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Patent · US2024170750A1 · A1 · US

Electrolyte extraction system and method

(11) Publication number
US2024170750A1
(21) Application number
18/282,981
(22) Filing date
2022-07-26
(30) Priority date
2021-07-30
(43) Publication date
2024-05-23
(51) IPC
B01D 11/02; B65G 15/30; H01M 10/54
(52) CPC
  • H01M Processes or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy: 10/54, 50/691, 6/52
  • B01D Separation: 11/0288
  • B65G Transport or storage devices, e.g. conveyors for loading or tipping, shop conveyor systems or pneumatic tube conveyors: 15/30
  • G01N Investigating or analysing materials by determining their chemical or physical properties: 1/10, 2001/1031
  • Y02E Reduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution: 60/10
  • Y02W Climate change mitigation technologies related to wastewater treatment or waste management: 30/84
(73) Assignee
LG Energy Solution Ltd
(72) Inventors
Daeki LEE; Rin Jang; Yeu Young Youn
(54) Title
Electrolyte extraction system and method
(57) Abstract

An electrolyte extraction system and a method for extracting electrolyte from a battery using the same are provided. The electrolyte extraction system comprises a first transfer unit transferring a lower jig having an upper surface on which a battery is mounted; a loading unit accommodating the lower jig together with the battery in a freezing tank filled with liquid nitrogen; a cutting unit cutting the battery inside the freezing tank; an unloading unit taking out the lower jig together with the battery from the freezing tank and accommodating the same in an electrolyte extraction tank; and a second transfer unit transferring the electrolyte extraction tank in which the battery is accommodated.

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Claims (1)

  1. An electrolyte extraction system comprising: a first transfer unit transferring a lower jig having an upper surface on which a battery is mounted; a loading unit accommodating the lower jig together with the battery in a freezing tank filled with liquid nitrogen; a cutting unit cutting the battery inside the freezing tank; an unloading unit taking out the lower jig together with the battery from the freezing tank and accommodating the same in an electrolyte extraction tank; and a second transfer unit transferring the electrolyte extraction tank in which the battery is accommodated. 2. The electrolyte extraction system according to claim 1, wherein the first transfer unit and the second transfer unit are conveyor belts. 3. The electrolyte extraction system according to claim 2, wherein a plurality of the lower jigs and a plurality of the electrolyte extraction tanks are provided, wherein the plurality of the lower jigs are arranged along a longitudinal direction of the first transfer unit, and wherein the plurality of the electrolyte extraction tanks are arranged along a longitudinal direction of the second transfer unit. 4. The electrolyte extraction system according to claim 1, wherein the cutting unit comprises: an upper jig pressing an upper surface of the battery; a blade unit penetrating the upper jig in a vertical direction; and a driving unit driving the upper jig and the blade unit in the vertical direction. 5. The electrolyte extraction system according to claim 4, wherein a lower surface of the upper jig and the upper surface of the lower jig face each other with the battery interposed therebetween, wherein the upper jig comprises a blade penetration hole through which the blade unit passes, formed therein, and wherein the lower jig comprises a blade protection groove formed at a position facing the blade penetration hole. 6. The electrolyte extraction system according to claim 4, wherein the blade unit comprises: a first blade extending in a first direction perpendicular to the vertical direction; and a second blade extending in a second direction perpendicular to the vertical direction and the first direction. 7. The electrolyte extraction system according to claim 1, wherein the electrolyte extraction tank is filled with an electrolyte extraction solvent, and wherein the electrolyte extraction solvent is an organic solvent. 8. An electrolyte extraction method comprising: a loading step of mounting a pouch-type battery on an upper surface of a lower jig; a freezing step of immersing the lower jig on which the battery is mounted in liquid nitrogen filled in a freezing tank; a fixing step of fixing the battery by pressing an upper surface of the battery with an upper jig; a cutting step of cutting the battery by passing a blade through a blade penetration hole formed in the upper jig; an unloading step of separating the upper jig from the battery and taking the battery and the lower jig out of the freezing tank; and an electrolyte extracting step of immersing the battery and the lower jig in an electrolyte extraction solvent filled in an electrolyte extraction tank. 9. The electrolyte extraction method according to claim 8, wherein a plurality of the batteries and a plurality of the lower jigs are provided in the loading step, wherein each of the plurality of the batteries is mounted on each of the plurality of the lower jigs, and wherein the freezing step, the fixing step, the cutting step, and the unloading step are sequentially performed for each of the plurality of the batteries. 10. The electrolyte extraction method according to claim 8, wherein a plurality of the batteries are provided in the loading step, wherein a plurality of the electrolyte extraction tanks are provided in the extracting step, and wherein each of the plurality of the batteries is accommodated in a different electrolyte extraction tank from each other.

