Middle-end garbage classification treatment station
By designing a mid-level waste sorting and processing station that combines compression, sorting, and resource recovery layers, the problem of the single function of existing waste processing stations has been solved. This enables multi-level waste processing and efficient resource recycling, improving practicality and resource utilization.
Patent Information
- Application Number
- CN202520054417.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-01-09
AI Technical Summary
Existing waste treatment stations have limited functions, only having the ability to collect and compress waste, resulting in low practicality and low utilization of recyclable resources.
Design a waste intermediate sorting and processing station, including a waste compression layer, a waste sorting layer, and a waste treatment layer, which are used for waste compression, sorting, and resource recovery, respectively. Through the combination of sorting area, conveying channel, traveling area and unloading platform, the station realizes waste sorting, resource recovery and compression. It is equipped with a deodorization system and a leachate treatment system to enhance functionality and resource utilization.
It enables the sorting, resource-based treatment, and compression of waste, broadens the functions of waste treatment stations, improves their practicality, and effectively recycles recyclable resources, facilitating resource reuse.
Smart Images

Figure CN223862525U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of waste treatment technology, and in particular to a waste intermediate sorting and treatment station. Background Technology
[0002] Waste is solid waste generated in daily life and production. Due to its large volume, complex and diverse composition, and its polluting, resource-related, and social characteristics, it requires harmless, resource-recovery, volume-reduction, and socialized treatment. If not properly handled, it will pollute the environment, affect environmental sanitation, waste resources, disrupt production and living safety, and undermine social harmony. Waste disposal aims to quickly remove waste, treat it harmlessly, and finally utilize it rationally.
[0003] However, existing waste treatment plants typically only have a single waste compression function; they are usually used only as waste transfer stations, serving only the functions of waste collection and compression, and their practicality is low, resulting in low utilization of recyclable resources. Utility Model Content
[0004] The purpose of this utility model is to provide a waste intermediate sorting and processing station to solve the problems of low practicality and low utilization rate of recyclable resources caused by the single function of existing waste processing stations.
[0005] To achieve the above objectives, this utility model provides a waste intermediate sorting and processing station, which includes a waste compression layer, a waste sorting layer and a waste processing layer arranged sequentially from bottom to top;
[0006] The waste sorting layer includes a sorting area and a first traveling vehicle area. The sorting area is located in the middle of the waste sorting layer and has a first conveying channel for conveying sorted waste material. The first traveling vehicle area is arranged around the outer periphery of the sorting area and is connected to the outside. The first traveling vehicle area includes a first unloading platform for garbage trucks to stop and unload.
[0007] The waste treatment layer includes a treatment area and a second trolley area. The treatment area is located in the middle of the waste treatment layer and is equipped with resource recovery equipment for recycling waste. The treatment area is also equipped with a second conveying channel for conveying the waste residue from the resource recovery process. The second trolley area is arranged around the outer perimeter of the treatment area and is connected to the first trolley area via ramps. The second trolley area includes a second unloading platform for garbage trucks to stop and unload.
[0008] The waste compression layer includes a container loading area and a compression area; the container loading area is located on one side of the waste compression layer and is connected to the outside, and the container loading area includes a loading platform for garbage trucks to park and load garbage containers; the compression area is arranged adjacent to the loading platform, and the first conveying channel and the second conveying channel are both connected to the compression area, and the compression area is equipped with compression equipment; the compression equipment includes a compression device and a garbage container, and the compression device is used to compact the waste into the garbage container.
[0009] Furthermore, the waste compression layer includes a first direction and a second direction that are perpendicular to each other in the horizontal direction;
[0010] The compression zone is provided with a feeding chamber, which has openings at both the top and bottom. The lower opening of the feeding chamber is connected to the garbage bin. The first conveying channel and the second conveying channel are connected to the feeding chamber through the unloading channel.
[0011] Multiple compression devices are arranged side by side along the second direction;
[0012] The compression device includes a power end and an execution end. The power end and the loading platform are arranged on both sides of the garbage bin along a first direction. The garbage bin has an opening on the side facing away from the loading platform. The execution end is slidably disposed in the garbage bin. The power end is used to drive the execution end to approach the loading platform in order to compact the garbage in the garbage bin.
