A01K61/70

STRUCTURE AND METHOD FOR PROMOTING MICROALGAE GROWTH

An artificial structure for promoting microalgae growth includes a 3D-printed structure formed by positioning a printing surface on a movable stage of a 3D bioprinter in contact with a bio-ink that includes a mixture of a pre-polymer material with one or more of cellulose-derived nanocrystals (CNC), and microalgae cells. By projecting modulated light onto the printing surface while moving the stage, the bio-ink is progressively polymerized to define layers of an artificial coral structure with microalgae cells disposed thereon, where the artificial coral structure is configured to scatter light within the structure.

STRUCTURE AND METHOD FOR PROMOTING MICROALGAE GROWTH

An artificial structure for promoting microalgae growth includes a 3D-printed structure formed by positioning a printing surface on a movable stage of a 3D bioprinter in contact with a bio-ink that includes a mixture of a pre-polymer material with one or more of cellulose-derived nanocrystals (CNC), and microalgae cells. By projecting modulated light onto the printing surface while moving the stage, the bio-ink is progressively polymerized to define layers of an artificial coral structure with microalgae cells disposed thereon, where the artificial coral structure is configured to scatter light within the structure.

CORAL FARMING METHOD, SYSTEM AND PRODUCT THEREOF
20220322643 · 2022-10-13 ·

The present invention provides a coral farming method, by monitoring the seawater environment in the water tank, providing stable and optimal growth environment and nutrients for small polyp stony corals so as to achieve mass production of small polyp stony corals. The present invention further provides a coral farming system and a coral product. The coral farming system adopts the coral farming method and warrants the stable and good quality of the obtained coral product which is free of heavy metal contaminations.

Interlocking modular smart seawall diversion and recreation system and method of installation
11603636 · 2023-03-14 ·

An interlocking modular smart seawall diversion and recreation system provides step-shaped diverter sections arranged side-by-side along a shoreline. The diverter sections slope from a base end up towards an upper end. To break kinetic energy of waves, and divert waves, the diverter sections form steps with curved risers and horizontal treads. The system forms a diversion path for the waves that reach the upper end of the modular walls and recirculate the wave energy back to divertor chamber and natural environment. Foundation pilings project into the ground and extend up to support the wall sections. The bottom end of foundation pilings terminates at sheared attachments having a tapered cross section and an edge for securely anchoring into the ground. A platform atop the diverter sections provides a pathway; a lighted platform for recreational activities; and transparent skylight portals for observing aquatic wildlife in water below and creating an indigenous ecosystem.

Interlocking modular smart seawall diversion and recreation system and method of installation
11603636 · 2023-03-14 ·

An interlocking modular smart seawall diversion and recreation system provides step-shaped diverter sections arranged side-by-side along a shoreline. The diverter sections slope from a base end up towards an upper end. To break kinetic energy of waves, and divert waves, the diverter sections form steps with curved risers and horizontal treads. The system forms a diversion path for the waves that reach the upper end of the modular walls and recirculate the wave energy back to divertor chamber and natural environment. Foundation pilings project into the ground and extend up to support the wall sections. The bottom end of foundation pilings terminates at sheared attachments having a tapered cross section and an edge for securely anchoring into the ground. A platform atop the diverter sections provides a pathway; a lighted platform for recreational activities; and transparent skylight portals for observing aquatic wildlife in water below and creating an indigenous ecosystem.

CONCRETE SETTLEMENT SUBSTRATE FOR OYSTER AND PREPARATION METHOD THEREOF, AND MARINE ECOLOGICAL ENGINEERING CONSTRUCTION METHOD
20220312746 · 2022-10-06 · ·

Disclosed is settlement substrate for oyster technology, and, in particular, the present disclosure relates to a concrete settlement substrate for oyster and a preparation method thereof, and a construction method. The concrete settlement substrate for oyster has the characteristics of induction of rapid settlement and metamorphosis of sessile organisms thereto, promotion of long-term growth and good durability, and the oysters are settled on a surface of concrete. A reasonable spatial layout is utilized, such that each concrete pile (block) can effectively break waves and ensure smooth exchange between water bodies on two sides. After oysters settled to each concrete pile (block) breed a large amount, the water bodies can be purified, and the ecological environment in the surrounding sea area can be improved.

CONCRETE SETTLEMENT SUBSTRATE FOR OYSTER AND PREPARATION METHOD THEREOF, AND MARINE ECOLOGICAL ENGINEERING CONSTRUCTION METHOD
20220312746 · 2022-10-06 · ·

Disclosed is settlement substrate for oyster technology, and, in particular, the present disclosure relates to a concrete settlement substrate for oyster and a preparation method thereof, and a construction method. The concrete settlement substrate for oyster has the characteristics of induction of rapid settlement and metamorphosis of sessile organisms thereto, promotion of long-term growth and good durability, and the oysters are settled on a surface of concrete. A reasonable spatial layout is utilized, such that each concrete pile (block) can effectively break waves and ensure smooth exchange between water bodies on two sides. After oysters settled to each concrete pile (block) breed a large amount, the water bodies can be purified, and the ecological environment in the surrounding sea area can be improved.

SYSTEM AND METHOD FOR CARBON SEQUESTRATION
20230200360 · 2023-06-29 ·

A system and method for carbon sequestration is disclosed. The system comprises an artificial reef comprising a storage cavity for storing a content, the artificial reef is configured to be placed in a waterbody; and a blockchain based network or registry database for issuing a first amount of token to a first person when a corresponding unit of the content is stored in the artificial reef and placed in the waterbody, wherein the amount of token is tradeable between the first person and a second person via the blockchain based network or registry database.

SYSTEM AND METHOD FOR CARBON SEQUESTRATION
20230200360 · 2023-06-29 ·

A system and method for carbon sequestration is disclosed. The system comprises an artificial reef comprising a storage cavity for storing a content, the artificial reef is configured to be placed in a waterbody; and a blockchain based network or registry database for issuing a first amount of token to a first person when a corresponding unit of the content is stored in the artificial reef and placed in the waterbody, wherein the amount of token is tradeable between the first person and a second person via the blockchain based network or registry database.

Artificial reef system

Disclosed is an artificial reef molded from a mixture of environmentally friendly homogenized organic and inorganic materials, cement, and 5 aggregates of sand and gravel to form thereon an artificial reef such as reef buds, reef plates, reef honeycombs and other reef structures.