Method for Processing Waste Lead-Acid Batteries
20200036060 ยท 2020-01-30
Inventors
Cpc classification
Y02W30/84
GENERAL 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
B02C23/38
PERFORMING OPERATIONS; TRANSPORTING
Y02E60/10
GENERAL 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
B02C2201/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
B02C21/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method of processing waste lead-acid batteries includes a crushing step, a sorting step, a plastic fragment treating step, and a plastic bit recycling step. Through the four steps, waste lead-acid batteries are turned into lead fragments, high-density plastic fragments, and plastic bits, which are recyclable as reusable materials, respectively. Moreover, waste liquid and waste gas in the waste lead-acid batteries are sent to a waste liquid treating equipment and a waste gas treating equipment, respectively, for further appropriate treatment. Therefore, the method may appropriately recycle useful materials of the waste lead-acid batteries and prevent the waste liquid and the waste gas from polluting the environment.
Claims
1. A method of processing waste lead-acid batteries, the method comprising steps as follows: a crushing step comprising crushing a waste lead-acid battery into multiple fragments, waste liquid, and waste gas; a sorting step comprising separating the multiple fragments into multiple lead fragments and multiple plastic fragments by a density difference between lead and plastics; a plastic fragment treating step comprising separating the multiple plastic fragments into multiple high-density plastic fragments and multiple low-density plastic fragments by a density difference between two kinds of plastics; and a plastic bit recycling step comprising dewatering and smashing the multiple low-density plastic fragments to turn the multiple low-density plastic fragments into plastic bits.
2. The method of processing waste lead-acid batteries as claimed in claim 1, wherein waste liquid is also produced in the sorting step and the plastic fragment treating step, and the waste liquid is drained to a waste liquid treating equipment.
3. The method of processing waste lead-acid batteries as claimed in claim 1, wherein in the crushing step, the waste gas is transferred into a waste gas treating equipment.
4. The method of processing waste lead-acid batteries as claimed in claim 2, wherein in the crushing step, the waste gas is transferred into a waste gas treating equipment.
5. The method of processing waste lead-acid batteries as claimed in claim 1, wherein in the crushing step, the waste lead-acid battery is crushed by a crusher.
6. The method of processing waste lead-acid batteries as claimed in claim 2, wherein in the crushing step, the waste lead-acid battery is crushed by a crusher.
7. The method of processing waste lead-acid batteries as claimed in claim 3, wherein in the crushing step, the waste lead-acid battery is crushed by a crusher.
8. The method of processing waste lead-acid batteries as claimed in claim 4, wherein in the crushing step, the waste lead-acid battery is crushed by a crusher.
9. The method of processing waste lead-acid batteries as claimed in claim 5, wherein in the sorting step, the multiple fragments are separated into the multiple lead fragments and the multiple plastic fragments by a sorting device, and the multiple lead fragments are collected to a lead collector.
10. The method of processing waste lead-acid batteries as claimed in claim 6, wherein in the sorting step, the multiple fragments are separated into the multiple lead fragments and the multiple plastic fragments by a sorting device, and the multiple lead fragments are collected to a lead collector.
11. The method of processing waste lead-acid batteries as claimed in claim 7, wherein in the sorting step, the multiple fragments are separated into the multiple lead fragments and the multiple plastic fragments by a sorting device, and the multiple lead fragments are collected to a lead collector.
12. The method of processing waste lead-acid batteries as claimed in claim 8, wherein in the sorting step, the multiple fragments are separated into the multiple lead fragments and the multiple plastic fragments by a sorting device, and the multiple lead fragments are collected to a lead collector.
13. The method of processing waste lead-acid batteries as claimed in claim 9, wherein in the plastic fragment treating step, the multiple plastic fragments are separated into the multiple high-density plastic fragments and the multiple low-density plastic fragments by a plastic sorter, and the multiple high-density plastic fragments are collected to a plastic fragment collector.
14. The method of processing waste lead-acid batteries as claimed in claim 10, wherein in the plastic fragment treating step, the multiple plastic fragments are separated into the multiple high-density plastic fragments and the multiple low-density plastic fragments by a plastic sorter, and the multiple high-density plastic fragments are collected to a plastic fragment collector.
15. The method of processing waste lead-acid batteries as claimed in claim 11, wherein in the plastic fragment treating step, the multiple plastic fragments are separated into the multiple high-density plastic fragments and the multiple low-density plastic fragments by a plastic sorter, and the multiple high-density plastic fragments are collected to a plastic fragment collector.
