Device for cultivating and harvesting algae

The device facilitates efficient and portable algae cultivation and harvesting through a system of ropes, water basins, and harvesting mechanisms, addressing inefficiencies in existing technologies.

WO2026057481A1PCT designated stage Publication Date: 2026-03-19SCHLUN DIRK
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Patent Information

Application Number
PCT/EP2025/075341
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-09-13
Filing Date
2025-09-05
Publication Date
2026-03-19

AI Technical Summary

Technical Problem

Existing devices for cultivating and harvesting algae are inefficient and lack portability, making them impractical for effective and time-efficient operations.

Method used

A device comprising ropes with cultivation areas, a water basin, harvesting, winding, and unwinding mechanisms, along with alignment rollers and a collecting system, allowing for efficient cultivation and harvesting of algae while being portable.

Benefits of technology

Enables practical and time-efficient algae cultivation and harvesting, with enhanced portability and ease of transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a device (1) for cultivating and harvesting algae, comprising a plurality of ropes (2), a water basin (3) as a cultivation station for the algae, a harvesting device (4) for removing the algae from the ropes (2), and a winding device (5) for winding-up the ropes (2) on the winding device (5), and an unwinding device (6) for unwinding the ropes (2) from the winding device (5), wherein each rope (2) is attached at a first end to the winding device (5) and at a second end opposite the first end to the unwinding device (6), wherein the ropes (2) are tensioned between the winding device (5) and the unwinding device (6), wherein the ropes (2) are guided through the harvesting device (4) or adjacent to the harvesting device (4) in the region of the winding device (5), wherein the winding device (5) and the unwinding device (6) lie opposite one another and the water basin (3) is arranged between the winding device (5) and the unwinding device (6), wherein a section of the ropes (2) is guided through the water basin (3) in a cultivated state, wherein the ropes (2) are or can be guided through the harvesting device (4) for harvesting the algae by winding the ropes (2) by means of the first winding device (5), and wherein the ropes (2) are or can be unwound from the winding device (5) by means of the unwinding device (6) to provide the cultivated state.
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Description

[0001] N / DISCH-002-PCT

[0002] September 5, 2025

[0003] NUSL

[0004] Applicant: Dirk Schlun

[0005] Lambert-Schlun-Weg 5 52538 Gangelt

[0006] Title: Device for cultivating and harvesting algae

[0007] Description

[0008] The invention relates to a device for cultivating and harvesting algae.

[0009] Algae and their components can be used for a variety of purposes. Therefore, there is a need for devices that enable the efficient harvesting of algae.

[0010] Cultivation devices for algae are known from CN 1 06 212 262 A and US 2023 / 0 101 427 Al.

[0011] The invention is based on the objective of providing a new device for cultivating and harvesting algae. In particular, a device is to be proposed by means of which algae can be both cultivated and harvested.

[0012] This problem is solved by a device having the features of claim 1. Advantageous embodiments and further developments are specified in the dependent claims.

[0013] The device according to the invention for cultivating and harvesting algae comprises a plurality of ropes, wherein at least one section of the outer surface of each rope is provided as a cultivation area for the algae, a water basin as a cultivation station for the algae, a harvesting device for removing the algae from the ropes, and a winding device for winding the ropes onto the winding device and an unwinding device for unwinding the ropes from the winding device, wherein each rope is connected at a first end to the winding device and at a first end to the first N / DISCH-002-PCT 05.09.2025 NUSL

[0014] 2

[0015] the second end opposite the first is attached to the unwinding device, wherein the ropes are tensioned between the winding device and the unwinding device, wherein the ropes are guided through the harvesting device or adjacent to the harvesting device in the area of ​​the winding device, wherein the winding device and the unwinding device are opposite each other and the water basin is arranged between the winding device and the unwinding device, wherein a section of the ropes is guided through the water basin in a cultivation state, wherein the ropes are guided or can be guided through the harvesting device for harvesting the algae by means of the first winding device, and wherein the ropes are unwound or can be unwound from the winding device for providing the cultivation state by means of the unwinding device.

