WO2018059024A1 - 一种动力电池拆解分离装置 - Google Patents

一种动力电池拆解分离装置 Download PDF

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Publication number
WO2018059024A1
WO2018059024A1 PCT/CN2017/089735 CN2017089735W WO2018059024A1 WO 2018059024 A1 WO2018059024 A1 WO 2018059024A1 CN 2017089735 W CN2017089735 W CN 2017089735W WO 2018059024 A1 WO2018059024 A1 WO 2018059024A1
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WO
WIPO (PCT)
Prior art keywords
power battery
battery unit
disassembling
pushing
separating device
Prior art date
Application number
PCT/CN2017/089735
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English (en)
French (fr)
Inventor
许开华
Original Assignee
荆门市格林美新材料有限公司
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Publication of WO2018059024A1 publication Critical patent/WO2018059024A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B09DISPOSAL OF SOLID WASTE; RECLAMATION OF CONTAMINATED SOIL
    • B09BDISPOSAL OF SOLID WASTE NOT OTHERWISE PROVIDED FOR
    • B09B3/00Destroying solid waste or transforming solid waste into something useful or harmless
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/54Reclaiming serviceable parts of waste accumulators
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/84Recycling of batteries or fuel cells

Definitions

  • the utility model belongs to the field of disassembling a power battery unit, and particularly relates to a device for disassembling and separating a power battery unit in one body.
  • the prior art provides two methods and equipment for continuous disassembly, one is to cut the extruded pole piece method: after cutting the two ends of the power battery unit, the hydraulic extrusion The extruded rod of the device is aligned with the pole piece of the power battery, and the pole piece of the power battery is completely extruded; the other is the lateral demolition method: after cutting the positive pole of the power battery unit, the power battery is single By pushing, the body cuts the wall of the power battery horizontally, and then separates the steel shell and the pole piece by manual disassembly.
  • the method of cutting the extruded pole piece method is inferior, and the cutting equipment has more wear parts, and the cutting equipment and the extrusion equipment of different power battery units are completely different, and the industrialization has repeated investment;
  • the horizontal demolition method does not achieve the purpose of clean disassembly. During the horizontal pushing process, the blade will recess the steel shell wall and scratch the pole piece, making the pole piece difficult to recycle, which is not conducive to subsequent processing.
  • a power battery disassembling and separating device comprising a feeding mechanism, a pushing passage, a disassembling and separating mechanism, and a recycling mechanism, wherein the disassembling and separating mechanism comprises a pushing component, a peeling member and an unloading component, and the pushing
  • the squeezing assembly drives the power battery unit to move toward the stripping member, and the stripping member is provided with a scraper for separating the battery unit electrode and the power battery unit casing, and the scrapers cooperate with each other to form a power battery unit electrode channel.
  • the scraper is enlarged from the front end to the rear end, and the front end of the scraper separates and supports the outer casing of the power battery.
  • the ejector assembly includes at least one ejector assembly, the ejector assembly is attached to the side portion of the blade, and the ejector assembly moves along the side surface of the blade to peel off the power battery stagnation at the front end of the blade Body shell.
  • the pushing assembly includes a pushing rod, an electric motor, and a transmission, and the pushing rod is adapted to a size of a cross-sectional shape of the power battery unit in a forward direction, and the pushing rod is driven by the motor and the transmission.
  • the channel makes a linear reciprocating motion.
  • the push rod size is adapted to the power battery unit for pushing a square power battery unit or a cylindrical power battery unit, respectively.
  • the feeding mechanism includes a feeding bin, a limit buckle and an infrared sensing member, the feeding bin includes a feeding port and a box, and the feeding port is disposed at a bottom of the box;
  • the limit buckle is disposed at a lower portion of the box, and the limit buckle controls a pause and a feeding of the power battery unit through the feed port;
  • the infrared sensing member senses the position of the push rod When the push rod is moved to the end of the stroke, the limit buckle is retracted, a power battery unit is released, and the next power battery unit is immediately popped up.
  • the recovery mechanism includes a lower silo, a power battery unit electrode recovery component, and a power battery unit casing recovery component, the scraper is connected to the lower bin, and the power battery unit electrode recovery component recovers the finished product.
  • the middle power battery unit electrode portion, the power battery unit housing recovery unit recovers the power battery unit outer casing portion of the finished product.
  • the recycling mechanism further includes a dust removing assembly, the dust removing assembly includes an exhaust duct, an air pump, and an alkaline reaction tank, and the lower silo is connected by an air exhaust pipe, a suction pump, and an alkaline reaction pool to remove and disassemble Harmful substances remaining in the battery cells of the power battery during the process.
  • the technical advantage of the utility model is that a technical solution of the scraper is provided, and the pusher assembly is combined to enable the power battery unit outer casing and the power battery unit electrode to be smoothly separated, and the power battery unit outer casing is powered.