[0013] Furthermore, the sorting area includes a sorting unit and multiple storage units;
[0014] The sorting unit is located adjacent to the first unloading platform. The sorting unit is equipped with a sorting robot, which is used to sort the waste and transport it to multiple storage units.
[0015] Furthermore, the sorting unit is also provided with a discharge port that communicates with the upper opening of the feeding chamber.
[0016] Furthermore, each of the multiple storage units has an opening that connects to the first driving area.
[0017] Furthermore, it also includes a deodorization system, which includes a deodorization collection component;
[0018] The collection and deodorization assembly includes a gas collection pipe and a deodorization device;
[0019] The top of the waste compression layer, waste sorting layer, and waste treatment layer are all equipped with gas collection pipes, which are connected to the gas inlet of the deodorization device through a gas pipeline; the gas outlet of the deodorization device is connected to the outside.
[0020] Furthermore, the deodorization system also includes a spray deodorization component;
[0021] The deodorization component includes a deodorizing liquid supply source and a deodorizing nozzle; the deodorizing nozzle is provided on the top of the waste compression layer, waste sorting layer and waste treatment layer, and the deodorizing nozzle is connected to the deodorizing liquid supply source through a liquid pipeline.
[0022] Furthermore, it also includes a leachate treatment system;
[0023] The leachate treatment system includes a pretreatment unit, a biochemical treatment unit, and a discharge tank connected sequentially along the liquid transport direction.
[0024] The pretreatment equipment is connected to the compression zone and is used to collect leachate generated during waste compression.
[0025] Furthermore, it also includes a parking level, which is located above the waste disposal level;
[0026] The parking level includes a parking area and a third driving area. The parking area is located in the middle of the parking level, and the third driving area is located on both sides of the parking area and is connected to the second driving area through uphill and downhill ramps.
[0027] Furthermore, it also includes a roof layer, which is disposed above the waste treatment layer;
[0028] The roof layer is equipped with multiple photovoltaic devices for power generation.
[0029] Compared with the prior art, the waste intermediate sorting and processing station provided by this utility model has the following advantages:
[0030] This utility model provides a waste sorting and processing station, which includes a waste compression layer, a waste sorting layer, and a waste treatment layer arranged sequentially from bottom to top. In this station, a garbage truck enters the waste sorting layer from the outside through the first travel area and stops at the first unloading platform to unload the garbage. The garbage is sorted in the sorting area, and the sorted waste is then transported to the compression area via a first conveying channel. The garbage truck can also enter the waste treatment layer through the second travel area and stop at the second unloading platform to unload the garbage. The garbage is then processed in the treatment area. The waste undergoes resource recovery processing, with the waste residue being transported to the compression zone via a second conveying channel. The compression device compacts the waste into the waste bins. An empty garbage truck is parked on the loading platform in the loading area. The compressed waste, along with the waste bins, is loaded onto the garbage truck, which then transports the waste from the loading area to other waste treatment sites. Thus, the intermediate waste sorting and processing station achieves waste sorting, resource recovery, and compression, thereby expanding the functions of the intermediate waste sorting and processing station, improving its practicality, and enabling the effective recovery of recyclable resources, facilitating resource reuse. Attached Figure Description
[0031] Figure 1 This is a three-dimensional structural diagram of a waste intermediate sorting and processing station according to an embodiment of this utility model;
[0032] Figure 2 This is a schematic diagram of the waste treatment process of a waste intermediate sorting and treatment station according to an embodiment of the present utility model;
[0033] Figure 3 This is a schematic diagram of the waste compression layer of a waste intermediate sorting and processing station according to an embodiment of the present utility model;
[0034] Figure 4 This is a schematic diagram of the waste sorting layer of a waste intermediate sorting and processing station according to an embodiment of this utility model;
[0035] Figure 5 This is a schematic diagram of the waste treatment layer of a waste intermediate sorting and treatment station according to an embodiment of the present utility model;
[0036] Figure 6 This is a schematic diagram of the parking level of a waste intermediate sorting and processing station according to an embodiment of this utility model.
