EP4188791A1 - System for the selective collection of floating materials - Google Patents
System for the selective collection of floating materialsInfo
- Publication number
- EP4188791A1 EP4188791A1 EP21732061.3A EP21732061A EP4188791A1 EP 4188791 A1 EP4188791 A1 EP 4188791A1 EP 21732061 A EP21732061 A EP 21732061A EP 4188791 A1 EP4188791 A1 EP 4188791A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- barrier
- longitudinal
- intercepting
- materials
- selecting
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02B—HYDRAULIC ENGINEERING
- E02B15/00—Cleaning or keeping clear the surface of open water; Apparatus therefor
- E02B15/04—Devices for cleaning or keeping clear the surface of open water from oil or like floating materials by separating or removing these materials
- E02B15/08—Devices for reducing the polluted area with or without additional devices for removing the material
- E02B15/0807—Devices for reducing the polluted area with or without additional devices for removing the material with stabilising elements
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02B—HYDRAULIC ENGINEERING
- E02B15/00—Cleaning or keeping clear the surface of open water; Apparatus therefor
- E02B15/04—Devices for cleaning or keeping clear the surface of open water from oil or like floating materials by separating or removing these materials
- E02B15/08—Devices for reducing the polluted area with or without additional devices for removing the material
- E02B15/0835—Devices for reducing the polluted area with or without additional devices for removing the material fixed to permanent structure, e.g. harbour wall or river bank
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02B—HYDRAULIC ENGINEERING
- E02B8/00—Details of barrages or weirs ; Energy dissipating devices carried by lock or dry-dock gates
- E02B8/02—Sediment base gates; Sand sluices; Structures for retaining arresting waterborne material
- E02B8/023—Arresting devices for waterborne materials
Definitions
- the present invention refers to a system for a selective collection of floating materials.
- the invention refers to a system for collecting plastic materials floating in surface water, such as a river.
- Anti-pollution barrier systems are known for collecting hydrocarbons made of semi- submerged floating longitudinal elements extending about 40- 50 cm above the surface of the water and extending about 50- 100 cm below the surface of the water.
- barrier systems allow to intercept the floating waste and conduct it to a collection area without excessively affecting the environmental ecosystem, these systems do not allow a selection of the collected waste. Furthermore, if these barriers are employed on a river bed, they could generate a dangerous "dam-effect" and a consequent overflow of the banks.
- the system for a selective collection of materials floating in surface water comprises an intercepting barrier made up of at least one longitudinal element for intercepting the materials floating and transported by the water flow and conducting the materials to a predetermined direction.
- the system also comprises a selecting barrier located downstream of the intercepting barrier and connected to said intercepting barrier, for selecting floating materials based on their geometry.
- the system comprises a collecting area located downstream of the selecting barrier and connected to said selecting barrier for collecting the materials selected by the selecting barrier.
- the selecting barrier comprises a first longitudinal level staff, a second longitudinal level staff located downstream the first longitudinal level staff and two float members connecting the two level staffs.
- the first longitudinal level staff and the second longitudinal level staff are in the form of longitudinal rods and the height of the first level staff above the surface water is lower than that of the second level staff so that floating materials having a predetermined geometry are intercepted by the first longitudinal staff and are conducted to the collecting area, whereas the remaining floating materials go over the first longitudinal level staff and pass below the second longitudinal level staff and are conducted downstream of the collecting area.
- This system is suitable to be employed for collecting floating (polluting) materials in natural and artificial water such as rivers, coastal lakes or lagoons, channels or open sea.
- the different components of the system i.e. the intercepting barrier, the selecting barrier and the collecting area, are configured in such a way to intercept the materials transported by the water flow and conducting the intercepted material to the selecting barrier and then possibly to the collecting area.
- these components are arranged in series and connected to each other by means of connecting joints.
- not all the intercepted material is conducted to the collecting area.
- the selecting barrier selects the floating material based on the geometry of this material. Specifically, materials with a limited emerged surface, such as twigs, sticks, canes, etc., are not conducted to the collecting area but are rather conducted downstream said area.
- the two longitudinal level staffs are two longitudinal rods parallel to each other and positioned at two different heights above the surface of the water.
- the first longitudinal level staff is at about 1 cm from the surface of the water and the second longitudinal staff is at about 25 cm from the surface of the water.
- Each longitudinal level staff has a length of about 4 m and a width of about 5 cm. Also, the two level staffs are arranged almost parallel to each other at a constant distance of about 1.3 m. In addition, each float member has a length of about 1.5 m.
- the selecting barrier comprises only two longitudinal staffs in the form of rods spaced apart on the surface of the water, wherein the distance between the two longitudinal staffs is determined by the lengths of the connecting floating members.