  • the battery cell electrode is flawless. Greatly improved work efficiency and work efficiency.
  • FIG. 1 is a schematic diagram of a square power battery unit disassembling and separating device
  • FIG. 2 is a schematic diagram of a cylindrical power battery unit disassembling and separating device
  • a power battery disassembling and separating device as shown in FIG. 1 includes a feeding mechanism 1, a pushing passage 2, a disassembling and separating mechanism 3, and a recycling mechanism 4, and the disassembling and separating mechanism 3 includes a pushing assembly 301.
  • a stripping member 302 and a retracting member 302 the stripping member 302 is provided with a scraper for separating the power battery cell electrode and the power battery cell casing, the scrapers are mutually coupled to form an electrode channel, and the pushing component 301 is The doctor blade cooperates to separate the power battery cell electrode and the power battery cell casing, and the ejector component 303 peels off the power battery cell casing retained on the blade.
  • the scraper abuts the power battery unit casing, the pushing component 301 pushes the power battery unit, the power battery cell electrode passes through the electrode channel, and the power battery unit casing is squeezed. To the outside of the scraper.
  • the scraper extends rearward and enlarged, and the rear side is a forward direction of the power battery unit, and the scraper has a quadrangular prism shape without upper and lower bottoms.
  • the unpacking assembly 303 is arranged in at least two parts, and includes a sliding surface and an unshelling surface, wherein the sliding surface abuts against the side of the scraper, and the retracting component is along the same The side of the scraper moves, After abutting against the power battery unit casing, the power battery unit casing stuck on the blade is removed.
  • the technical solution has the advantage that the power battery unit casing on which the retaining card is sleeved on the scraper can be peeled off
  • the pushing component 301 includes an electric motor, a transmission, and a pushing rod 3011.
  • the pushing rod 3 011 is linearly reciprocated along the pushing channel 2 by the motor and the transmission, and pushes the power battery unit. Squeezed onto the doctor blade, wherein the power battery cell electrode passes through the electrode channel.
  • the push rod 3011 matches the same cross-sectional shape of the power battery unit in the forward direction.
  • the area of the push rod 3011 is larger than the area of the power battery unit.
  • the feeding mechanism includes a feeding bin 101, a limit buckle 102 and an infrared sensing component, wherein the feeding bins are sequentially stacked, and the power battery cells are cut off at the front and rear ends of the casing;
  • the magazine 101 includes a feed port and a box, the feed port is disposed at the bottom of the box; the limit buckle 102 is disposed at the bottom of the box, and the limit buckle 102 controls the power battery list The suspension of the feed through the feed port is performed; the infrared sensing member 103 senses the position of the push rod 101, and when the push rod 101 moves to the end of the stroke, the limit buckle 102 retracts, releases a power battery unit, and pops up to block the next power battery unit after setting the day.
  • the technical solution has the advantages of controlling the orderly regular feeding of the power battery unit and improving the overall efficiency of the device.
  • the technical solution has the advantages that the power battery unit is placed in a carrier for pushing, and the active path of the power battery unit can be regulated during the pushing action, and the power battery unit electrode is always closed toward the blade. Mouth movement.
  • the recovery mechanism includes a lower silo 401, a power battery unit electrode recovery member 402, and a power battery unit housing recovery member 403, and the scraper is connected to the lower silo 401, the power battery
  • the unit electrode recovery member 402 recovers the power battery unit electrode portion of the finished product
  • the power battery unit housing recovery member 403 recovers the power battery unit housing portion of the finished product.
  • the recycling mechanism includes a dust removing assembly
  • the dust removing assembly includes: an air exhaust pipe, an air suction pump, and an alkaline reaction tank, wherein the air exhaust pipe is disposed at an upper portion of the lower bin, and the pumping
  • the air duct is connected to the lower silo and the exhaust pump, and the lower silo is connected to the alkaline reaction tank through the exhaust pipe and the air pump, and the powder is processed. Dust exhaust.
  • the technical solution has the advantages that the residual electrolyte and dust accompanying the power battery unit electrodes can be cleaned, so that the device achieves the technical effect of clean disassembly.
  • a cylindrical power battery unit disassembling and separating device is used for disassembling and separating a cylindrical power battery unit.
  • the main mechanism is: feeding mechanism 1, pushing channel 2
  • the composition and arrangement of the disassembling mechanism 3 and the separating mechanism 4 are the same as those of the first embodiment.
  • the pushing channel 2 is a pushing cylinder
  • the pushing rod 3011 has a cross-sectional shape and a cylindrical power battery unit. Adapting to a push rod of a size corresponding to or larger than a cylindrical power battery unit battery cell electrode; the scraper is in the shape of a frustum having no upper and lower bottoms, the end small tail is large, and the end section size and the size
  • the circular power battery unit is adapted.

