WO2021083423A2 - 一种工业污水处理装置 - Google Patents

一种工业污水处理装置 Download PDF

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WO2021083423A2
WO2021083423A2 PCT/CN2020/137910 CN2020137910W WO2021083423A2 WO 2021083423 A2 WO2021083423 A2 WO 2021083423A2 CN 2020137910 W CN2020137910 W CN 2020137910W WO 2021083423 A2 WO2021083423 A2 WO 2021083423A2
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sets
processing
magnetic rod
warehouse
groups
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PCT/CN2020/137910
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English (en)
French (fr)
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WO2021083423A3 (zh
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何凡
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苏州鱼得水电气科技有限公司
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Priority to PCT/CN2020/137910 priority Critical patent/WO2021083423A2/zh
Priority to DE212020000402.1U priority patent/DE212020000402U1/de
Publication of WO2021083423A2 publication Critical patent/WO2021083423A2/zh
Publication of WO2021083423A3 publication Critical patent/WO2021083423A3/zh

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  • the utility model relates to the technical field of sewage treatment, in particular to an industrial sewage treatment device.
  • Industrial waste water includes production waste water, production sewage and cooling water. It refers to waste water and waste liquid produced in the industrial production process, which contains industrial production materials, intermediate products, by-products and pollutants generated during the production process that are lost with water.
  • industrial wastewater and complex components There are many types of industrial wastewater and complex components.
  • electrolytic salt industrial wastewater contains mercury
  • heavy metal smelting industrial wastewater contains various metals such as lead and cadmium
  • electroplating industrial wastewater contains various heavy metals such as cyanide and chromium
  • petroleum refining industrial wastewater contains phenol
  • pesticide manufacturing industrial wastewater Containing various pesticides, etc. the sewage needs to use a treatment device to preliminarily settle the sewage before treatment.
  • the existing technology has the following shortcomings: when traditional sewage is subjected to sedimentation treatment, the overall treatment efficiency is low, and the metal impurities in the sewage cannot be absorbed, which increases the follow-up labor intensity of the staff, and the traditional sewage is after sedimentation. , There is a big problem with the discharge of sediment and water source. Because the sediment and water source are treated in the same container, it is easy to wash up the sediment again during discharge, which increases the workload of the staff for secondary sedimentation and affects Overall purification efficiency.
  • the purpose of the present invention is to provide an industrial sewage treatment device to solve the problems raised in the background art.
  • An industrial sewage treatment device comprising: a support frame, a processing bin with an opening at the top, a sedimentation component and a barrier component, the processing bin is matched and installed in the support frame
  • a discharge pipe is installed at the center of the bottom end of the processing silo
  • a drain pipe is matched to be installed on the side wall of the bottom end of the processing silo
  • the sedimentation component is installed in the processing silo
  • the blocking component is correspondingly installed in the processing silo
  • the precipitation component and the barrier component are matched and installed.
  • the inner bottom end of the processing bin has an arc-shaped structure, and the inner wall of the processing bin is smoothed.
  • a cover plate is locked and installed at the top of the processing warehouse, and a sealing ring is installed at the contact position of the cover plate and the processing warehouse.
  • a feeding pipe is penetrated through one side of the cover plate, and the feeding pipe is in communication with the processing chamber.
  • the precipitation assembly includes a motor, a magnetic rod, and several sets of mixing blades.
  • the motor is installed at the center of the top surface of the cover plate.
  • the top end of the magnetic rod is rotatably connected to the lower surface of the cover plate through a bearing.
  • the blades are evenly distributed on the outside of the magnetic rod, and the output end of the motor is connected to the magnetic rod through a coupling.
  • the synchronous rotation of the magnetic rod and the mixing blade accelerates the flow of sewage and ensures the full contact between the sewage and the purifying agent. , Which accelerates the overall sedimentation rate, and can quickly flocculate and settle the impurities in the sewage.