[0016] The term "cultivation state" refers specifically to a condition in which algae are cultivated and / or grow on a section of the rope's outer surface. This section of the rope's outer surface is located, in particular, within the water-filled basin.

[0017] The advantages of the invention lie particularly in the fact that it enables practical and efficient, especially time-efficient, cultivation and harvesting of algae. A further significant advantage of the device is its portability, allowing it to be transported relatively easily to a destination.

[0018] The ropes are preferably movable through the water basin in two opposite directions of pull by means of the winding device and the unwinding device. When the ropes are wound onto the winding device, they move in a first direction of pull, and when they unwind from the unwinding device, they move in a second direction of pull opposite to the first. The harvesting device is positioned upstream of the winding device in the first direction of pull.

[0019] Preferably, the ropes are designed to be wound up or wound onto the winding device for unwinding. N / DISCH-002-PCT

[0020] September 5, 2025

[0021] NUSL

[0022] 3

[0023] According to a further development of the invention, the device comprises at least two, in particular four, alignment rollers for each rope, wherein each rope is guided around the corresponding alignment rollers, and wherein the alignment rollers are arranged such that the ropes are arranged in a horizontal plane within the water basin by means of the alignment rollers.

[0024] In particular, the winding device and the unwinding device are arranged vertically at the same height. The water basin and / or the water level in the water basin may be lower than the winding device and / or the unwinding device. Alternatively, the water basin and / or the water level in the water basin may be at least substantially at the same height as the winding device and / or the unwinding device.

[0025] The ropes are preferably pressed downwards into the water basin and / or below the water level of the water-filled basin by means of first alignment rollers, and in particular their arrangement relative to the winding device and / or the unwinding device. One of the first alignment rollers is arranged on the water basin side in the area of ​​the winding device. Another first alignment roller is arranged on the water basin side in the area of ​​the unwinding device. In particular, the ropes are pressed 1 cm to 20 cm, preferably 2 cm to 15 cm, and most preferably 5 cm, below the water level of the water-filled basin.

[0026] Furthermore, it may be provided that two additional alignment rollers are provided for each rope, wherein one of the two additional alignment rollers is arranged between the winding device and the first alignment roller located in its area and higher than the winding device, and the other alignment roller is arranged between the unwinding device and the first alignment roller located in its area and higher than the unwinding device.

[0027] Preferably, the device includes a collecting device, wherein the collecting device is designed to collect algae removed from the ropes by means of the harvesting device. N / DISCH-002-PCT

[0028] September 5, 2025

[0029] NUSL

[0030] 4

[0031] Furthermore, it may be provided that the collecting device is arranged in an area below the harvesting device, wherein the collecting device is designed as a pull-out drawer.

[0032] The drawer's extension direction is perpendicular to the longitudinal axis of the water basin, particularly in the horizontal plane. The drawer's base features a perforated metal sheet to allow water to drain away.

[0033] The device may include an irrigation device, wherein the irrigation device is intended for filling the water basin with water.

[0034] Furthermore, the irrigation device may include a collection container for flooding the water basin, wherein the collection container has a tilting mechanism, and wherein the collection container can be tilted or is tiltable by means of the tilting mechanism from a first state in which the collection container is filled or can be filled with water, into a second state in which water flows from the collection container into the water basin or floods the water basin.

[0035] The collection container can be designed as a tub. The tipping mechanism preferably comprises a tipping joint and a counterweight to the collection container. The counterweight can comprise one or more individual weights.

[0036] The device comprises, in particular, at least one splash guard element, wherein the splash guard element is arranged in the area of ​​the collection tank. The splash guard element is, for example, designed as a sheet metal plate arranged laterally on the water basin. Particularly preferably, two splash guard elements are provided, which are attached to two opposing N / DISCH-002-PCT components in the area of ​​the collection tank.

