Scheme capable of efficiently eliminating COs, reducing carbon emission and producing polysaccharides or oxygen by using electric energy

By converting light energy into electrical energy through the principle of photosynthesis, this method achieves efficient reduction of carbon emissions and production of polysaccharides, solving the problems of laborious and resource-wasting traditional carbon capture and providing a cheap and environmentally friendly carbon sequestration solution.

CN120923562APending Publication Date: 2025-11-11陈容
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Patent Information

Application Number
CN202511079317.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-03
Publication Date
2025-11-11

AI Technical Summary

Technical Problem

Traditional carbon capture methods are laborious and wasteful of resources, and there is a lack of inexpensive and efficient carbon sequestration solutions.

Method used

By utilizing the principle of photosynthesis, light energy is converted into electrical energy, and polysaccharides are produced and carbon emissions are reduced through the chemical reactions 6CO2 + 6H2O + electrical energy → C6H12O6 + 6O2 or 6CO2 + 6H2O + electrical energy → 6C + 6H2O + 6O2.

Benefits of technology

It achieves efficient reduction of carbon emissions and production of polysaccharides, providing a cheap and environmentally friendly carbon sequestration solution.

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Abstract

The inspiration of the method comes from the theory of photoelectric effect, the principle of photoelectric equivalence is inferred, the method is also applicable to complex photosynthesis of plants, a photosynthesis equation is 6CO + 6HO + light energy-> CHO + 6O, a light energy element is converted into electric energy, when the electric energy is small and appropriate, a new equation 1 is 6CO + 6HO + electric energy-> CHO + 6O, and the method can be used for reducing emission and carbon, reducing energy consumption and reducing energy consumption. And polysaccharide can be produced. When the electric energy is large, the new equation 2 is 6CO + 6HO + electric energy-> 6C + 6HO + 6O, and the purpose of reducing carbon emission can also be achieved. Both the new equation 1 and the new equation 2 are enhanced photosynthesis, but notice is that the new equation 1 and the new equation 2 do not occur on plants and are pure chemical schemes.
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Description

Technical Field

[0001] This invention uses electrical energy to decompose and eliminate CO2, achieving the purpose of eliminating CO2 instead of sealing CO2 and capturing carbon. The product also contains polysaccharides, which is an enhanced version of photosynthesis. Background Technology

[0002] Traditional carbon capture is laborious and time-consuming, while CO2 sequestration is wasteful of resources. Therefore, there is an urgent need for a new, inexpensive, efficient, and environmentally friendly carbon sequestration solution. Summary of the Invention

[0003] This invention is based on the principle of photosynthesis: 6CO2 + 6H2O + light energy → C6H 12 Based on the photoelectric equivalence theory, the light energy in the original equation is converted into electrical energy, resulting in the new equation 1: 6CO2 + 6H2O + electrical energy → C6H 12 O₆ + 6O₂ can be used for emission reduction and carbon reduction, and can also produce polysaccharides. Alternatively, the new equation 2, 6CO₂ + 6H₂O + electrical energy → 6C + 6H₂O + 6O₂, can also achieve the goal of reducing carbon emissions. New equation 1 occurs under conditions of relatively low and appropriate electrical energy, while new equation 2 occurs under conditions of higher electrical energy. Therefore, controlling the amount of electrical energy can better implement the effect of new equation 1, because new equation 1 also has the additional benefit of being used for polysaccharide production. Attached Figure Description

[0004] Figure 1 This is the main diagram of the present invention, which illustrates how photosynthesis is used to deduce new equation 1, and the conditions under which new equation 1 is formed.

[0005] Figure 2 This is a secondary diagram of the present invention, which illustrates how photosynthesis is used to deduce new equation 2, and the conditions under which new equation 2 is formed. Specific implementation methods

[0006] like Figure 1 As shown, new equation 1 occurs under suitable conditions with a relatively small current, the electrical energy of which is approximately equivalent to, or slightly greater than, the electrical energy converted from light energy during photosynthesis. New equation 2 occurs under conditions with a larger current, large enough to "burn" CO2 into C. The required current for both cases needs to be carefully adjusted during the experiment, avoiding both excessive and insufficient current. It should also be noted that neither new equations 1 nor 2 are performed inside a plant, but are purely chemical experiments.

Claims

1. This invention uses an electric arc to directly contact CO2 and generate a chemical reaction to efficiently eliminate CO2, thereby replacing carbon capture and carbon sequestration.

2. This invention can be achieved through the reaction 6CO2 + 6H2O + electrical energy → C6H 12 Polysaccharides or monosaccharides are prepared by generating polysaccharides or other products through the process of O6 + 6O2.

3. This invention can decompose CO2 and obtain pollution-free products through the process of 6CO2 + 6H2O + electrical energy → 6C + 6H2O + 6O2 or other products.

4. This invention uses the photoelectric equivalence of the photoelectric effect as the basic principle, and replaces light energy with electrical energy in the chemical equation to form a new chemical equation and apply it.