  • the entire groups of the mixing blades are made of stainless steel, and the plurality of groups of the mixing blades are locked and fixed by bolts and magnetic rods.
  • the barrier assembly includes two sets of sliding plates, two sets of No. 1 cylinders, two sets of No. 2 cylinders, and two sets of blocking plates.
  • the two sets of No. 1 cylinders are installed on both sides of the inner wall of the processing chamber by bracket locking.
  • the set of sliding plates are matched and slidingly mounted on both sides of the inner wall of the processing warehouse, and the output ends of the two groups of the No. 1 cylinder are connected with two sets of sliding plates in transmission.
  • the two sets of blocking plates can be spliced along the hinge in the processing warehouse.
  • the bottom ends of the two sets of No. 2 cylinders are rotatably connected with the sliding plate through hinges, and the output ends of the two sets of No. 2 cylinders are blocked by hinges.
  • the plates are connected in rotation, and the ends of the two sets of blocking plates are sealed and fitted to drive the sediment in the processing warehouse to be separated from the water source, which is convenient for the subsequent staff to discharge the sediment and the water source separately.
  • the two groups of sliding plates are slidably connected to the inner wall of the processing chamber, and the inner wall of the processing chamber is provided with a sliding rail matching the sliding plate, which can guide the sliding plate.
  • the two sets of blocking plates are installed in parallel, the two sets of blocking plates are spliced in the processing chamber to separate the processing chambers, and the two sets of blocking plates are provided with a passage matching the magnetic rod on the side close to the magnetic rod. Hole, to improve the sealing performance of the partition.
  • the two sets of blocking plates are integrally formed by pressing steel, and the contact positions of the two sets of blocking plates with the inner wall of the processing chamber are equipped with sealing rings.
  • the utility model is equipped with a sedimentation component, and the staff can drive the magnetic rod to rotate rapidly through the electric control motor, and the magnetic rod can be adsorbed to absorb the metal impurities in the sewage stably, ensuring the overall purification Accuracy, the staff then transported the purifying agent through the feed pipe to the processing chamber. Under the synchronous rotation of the magnetic rod and mixing blade, the flow of sewage was accelerated, ensuring full contact between the sewage and the purifying agent, and accelerating the overall sedimentation rate. , It can quickly flocculate and settle the impurities in the sewage.
  • the utility model is equipped with barrier components.
  • the staff electronically controls the two sets of No. 1 cylinders to work.
  • the two sets of sliding plates move down in the processing warehouse to the top of the sludge and stop moving down, and then the staff controls the two sets of air cylinders.
  • Group No. 2 cylinder works to drive the two sets of blocking plates to slide in the processing chamber, so that the ends of the two sets of blocking plates are sealed and fit, and the sediment in the processing chamber is separated from the water source, which is convenient for the follow-up staff to monitor the sediment and water source. Discharge separately to avoid re-mixing of sediment and water source during the discharge process to affect the overall purification work and improve the overall purification cycle.
  • Figure 1 is a schematic diagram of the overall structure of the utility model
  • Figure 2 is a schematic diagram of the structure of the precipitation assembly of the present invention.
  • Figure 3 is a schematic diagram of the structure of the barrier component of the present invention.
  • Figure 4 is an enlarged schematic diagram of the part A in Figure 3 of the utility model
  • an industrial sewage treatment device comprising: a support frame 1, a processing warehouse with an opening at the top 2, a sedimentation component and a barrier component, and the processing warehouse 2 is matched and installed
  • a discharge pipe 3 is installed at the center of the bottom end of the processing warehouse 2
  • a drain pipe 4 is matched to be installed on the side wall of the bottom end of the processing warehouse 2
  • the sedimentation assembly is installed in the processing warehouse 2.
  • the barrier component is correspondingly installed in the processing warehouse 2, and the sedimentation component and the barrier component are matched and installed.