16. The method of processing waste lead-acid batteries as claimed in claim 12, wherein in the plastic fragment treating step, the multiple plastic fragments are separated into the multiple high-density plastic fragments and the multiple low-density plastic fragments by a plastic sorter, and the multiple high-density plastic fragments are collected to a plastic fragment collector.
17. The method of processing waste lead-acid batteries as claimed in claim 13, wherein in the plastic bit recycling step, the multiple low-density fragments are dewatered by a dewatering device and smashed by a smasher to become the multiple plastic bits, and the multiple plastic bits are collected to a plastic bit collector by a dust collecting device.
18. The method of processing waste lead-acid batteries as claimed in claim 14, wherein in the plastic bit recycling step, the multiple low-density fragments are dewatered by a dewatering device and smashed by a smasher to become the multiple plastic bits, and the multiple plastic bits are collected to a plastic bit collector by a dust collecting device.
19. The method of processing waste lead-acid batteries as claimed in claim 15, wherein in the plastic bit recycling step, the multiple low-density fragments are dewatered by a dewatering device and smashed by a smasher to become the multiple plastic bits, and the multiple plastic bits are collected to a plastic bit collector by a dust collecting device.
20. The method of processing waste lead-acid batteries as claimed in claim 16, wherein in the plastic bit recycling step, the multiple low-density fragments are dewatered by a dewatering device and smashed by a smasher to become the multiple plastic bits, and the multiple plastic bits are collected to a plastic bit collector by a dust collecting device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009]
[0010]
[0011]
[0012]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0013] With reference to
[0014] The multiple processing equipments comprise a crusher 21, a sorting device 22, a dewatering device 23, a smasher 24, and a dust collecting device 25. The multiple waste treating equipments comprise a collecting tank 31, a waste liquid treating equipment 311, a collecting pipe system 32 comprising multiple pipes, a waste gas treating equipment 321, a lead collector 33, a plastic sorter 34, a plastic fragment collector 341, and a plastic bit collector 342.
[0015] With the multiple processing equipments and the multiple waste treating equipments mentioned above, the method for processing waste lead-acid batteries in accordance with the present invention comprises the following steps:
[0016] S1. A crushing step: putting a waste lead-acid battery 10 into the crusher 21. The waste lead-acid battery 10 will be crushed by the crusher 21 and is turned into multiple fragments 101, waste liquid 13, and waste gas 14. The multiple fragments 101 comprise multiple lead fragments 11 and multiple plastic fragments 12, and the multiple fragments 101 are further delivered to the sorting device 22. The waste liquid 13 is drained to the collecting tank 31, and flows to the waste liquid treating equipment 311. The waste gas 14 is transferred to the waste gas treating equipment 321 by the collecting pipe system 32.
[0017] S2. A sorting step: because plastics and lead have different densities, the sorting device 22 will sort out the multiple plastic fragments 12 from the multiple lead fragments 11. After separated, the multiple lead fragments 11 will be sent to the lead collector 33, and the multiple plastic fragments 12 will be sent to the plastic sorter 34 for further processing. Recycling of lead is done in the sorting step.
[0018] S3. A plastic fragment treating step: the multiple plastic fragments 12 are sorted into multiple high-density plastic fragments 121 and multiple low-density plastic fragments 122 by density difference. Taking advantage of the difference in density, the plastic sorter 34 is enabled to separate the multiple plastic fragments 121, 122 of two different densities. The multiple high-density plastic fragments 121 will be sent to the plastic fragment collector 341, and recycling of high-density plastic is therefore done. On the other hand, the multiple low-density plastic fragments 122 will undergo a further step.
[0019] S4. A plastic bit recycling step: with the dewatering device 23 and the smasher 24, dewater and smash the multiple low-density plastic fragments 122 in series, and then the multiple low-density plastic fragments 122 will become multiple plastic bits 123. Putting the multiple plastic bits 123 into the plastic bit collector 342 by applying the dust collecting device 25, and recycling of the plastic bits 123 is finished.
[0020] Additionally, in the steps of S2 and S3, there is still waste liquid 13 left in the sorting device 22 and the plastic sorter 34 during the processes of separating the multiple lead fragments 11, the multiple high-density plastic fragments 121, and the multiple low-density plastic fragments 122. The waste liquid 13 in the sorting device 22 and the plastic sorter 34 may be drained to interflow with the waste liquid 13 in the collecting tank 31, and become confluent with the waste liquid 13 in the waste liquid treating equipment 311 for further treatment.
[0021] With reference to
[0022] Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.