[0037] In the diagram, 100 is the intermediate waste sorting and processing station; 1 is the waste compression layer; 11 is the container loading area; 111 is the loading platform; 12 is the compression zone; 120 is the feeding room; 121 is the compression equipment; 1211 is the compression device; 12111 is the power end; 12112 is the execution end; 1212 is the waste bin; 2 is the waste sorting layer; 21 is the sorting area; 211 is the sorting unit; 212 is the storage unit; 210 is the first conveying channel; 22 is the first traveling area; 221 is the first unloading platform; 3 is the waste treatment layer; 31 is the treatment area; 310 is the second conveying channel; 32 is the second traveling area; 320 is the second unloading platform; 4 is the deodorization system; 5 is the leachate treatment system; 6 is the parking layer; 61 is the parking area; 62 is the third traveling area. Detailed Implementation
[0038] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.
[0039] like Figures 1-6 As shown, a waste intermediate sorting and processing station 100 according to an embodiment of the present utility model includes a waste compression layer 1, a waste sorting layer 2 and a waste processing layer 3 arranged sequentially from bottom to top;
[0040] The waste sorting layer 2 includes a sorting area 21 and a first traveling area 22. The sorting area 21 is located in the middle of the waste sorting layer 2 and has a first conveying channel 210 for conveying sorted waste material. The first traveling area 22 is arranged around the outer periphery of the sorting area 21 and is connected to the outside. The first traveling area 22 includes a first unloading platform 221 for garbage trucks to stop and unload.
[0041] The waste treatment layer 3 includes a treatment area 31 and a second vehicle area 32. The treatment area 31 is located in the middle of the waste treatment layer 3 and is equipped with resource recovery equipment for recycling waste. The treatment area 31 is also equipped with a second conveying channel 310 for conveying the waste recovery tailings. The second vehicle area 32 is arranged around the outer periphery of the treatment area 31 and is connected to the first vehicle area 21 through uphill and downhill channels. The second vehicle area 32 includes a second unloading platform 320 for garbage trucks to stop and unload.
[0042] The garbage compression layer 1 includes a container loading area 11 and a compression area 12. The container loading area 11 is located on one side of the garbage compression layer 1 and is connected to the outside. The container loading area 11 includes a loading platform 111 for garbage trucks to park and load garbage containers. The compression area 12 is arranged adjacent to the loading platform 111. The first conveying channel 210 and the second conveying channel 310 are both connected to the compression area 12. The compression area 12 is provided with a compression device 121. The compression device 121 includes a compression unit 1211 and a garbage container 1212. The compression unit 1211 is used to compact the garbage into the garbage container 1212.
[0043] Based on the above technical solution, in the intermediate waste sorting and processing station 100, garbage trucks enter the waste sorting layer 2 from the outside through the first travel area 22 and stop at the first unloading platform 221 to unload the garbage. The garbage is sorted in the sorting area 21, and the sorted waste is sent to the compression area 12 through the first conveying channel 210. Garbage trucks can also enter the waste processing layer 3 through the second travel area 32 and stop at the second unloading platform 320 to unload the garbage. The garbage undergoes resource recovery processing in the processing area 31, and the resource recovery waste is sent to the compression area 12 through the second conveying channel 31. The waste is sent to the compression zone 12; the compression device 1211 compacts the waste into the waste container 1212, and the empty garbage truck is parked in the loading platform 111 of the loading zone 11. The compressed waste, along with the waste container 1212, is loaded into the garbage truck, which then transports the waste from the loading zone 11 to other waste treatment sites. Thus, the intermediate waste sorting and processing station 100 realizes the sorting, resource recovery, and compression of waste, thereby expanding the function of the intermediate waste sorting and processing station 100, improving its practicality, and realizing the effective recovery of recyclable resources, facilitating resource reuse.
[0044] Preferably, in this embodiment, the processing zone 31 is equipped with a screening device, a wet waste processing device, and a dry waste processing device; the screening device has a wet waste outlet and a dry waste outlet, and the wet waste outlet is connected to the wet waste processing device, and the dry waste outlet is connected to the dry waste processing device; so that after the waste enters the processing zone 31, it is screened into wet waste and dry waste by the screening device, the wet waste is transported to the wet waste processing device for further screening and dehydration, the dry waste is transported to the dry waste processing device for decomposition and crushing, and then, according to different resource recovery needs, the dry waste is granulated or made into RDF.