  • the inner bottom end of the processing bin 2 has an arc-shaped structure, and the inner wall of the processing bin 2 is smoothed;
  • a cover plate 5 is locked and installed at the top of the processing warehouse 2, and a sealing ring is installed at the contact position of the cover plate 5 and the processing warehouse 2;
  • the upper side of the cover plate 5 is provided with a feed pipe 6 through it, and the feed pipe 6 is in communication with the processing chamber 2;
  • the precipitation assembly includes a motor 7, a magnetic rod 8 and several sets of mixing blades 9.
  • the motor 7 is installed at the center of the upper surface of the cover plate 5.
  • the top end of the magnetic rod 8 is rotatably connected to the lower surface of the cover plate 5 through a bearing.
  • the mixing blades 9 are uniformly distributed on the outside of the magnetic rod 8, and the output end of the motor 7 is connected to the magnetic rod 8 through a coupling.
  • the staff can drive the magnetic rod 8 to rotate rapidly through the electric control motor 7. Under the adsorption of the magnetic rod 8, the metal impurities in the sewage can be stably absorbed to ensure the overall purification accuracy.
  • the staff will transport the purifying agent through the feed pipe 6 to the processing chamber 2, where the magnetic rod 8 and mixing
  • the synchronous rotation of the blades 9 accelerates the flow of sewage, ensures full contact between the sewage and the purifying agent, accelerates the overall sedimentation rate, and can quickly flocculate and settle the impurities in the sewage;
  • the barrier assembly includes two sets of sliding plates 10, two sets of No. 1 cylinders 11, two sets of No. 2 cylinders 12, and two sets of blocking plates 13.
  • the two sets of No. 1 cylinders 11 are installed on the inner wall of the processing warehouse 2 through brackets.
  • the two sets of sliding plates 10 are matched and slidably mounted on both sides of the inner wall of the processing chamber 2, and the output ends of the two sets of No. 1 cylinders 11 are drivingly connected to the two sets of sliding plates 10.
  • the side is mounted on one side of the sliding plate 10 by hinge rotation, and the two sets of blocking plates 13 can be spliced along the hinge in the processing warehouse 2, and the bottom ends of the two groups of cylinders 12 are rotatably connected with the sliding plate 10 through hinges, and The output ends of the two groups of No. 2 cylinders 12 are rotationally connected to the blocking plate 13 through hinges, and the staff electronically controls the two groups of No. 1 cylinders 11 to work, and the two sets of sliding plates 10 are linked to move down to the top of the sludge in the processing chamber 2 Stop moving down, and then the staff work through the electronically controlled two sets of No.
  • the two sets of sliding plates 10 are slidably connected to the inner wall of the processing warehouse 2, and the inner wall of the processing warehouse 2 is provided with sliding rails matching the sliding plate 10, which can guide the sliding plate 10;
  • Two groups of the blocking plates 13 are installed in parallel, the two groups of blocking plates 13 are spliced in the processing warehouse 2 to separate the processing warehouse 2, and the two groups of blocking plates 13 are provided with a magnetic rod on the side close to the magnetic rod 8. 8Matching through holes improve the sealing performance of the partition;
  • the two sets of plugging plates 13 are made by pressing steel as a whole, and the contact positions of the two sets of plugging plates 13 and the inner wall of the processing warehouse 2 are equipped with sealing rings.
  • the working principle of the utility model When in use, the staff transports the sewage through the feed pipe 6 to the processing warehouse 2 for processing. With the sedimentation assembly, the staff drives the magnetic rod 8 through the electric control motor 7 to perform rapid Rotation, the adsorption of the magnetic rod 8 can then stably absorb the metal impurities in the sewage, ensuring the overall purification accuracy, and then the staff will transport the purifying agent through the feed pipe 6 to the processing warehouse 2, where the magnetic rod 8
  • the synchronous rotation of 8 and the mixing blade 9 accelerates the flow of sewage, ensures full contact between the sewage and the purifier, accelerates the overall sedimentation rate, and can quickly flocculate and settle the impurities in the sewage, which is convenient for the staff to operate and use
  • the staff electronically control the two groups of No.

