657A (zh) * 2023-09-25 2023-11-03 新乡学院 一种基于硅基气凝胶的污水检测处理系统及方法
CN117547877A (zh) * 2024-01-06 2024-02-13 文水大有实业有限公司 一种消毒剂生产用提纯装置

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CN108947039A (zh) * 2017-05-27 2018-12-07 杨更先 一种污水处理箱
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CN116986657A (zh) * 2023-09-25 2023-11-03 新乡学院 一种基于硅基气凝胶的污水检测处理系统及方法
CN116986657B (zh) * 2023-09-25 2023-12-26 新乡学院 一种基于硅基气凝胶的污水检测处理系统及方法
CN117547877A (zh) * 2024-01-06 2024-02-13 文水大有实业有限公司 一种消毒剂生产用提纯装置
CN117547877B (zh) * 2024-01-06 2024-03-22 文水大有实业有限公司 一种消毒剂生产用提纯装置

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