Algae-light complementary and algae-electric symbiotic system for integrated renewable energy and carbons sequestration

TWI937967BActive Publication Date: 2026-09-01OCEAN GRAPES TECHNOLOGY CO LTD
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
TW114128596
Authority / Receiving Office
TW · TW
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-07-28
Publication Date
2026-09-01
Estimated Expiration
2045-07-27

Smart Images

  • Figure TWG2TB001908955_001
    Figure TWG2TB001908955_001
  • Figure TWG2TB001908955_002
    Figure TWG2TB001908955_002
Patent Text Reader

Abstract

This invention relates to green energy power generation and carbon sink management, particularly a composite system combining seaweed farming, solar power generation, and green and blue carbon fixation for sustainable energy ecological farming and carbon credit creation. It comprises: an algae-photovoltaic complementary module, which includes a photovoltaic module, an algae-electro-co-existing module, and a monitor. When the monitor detects a decrease in the power supply of the photovoltaic module, it drives and switches to use the power output of the algae-electro-co-existing module to maintain a stable power supply for the algae-photovoltaic complementary module; or, when the power supply of the algae-electro-co-existing module decreases, the monitor drives and switches to use the power output of the photovoltaic module to maintain a stable power supply for the algae-photovoltaic complementary module.
Need to check novelty before this filing date? Find Prior Art

Claims

1. A green energy carbon sink composite system integrating algal electro-electro-photovoltaic symbiosis and photovoltaic complementarity, comprising: an algal-photovoltaic complementary module, which includes a photovoltaic module, an algal electro-electro-symbiosis module, and a monitor, wherein, When the monitor detects a decrease in the power supply of the photoelectric module, the monitor drives and switches to use the power output of the algae-electro-symbiotic module to maintain the stable power supply of the algae-photovoltaic complementary module; or, when the power supply of the algae-electro-symbiotic module decreases, the monitor drives and switches to use the power output of the photoelectric module to maintain the stable power supply of the algae-photovoltaic complementary module. Thus: the photoelectric module outputs a first current to the monitor, and the algae-electro-symbiotic module outputs a second current to the monitor; when the monitor detects a decrease in the first current, the monitor drives and switches the photoelectric module to the algae-electro-symbiotic module to continue supplying power; or, when the monitor detects a decrease in the second current, the monitor drives and switches the algae-electro-symbiotic module to the photoelectric module to continue supplying power; The algae-electro-symbiotic and photoelectric complementary green energy carbon sink composite system also includes a sensing module, signal-connected to the algae-electro-symbiotic module, which includes an electronic sensing element and an environmental sensing element, configured to sense the current magnitude and environmental information; The algal electro-co-exchange module includes a symbiotic region and an electrode. The symbiotic region is electrically connected to the electrode. The symbiotic region contains algae, and the algae outputs electrons to the electrode. The sensing module is connected to the algal electro-co-exchange module and includes an electronic sensing element and an environmental detection element, configured to detect environmental information and the second current. The electronic sensing element detects the formation of the second current, and the environmental detection element detects the environment of the algal electro-co-exchange module to obtain the environmental information. Finally, the information is fed back to a terminal and / or a controller, and the second current and / or the environmental information are output. The carbon fixation efficiency of the algae is calculated by referring to the second current and its power supply time.

2. The green energy carbon sink composite system of algae-electro-cogeneration and photovoltaic complementarity as described in claim 1, wherein the photovoltaic module includes at least one solar panel electrically connected to the monitor, and has an angle between it and the horizontal surface of the top surface of the algae-electro-cogeneration module, the angle ranging from 10 degrees to 45 degrees, so as to at least partially shield the algae-electro-cogeneration module and achieve the purpose of regulating light and temperature.

3. The green energy carbon sink composite system of algae-electro-cogeneration and photovoltaic complementarity as described in claim 1 further includes a sensing module, a data tracking module, and an inverter, wherein the sensing module is further configured to sense power supply information, the data tracking module is connected to the sensing module and configured to analyze and aggregate the environmental information and / or the power supply information; and the inverter is electrically connected to the algae-photovoltaic complementarity module to convert the current output by the photovoltaic module and the algae-electro-cogeneration module into alternating current.

4. The green energy carbon sink composite system of algal electro-electro-photovoltaic symbiosis and photovoltaic complementarity as described in claim 3, wherein the data tracking module receives the environmental information and / or the power supply information, analyzes and outputs a carbon sink result and / or a power result.

5. The green energy carbon sink composite system of algal electro-electro-co-energy and photovoltaic complementarity as described in claim 4, wherein the data tracking module outputs the carbon sink result to a terminal, and the terminal uploads the carbon sink result to a carbon sink generation platform for other users to query.

6. A method for providing electricity, carbon sequestration, and detection of a green energy carbon sink composite system based on algal electro-electromagnetism and photovoltaic complementarity as described in claim 1, comprising the following steps: the photovoltaic module outputs the first current to the monitor, and the algal electro-electromagnetism module outputs the second current to the monitor; when the monitor detects a decrease in the first current, the monitor drives and switches the photovoltaic module to the algal electro-electromagnetism module to continue supplying power, or, when the monitor detects a decrease in the second current, the monitor drives and switches the algal electro-electromagnetism module to the photovoltaic module to continue supplying power; wherein... The algal-electro-co-energy and photovoltaic complementary green energy carbon sink composite system also includes a sensing module. A signal is connected to the algal-electro-co-energy module, which includes an electronic sensing element and an environmental sensing element, configured to sense current magnitude and environmental information. The algal-electro-co-energy module includes a symbiotic region and an electrode. The symbiotic region is electrically connected to the electrode, and the symbiotic region contains algae, which output electrons to the electrode. The sensing module is signal-connected to the algal-electro-energy module and includes an electronic sensing element and an environmental detection element, configured to detect environmental information and the second current. The electronic sensing element detects the formation of the second current, and the environmental detection element detects the environment of the algal-electro-energy module to obtain environmental information. Finally, the information is fed back to the terminal and / or the controller, and the second current and / or environmental information are output. The carbon sequestration efficiency of the algae is calculated by referring to the second current and its power supply time.

7. The green energy carbon sink composite system of algae-electro-cogeneration and photovoltaic complementarity as described in claim 6, which provides electricity, carbon sequestration and its detection method, further includes an inverter electrically connected to the algae-photovoltaic complementarity module to receive the first current or the second current and convert it into alternating current for energy output.

8. The green energy carbon sink composite system that provides electricity, carbon sequestration and its detection method as described in claim 6, wherein the environmental detection element includes a water quality detector, a temperature sensor, a light sensor or any combination thereof.

Citation Information

Patent Citations

  • Reservoir algae removal and power generation integrated device

    CN118651912A

  • Algae-light complementary microalgae culture system and operation process thereof

    CN119709367A

  • Photovoltaic power generation panel installation mount

    JP2024113980A

  • Co-construction system of algae photo-reactor and solar photovoltaic equipment

    TWM669342U

  • Power generation element

    US20220166369A1