[0037] September 5, 2025

[0038] NUSL

[0039] 5

[0040] The walls of the water basin are arranged. In particular, at least one splash guard element extends above the height of the water basin.

[0041] According to one embodiment of the invention, the irrigation device comprises a piping system, in particular a pipe system, wherein the piping system has an inlet and an outlet, wherein water can be filled from the inlet into the collection tank by means of the piping system, and wherein water can be removed from the water basin by means of the outlet.

[0042] In particular, the piping system forms a water circuit. The collection tank is specifically part of the piping system and / or the water circuit. One or more water tanks may be provided as intermediate storage within the piping system. The water tank(s) are preferably located below the water basin. Furthermore, the irrigation device may also include a pump, in particular a submersible pump, for pumping water through the piping system.

[0043] Furthermore, the device may include at least one rope tensioner for each rope. The rope tensioners are arranged on the respective rope, particularly in the area of ​​the water basin. The ropes preferably have at least twice the length of the water basin.

[0044] According to one embodiment of the invention, the winding device and / or the unwinding device are each designed as a rotatable shaft, wherein the ropes, when wound onto the winding device and / or unwinding device, are wound around the shaft's outer surface or in provided rope guides or rope guide channels. The shaft has, in particular, a clamping device for each rope for securing the respective rope end to the shaft. Preferably, the winding device and / or the unwinding device each include a drive motor for rotating the respective shaft. The winding device and / or the N / DISCH-002-PCT 05.09.2025 NUSL

[0045] 6

[0046] In operation, rolling devices exhibit, in particular, opposite directions of rotation.

[0047] According to a further development of the invention, the harvesting device has at least one harvesting unit per rope, wherein each rope is guided through each harvesting unit and / or adjacent to the harvesting unit, wherein each harvesting unit has at least one stripping device, wherein each stripping device particularly at least partially encompasses the corresponding rope, wherein the stripping device is located so close to the rope or in contact with the rope that algae located on the rope are stripped off by means of the stripping device when the rope is guided through the harvesting unit, wherein the rope is guided or can be guided through the harvesting device particularly during winding on the winding device.

[0048] Each harvesting unit of the harvesting device may comprise two stripping devices, in particular one arranged above the cable and one arranged below the cable, the stripping devices preferably being offset from each other in the direction of pull. It may also be provided that a filter grid is arranged below the harvesting device.

[0049] Preferably, the device comprises a housing, wherein the housing is designed as a container or of container construction. The container may have, in particular, height-adjustable feet. Furthermore, the container may have one or more access doors for operating personnel. Additionally, one or more windows may be provided on the exterior surfaces of the container. The container may also have lashing and / or lifting lugs, particularly on the top of the container. Furthermore, air intake and / or exhaust grilles may be provided on the exterior surfaces of the container. The container may be transported on a truck trailer or be transportable by trailer.

[0050] The device may include lamps, in particular UV lamps, for irradiating the algae with light, in particular UV light. N / DISCH-002-PCT

[0051] September 5, 2025

[0052] NUSL

[0053] 7

[0054] Furthermore, the device may be provided with one or more sensors for measuring the air temperature, humidity and / or CO2 content of the air, in particular in the container, and / or one or more sensors for measuring light, in particular the light intensity in the container, and / or one or more sensors for measuring the chemical and / or biological oxygen demand and / or one or more sensors for measuring the water temperature and pH value of water in the water basin, and in particular the flow rate of water in the piping system.

[0055] The device may include a control cabinet for controlling the electrical and / or electronic components of the device. The device may also include, particularly within the container, one or more blowers, for example, fans.

[0056] The invention is further explained below with regard to its features and advantages by means of a description of exemplary embodiments and with reference to the accompanying schematic drawings. These show

[0057] FIG. 1 shows an embodiment of a device according to the invention in a schematic, three-dimensional representation.