- the staffs do not form any type of grid structure and are two longitudinal rods at different height above the surface of water and the selection occurs based on the characteristics of the floating materials.
- the present system has the advantage of not damaging the flora and/or fauna of the surrounding environment.
- the system according to the present invention reduces the formation of micro-plastics in open sea intervening for example upstream the river's mouth, before the micro-plastics are subjected to degradation phenomena and cannot be mechanically collected any more.
- the present system does not need external energy for the functioning since it takes advantage of the water flow to carry out the selection of the floating material.
- the system further comprises a deflecting barrier located upstream of the intercepting barrier.
- the deflecting barrier is made up of at least one longitudinal element submerged underneath the surface of the water at a predetermined depth from said surface. This barrier is configured for selecting floating or submerged materials based on their depth in water relative to the surface of the water. In this way, the intercepting barrier is configured to intercept the materials selected by the deflecting barrier.
- the at least one longitudinal element of the deflecting barrier has a length comprised between 5 m and 7 m and is ballasted to remain submerged at a depth comprised between 7 cm and 10 cm from the surface of the water.
- all the materials transported by the water flow having a submersion depth greater than 7-10 cm will be blocked by the deflecting barrier and will be deflected to a different direction and not intercepted by the intercepting barrier. This is the case of heavy and cumbersome materials, such as woods.
- plastic materials having a submersion depth lower than 7- 10 cm are not blocked by the deflecting barrier and pass through said barrier and are conducted to the intercepting barrier.
- submersion depth is intended here as the deepest position of a floating material below the surface of water during the transportation by the water flow. It is clear that a material with a high density floats at a deepest distance from the surface of the water, thereby having a greater submersion depth compared to a material with a low density that floats very close to the surface of the water.
- the deflecting barrier extends along a longitudinal direction forming an angle 80° ⁇ b ⁇ 100°, preferably of 90° with the longitudinal direction of the intercepting barrier. In this way, the material that is not deflected by the deflecting barrier is definitely captured by the intercepting barrier .
- the deflecting barrier comprises a floating mechanism for maintaining constant the depth of the deflecting barrier from the surface of the water. In this way, even in the presence of an overflow or of high/low tide, the deflecting barrier remains always in position.
- the at least one longitudinal element of the deflecting barrier and/or the at least one longitudinal element of the intercepting barrier can have a tubular form and can be made of polymeric material.
- the material can be polyethylene, polypropylene, polyvinyl chloride, or the like.
- the deflecting barrier is separated from the intercepting barrier and the distance between the deflecting barrier and the intercepting barrier is two times the entire length of the intercepting barrier.
- the closest distance (as the crow flies) between the deflecting barrier and the intercepting barrier is two times the entire length of the intercepting barrier.
- the deflecting barrier can comprise a plurality of longitudinal elements connected to each other by means of articulated joints.
- the deflecting barrier is not a monolithic piece but can be made longer or shorter based on the circumstances.
- the articulated joints allows the deflecting barrier to slightly adapt in shape to the different water flows.
- the at least one longitudinal element of the intercepting barrier has a length comprised between 5 m and 7 m and has a tubular shape with a diameter comprised between 150 mm and 170 mm.
- the system comprises a conveyor belt at the first longitudinal level staff of the selecting barrier.
- the system comprises a blade system located at the two float members to drive the conveyor belt.
- the blade system uses the force of the water flow. Therefore, no electric motors or other type of mechanical motors are required to actuate the conveyor belt.
- the conveyor belt can be driven by a different mechanism.
- the system comprises a paddle wheel and a motion transfer system.
- the motion transfer system can comprise one or more couple elements, for example at least a spiroidal conic couple.
- the conveyor belt functions without the need of electric motors or other type of mechanical motors since using only the force of the water flow and/or eventually of the wind.
- the collecting area comprises a plurality of tubular elements each having a diameter comprised between 270 mm and 290 mm and a length comprised between 5 m and 7 m. These elements are disposed to form a fenced area, where the selected floating material is collected.
- the collecting area is connected to the selecting barrier and the selecting barrier is connected to the intercepting barrier by means of articulated joints.
- the intercepting barrier can comprise a plurality of longitudinal elements connected to each other by means of articulated joints. In this way, the single elements of the system do not represent a monolithic pieces but can be made longer or shorter based on the circumstances.
- the articulated joints allows the intercepting barrier to slightly adapt in shape to the different water flows.
- the system can further comprise at least a sacrificial joint.
- the joint can be disengaged at any time to eventually free the system from said elements.
- Fig. 1 illustrates the system according to an embodiment of the present invention located close to the banks of a river.
- Fig. 2 illustrates a detail of the intercepting barrier and the selecting barrier according to an embodiment of the present invention.
- Fig. 3 illustrates a detail of the selecting barrier and the collecting area according to an embodiment of the present invention.