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  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Analytical Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Water Treatment By Electricity Or Magnetism (AREA)
  • Separation Of Suspended Particles By Flocculating Agents (AREA)

Abstract

本实用新型公开了一种工业污水处理装置,包括:支撑架、顶端设有开口的加工仓、沉淀组件以及阻隔组件,所述加工仓匹配安装在支撑架内,所述加工仓底端中心处安装有排料管,所述加工仓底端侧壁匹配安装有排液管,所述沉淀组件安装在加工仓内,本实用新型结构科学合理,通过设有阻隔组件,工作人员电控两组一号气缸进行工作,联动两组滑动板在加工仓内下移至污泥最顶部停止下移,随后工作人员通过电控两组二号气缸进行工作,驱动两组堵塞板在加工仓内滑动,使得两组堵塞板的端处密封贴合,驱使加工仓内沉淀物与水源进行分隔,便于后续工作人员对沉淀物以及水源进行分别排放,避免在排放的过程中沉淀物与水源再次混合对整体净化工作造成影响。

Description

一种工业污水处理装置 技术领域
本实用新型涉及污水处理技术领域,具体为一种工业污水处理装置。
背景技术
工业废水包括生产废水、生产污水及冷却水,是指工业生产过程中产生的废水和废液,其中含有随水流失的工业生产用料、中间产物、副产品以及生产过程中产生的污染物。工业废水种类繁多,成分复杂。例如电解盐工业废水中含有汞,重金属冶炼工业废水含铅、镉等各种金属,电镀工业废水中含氰化物和铬等各种重金属,石油炼制工业废水中含酚,农药制造工业废水中含各种农药等,因此污水在处理前需要使用处理装置对污水进行初步沉淀,但是传统的污水在进行沉淀处理时,整体处理效率较低,且无法对污水中的金属杂质进行吸收,增大了工作人员的后续劳动强度,且传统的污水在沉淀后,沉淀物与水源的排放存在较大问题,由于沉淀物与水源处理同一容器内,因此在排放时,极易将沉淀物再次冲起,增大了工作人员的二次沉淀劳动量。
现有技术有以下不足:传统的污水在进行沉淀处理时,整体处理效率较低,且无法对污水中的金属杂质进行吸收,增大了工作人员的后续劳动强度,且传统的污水在沉淀后,沉淀物与水源的排放存在较大问题,由于沉淀物与水源处理同一容器内,因此在排放时,极易将沉淀物再次冲起,增大了工作人员的二次沉淀劳动量,影响了整体净化效率。
实用新型内容
本实用新型的目的在于提供一种工业污水处理装置,以解决上述背景技术中提出的问题。
为了解决上述技术问题,本实用新型提供如下技术方案:一种工业污水处理装置,包括:支撑架、顶端设有开口的加工仓、沉淀组件以及阻隔组件,所述加工仓匹配安装在支撑架内,所述加工仓底端中心处安装有排料管,所述加工仓底端侧壁匹配安装有排液管,所述沉淀组件安装在加工仓内,所述阻隔组件对应安装在加工仓内,且所述沉淀组件与阻隔组件匹配安装。
进一步的,所述加工仓内部底端呈弧状结构,且所述加工仓内壁经过光滑处理。
进一步的,所述加工仓顶端锁合安装有盖板,且所述盖板与加工仓接触位置安装有密封圈。