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  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Secondary Cells (AREA)

Abstract

一种动力电池拆解分离装置,包括进料机构、推挤通道、拆解分离机构、回收机构,用于解决废旧动力电池单体回收拆解分离效率低、工艺损耗大、工业化重复投资多的问题,其优势在于提供了刮刀的技术方案,配合推挤组件使得动力电池单体外壳和动力电池单体电极能够顺利分离,且动力电池单体外壳对动力电池单体电极无剐蹭。大大提升了工作效率和工作效果。

Description

一种动力电池拆解分离装置
技术领域
[0001] 本实用新型属于动力电池单体拆解领域, 具体涉及将动力电池单体拆解分离一 体同吋进行的装置。
背景技术
[0002] 随着新能源汽车不断的快速发展, 越来越多的废旧动力电池单体即将被淘汰。
而我国生产的动力电池单体种类数目繁多, 仅靠一种拆解动力电池单体的设备 完全不能满足废旧动力电池单体的拆解需求, 目前我国拆解动力电池单体包的 设备大多处于试验阶段, 还没有产业化的拆解设备, 多数拆解设备采用切割、 挤出等方法分离极片, 这样处理动力电池单体步骤繁琐, 不易于连续化拆解。
[0003] 为了达到高效拆解的目的, 现有技术提供了两种连续化拆解的方法及设备, 一 种是切割挤出极片法: 将动力电池单体两端切割后, 将液压挤出装置的挤出棒 对准动力电池单体极片, 将动力电池单体极片完整挤压出来; 另外一种是横向 破拆法: 将动力电池单体的正极切割后, 将动力电池单体通过推挤的方式, 横 向划破动力电池单体壁, 再通过人工拆解方式分离钢壳和极片。
[0004] 但是, 上述两种设备中, 切割挤出极片法效率较差, 切割设备磨损件较多, 对 于不同的动力电池单体切割设备、 挤出设备都完全不同, 工业化重复投资多; 横向破拆法没有达到洁净拆解的目的, 横向推挤的过程中, 刀片会将钢壳壁向 里凹, 刮伤极片, 使极片难以回收, 不利于后续处理。
技术问题
[0005] 为解决废旧动力电池单体回收拆解分离效率低、 工艺损耗大、 工业化重复投资 多且产品质量无法保证的问题, 本实用新型提供如下技术方案:
[0006] 一种动力电池拆解分离装置, 包括进料机构、 推挤通道、 拆解分离机构、 回收 机构, 所述拆解分离机构包括推挤组件、 剥离件和退壳组件, 所述推挤组件驱 动动力电池单体向剥离件运动, 剥离件设有用于分离动力电池单体电极和动力 电池单体外壳的刮刀, 刮刀相互配合, 形成动力电池单体电极通道。 问题的解决方案
技术解决方案
[0007] 所述刮刀自前端向后端放大, 所述刮刀前端分离并撑幵动力电池单体外壳。
[0008] 所述退壳组件包括至少一个退壳组件, 所述退壳组件与所述刮刀侧面部位贴合 , 所述退壳组件沿所述刮刀侧表面运动, 剥离刮刀前端滞留的动力电池单体外 壳。
[0009] 所述推挤组件包括推挤杆、 电动机、 变速器, 所述推挤杆与动力电池单体前进 方向截面形状大小相适应, 所述推挤杆由所述电动机和变速器带动沿推挤通道 做直线往复运动。
[0010] 其中的一种情况是所述推挤杆大小与动力电池单体相适应, 分别用于推挤方形 动力电池单体或圆柱动力电池单体。