[0058] FIG. 2 shows an embodiment of a device according to the invention in a schematic side view,

[0059] FIG. 3 shows an embodiment of a device according to the invention in a schematic side view,

[0060] FIG. 4 shows the harvesting device of an embodiment of a device according to the invention in a schematic, three-dimensional representation, N / DISCH-002-PCT

[0061] September 5, 2025

[0062] NUSL

[0063] 8

[0064] FIG. 5 shows the housing designed as a container of an embodiment of a device according to the invention in a schematic, three-dimensional representation.

[0065] Corresponding parts and components are marked with the same reference symbols in the figures.

[0066] FIGS. 1 and 2 show a device 1 according to the invention for cultivating and harvesting algae. The device 1 comprises a plurality of ropes 2, wherein at least a section of the outer surface of each rope 2 is provided as a cultivation area for the algae. The device 1 further comprises a water basin 3 as a cultivation station for the algae and a harvesting device 4 for removing the algae from the ropes 2.

[0067] Furthermore, the device 1 comprises a winding device 5 for winding the ropes 2 onto the winding device 5 and an unwinding device 6 for unwinding the ropes 2 from the winding device 5, wherein each rope 2 is attached at a first end to the winding device 5 and at a second end opposite the first end to the unwinding device 6, wherein the ropes 2 are tensioned between the winding device 5 and the unwinding device 6. The ropes 2 are also guided through the harvesting device 4 or adjacent to the harvesting device 4 in the area of ​​the winding device 5.

[0068] The winding device 5 and the unwinding device 6 are positioned opposite each other, and the water basin 3 is located between the winding device 5 and the unwinding device 6. A section of the ropes 2 is guided through the water basin 3 in a cultivation state. "Cultivation state" refers to the state in which algae are cultivated and / or grow on a section of the outer surface of the ropes 2. This section is the portion of the outer surface of the ropes 2 that lies within the water-filled water basin 3. N / DISCH-002-PCT 05.09.2025 NUSL

[0069] 9

[0070] To harvest the algae, the ropes 2 are guided through the harvesting device 4 by being wound up by the first winding device 5. To prepare the cultivation state or to restore the cultivation state after harvesting, the ropes are unwound again from the winding device 5 by means of the unwinding device 6.

[0071] To unwind the ropes 2 from the winding device 5, they are wound onto the unwinding device 6. For this purpose, the ropes 2 can be moved through the water basin 3 in two opposite directions of pull by means of the winding device 5 and the unwinding device 6. When the ropes 2 are wound onto the winding device 5, they move in a first direction of pull ZI, and when they are unwound from the unwinding device 6, they move in a second, opposite direction of pull Z2. The harvesting device 4 is positioned upstream of the winding device 5 in the first direction of pull ZI.

[0072] FIG. 2 shows that the device 1 comprises four alignment rollers 7a, 7b for each rope 2, wherein each rope is guided around the corresponding alignment rollers 7a, 7b, and wherein the alignment rollers 7a, 7b are arranged such that the ropes 2 are arranged in a horizontal plane within the water basin 3 by means of the alignment rollers 7a, 7b and are pressed below the water level of the water-filled water basin 3.

[0073] The winding device 5 and the unwinding device 6 are arranged vertically at the same height, as shown in the embodiment of FIG. 2. The ropes 2 are pressed downwards into the water basin 3 and below the water level of the water-filled basin 3 by means of first alignment rollers 7a and their arrangement relative to the winding device 5 and the unwinding device 6. One of the first alignment rollers 7a is arranged on the water basin side in the area of ​​the winding device 5. Another first alignment roller 7a is arranged on the water basin side in the area of ​​the unwinding device 6. The ropes 2 are preferably pressed 5 cm below the water level of the water-filled basin 3. N / DISCH-002-PCT

[0074] September 5, 2025

[0075] NUSL

[0076] 10

[0077] Furthermore, two additional alignment rollers 7b are provided for each rope 2, one of which is located between the winding device 5 and the first alignment roller 7a located within its area, and higher than the winding device 5. The other alignment roller 7b is located between the unwinding device 6 and the first alignment roller 7a located within its area, and higher than the unwinding device 6.