- Fig. 4 illustrates the selecting barrier and the collecting area of figure 3 in a top view.
- Fig. 5A-5C illustrate the detail of the conveyor belt driven by a paddle wheel.
- Figure 1 describes a system 1 according to an embodiment of the present invention.
- the figure shows a top view of the system 1 positioned in a surface water (W) close to the banks or at the coast (C) of a river.
- the system 1 comprises an intercepting barrier 10 connected to a selecting barrier 20 and a collecting area 30 located with respect to the water flow F of the river in order to intercept, select and eventually collect floating materials.
- the figure also shows the presence of a deflecting barrier 40 located upstream the intercepting barrier 10 at a distance 2D that is the double of the length D of the intercepting barrier 10. It is noted that the distance 2D is calculated between the closest points between the deflecting barrier 40 and the intercepting barrier 10.
- the deflecting barrier 40 is submerged at about 7-10 cm below the surface of the water and positioned obliquely with respect to the stream of the river.
- the longitudinal direction of the deflecting barrier 40 forms an angle with the water flow F, wherein is comprised between 40° and 45°.
- the particular configuration of the deflecting barrier 40 i.e. the orientation of this barrier relative to the water flow F and the submersion depth of the barrier relative to the surface of the water, i.e. above the water surface, allows the barrier to deviate floating materials having a submerged part of almost 7 cm or more towards the central region of the river far way from the other components of the system 1 and particularly from the intercepting barrier 10.
- the floating materials having a limited submersion depth i.e. lower than 7 cm
- the deflecting barrier 40 is not arranged orthogonally to the water flow F, thereby forming an angle with the flow F.
- the deflecting barrier 40 is arranged to form an angle b with the longitudinal direction of the intercepting barrier 10, wherein b is preferably 90°.
- This particular configuration allows the system to intercept only floating material having a certain density and a small submersion depth (light materials) and to deviate heavier materials with a greater submersion depth towards a different direction far away from the system 1.
- floating plastics basically comprising bottles and packaging, have a limited submersion depth of about 1-2 cm.
- the deflecting barrier 40 comprises a floating mechanism defined by two opposing float members 44 for maintaining constant the depth of the deflecting barrier from the surface of the water. In this way, even in the presence of an overflow or of high/low tide, the deflecting barrier remains always in position.
- Figure 2 shows a detail of the intercepting barrier 10 connected to the selecting barrier 20.
- the intercepting barrier 10 comprises a plurality of longitudinal elements 12 connected in series by means of joints to form and articulated barrier.
- the selecting barrier 20 comprises a first level staff 22 and a second level staff 24 arranged parallel to each other and connected through two float members 26. It is noted that the first level staff 22 represent a sort of prosecution of the intercepting barrier 10, whereas the second level staff 24 is positioned behind the first level staff 22 at a predetermined distance determined by the length of the float members 26.
- FIG. 3 shows a detail of the selecting barrier 20 connected to the collecting area 30.
- the selecting barrier 20 comprises two level staffs 22, 24 in the form of longitudinal rods, preferably made of metal, for example of aluminum, that are arranged at different heights above the surface of water.
- the first level staff 22 is arranged very close to the surface of water and at a lower height compared to that of the second level staff 24. It is noted that the height of the level staffs 22, 24 can be varied and adjusted by means of the particular joint connections 25 of these level staff 22, 24 with the corresponding float members 26.
- the first level staff 22 is at 1 cm from the surface of water, whereas the second level staff 24 at about 25 cm from the surface of water.
- the joint connections 15 are at about 10 cm from the surface of water and the float members 26 at about 6 cm from the surface of water.
- the blade system 35 basically comprises a blade (for example having an helicoidal shape) inserted in a tubular structure mechanically connected to the conveyor belt 28 for transforming the rotational movement of the blade to the translational movement of the belt 28. It is noted that other systems can advantageously be used to drive the conveyor belt 28, as shown in figures 5A-5C.
- the conveyor belt 28 serves to conduct floating materials having a particular geometry (great emerged surface) toward the collecting area 30. In fact, as shown in figure 3, the final extremity of the first level staff 22 directly ends into the entrance 36 of the collecting area 30.
- the selecting barrier 20 serves to carry out a further selection of the floating materials, once intercepted by the intercepting barrier 10.
- Figure 4 shows a detail of the collecting area 30 connected to the selecting barrier 20.
- the collecting area comprises at least four tubular elements 32 having a length of about 6 m and a diameter of about 280 mm.
- the tubular elements 32 are arranged to form a closed structure with a single entrance 36 in order to contain the intercepted and selected material.
- the entrance 36 of the collecting area 30 is defined by one of the float members 26 of the selecting barrier and by a second additional float member 34.
