RECYCLING APPARATUS FOR SOLAR PANEL AND METHOD OF RECYCLING SOLAR PANEL
20240293952 ยท 2024-09-05
Inventors
Cpc classification
B26F3/008
PERFORMING OPERATIONS; TRANSPORTING
Y02W30/20
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
Y02E10/50
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
B09B5/00
PERFORMING OPERATIONS; TRANSPORTING
Y02W30/82
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
International classification
Abstract
A recycling apparatus is composed of a high-pressure water generating device, generating high-pressure water, and a jet nozzle that is connected to the high-pressure water generating device and spouts the high-pressure water toward a solar panel. The jet nozzle spouts the high-pressure water toward a back surface of the solar panel to remove a layer of the solar panel until a cover glass included in the solar panel.
Claims
1. A recycling apparatus for a solar panel, comprising: a high-pressure water generating device generating high-pressure water, and a jet nozzle connected to the high-pressure water generating device, the jet nozzle spouting the high-pressure water toward the solar panel, wherein the jet nozzle spouts the high-pressure water toward a back surface of the solar panel to remove a layer of the solar panel until a cover glass included in the solar panel.
2. A method of recycling a solar panel, comprising: processing the solar panel with high-pressure water generated by a high-pressure water generating device, the high-pressure water spouted from the high-pressure water generating device through a jet nozzle toward a back surface of the solar panel to remove a layer of the solar panel until a cover glass included in the solar panel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
[0016]
[0017]
DETAILED DESCRIPTION OF EMBODIMENTS
Configuration of Recycling Apparatus 10
[0018] A practical example will be hereinafter explained regarding a recycling apparatus 10 for a solar panel 100, to which the present invention is applied. As shown in
[0019] The high-pressure water jet unit 12 includes a high-pressure water generating device 20, a jet nozzle 22, a high-pressure water hose 24, and a jet nozzle moving device 26.
[0020] The high-pressure water generating device 20 is a device for generating high-pressure water W by pressurizing water supplied thereto. The high-pressure water generating device 20 includes a water receiving port 30 and a high-pressure water discharge port 32.
[0021] The jet nozzle 22 is a member for spouting the high-pressure water W supplied thereto from the high-pressure water generating device 20. The jet nozzle 22 is connected to the high-pressure water generating device 20 through the high-pressure water hose 24.
[0022] The jet nozzle moving device 26 is a device for shifting the position of the jet nozzle 22 with respect to the solar panel 100 as a work. Here, a type of moving device, enabled to move the jet nozzle 22 in a three-dimensional manner, is used as the jet nozzle moving device 26. Obviously, if it does not matter that the jet nozzle 22 is remote from the work (solar panel) 100 at a constant distance, a type of moving device, horizontally moving the jet nozzle 22 in a two-dimensional manner, may be used as the jet nozzle moving device 26.
[0023] Moreover, the jet nozzle moving device 26 may move the high-pressure water jet unit 12 together with the jet nozzle 22. Alternatively, the jet nozzle moving device 26 may move only the jet nozzle 22 by configuring the high-pressure water jet unit 12 as a stationary type.
[0024] The work holding unit 14 is a unit for holding the work (solar panel) 100. Besides, the work holding unit 14 may be provided with a function of horizontally moving the work (solar panel) 100 in a two-dimensional manner on an as-needed basis.
Configuration of Solar Panel 100
[0025] Next, a general structure of the solar panel 100 will be briefly explained with
[0026] An ethylene-vinyl acetate (EVA) copolymer resin, for instance, is used as a sealant for the first sealant layer 106 and that for the second sealant layer 110; however, another material may be employed as the sealant for each layer 106, 110.
[0027] Likewise, plastic such as polyethylene terephthalate (PET), for instance, is used as a material of the back sheet 112: however, another material may be employed as the material of the back sheet 112.
[0028] There are a variety of types of solar panels other than the solar panel 100 having such a general structure as described above: a double-sided type, a bendable type, a silicon-based or compound-based type (exemplified as another material type), and so forth. The recycling apparatus 10 and the recycling method according to the present invention are compatible with processing all the types of solar panels herein described.