进一步的,所述盖板上一侧贯穿开设有进料管,所述进料管与加工仓内连通。
进一步的,所述沉淀组件包括电机、磁性棒以及若干组混合叶片,所述电机安装在盖板上表面中心处,所述磁性棒顶端通过轴承与盖板下表面转动连接,若干组所述混合叶片均匀分布在磁性棒外部,且所述电机输出端通过联轴器与磁性棒传动连接,在磁性棒以及混合叶片的同步转动下,加速了污水的流动,确保了污水与净化剂的全面接触,加速了整体沉淀速率,可快速的对污水中的杂质进行絮凝沉降。
进一步的,若干组所述混合叶片整体均采用不锈钢材质制成,且若干组所述混合叶片通过螺栓与磁性棒锁合固定。
进一步的,所述阻隔组件包括两组滑动板、两组一号气缸、两组二号气缸以及两组堵塞板,两组所述一号气缸通过支架锁合安装在加工仓内壁两侧,两组所述滑动板匹配滑动安装在加工仓内壁两侧,且两组所述一号气缸输出端与两组滑动板传动连接,两组所述堵塞板底端一侧通过铰链转动安装在滑动板一侧,且两组所述堵塞板可顺延铰链在加工仓内拼接,两组所述二号气缸底端通过铰链与滑动板转动连接,且两组所述二号气缸输出端通过铰链与堵塞板转动 连接,利用两组堵塞板的端处密封贴合,驱使加工仓内沉淀物与水源进行分隔,便于后续工作人员对沉淀物以及水源进行分别排放。
进一步的,两组所述滑动板与加工仓内壁滑动连接,且所述加工仓内壁开设有与滑动板匹配的滑轨,可对滑动板进行导向处理。
进一步的,两组所述堵塞板平行安装,两组所述堵塞板在加工仓内拼接将加工仓进行分隔,且两组所述堵塞板靠近磁性棒一侧均开设有与磁性棒匹配的通孔,提升了分隔处的密封性。
进一步的,两组所述堵塞板整体采用钢材压制而成,且两组所述堵塞板与加工仓内壁接触位置均安装有密封圈。
有益效果是:
1、本实用新型通过设有沉淀组件,工作人员通过电控电机,带动磁性棒进行快速的转动,利用磁性棒的吸附下,进而可稳定的对污水中的金属杂质进行吸收,确保了整体净化精度,随后工作人员将净化剂经过进料管输送至加工仓内,在磁性棒以及混合叶片的同步转动下,加速了污水的流动,确保了污水与净化剂的全面接触,加速了整体沉淀速率,可快速的对污水中的杂质进行絮凝沉降。
2、本实用新型通过设有阻隔组件,工作人员电控两组一号气缸进行工作,联动两组滑动板在加工仓内下移至污泥最顶部停止下移,随后工作人员通过电控两组二号气缸进行工作,驱动两组堵塞板在加工仓内滑动,使得两组堵塞板的端处密封贴合,驱使加工仓内沉淀物与水源进行分隔,便于后续工作人员对沉淀物以及水源进行分别排放,避免在排放的过程中沉淀物与水源再次混合对整体净化工作造成影响,提升了整体净化周期。
附图说明
图1为本实用新型的整体的结构示意图;
图2为本实用新型的沉淀组件结构示意图;
图3为本实用新型的阻隔组件结构示意图;
图4为本实用新型的图3中A处放大示意图;
图中:1、支撑架;2、加工仓;3、排料管;4、排液管;5、盖板;6、进料管;7、电机;8、磁性棒;9、混合叶片;10、滑动板;11、一号气缸;12、二号气缸;13、堵塞板。
具体实施方式
请参阅图1-4,本实用新型提供以下技术方案:一种工业污水处理装置,包括:支撑架1、顶端设有开口的加工仓2、沉淀组件以及阻隔组件,所述加工仓2匹配安装在支撑架1内,所述加工仓2底端中心处安装有排料管3,所述加工仓2底端侧壁匹配安装有排液管4,所述沉淀组件安装在加工仓2内,所述阻隔组件对应安装在加工仓2内,且所述沉淀组件与阻隔组件匹配安装。
所述加工仓2内部底端呈弧状结构,且所述加工仓2内壁经过光滑处理;
