The present invention artificially creates the natural environment necessary for the hippocampus in consideration of biological, chemical, and physical aspects, and the hippocampus is cultured to the target level (1 individual/1 liter of artificial seawater). It acquires and establishes biological, chemical, and physical information so that waste products (excrement, food residuals, etc.) generated in the aquaculture process are decomposed by the microbial community. According to the information accumulated and established through the above process, an eco-friendly biofloc seahorse culture technology was established by forming a seahorse cultured biofloc microbial community that was artificially cultured from the outside to be suitable for seahorse culture in an artificial seawater aquaculture system required for seahorse culture on land. do. The present invention overcomes the problem of mortality of farmed seahorses due to the use of seawater contaminated by natural disasters and marine pollution problems of the coastal coastal waters occurring in the process of cultivating seahorses using seawater or lava seawater Pollution of marine ecosystems caused by the use of various chemicals such as antibiotics and water quality improvement agents for the purpose of treatment can be solved. In addition, concerns about marine pollution caused by microplastics and natural aquatic products that have accumulated marine pollutants such as microplastics can be resolved.Since there is no need to exchange seawater for aquaculture or bring in from outside, it can block the inflow of pathogens. The seahorse farming technology using this as a water-free-discharge farming technology is a breakthrough technology for seahorse farming, a high value-added fish species. In the present invention technology, limited aquaculture was possible in an area where lava seawater or the like near the sea can be supplied for the existing seawater aquaculture. However, when the present invention technology is used, it can be used anywhere in the universe as well as in cities, rural areas, and mountain villages. It can be an excellent example of smart farm implementation as a fishery aquaculture technology capable of fishing in urban buildings with a technology that enables fishery aquaculture anywhere without being constrained.
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