[0045] Furthermore, such as Figures 1-3As shown, the garbage compression layer 1 includes a first direction X and a second direction Y that are perpendicular to each other in the horizontal direction; the compression zone 12 is provided with a feeding chamber 120, which has openings at both the top and bottom. The lower opening of the feeding chamber 120 is connected to the garbage bin 1212. The first conveying channel 210 and the second conveying channel 310 are connected to the feeding chamber 120 through a discharge channel; multiple compression devices 121 are arranged side by side along the second direction Y; the compression device 1211 includes a power end 12111 and an execution end 12112. The power end 12111 and the loading platform 111 are arranged on both sides of the garbage bin 1212 along the first direction X; the garbage bin 1212 has an opening on the side facing away from the loading platform 111, and the execution end 12112 is slidably disposed in the garbage bin 1212; the power end 12111 is used to drive the execution end 12112 to approach the loading platform 111 in order to compact the garbage in the garbage bin 1212. The feeding chamber 120 collects sorted tailings from the first conveying channel 210 and resource-recovered tailings from the second conveying channel 310. The tailings fall into the garbage bin 1212, which is connected to the lower opening of the feeding chamber 120, by their own gravity. The power end 12111 drives the execution end 12112 to move toward the loading platform 111 to compact the garbage into the garbage bin 1212.
[0046] Preferably, in this embodiment, the power end 12111 is a hydraulic device and the execution end 12112 is a compressor. The hydraulic device drives the compressor to compact the garbage into the garbage bin 1212.
[0047] Preferably, such as Figure 3 As shown, the garbage bins 1212 in the multiple compression devices 121 can slide along the second direction Y, so that after the garbage bins 1212 are filled, new empty garbage bins can be put into the compression zone 12, and the garbage bins 1212 are aligned with the compression devices 1211 to ensure the compression effect.
[0048] Furthermore, such as Figure 4 As shown, to specifically realize resource recycling in waste sorting, the sorting area 21 includes a sorting unit 211 and multiple storage units 212. The sorting unit 211 is arranged adjacent to the first unloading platform 221, and a sorting robot (not shown in the figure) is provided in the sorting unit 211. The sorting robot is used to classify the waste and transport it to the multiple storage units 212 respectively. In this embodiment, there are four storage units, namely a recyclable resource storage unit, a household waste storage unit, a green waste storage unit, and a kitchen waste storage unit, which are used to store the sorted waste that can be recycled.
[0049] Furthermore, such as Figure 2 and Figure 4 As shown, when the waste sorting and processing station receives a large amount of waste, the sorting unit 211 may not be able to sort the waste in time, which may lead to waste accumulation and inability to unload the waste. To solve this problem, the sorting unit 211 is also provided with a discharge port (not shown in the figure) that is connected to the upper opening of the feeding chamber 120. This allows the waste to be directly poured into the feeding chamber 120 through the discharge port in an emergency, so that it can be compressed and transported away in the waste bin 1212.
[0050] Furthermore, such as Figure 4 As shown, since some areas have already achieved effective waste sorting and treatment, multiple storage units 212 are respectively provided with openings that connect to the first driving area 22, so that garbage trucks can directly transport waste of the corresponding category to the corresponding storage unit 212 for storage or further screening and sorting.
[0051] Furthermore, such as Figure 1 and Figure 2 As shown, due to the odor of the garbage, in order to reduce the impact of the odor on the surrounding environment, the intermediate garbage sorting and processing station 100 also includes a deodorization system 4. The deodorization system 4 includes a collection and deodorization component; the collection and deodorization component includes a gas collection pipe and a deodorization device; the top of the garbage compression layer 1, the garbage sorting layer 2 and the garbage processing layer 3 are all provided with the gas collection pipe, and the gas collection pipe is connected to the gas inlet of the deodorization device through a gas pipeline; the gas outlet of the deodorization device is connected to the outside; the gas from each layer is collected through the gas collection pipe and sent to the deodorization device for deodorization and other purification treatments, and then discharged to the outside after the treatment meets the standards.
[0052] Preferably, in this embodiment, the deodorization device includes an odor liquefaction tower, a UV photolysis device, and a centrifugal fan connected sequentially in the gas conveying direction; other deodorization devices may be used in some other embodiments.