[0078] The device 1 comprises a rope tensioner 18 for each rope 2 for tensioning the respective rope 2. The rope tensioners 18 are arranged on the respective rope 2 in the area of ​​the water basin 3.

[0079] The winding device 5 and the unwinding device 6 are each designed as rotatable shafts, with the ropes 2 being wound around the outer surface and / or in designated rope guides or rope guide channels of the respective shaft when wound onto the winding device 5 or the unwinding device 6, respectively. The shaft of the winding device 5 and the shaft of the unwinding device 6 each have a clamping device for securing the respective rope end of the rope 2 to the respective shaft. The winding device 5 and the unwinding device 6 each include a drive motor for rotating the respective shaft, with the winding device 5 and the unwinding device 6 having opposite directions of rotation during operation. The ropes 2 are each substantially twice as long as the longitudinal extent of the water basin 3.

[0080] During winding, the rope 2 is guided through the harvesting device 4 at the winding device 5. FIG. 4 shows the harvesting device 4, which has a harvesting unit 19 for each rope 2, wherein each rope 2 is guided through and / or adjacent to a harvesting unit 19, wherein each harvesting unit 19 has two stripping devices 20, each stripping device 20 partially encircling the corresponding rope 2, wherein the stripping devices 20 are positioned so close to or in contact with the rope 2 that algae on the rope are stripped by the stripping device 20 as the rope 2 is guided through the harvesting unit 4. One stripping device 20 is arranged above the rope 2 and another stripping device 20 is arranged below the rope 2. The N / DISCH-002-PCT

[0081] September 5, 2025

[0082] NUSL

[0083] The two stripping devices 20 are arranged offset from each other in the direction of pull ZI, Z2. A filter grid is arranged below the harvesting device 4.

[0084] As shown in FIG. 1, the device 1 comprises a collecting device 8, which is designed to receive algae removed from the ropes 2 by the harvesting device 4. When the algae are removed from the ropes by the harvesting device 4, they fall into the collecting device 8. This device is located in a region below the harvesting device 4 and is designed as a pull-out drawer. The pull-out direction of the drawer is perpendicular to the horizontal axis of the water basin 3. The drawer has a perforated plate on its bottom surface, allowing water to drip out or be drained away.

[0085] The device further comprises an irrigation device 9 shown in FIGS. 1 and FIGS. 3, wherein the irrigation device 9 is designed to fill the water basin 3 with water. For this purpose, the irrigation device 9 has a collection container 10 for flooding the water basin 3. The collection container 10 has a tilting mechanism 11, wherein the collection container 10 can be tilted, or is capable of being tilted, by means of the tilting mechanism 11 from a first state in which the collection container 10 is being filled or can be filled, to a second state in which water flows from the collection container 10 into the water basin 3. The collection container 10 is designed as a trough. The tilting mechanism 11 comprises a tilting joint 12 and a counterweight 13 for the collection container 10. The counterweight comprises several individual weights. The counterweight corresponds to the quantity of water intended for flooding the water basin.

[0086] The device 1 also includes two splash guard elements (not shown in the figures) arranged in the area of ​​the collection tank 10. The splash guard elements are each designed as sheet metal and are arranged on two opposing walls of the water basin 3 in the area of ​​the collection tank 10. The splash guard elements extend above the height of the water basin 3, thus preventing water from splashing laterally out of the water basin when filling with water via the collection tank 10. N / DISCH-002-PCT 05.09.2025 NUSL 12

[0087] As shown in FIG. 3, the irrigation device 9 comprises a piping system 14, which has an inlet 15 and an outlet. Water can be filled from the inlet 15 into the collection tank 10 via the piping system 14, and water can be removed from the water basin 3 via the outlet. The piping system 14 forms a water circuit, with the collection tank 10 being part of this circuit. Two water tanks 16 are also provided as intermediate storage in the piping system 14. The water tanks 16 are located below the water basin 3. The irrigation device 9 also includes a pump 17, in particular a submersible pump, for pumping water through the piping system 14.

