A quantum modification treatment system and method based on local high intrinsic energy density biomass materials
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 孙亚力
- Filing Date
- 2026-03-13
- Publication Date
- 2026-08-04
AI Technical Summary
[0002]传统生物质资源化利用未充分挖掘本地原料禀赋,无法实现电子能级、自旋状态、分子键结构的量子级精准调控,本征能量密度低、结构无序、释能效率差;常规燃烧、热解方式能量损耗巨大,实际利用率仅30%~40%,无法满足高能、绿色、可控的储能与动力需求
Abstract
Description
Technical Field
[0001] This invention belongs to the fields of agricultural and forestry waste resource utilization, quantum energy level regulation, electron spin polarization, nano-energy storage materials, low-frequency femtosecond laser quantum empowerment and solid energy storage microsphere working fluid technology. Specifically, it relates to a processing system and method based on local high intrinsic energy density hard biomass, which achieves efficient energy release through multiple quantum modification, nano-reconstruction and femtosecond laser ignition. Background Technology
[0002] Traditional biomass resource utilization fails to fully exploit local raw material endowments, making it impossible to achieve precise quantum-level control of electronic energy levels, spin states, and molecular bond structures. This results in low intrinsic energy density, disordered structures, and poor energy release efficiency. Conventional combustion and pyrolysis methods suffer from significant energy losses, with actual utilization rates of only 30%–40%, failing to meet the demands for high-energy, green, and controllable energy storage and power. Furthermore, traditional energy storage materials often employ chemical binders, leading to secondary pollution and hindering the achievement of a green and environmentally friendly lifecycle. Summary of the Invention
[0003] This invention employs a tri-weighted quantum synergistic modification technique to achieve a deep reconstruction of the intrinsic properties of materials at the electronic, atomic, and molecular levels: (1) Precise control of quantum energy levels: By adjusting the energy level arrangement of C, H and O atoms inside local biomass through quantum field resonance, electrons can be transitioned to high-energy metastable states, thereby enhancing the intrinsic energy storage capacity of the material. (2) Electron spin polarization modification: Directional spin polarization is applied to unpaired electrons inside the material to enhance the electronic coupling effect, reduce the energy barrier for breaking chemical bonds, and improve the stability of energy storage and the consistency of energy release. (3) Low-frequency femtosecond laser quantum energization: Low-frequency femtosecond lasers are used to directionally and deeply energize nanoscale local biomass particles, directly coupling photon energy to molecular bonds and electron cloud systems to achieve quantum-level energy storage and structural enhancement without heating, decomposition, or combustion.
[0004] This invention utilizes a 50μm energy storage microsphere molding process: (1) Select local high intrinsic energy density hard waste biomass as raw material, and return all leaves, tender shoots and soft organic matter to the field; (2) The quantum-energized raw material is ultra-finely pulverized into 1-100 nm powder; (3) It is formed at low temperature using pure biomass binder without any chemical additives; (4) Precisely prepare spherical energy storage microspheres with a diameter of 50 μm, the interior of which is a multi-level stacked structure of nanoparticles; (5) The microspheres have a particle size ≥10μm after crushing, with no dust or dust generation, and can be directly returned to the field for degradation; (6) Relying on local raw materials, local processing and local application throughout the entire process to achieve green and environmentally friendly practices throughout the entire life cycle.
[0005] This invention uses a 100Hz femtosecond laser to instantaneously irradiate quantum-modified energy storage microspheres. The laser forms an ultra-high field intensity within the femtosecond timescale, directly breaking the covalent chemical bonds and electron coulomb attraction of the C, CH, and CO inside the microspheres, achieving synchronous energy release across the entire domain without combustion, chain reaction, or heat loss, with an energy release efficiency of up to 95% to 98%.
[0006] Energy density calculation of the present invention: (1) Intrinsic energy density of unmodified native hard biomass: 18-19 MJ / kg; (2) The intrinsic energy density of hard biomass after quantum modification is 36-38 MJ / kg, an increase of 100%; (3) Effective energy output: 34.2~37.2MJ / kg, which is 2.6~2.8 times the actual usable energy of gasoline and 2.0~2.1 times that of diesel. Detailed Implementation
[0007] The following describes in detail the quantum modification system and method based on locally sourced high intrinsic energy density biomass materials, using three examples from different regions. These examples are for illustrative purposes only and are not intended to limit the scope of protection of this invention.
