This application claims priority of Application No. 109200804 filed in Taiwan on 20 Jan. 2020 under 35 U.S.C. § 119; the entire contents of all of which are hereby incorporated by reference.
The present invention relates to a planting and breeding system, in particular, to an ecological circular integrated breeding and planting system, with the integration of animals, plants, microorganisms, soil and water.
As the climate is getting warmer and environment pollution issues intensify, environmental protection and food topics have attracted much attention. Specifically, the greenhouse effect is a cause of global warming which deteriorates the climate. As the climate is getting worse, various large-scale natural disasters such as tsunamis, blizzards, heat waves, or severe temperature variations may have led to a significant reduction in arable farming land, and therefore food production has become increasingly unstable. Further, the extreme phenomena such as droughts and floods in various places may cause a sudden drop in food production (e.g. planting and breeding). Furthermore, total population increase and resource depletion leads the situation getting even worse. In addition, according to an UN estimation, a global food shortage may occur within the next 10 years, and hunger will become more common.
On the other hand, the food production may also cause environmental damage. Taking livestock farming as an example, not only large amounts of cereal feed or natural grass are consumed in the process of raising cattle, but also large amounts of methane and feces are produced. Therefore, how to take the environmental protection into account while increasing food production becomes a key issue. Further, the food safety issues have been receiving more and more attention recently. If the production of high-quality organic ingredients can be increased while ensuring food safety, it will be of great help to the stable development of the social economy.
In this regard, many experts and scholars have put forward suggestions for indoor planting and breeding, such as setting breeding and planting bases inside buildings or large cruise ships, or setting breeding and planting farms above the sea level, under the sea surface or underground. Although the planting of fruits and vegetables in greenhouses and the indoor raising of poultry have been practiced for a long time, the output is mainly raised by mere the control of simple environmental parameters, whereas other factors, such as environmental sustainability and waste disposal, are not jointly concerned.
Moreover, as the resource depletion is getting worse, and human population is getting denser, people also target extraterrestrial developments such as the construction of spaceships, earth orbit bases, space bases, terrestrial planets, etc. When the time has come, it will be necessary to use a high-efficiency indoor produce base as a basis for sustainable development.
In summary, the high-efficiency and intensive indoor agriculture is indeed a future development trend. The high-efficiency and intensive indoor agriculture is a solution for the areas with scarce resources and extreme climate, or a solution to overcome the food shortages due to rising population. To be simply served as a foundational template, the circular integrated ecological breeding and planting system is the key to high-efficiency and intensive indoor agricultural practices in the future. In view of this, the present invention proposes a circular integrated ecological breading and planting system, which is a future eco-agriculture model integrating of social benefit, economic benefit and ecological environment protection, in order to lay a foundation for future breeding and planting base. The detailed architectures and embodiments are described as follows.
A primary objective of the present invention is to provide a circular integrated ecological breading and planting system applied in an enclosed building, which may greatly increase the overall capacity without being affected by geographical, environmental or weather/seasonal factors, and may become a high-efficiency and intensive combined agriculture, so that the economic value of produce per unit area is maximized.
Another objective of the present invention is to provide a circular integrated ecological breading and planting system, which cooperates with technological simulation to simplify the concept of ecological food chain, and makes full use of by-products or waste generated in each link for reusing and recycling them. It is a future eco-agriculture model that integrates social-benefit, economic benefit and ecological environment protection, and may also be used as the basis for future breeding and planting bases.
To achieve above objectives, the present invention discloses a circular integrated ecological breading and planting system which includes a planting and breeding system, and a monitoring module. The planting and breeding system includes a plantation greenhouse, a feed processing field, a seafood farm, an insect farm, a livestock farm, and a seaweed farm, wherein the plantation greenhouse is used for growing at least one plant to obtain crops and plant waste; the feed processing field may be used for receiving and processing the plant waste into a feed, fertilizer that may be used by the plantation greenhouse to provide the plant with fertilization and residues; the seafood farm is used for breading seafood by the feed to produce a seafood product and seafood waste that may be processed by the feed processing field; the insect farm is used for breading, by the feed, at least one insect that may be processed into a high protein insect powder, the high protein insect powder being mixed into the feed or the fertilizer for use; the livestock farm is used for breading, by the feed, at least one animal that may be provided to produce at least one animal food and an animal waste, wherein the animal waste is processed by the feed processing field; the seaweed farm may receive the plant waste, the seafood waste, and the animal waste as raw material additives for cultivating the seaweed, wherein in addition to providing additional economic value, the seaweed product may be used as another source of feed, producing large amounts of high-quality oxygen, and the waste produced may be used as a source of biogas and fertilizer.
The monitoring module may guarantee the best growing environment in the planting and breeding zone through 24-7 comprehensive monitoring, management, filtration, disinfection, etc. For example, the monitoring module may monitor and deploy various breeding and planting states of the breeding and planting system, including the temperature, humidity, illuminated time, constituent elements in air, respective concentration of the constituent elements in air, bacterial quota in air, water quality, water temperature, water pH, salinity of water, constituent ratio of bacteria and other elements in water.
Therefore, through the cooperation of these links, the products, by-products and waste may be effectively applied, which not only meet the needs of environmental protection without causing pollution, but also may be used effectively, so that the economic value of produce per unit area is maximized to reach the circular simulation ecological food chain. Therefore, the goal of “scientific planting and breeding” with the largest output per unit area can be achieved on a smallest land.
The following detailed descriptions will be made with specific examples and accompanying drawings to make it easier to understand the purpose, technical content, characteristics, and effects of the disclosure.
With reference to
In order to achieve a high-efficiency and intensive agriculture with almost zero pollution, the first concept of ecosphere and food chain is considered to use the system of the present invention to create a simulation of technology to simplify the ecological food chain, which may effectively reuse and recycle the by-products and waste generated in each stage, and may maximize the economic value of produce per unit area, so as to constitute a completely enclosed circular breeding and planting system with the simulation of technology to simplify the ecological food chain.
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The source of the feed and fertilizer processed by the above feed processing field 12 is a mixed type, and at the same time, the formula for mixing may be adjusted according to the demand. For example, the animal manure may be used as the fertilizer after fermentation, mixed with high-protein insect meal to be used as the feed for the seafood farm 13, or processed separately as the feed for the insect farm 14.
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With reference to
In summary, the circular integrated ecological breading and planting system of the present invention is simplified and constructed with the concept of technological simulation to simplify the ecological food chain, which may effectively control the source of breeding and planting of the entire system and control the safety and reliability of the entire food production. In addition, the various products, by-products and waste generated in the process may be effectively interactively applied to achieve almost zero environmental pollution. Meanwhile, the closed-type management may be monitored 24-7 and may be effectively adjusted to greatly increase the overall capacity without being affected by geographical, environmental; and weather/seasonal factors, and may become a high-efficiency and intensive combined agriculture, so that the economic value of produce per unit area is maximized. Further, the present invention may cooperate with the concept of ecological food chain and make full use of by-products or waste generated in each link for reusing and recycling. This future eco-agriculture model is not only eco-friendly but also economically beneficial, and may function as the basis for the future breeding and planting base.
The above-mentioned embodiments are only to illustrate the technical ideas and features of the present invention, and its purpose is to enable those who are familiar with this skill to understand the content of the present invention and implement it accordingly. That is to say, any changes or modifications made in accordance with the spirit of the present invention should still be covered by the patent scope of the present invention.
Number | Date | Country | Kind |
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109200804 | Jan 2020 | TW | national |