[0088] FIG. 5 shows that the device 1 has a housing, the housing being designed as a container 21 or in a container-like construction. The container 21 has height-adjustable feet 22. Furthermore, the container 21 has one or more access doors 23 for operating personnel. Several windows 24 are also provided on the outer surfaces of the container 21. The container 21 also includes lashing and / or lifting lugs 25 on or in the area of ​​the top of the container. In addition, air intake and / or exhaust grilles 26 are provided on the outer surfaces of the container 21. The container 21 can be transported on a truck trailer or be transportable on a truck trailer.

[0089] FIG. 3 shows that the device 1 has UV lamps 27 for irradiating the algae with UV light. The device 1 also has a control cabinet 29 for controlling the electrical and / or electronic components of the device 1. Furthermore, blowers 30, for example fans, are arranged inside the container 21.

[0090] The device 1 further comprises several sensors 28, wherein the sensors 28 are for measuring the air temperature, humidity and CO2 content of the air in the container, the light intensity in the container, the chemical and / or biological N / DISCH-002-PCT 05.09.2025 NUSL

[0091] 13

[0092] The oxygen demand, the water temperature and pH value of the water in water basin 3, as well as the flow rate of the water in the pipe system 14, are provided.

[0093] N / DISCH-002-PCT

[0094] September 5, 2025

[0095] NUSL

[0096] 14

[0097] Reference numeral list

[0098] 1 Device

[0099] 2 ropes

[0100] 3 water basins

[0101] 4 Harvesting device

[0102] 5 winding device

[0103] 6. Roll-off device

[0104] 7a Alignment roll

[0105] 7b Alignment roll

[0106] 8 Containment device

[0107] 9 Irrigation device

[0108] 10 collection containers

[0109] 11 Tilting mechanism

[0110] 12 Tilting joint

[0111] 13 Counterweight

[0112] 14 Pipeline system

[0113] 15 inflows

[0114] 16 water tank

[0115] 17 Pump

[0116] 18 rope tensioners

[0117] 19 harvest units

[0118] 20 Scraper device

[0119] 21 containers

[0120] 22 Stand

[0121] 23 Entrance door

[0122] 24 windows

[0123] 25 Lashing and / or lever straps

[0124] 26 Inlet and / or exhaust air grilles

[0125] 27 Lamp

[0126] 28 Sensor

[0127] 29 Control cabinet

[0128] 30 blowers N / DISCH-002-PCT

[0129] September 5, 2025

[0130] NUSL

[0131] ZI first direction of travel

[0132] Z2 second direction of travel

Claims

N / DISCH-002-PCT September 5, 2025 NUSL 16 Patent claims 1. Device (1) for cultivating and harvesting algae, comprising a plurality of ropes (2), wherein at least one section of the outer surface of each rope (2) is provided as a cultivation area for the algae, a water basin (3) as a cultivation station for the algae, a harvesting device (4) for removing the algae from the ropes (2), and a winding device (5) for winding the ropes (2) onto the winding device (5) and a discharging device (6) for discharging the ropes (2) from the winding device (5), wherein each rope (2) is attached at a first end to the winding device (5) and at a second end opposite the first end to the discharging device (6), wherein the ropes (2) are tensioned between the winding device (5) and the discharging device (6), wherein the ropes (2) are guided through the harvesting device (4) or adjacent to the harvesting device (4) in the area of ​​the winding device (5).wherein the winding device (5) and the unwinding device (6) are opposite each other and the water basin (3) is arranged between the winding device (5) and the unwinding device (6), wherein a section of the ropes (2) is guided through the water basin (3) in a cultivation state, wherein the ropes (2) are guided or can be guided through the harvesting device (4) for harvesting the algae by means of the first winding device (5), and wherein the ropes (2) are unwound or can be unwound from the winding device (5) for providing the cultivation state by means of the unwinding device (6).