[0008] Example 1
[0009] Local camellia husks and tea branches from Wuyishan (1) Intrinsic energy density: 18 MJ / kg; (2) After quantum modification: 36 MJ / kg; (3) Effective release after femtosecond laser detonation: 35.3 MJ / kg; (4) Microsphere diameter: 50 μm; (5) Internal structure: stacked nano-sized particles; (6) Binder: Biomass lignin; (7) Broken particles: ≥10μm.
[0010] Example 2
[0011] Old grapevines and hard branches of fruit trees in Zhangjiakou (1) Intrinsic energy density: 18.5 MJ / kg; (2) After quantum modification: 37 MJ / kg; (3) Effective energy release after femtosecond laser ignition: 36.3 MJ / kg; (4) Microsphere diameter: 50 μm; (5) Internal structure: nanoporous structure; (6) Binder: Biomass cellulose; (7) Broken particles: ≥10μm.
[0012] Example 3
[0013] Xinjiang local walnut shells (1) Intrinsic energy density: 19 MJ / kg; (2) After quantum modification: 38 MJ / kg; (3) Effective energy release after femtosecond laser ignition: 37.2 MJ / kg; (4) Microsphere diameter: 50 μm; (5) Internal structure: Nanocrystal reconstruction: (6) Binder: Biomass polysaccharide; (7) Broken particles: ≥10μm.
Claims
1. A quantum modification system based on locally sourced high intrinsic energy density biomass materials, characterized in that, include: The system comprises a local raw material sorting unit, a quantum energy level regulation and spin polarization modification unit, a low-frequency femtosecond laser quantum energizing unit, a nano-pulverization unit, a 50μm energy storage microsphere molding unit, and a 100Hz femtosecond laser ignition and energy release unit. The system uses local hard waste biomass as raw material and is formed using a full biomass binder. The microspheres are broken into particles of not less than 10μm.
2. The system according to claim 1, characterized in that, The quantum modification unit includes a quantum field resonance module, an electron spin polarization module, and a low-frequency femtosecond laser stationary energy module, which are used to realize the control of electronic energy levels, spin orientation and quantum-level energy storage of materials.
3. The system according to claim 1, characterized in that, The energy storage microspheres have a precise diameter of 50 μm and contain a multi-level stacked structure of particles ranging from 1 to 100 nm.
4. The system according to claim 1, characterized in that, The 100Hz femtosecond laser detonation unit is used to directly break the C-C, CH, and C-O chemical bonds and electron Coulomb attraction inside biomass, with an energy release efficiency of 95% to 98%.
5. A quantum modification method based on locally sourced high intrinsic energy density biomass materials, characterized in that, Includes the following steps: (1) Select local high intrinsic energy density hard waste biomass and return all the soft part to the field; (2) Modify the quantum energy level and electron spin polarization of the raw materials; (3) Use low-frequency femtosecond lasers to perform quantum energization and energy retention on materials; (4) Pulverize the raw materials into powders of 1-100 nm; (5) Use biomass binder to form 50μm microspheres; (6) Energy release through ignition by 100Hz femtosecond laser.
6. The method according to claim 5, characterized in that, The intrinsic energy density of native biomass is 18–19 MJ / kg, which is increased to 36–38 MJ / kg after quantum modification, representing an increase of 100%.
7. The method according to claim 5, characterized in that, The microspheres, after being crushed, have a particle size ≥10μm, produce no dust pollution, and can be directly returned to the field for degradation.
8. The method according to claim 5, characterized in that, The effective energy density released by femtosecond laser ignition is 34.2–37.2 MJ / kg, which is superior to the actual usable energy of traditional gasoline and diesel.
9. The method according to claim 5, characterized in that, The entire process is free of chemical additives and inorganic residues, achieving green and environmentally friendly practices throughout the entire life cycle.
10. The method according to claim 5, characterized in that, The method described enables high-value utilization of local agricultural and forestry waste.