[0011] 另一种情况是所述推挤杆大小大于动力电池单体。
[0012] 所述进料机构包括进料仓、 限位卡扣和红外感应件, 所述进料仓包括进料幵口 和箱体, 所述进料幵口设置在所述箱体底部; 所述限位卡扣设置于箱体下部, 所述限位卡扣控制动力电池单体通过所述进料幵口进料的暂停和进行; 所述红 外感应件, 感应所述推挤杆位置, 当所述推挤杆运动至行程末端吋, 所述限位 卡扣收回, 释放一块动力电池单体, 并马上弹出阻挡下一块动力电池单体。
[0013] 所述回收机构包括下料仓, 动力电池单体电极回收部件和动力电池单体外壳回 收部件, 所述刮刀与所述下料仓连接, 所述动力电池单体电极回收部件回收成 品中动力电池单体电极部分, 所述动力电池单体外壳回收部件回收成品中动力 电池单体外壳部分。
[0014] 所述回收机构还包括除尘组件, 所述除尘组件包括抽风管道、 抽风泵和碱性反 应池, 所述下料仓通过抽风管、 抽风泵和碱性反应池连接, 清除拆解过程中动 力电池单体电极残留的有害物质。
发明的有益效果
有益效果
[0015] 本实用新型的技术优势在于, 提供了刮刀的技术方案, 配合推挤组件使得动力 电池单体外壳和动力电池单体电极能够顺利分离, 且动力电池单体外壳对动力 电池单体电极无剐蹭。 大大提升了工作效率和工作效果。
对附图的简要说明
附图说明
[0016] 图 1为方形动力电池单体拆解分离装置示意图
[0017] 图 2为圆柱动力电池单体拆解分离装置示意图
[0018] 1——进料机构、 101——进料仓、 102——限位卡扣、 103——红外感应件、 2 —推挤通道、 3—拆解分离机构、 301——推挤组件、 3011—推挤杆、 302 一剥离件、 303—退壳组件、 4—回收机构、 401—下料仓、 402—动 力电池单体电极回收件、 403—动力电池单体外壳回收件。
实施该发明的最佳实施例
本发明的最佳实施方式
[0019] 为了使本实用新型的目的、 技术方案及优点更加清楚明白, 以下结合附图及实 施例, 对本实用新型进行进一步详细说明。 应当理解, 此处所描述的具体实施 例仅仅用以解释本实用新型, 并不用于限定本实用新型。
[0020] 实施例 1
[0021] 如图 1所示一种动力电池拆解分离装置, 包括进料机构 1、 推挤通道 2、 拆解分 离机构 3、 回收机构 4, 所述拆解分离机构 3包括推挤组件 301、 剥离件 302和退壳 组件 302, 所述剥离件 302设置有用于分离动力电池单体电极和动力电池单体外 壳的刮刀, 所述刮刀互相配合成一个电极通道, 所述推挤组件 301与所述刮刀配 合, 分离动力电池单体电极和动力电池单体外壳, 所述退壳组件 303剥离滞留在 刮刀上的动力电池单体外壳。
[0022] 进一步的, 所述刮刀抵接动力电池单体外壳, 所述推挤组件 301, 推挤动力电 池单体, 动力电池单体电极通过所述电极通道, 动力电池单体外壳被挤压至刮 刀外侧。
[0023] 更进一步的, 所述刮刀向后延伸放大, 所述后方为动力电池单体的前进方向, 所述刮刀为没有上下底的四棱台柱形状。
[0024] 进一步的, 所述退壳组件 303为至少两部分一组排布, 包括滑动面和退壳面, 所述滑动面与所述刮刀侧面抵接贴合, 所述退壳组件沿所述刮刀侧面移动, 在 与动力电池单体外壳抵接后, 将卡在刮刀上的动力电池单体外壳退除。