2. Device (1) according to claim 1, characterized in that the ropes (2) can be wound up or wound up on the unwinding device (6) for unwinding from the winding device (5). N / DISCH-002-PCT September 5, 2025 NUSL 17 3. Device (1) according to claim 1 or 2, characterized in that the device (1) comprises at least two alignment rollers (7a, 7b) for each rope (2), wherein each rope is guided around the corresponding alignment rollers (7a, 7b), and wherein the alignment rollers (7a, 7b) are arranged such that the ropes (2) are arranged in a horizontal plane within the water basin (3) by means of the alignment rollers (7a, 7b).

4. Device (1) according to one of the preceding claims, characterized in that the device (1) comprises a collecting device (8), wherein the collecting device (8) is provided for receiving algae removed from the ropes (2) by means of the harvesting device (4).

5. Device (1) according to claim 4, characterized in that the collecting device (8) is arranged in an area below the harvesting device (4), wherein the collecting device (8) is designed as a pull-out drawer.

6. Device (1) according to one of the preceding claims, characterized in that the device comprises an irrigation device (9), wherein the irrigation device (9) is provided for filling the water basin (3) with water.

7. Device (1) according to claim 6, characterized in that the irrigation device (9) has a collection container (10) for flooding the water basin (3), wherein the collection container (10) has a tilting mechanism (11), wherein the collection container (10) is tilted by means of the tilting mechanism (11) from a first state in which the collection container (10) is filled with water. N / DISCH-002-PCT September 5, 2025 NUSL 18 The water is filled or can be filled into a second state in which water flows from the collection container (10) into the water basin (3) or floods the water basin (3), can be tipped or is tippable.

8. Device (1) according to claim 7, characterized in that the irrigation device (9) comprises a piping system (14), wherein the piping system (14) has an inlet (15) and an outlet, wherein water can be filled from the inlet into the collection container (10) by means of the piping system (14), and wherein water can be removed from the water basin (3) by means of the outlet.

9. Device (1) according to one of the preceding claims, characterized in that the device (1) comprises at least one rope tensioner (18) for tensioning the respective rope (2) for each rope (2).

10. Device (1) according to one of the preceding claims, characterized in that the winding device (5) and / or the unwinding device (6) are each designed as a rotatable shaft, wherein the ropes (2) are wound around the outer surface or in provided rope guides or rope guide channels of the respective shaft in the wound-up state on the winding device (5) and / or unwinding device (6).

11. Device (1) according to claim 10, characterized in that the winding device (5) and / or the unwinding device (6) each comprise a drive motor for rotating the respective shaft. N / DISCH-002-PCT September 5, 2025 NUSL 19 12. Device (1) according to one of the preceding claims, characterized in that the harvesting device (4) has at least one harvesting unit (19) per rope (2), wherein each rope (2) is guided through each harvesting unit (19) and / or adjacent to the harvesting unit (19), wherein each harvesting unit (19) has at least one stripping device (20), wherein the stripping device (20) is located so close to the rope (2) or in contact with the rope (2) that algae located on the rope are stripped off by means of the stripping device (20) when the rope (2) is guided through the harvesting unit (4).

13. Device (1) according to one of the preceding claims, characterized in that the device (1) has a housing, wherein the housing is designed as a container (21) or in container construction.

14. Device (1) according to one of the preceding claims, characterized in that the device (1) has lamps (27) for irradiating the algae with light.

15. Device (1) according to one of the preceding claims, characterized in that the device (1) has one or more sensors (28) for measuring the air temperature, humidity and / or CO2 content of the air and / or one or more sensors (28) for measuring light and / or one or more sensors (28) for measuring the chemical and / or biological oxygen demand and / or one or more sensors (28) for measuring the water temperature and pH value of water in the water basin.

Citation Information

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