[0053] Furthermore, such as Figure 1 and Figure 2 As shown, to enhance the deodorization effect, the deodorization system 4 also includes a spray deodorization component; the deodorization component includes a deodorizing liquid supply source and a deodorizing nozzle; the top of the garbage compression layer 1, the garbage sorting layer 2 and the garbage treatment layer 3 are all provided with the deodorizing nozzle, and the deodorizing nozzle is connected to the deodorizing liquid supply source through a liquid pipeline to achieve the purpose of deodorization by spraying the deodorizing liquid.
[0054] Furthermore, such as Figure 1As shown, since harmful leachate is generated during the compression process of garbage, in order to avoid the leachate from affecting the surrounding environment, the intermediate garbage sorting and treatment station 100 also includes a leachate treatment system 5; the leachate treatment system 5 includes a pretreatment device, a biochemical treatment unit and a discharge pool connected in sequence along the liquid conveying direction; the pretreatment device is connected to the compression zone 12 and is used to collect the leachate generated during garbage compression.
[0055] Furthermore, such as Figure 1 and Figure 6 As shown, to further broaden the uses of the intermediate waste sorting and processing station 100, the intermediate waste sorting and processing station 100 also includes a parking level 6, which is located above the waste processing level 3. The parking level 6 includes a parking area 61 and a third driving area 62. The parking area 61 is located in the middle of the parking level 6, and the third driving area 62 is located on both sides of the parking area 61 and is connected to the second driving area 32 through ramps, so that garbage trucks and other vehicles can enter from the first driving area 22, pass through the second driving area 32 to enter the third driving area 62, and then arrive at the parking area 61 to park.
[0056] Furthermore, the intermediate waste sorting and processing station 100 also includes a roof layer, which is located above the waste processing layer 3; the roof layer is equipped with multiple photovoltaic devices for power generation. In this embodiment, the roof layer is located above the parking layer 6; the photovoltaic devices generate electricity to power the sorting robot and the deodorization system 4.
[0057] The working process of this utility model is as follows:
[0058] Garbage trucks loaded with garbage enter the garbage sorting layer 2 from outside the station through the first travel area 22 and stop at the first unloading platform 221 to unload the garbage. The garbage is sorted in the sorting area 21, and the sorting tail material is sent to the compression area 12 through the first conveying channel 210. Garbage trucks loaded with garbage can also enter the garbage treatment layer 3 through the second travel area 32 and stop at the second unloading platform 320 to unload the garbage. The garbage is processed for resource recovery in the treatment area 31, and the resource recovery tail material is sent to the compression area 12 through the second conveying channel 310.
[0059] Garbage is collected in the feeding chamber 120 via the first conveying channel 210 and the second conveying channel 310, and then falls into the garbage bin 1212. The garbage is compacted in the garbage bin 1212 by the compression device 1211. An empty garbage truck is parked in the loading platform 111 of the loading area 11. The compressed garbage, along with the garbage bin 1212, is loaded into the garbage truck, and the garbage truck transports the garbage from the loading area 11 to other external garbage disposal sites.
[0060] In summary, this utility model embodiment provides a waste intermediate sorting and processing station 100, which includes a waste compression layer 1, a waste sorting layer 2, and a waste processing layer 3 arranged sequentially from bottom to top. In the waste intermediate sorting and processing station 100, garbage trucks enter the waste sorting layer 2 from the outside through the first travel area 22 and stop at the first unloading platform 221 to unload the garbage. The garbage is sorted in the sorting area 21, and the sorted waste is sent to the compression area 12 through the first conveying channel 210. The garbage truck can also enter the waste processing layer 3 through the second travel area 32 and stop at the second unloading platform 320 to unload the garbage. The garbage is then processed in the processing area 3. 1. The waste undergoes resource recovery processing. The waste residue from resource recovery processing is sent to the compression zone 12 via the second conveying channel 310. The compression device 1211 compacts the waste into the waste container 1212. An empty garbage truck is parked on the loading platform 111 of the loading zone 11. The compressed waste, along with the waste container 1212, is loaded into the garbage truck, which then transports the waste from the loading zone 11 to other waste treatment sites. Thus, the intermediate waste sorting and processing station 100 achieves waste sorting, resource recovery processing, and compression, thereby expanding the functions of the intermediate waste sorting and processing station 100, improving its practicality, and realizing the effective recycling of recyclable resources, facilitating resource reuse.
[0061] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.