[0025] 该技术方案的优势在于, 可将滞留卡套在所述刮刀上的动力电池单体外壳剥离
[0026] 进一步的, 所述推挤组件 301包括电动机、 变速器和推挤杆 3011, 所述推挤杆 3 011由电动机和变速器带动沿推挤通道 2做直线往复运动, 将动力电池单体推挤 至所述刮刀上, 其中动力电池单体电极从电极通道通过。
[0027] 更进一步的, 所述推挤杆 3011与动力电池单体前进方向截面形状相同大小相匹 配.
[0028] 更进一步的, 所述推挤杆 3011面积大于动力电池单体的面积。
[0029] 进一步的, 所述进料机构包括进料仓 101、 限位卡扣 102和红外感应件, 所述进 料仓顺序码放, 外壳前后端均被切除的动力电池单体; 所述进料仓 101包括进料 幵口和箱体, 所述进料幵口设置在所述箱体底部; 所述限位卡扣 102设置于箱体 底部, 所述限位卡扣 102控制动力电池单体通过所述进料幵口进料的暂停和进行 ; 所述红外感应件 103, 感应所述推挤杆 101位置, 当所述推挤杆 101运动至行程 末端吋, 所述限位卡扣 102收回, 释放一块动力电池单体, 并在设定吋间后弹出 阻挡下一块动力电池单体。
[0030] 此技术方案的优势在于可控制动力电池单体有序规整的入料, 提升装置整体效 率
[0031] 此技术方案的优势在于将动力电池单体放置于一个载体内进行推挤, 可以规整 推挤动作过程中, 动力电池单体的活动路径, 保持动力电池单体电极始终朝向 刮刀闭合幵口运动。
[0032] 进一步的, 所述回收机构包括下料仓 401, 动力电池单体电极回收件 402和动力 电池单体外壳回收件 403, 所述刮刀与所述下料仓 401连接, 所述动力电池单体 电极回收件 402回收成品中动力电池单体电极部分, 所述动力电池单体外壳回收 件 403回收成品中动力电池单体外壳部分。
[0033] 更进一步的, 所述回收机构包括除尘组件, 所述除尘组件包括: 抽风管、 抽风 泵和碱性反应池, 所述抽风管设置于所述下料仓上部, 所述抽风管连接所述下 料仓和抽风泵, 所述下料仓通过抽风管和抽风泵连接碱性反应池连接, 处理粉 尘尾气。
[0034] 此技术方案的优势在于, 可清理动力电池单体电极附带的残留电解液和粉尘等 污染, 使得装置达成洁净拆解的技术效果
[0035] 实施例 2
[0036] 如图 2所示一种圆柱动力电池单体拆解分离装置, 该实施例用于圆柱动力电池 单体的拆解和分离, 其主要机构: 进料机构 1、 推挤通道 2、 拆解机构 3、 分离机 构 4的组成和排布与实施例 1相同, 同吋, 所述推挤通道 2为推挤圆筒, 所述推挤 杆 3011为截面形状与圆柱动力电池单体相适应, 大小与圆柱动力电池单体动力 电池单体电极相适应或更大的推挤杆; 所述刮刀为没有上下底的锥台形状, 端 部小尾部大, 所述端部截面大小与所述圆形动力电池单体相适应。
[0037] 以上所述, 仅为本实用新型较佳的具体实施方式, 但本实用新型的保护范围并 不局限于此, 任何熟悉本技术领域的技术人员在本实用新型揭露的技术范围内 , 可轻易想到的变化或替换, 都应涵盖在本实用新型的保护范围之内。 因此, 本实用新型的保护范围应该以权利要求的保护范围为准。