Description

The present disclosure relates to an electrolyte extraction system and method, and more particularly, to an electrolyte extraction system and method for stably extracting electrolyte from a battery by disassembling the battery.

In battery development, there is a continuous need to understand the relationship between the degree of depletion of electrolyte according to the driving of the battery and the mechanism of battery degradation.

For example, by analyzing the absolute content of the electrolyte remaining in the battery, it is necessary to understand the absolute amount of the electrolyte before and after driving the battery and the tendency of electrolyte depletion due to the driving.

To this end, after a battery which is a finished product is driven under specific conditions, the electrolyte inside the battery must be extracted, and for this purpose, the process of disassembling the battery to extract the electrolyte inside the battery case is performed.

In performing the above process, as an automated method and system, there is a need for a method and system capable of preventing an accident due to an impact applied to the battery and stably extracting the electrolyte inside the battery without loss.

Technical Goals

The present disclosure relates to an electrolyte extraction system and method, and more particularly, an object of the present disclosure is to provide an electrolyte extraction system and method for stably extracting an electrolyte from a battery without loss by disassembling the battery.

Record as JSON
{
  "publication_number": "US2024170750A1",
  "country": "US",
  "kind": "A1",
  "title": "Electrolyte extraction system and method",
  "abstract": "An electrolyte extraction system and a method for extracting electrolyte from a battery using the same are provided. The electrolyte extraction system comprises a first transfer unit transferring a lower jig having an upper surface on which a battery is mounted; a loading unit accommodating the lower jig together with the battery in a freezing tank filled with liquid nitrogen; a cutting unit cutting the battery inside the freezing tank; an unloading unit taking out the lower jig together with the battery from the freezing tank and accommodating the same in an electrolyte extraction tank; and a second transfer unit transferring the electrolyte extraction tank in which the battery is accommodated.",
  "claims": [
    "1. An electrolyte extraction system comprising: a first transfer unit transferring a lower jig having an upper surface on which a battery is mounted; a loading unit accommodating the lower jig together with the battery in a freezing tank filled with liquid nitrogen; a cutting unit cutting the battery inside the freezing tank; an unloading unit taking out the lower jig together with the battery from the freezing tank and accommodating the same in an electrolyte extraction tank; and a second transfer unit transferring the electrolyte extraction tank in which the battery is accommodated. 2. The electrolyte extraction system according to claim 1, wherein the first transfer unit and the second transfer unit are conveyor belts. 3. The electrolyte extraction system according to claim 2, wherein a plurality of the lower jigs and a plurality of the electrolyte extraction tanks are provided, wherein the plurality of the lower jigs are arranged along a longitudinal direction of the first transfer unit, and wherein the plurality of the electrolyte extraction tanks are arranged along a longitudinal direction of the second transfer unit. 4. The electrolyte extraction system according to claim 1, wherein the cutting unit comprises: an upper jig pressing an upper surface of the battery; a blade unit penetrating the upper jig in a vertical direction; and a driving unit driving the upper jig and the blade unit in the vertical direction. 5. The electrolyte extraction system according to claim 4, wherein a lower surface of the upper jig and the upper surface of the lower jig face each other with the battery interposed therebetween, wherein the upper jig comprises a blade penetration hole through which the blade unit passes, formed therein, and wherein the lower jig comprises a blade protection groove formed at a position facing the blade penetration hole. 6. The electrolyte extraction system according to claim 4, wherein the blade unit comprises: a first blade extending in a first direction perpendicular to the vertical direction; and a second blade extending in a second direction perpendicular to the vertical direction and the first direction. 