所述加工仓2顶端锁合安装有盖板5,且所述盖板5与加工仓2接触位置安装有密封圈;
所述盖板5上一侧贯穿开设有进料管6,所述进料管6与加工仓2内连通;
所述沉淀组件包括电机7、磁性棒8以及若干组混合叶片9,所述电机7安装在盖板5上表面中心处,所述磁性棒8顶端通过轴承与盖板5下表面转动连接,若干组所述混合叶片9均匀分布在磁性棒8外部,且所述电机7输出端通过联轴器与磁性棒8传动连接,工作人员通过电控电机7,带动磁性棒8进行快速的转动,利用磁性棒8的吸附下,进而可稳定的对污水中的金属杂质进行吸收,确保了整体净化精度,随后工作人员将净化剂经过进料管6输送至加工仓2内,在磁性棒8以及混合叶片9的同步转动下,加速了污水的流动,确保 了污水与净化剂的全面接触,加速了整体沉淀速率,可快速的对污水中的杂质进行絮凝沉降;
若干组所述混合叶片9整体均采用不锈钢材质制成,且若干组所述混合叶片9通过螺栓与磁性棒8锁合固定,保证了混合叶片9锁合的稳定性;
所述阻隔组件包括两组滑动板10、两组一号气缸11、两组二号气缸12以及两组堵塞板13,两组所述一号气缸11通过支架锁合安装在加工仓2内壁两侧,两组所述滑动板10匹配滑动安装在加工仓2内壁两侧,且两组所述一号气缸11输出端与两组滑动板10传动连接,两组所述堵塞板13底端一侧通过铰链转动安装在滑动板10一侧,且两组所述堵塞板13可顺延铰链在加工仓2内拼接,两组所述二号气缸12底端通过铰链与滑动板10转动连接,且两组所述二号气缸12输出端通过铰链与堵塞板13转动连接,工作人员电控两组一号气缸11进行工作,联动两组滑动板10在加工仓2内下移至污泥最顶部停止下移,随后工作人员通过电控两组二号气缸12进行工作,驱动两组堵塞板13在加工仓2内滑动,使得两组堵塞板13的端处密封贴合,驱使加工仓2内沉淀物与水源进行分隔,便于后续工作人员对沉淀物以及水源进行分别排放,避免在排放的过程中沉淀物与水源再次混合对整体净化工作造成影响;
两组所述滑动板10与加工仓2内壁滑动连接,且所述加工仓2内壁开设有与滑动板10匹配的滑轨,可对滑动板10进行导向处理;
两组所述堵塞板13平行安装,两组所述堵塞板13在加工仓2内拼接将加工仓2进行分隔,且两组所述堵塞板13靠近磁性棒8一侧均开设有与磁性棒8匹配的通孔,提升了分隔处的密封性;
两组所述堵塞板13整体采用钢材压制而成,且两组所述堵塞板13与加工仓2内壁接触位置均安装有密封圈。
本实用新型的工作原理:在使用时,工作人员将污水经过进料管6输送至加工仓2内进行处理,通过设有沉淀组件,工作人员通过电控电机7,带动磁 性棒8进行快速的转动,利用磁性棒8的吸附下,进而可稳定的对污水中的金属杂质进行吸收,确保了整体净化精度,随后工作人员将净化剂经过进料管6输送至加工仓2内,在磁性棒8以及混合叶片9的同步转动下,加速了污水的流动,确保了污水与净化剂的全面接触,加速了整体沉淀速率,可快速的对污水中的杂质进行絮凝沉降,便于工作人员进行操作使用,同时通过设有阻隔组件,当污水中的沉降在加工仓2底部后,工作人员电控两组一号气缸11进行工作,联动两组滑动板10在加工仓2内下移至污泥最顶部停止下移,随后工作人员通过电控两组二号气缸12进行工作,驱动两组堵塞板13在加工仓2内滑动,使得两组堵塞板13的端处密封贴合,驱使加工仓2内沉淀物与水源进行分隔,随后利用排料管3以及排水管将沉淀物以及水源进行排放,便于后续工作人员对沉淀物以及水源进行分别排放,避免在排放的过程中沉淀物与水源再次混合对整体净化工作造成影响,提升了整体净化周期,降低了资源的浪费。