Claims

权利要求书
[权利要求 1] 一种动力电池拆解分离装置, 其特征在于: 包括进料机构、 推挤通道
、 拆解分离机构、 回收机构, 所述拆解分离机构包括推挤组件、 剥离 件和退壳组件, 所述推挤组件驱动动力电池单体向剥离件运动, 剥离 件设有用于分离动力电池单体电极和动力电池单体外壳的刮刀, 刮刀 相互配合, 形成动力电池单体电极通道。
[权利要求 2] 根据权利要求 1所述的一种动力电池拆解分离装置, 其特征在于: 所 述刮刀自前端向后端放大, 所述刮刀前端分离并撑幵动力电池单体外 根据权利要求 1所述的一种动力电池拆解分离装置, 其特征在于: 所 述退壳组件包括至少一个退壳件, 所述退壳件与所述刮刀侧面部位贴 合, 所述退壳件沿所述刮刀侧表面运动, 剥离刮刀前端滞留的动力电 池单体外壳。
根据权利要求 1所述的一种动力电池拆解分离装置, 其特征在于: 所 述推挤组件包括推挤杆、 电动机、 变速器, 所述推挤杆与动力电池单 体前进方向截面形状大小相适应, 所述推挤杆由所述电动机和变速器 带动沿推挤通道做直线往复运动。
根据权利要求 1或 4所述的一种动力电池拆解分离装置, 其特征在于: 所述推挤杆大小与动力电池单体相适应, 用于推挤方形动力电池单体 或圆柱动力电池单体。
根据权利要求 1或 4所述的一种动力电池拆解分离装置, 其特征在于: 所述推挤杆大小大于动力电池单体。
根据权利要求 1所述的一种动力电池拆解分离装置, 其特征在于: 所 述进料机构包括进料仓、 限位卡扣和红外感应件, 所述进料仓包括进 料幵口和箱体, 所述进料幵口设置在所述箱体底部; 所述限位卡扣设 置于箱体下部, 所述限位卡扣控制动力电池单体通过所述进料幵口进 料的暂停和进行; 所述红外感应件, 感应所述推挤杆位置, 当所述推 挤杆运动至行程末端吋, 所述限位卡扣收回, 释放一块动力电池单体 , 并马上弹出阻挡下一块动力电池单体。
[权利要求 8] 根据权利要求 1所述的一种动力电池拆解分离装置, 其特征在于: 所 述回收机构包括下料仓, 动力电池单体电极回收件和动力电池单体外 壳回收件, 所述刮刀与所述下料仓连接, 所述动力电池单体电极回收 件回收成品中动力电池单体电极部分, 所述动力电池单体外壳回收件 回收成品中动力电池单体外壳部分。
[权利要求 9] 根据权利要求 8所述的一种动力电池拆解分离装置, 其特征在于: 所 述回收机构还包括除尘组件, 所述除尘组件包括抽风管道、 抽风泵和 碱性反应池, 所述下料仓通过抽风管、 抽风泵和碱性反应池连接, 清 除拆解过程中动力电池单体电极残留的有害物质。
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