Claims
1. A waste intermediate sorting and processing station, characterized in that, It includes, from bottom to top, a waste compression layer, a waste sorting layer, and a waste treatment layer; The waste sorting layer includes a sorting area and a first traveling vehicle area. The sorting area is located in the middle of the waste sorting layer and has a first conveying channel for conveying sorted waste material. The first traveling vehicle area is arranged around the outer periphery of the sorting area and is connected to the outside. The first traveling vehicle area includes a first unloading platform for garbage trucks to stop and unload. The waste treatment layer includes a treatment area and a second trolley area. The treatment area is located in the middle of the waste treatment layer and is equipped with resource recovery equipment for recycling waste. The treatment area is also equipped with a second conveying channel for conveying the waste residue from the resource recovery process. The second trolley area is arranged around the outer perimeter of the treatment area and is connected to the first trolley area via ramps. The second trolley area includes a second unloading platform for garbage trucks to stop and unload. The waste compression layer includes a container loading area and a compression area; the container loading area is located on one side of the waste compression layer and is connected to the outside, and the container loading area includes a loading platform for garbage trucks to park and load garbage containers; the compression area is arranged adjacent to the loading platform, and the first conveying channel and the second conveying channel are both connected to the compression area, and the compression area is equipped with compression equipment; the compression equipment includes a compression device and a garbage container, and the compression device is used to compact the waste into the garbage container.
2. The waste intermediate sorting and processing station as described in claim 1, characterized in that, The waste compression layer includes a first direction and a second direction that are perpendicular to each other in the horizontal direction; The compression zone is provided with a feeding chamber, which has openings at both the top and bottom. The lower opening of the feeding chamber is connected to the garbage bin. The first conveying channel and the second conveying channel are connected to the feeding chamber through the unloading channel. Multiple compression devices are arranged side by side along the second direction; The compression device includes a power end and an execution end. The power end and the loading platform are arranged on both sides of the garbage bin along a first direction. The garbage bin has an opening on the side facing away from the loading platform. The execution end is slidably disposed in the garbage bin. The power end is used to drive the execution end to approach the loading platform in order to compact the garbage in the garbage bin.
3. The waste intermediate sorting and processing station as described in claim 2, characterized in that, The sorting area includes sorting units and multiple storage units; The sorting unit is located adjacent to the first unloading platform. The sorting unit is equipped with a sorting robot, which is used to sort the waste and transport it to multiple storage units.
4. The waste intermediate sorting and processing station as described in claim 3, characterized in that, The sorting unit is also equipped with a discharge port that communicates with the upper opening of the feeding chamber.
5. The waste intermediate sorting and processing station as described in claim 3, characterized in that, Multiple storage units are each provided with an opening that connects to the first driving area.
6. The waste intermediate sorting and processing station as described in claim 1, characterized in that, It also includes a deodorization system, which includes a deodorization collection component; The collection and deodorization assembly includes a gas collection pipe and a deodorization device; The top of the waste compression layer, waste sorting layer, and waste treatment layer are all equipped with gas collection pipes, which are connected to the gas inlet of the deodorization device through a gas pipeline; the gas outlet of the deodorization device is connected to the outside.
7. The waste intermediate sorting and processing station as described in claim 6, characterized in that, The deodorization system also includes a spray deodorization component; The deodorization component includes a deodorizing liquid supply source and a deodorizing nozzle; the deodorizing nozzle is provided on the top of the waste compression layer, waste sorting layer and waste treatment layer, and the deodorizing nozzle is connected to the deodorizing liquid supply source through a liquid pipeline.
8. The waste intermediate sorting and processing station as described in claim 1, characterized in that, It also includes a leachate treatment system; The leachate treatment system includes a pretreatment unit, a biochemical treatment unit, and a discharge tank connected sequentially along the liquid transport direction. The pretreatment equipment is connected to the compression zone and is used to collect leachate generated during waste compression.
9. The waste intermediate sorting and processing station as described in claim 1, characterized in that, It also includes a parking level, which is located above the waste disposal level; The parking level includes a parking area and a third driving area. The parking area is located in the middle of the parking level, and the third driving area is located on both sides of the parking area and is connected to the second driving area through uphill and downhill ramps.
10. The waste intermediate sorting and processing station as described in claim 1, characterized in that, It also includes a roof layer, which is located above the waste treatment layer; The roof layer is equipped with multiple photovoltaic devices for power generation.