7. The electrolyte extraction system according to claim 1, wherein the electrolyte extraction tank is filled with an electrolyte extraction solvent, and wherein the electrolyte extraction solvent is an organic solvent. 8. An electrolyte extraction method comprising: a loading step of mounting a pouch-type battery on an upper surface of a lower jig; a freezing step of immersing the lower jig on which the battery is mounted in liquid nitrogen filled in a freezing tank; a fixing step of fixing the battery by pressing an upper surface of the battery with an upper jig; a cutting step of cutting the battery by passing a blade through a blade penetration hole formed in the upper jig; an unloading step of separating the upper jig from the battery and taking the battery and the lower jig out of the freezing tank; and an electrolyte extracting step of immersing the battery and the lower jig in an electrolyte extraction solvent filled in an electrolyte extraction tank. 9. The electrolyte extraction method according to claim 8, wherein a plurality of the batteries and a plurality of the lower jigs are provided in the loading step, wherein each of the plurality of the batteries is mounted on each of the plurality of the lower jigs, and wherein the freezing step, the fixing step, the cutting step, and the unloading step are sequentially performed for each of the plurality of the batteries. 10. The electrolyte extraction method according to claim 8, wherein a plurality of the batteries are provided in the loading step, wherein a plurality of the electrolyte extraction tanks are provided in the extracting step, and wherein each of the plurality of the batteries is accommodated in a different electrolyte extraction tank from each other."
  ],
  "description_excerpt": "The present disclosure relates to an electrolyte extraction system and method, and more particularly, to an electrolyte extraction system and method for stably extracting electrolyte from a battery by disassembling the battery.\n\nIn battery development, there is a continuous need to understand the relationship between the degree of depletion of electrolyte according to the driving of the battery and the mechanism of battery degradation.\n\nFor example, by analyzing the absolute content of the electrolyte remaining in the battery, it is necessary to understand the absolute amount of the electrolyte before and after driving the battery and the tendency of electrolyte depletion due to the driving.\n\nTo this end, after a battery which is a finished product is driven under specific conditions, the electrolyte inside the battery must be extracted, and for this purpose, the process of disassembling the battery to extract the electrolyte inside the battery case is performed.\n\nIn performing the above process, as an automated method and system, there is a need for a method and system capable of preventing an accident due to an impact applied to the battery and stably extracting the electrolyte inside the battery without loss.\n\nTechnical Goals\n\nThe present disclosure relates to an electrolyte extraction system and method, and more particularly, an object of the present disclosure is to provide an electrolyte extraction system and method for stably extracting an electrolyte from a battery without loss by disassembling the battery.",
  "cpc": [
    "H01M 10/54",
    "B01D 11/0288",
    "B65G 15/30",
    "G01N 1/10",
    "G01N 2001/1031",
    "H01M 50/691",
    "H01M 6/52",
    "Y02E 60/10",
    "Y02W 30/84"
  ],
  "ipc": [
    "B01D 11/02",
    "B65G 15/30",
    "H01M 10/54"
  ],
  "assignees": [
    "LG Energy Solution Ltd"
  ],
  "inventors": [
    "Daeki LEE",
    "Rin Jang",
    "Yeu Young Youn"
  ],
  "filing_date": "2022-07-26",
  "publication_date": "2024-05-23",
  "priority_date": "2021-07-30",
  "application_number": "US-202218282981-A",
  "family_id": "85087076",
  "cited_by_count": 0
}

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