Claims (10)

  1. 一种工业污水处理装置,其特征在于:包括支撑架(1)、顶端设有开口的加工仓(2)、沉淀组件以及阻隔组件,所述加工仓(2)匹配安装在支撑架(1)内,所述加工仓(2)底端中心处安装有排料管(3),所述加工仓(2)底端侧壁匹配安装有排液管(4),所述沉淀组件安装在加工仓(2)内,所述阻隔组件对应安装在加工仓(2)内,且所述沉淀组件与阻隔组件匹配安装。
  2. 根据权利要求1所述的一种工业污水处理装置,其特征在于:所述加工仓(2)内部底端呈弧状结构,且所述加工仓(2)内壁经过光滑处理。
  3. 根据权利要求1所述的一种工业污水处理装置,其特征在于:所述加工仓(2)顶端锁合安装有盖板(5),且所述盖板(5)与加工仓(2)接触位置安装有密封圈。
  4. 根据权利要求3所述的一种工业污水处理装置,其特征在于:所述盖板(5)上一侧贯穿开设有进料管(6),所述进料管(6)与加工仓(2)内连通。
  5. 根据权利要求1所述的一种工业污水处理装置,其特征在于:所述沉淀组件包括电机(7)、磁性棒(8)以及若干组混合叶片(9),所述电机(7)安装在盖板(5)上表面中心处,所述磁性棒(8)顶端通过轴承与盖板(5)下表面转动连接,若干组所述混合叶片(9)均匀分布在磁性棒(8)外部,且所述电机(7)输出端通过联轴器与磁性棒(8)传动连接。
  6. 根据权利要求1所述的一种工业污水处理装置,其特征在于:所述沉淀组件包括电机(7)、磁性棒(8)以及若干组混合叶片(9),所述电机(7)安装在盖板(5)上表面中心处,所述磁性棒(8)顶端通过轴承与盖板(5)下表面转动连接,若干组所述混合叶片(9)均匀分布在磁性棒(8)外部,且所述电机(7)输出端通过联轴器与磁性棒(8)传动连接。
  7. 根据权利要求1所述的一种工业污水处理装置,其特征在于:所述 阻隔组件包括两组滑动板(10)、两组一号气缸(11)、两组二号气缸(12)以及两组堵塞板(13),两组所述一号气缸(11)通过支架锁合安装在加工仓(2)内壁两侧,两组所述滑动板(10)匹配滑动安装在加工仓(2)内壁两侧,且两组所述一号气缸(11)输出端与两组滑动板(10)传动连接,两组所述堵塞板(13)底端一侧通过铰链转动安装在滑动板(10)一侧,且两组所述堵塞板(13)可顺延铰链在加工仓(2)内拼接,两组所述二号气缸(12)底端通过铰链与滑动板(10)转动连接,且两组所述二号气缸(12)输出端通过铰链与堵塞板(13)转动连接。
  8. 根据权利要求7所述的一种工业污水处理装置,其特征在于:两组所述滑动板(10)与加工仓(2)内壁滑动连接,且所述加工仓(2)内壁开设有与滑动板(10)匹配的滑轨。
  9. 根据权利要求7所述的一种工业污水处理装置,其特征在于:两组所述堵塞板(13)平行安装,两组所述堵塞板(13)在加工仓(2)内拼接将加工仓(2)进行分隔,且两组所述堵塞板(13)靠近磁性棒(8)一侧均开设有与磁性棒(8)匹配的通孔。
  10. 根据权利要求7所述的一种工业污水处理装置,其特征在于:两组所述堵塞板(13)整体采用钢材压制而成,且两组所述堵塞板(13)与加工仓(2)内壁接触位置均安装有密封圈。
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