- the tubular elements 32 are arranged in pairs opposite to each other and are connected by a connection rod 38 representing end of the collecting area 30.
- the floating material present in the collecting area 30 can be retrieved using terrestrial means or suitable boats comprising metallic containers located on the prow. Thereafter, the retrieved material can be transferred to suitable container, i.e. big bags of 1 meter cubed, and placed in storage areas for the delivery to authorized operators.
- the system 1 represents a preventive approach to the problem of plastic present in open sea.
- the floating litter is intercepted before it reaches the open sea, thereby strongly reducing the employment of determined resources dedicated to the emergency of huge quantity of floating litter in open sea.
- the system 1 is also configured to reduce the maintenance service and can be adaptable to different types of rivers having different dimensions and quantity of transported water.
- the figures 5A to 5C show in detail the functioning of the conveyor belt 28 according to an example.
- the conveyor belt 28 is located at the first longitudinal level staff 22 in order to facilitate the conduction of the collected material, in particular floating material having a particular geometry (great emerged surface), towards the entrance 36 and then towards the collecting area 30.
- the conveyor belt 28 is driven by a paddle wheel 21 located laterally on the barrier 20.
- the paddle wheel 21 is fixed to a frame supported by one of the floating member 26 of the barrier 20 and by a second additional floating member 23.
- the paddle wheel 21 is fixed at a certain height relative to the surface of the water so that it can freely rotate due to the water flow hitting and pushing the paddles.
- the paddle wheel 21 can drive the movement of the belt 28.
- the motion transfer system 27 is illustrated in more detail in figures 5B and 5C according to two different perspective views.
- the motion transfer system 27 comprises three spiroidal conic couples 29 formed by toothed elements and longitudinal rods that transfer the rotational movement of the paddle wheel 21 (through a rotational rod 31 extending from the center of the wheel 21) to the translational movement of the conveyor belt 28 (through a dedicated toothed wheel). It is noted that the paddle wheel 21 can transfer the motion to the conveyor belt 28 using only the force of the water flow and/or of the wind.
- the system 1 is configured to intercept, select, and collect materials floating in the water of a river so that the collected materials are ready to be transported to a dedicated recycling or waste disposal plant.
Landscapes
- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Environmental & Geological Engineering (AREA)
- Cleaning Or Clearing Of The Surface Of Open Water (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP20188677.7A EP3945013A1 (en) | 2020-07-30 | 2020-07-30 | System for the selective collection of floating materials |
| PCT/EP2021/065982 WO2022022885A1 (en) | 2020-07-30 | 2021-06-14 | System for the selective collection of floating materials |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP4188791A1 true EP4188791A1 (en) | 2023-06-07 |
| EP4188791B1 EP4188791B1 (en) | 2024-09-11 |
Family
ID=71894706
Family Applications (2)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP20188677.7A Withdrawn EP3945013A1 (en) | 2020-07-30 | 2020-07-30 | System for the selective collection of floating materials |
| EP21732061.3A Active EP4188791B1 (en) | 2020-07-30 | 2021-06-14 | System for the selective collection of floating materials |
Family Applications Before (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP20188677.7A Withdrawn EP3945013A1 (en) | 2020-07-30 | 2020-07-30 | System for the selective collection of floating materials |
Country Status (2)
| Country | Link |
|---|---|
| EP (2) | EP3945013A1 (en) |
| WO (1) | WO2022022885A1 (en) |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN117090171A (en) * | 2023-10-09 | 2023-11-21 | 中国电建集团成都勘测设计研究院有限公司 | Pollution interception and cleaning system for water inlets of hydropower stations |
Family Cites Families (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4318633A (en) * | 1979-05-31 | 1982-03-09 | Gee Tsang | Contamination control boom arrangement |
| IT201800005132A1 (en) * | 2018-05-07 | 2019-11-07 | System of interception and collection of waste and debris in the water | |
| PE20210694A1 (en) * | 2018-09-03 | 2021-04-12 | Mold Srl | SYSTEM FOR CLEANING RIVERS AND STREAMS |
| CN109577301A (en) * | 2019-02-08 | 2019-04-05 | 何国良 | A kind of river floater rubbish interception salvaging system |
-
2020
- 2020-07-30 EP EP20188677.7A patent/EP3945013A1/en not_active Withdrawn
-
2021
- 2021-06-14 EP EP21732061.3A patent/EP4188791B1/en active Active
- 2021-06-14 WO PCT/EP2021/065982 patent/WO2022022885A1/en not_active Ceased
Also Published As
| Publication number | Publication date |
|---|---|
| EP3945013A1 (en) | 2022-02-02 |
| WO2022022885A1 (en) | 2022-02-03 |
| EP4188791B1 (en) | 2024-09-11 |
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