Processing of Solar Panel 100 by Recycling Apparatus 10
[0029] Processing of the solar panel 100 by the recycling apparatus 10 according to the present exemplary embodiment will be explained. First, the work (solar panel) 100 is put on the work holding unit 14 of the recycling apparatus 10 and is then fixed thereto on an as-needed basis. In this case, the solar panel 100 is put on the work holding unit 14, while the back surface thereof faces the high-pressure water jet unit 12.
[0030] Thereafter, the high-pressure water W generated by the high-pressure water generating device 20 is spouted from the jet nozzle 22 through the high-pressure water hose 24 toward the back surface of the solar panel 100.
[0031] The layers of the solar panel 100 are removed from the back surface until the cover glass 104 with the spouted high-pressure water W.
[0032] Here, a state the layers of the solar panel 100 are removed until the cover glass 104 refers to a state that amongst the layers of the solar panel 100, some laminated from the back surface to the solar battery cell 108 are removed, whereby the cover glass 104 is exposed at least in part as shown in
[0033] As described above, when removing the layers of the solar panel 100 is completed until the cover glass 104 in a position struck by the spouted high-pressure water W, the jet nozzle moving device 26 moves the jet nozzle 22 to shift the position struck by the high-pressure water W. After the movement, the layers of the solar panel 100 are similarly removed until the cover glass 104 in the shifted position.
[0034] When the high-pressure water W is spouted from the jet nozzle 22 as described above, the jet nozzle moving device 26 may be configured to stop moving the jet nozzle 22, or alternatively, may be configured to move the jet nozzle 22, while the high-pressure water W is kept spouted from the jet nozzle 22.
Features of Recycling Apparatus 10
[0035] The recycling apparatus 10 according to the present exemplary embodiment is configured to process the solar panel 100 with the high-pressure water W generated by the high-pressure water generating device 20; hence, it is made easy to perform recycling after processing, and simultaneously, it is made possible to avoid such drawbacks as emissions of carbon dioxide and necessity for a great amount of energy.
[0036] Besides, the recycling apparatus 10 is configured to remove the layers of the solar panel 100 until the cover glass 104 by spouting the high-pressure water W toward the back surface of the solar panel 100: hence, chances are lowered that the cover glass 104 is unfortunately broken into pieces during processing, whereby it is made easy to recycle the cover glass 104 and the frame 102 after processing the solar panel 100.
MODIFICATION 1
[0037] In the exemplary embodiment described above, the layers of the solar panel 100 are removed until the cover glass 104 by spouting the high-pressure water W toward the back surface of the solar panel 100: alternatively, the layers of the solar panel 100, including the cover glass 104, may be entirely crushed by spouting the high-pressure water W toward the front surface of the solar panel 100. This is because even with the alternative configuration, it is made easy to perform recycling after processing, and simultaneously, it is made possible to avoid such drawbacks as emissions of carbon dioxide and necessity for a great amount of energy. For example, in such a situation as processing the solar panel 100 damaged or broken in a disaster or so forth, the high-pressure water W is supposed to be spouted toward both the front and back surfaces of the solar panel 100.
[0038] Obviously, it is preferable to remove the layers of the solar panel 100 until the cover glass 104 by spouting the high-pressure water W toward the back surface of the solar panel 100 as described in the exemplary embodiment described above.
[0039] It should be understood that the embodiments herein disclosed are illustrative only and are not restrictive in all aspects. It is intended that the scope of the present invention is indicated by the appended claims rather than the explanation described above and encompasses all the changes that come within the meaning and the range of equivalents of the appended claims.
REFERENCE SIGNS LIST
[0040] 10 . . . Recycling apparatus, 12 . . . High-pressure water jet unit, 14 . . . Work holding unit, 20 . . . High-pressure water generating device, 22 . . . Jet nozzle, 24 . . . High-pressure water hose, 26 . . . Jet nozzle moving device, 30 . . . Water receiving port, 32 . . . High-pressure water discharge port, 100 . . . Solar panel (work), 102 . . . Frame, 104 . . . Cover glass, 106 . . . First sealant layer, 108 . . . Solar battery cell, 110 . . . Second sealant layer, 112 . . . Back sheet, 114 . . . Junction box