WO2016129846A1 - 토양 미생물을 이용한 음식물 쓰레기 발효 장치및 축분 비료화 장치, 이에 적합한 바이오필드 발생 장치, 이에 적합한 미생물 전지 및 이에 적합한 미생물 콘덴서 - Google Patents
토양 미생물을 이용한 음식물 쓰레기 발효 장치및 축분 비료화 장치, 이에 적합한 바이오필드 발생 장치, 이에 적합한 미생물 전지 및 이에 적합한 미생물 콘덴서 Download PDFInfo
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- WO2016129846A1 WO2016129846A1 PCT/KR2016/001145 KR2016001145W WO2016129846A1 WO 2016129846 A1 WO2016129846 A1 WO 2016129846A1 KR 2016001145 W KR2016001145 W KR 2016001145W WO 2016129846 A1 WO2016129846 A1 WO 2016129846A1
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- WIPO (PCT)
- Prior art keywords
- soil
- biofield
- microbial
- food waste
- dough
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B09—DISPOSAL OF SOLID WASTE; RECLAMATION OF CONTAMINATED SOIL
- B09B—DISPOSAL OF SOLID WASTE NOT OTHERWISE PROVIDED FOR
- B09B3/00—Destroying solid waste or transforming solid waste into something useful or harmless
- B09B3/60—Biochemical treatment, e.g. by using enzymes
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B09—DISPOSAL OF SOLID WASTE; RECLAMATION OF CONTAMINATED SOIL
- B09B—DISPOSAL OF SOLID WASTE NOT OTHERWISE PROVIDED FOR
- B09B3/00—Destroying solid waste or transforming solid waste into something useful or harmless
- B09B3/60—Biochemical treatment, e.g. by using enzymes
- B09B3/65—Anaerobic treatment
-
- C—CHEMISTRY; METALLURGY
- C05—FERTILISERS; MANUFACTURE THEREOF
- C05F—ORGANIC FERTILISERS NOT COVERED BY SUBCLASSES C05B, C05C, e.g. FERTILISERS FROM WASTE OR REFUSE
- C05F3/00—Fertilisers from human or animal excrements, e.g. manure
- C05F3/06—Apparatus for the manufacture
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICROORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING, OR MAINTAINING MICROORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N1/00—Microorganisms, e.g. protozoa; Compositions thereof; Processes of propagating, maintaining or preserving microorganisms or compositions thereof; Processes of preparing or isolating a composition containing a microorganism; Culture media therefor
- C12N1/20—Bacteria; Culture media therefor
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12P—FERMENTATION OR ENZYME-USING PROCESSES TO SYNTHESISE A DESIRED CHEMICAL COMPOUND OR COMPOSITION OR TO SEPARATE OPTICAL ISOMERS FROM A RACEMIC MIXTURE
- C12P1/00—Preparation of compounds or compositions, not provided for in groups C12P3/00 - C12P39/00, by using microorganisms or enzymes
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M8/00—Fuel cells; Manufacture thereof
- H01M8/16—Biochemical fuel cells, i.e. cells in which microorganisms function as catalysts
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A40/00—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
- Y02A40/10—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
- Y02A40/20—Fertilizers of biological origin, e.g. guano or fertilizers made from animal corpses
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/30—Hydrogen technology
- Y02E60/50—Fuel cells
Definitions
- the present invention relates to a food waste fermentation apparatus and a soil fertilizer using soil microorganisms using a weak electromagnetic field generated by soil microorganisms, a biofield generator suitable for this, a microbial cell suitable for the same and a microbial condenser thereof.
- Conventional fermentation and drying apparatus for recycling such food waste as fertilizer or feed is provided with a fermentation drying tank, a stirring device, a hot air generator and a hot air spray device.
- the fermentation drying tank has an inlet for food waste disposed at the upper portion, an air supply port, and an outlet for drying treatment disposed at the lower portion of the exhaust port.
- the stirring device is installed at the lower part of the fermentation drying tank in a horizontal direction in a horizontal direction and using an arm on the rotating shaft, and reverses from side to side to collect the food waste at the center in the left and right directions when rotating. It has a ribbon-shaped stirring blade arranged of, and the mixed food waste is added and stirred.
- the hot wind generating device supplies hot air to the upper portion of the fermentation drying tank.
- the hot-air injector has a gap-shaped injection hole which extends parallel to the rotation axis of the stirring device and opens downwardly between the outlet of the hot air and the stirring device in the fermentation drying tank.
- the food waste sprays the air in the tank heated by the hot air from the generator.
- the present invention has been made to meet the above requirements, to provide a food waste fermentation device and nutrient fertilizer using soil microorganisms that can substantially supplement the various problems caused by the limitations and disadvantages in the prior art. For general purposes.
- Another specific object of the present invention is to provide a food waste fermentation apparatus using soil microorganisms that can solve the odor problem by activating the fermentation of lactic acid bacteria of food wastes so as to ferment without corruption.
- Another specific object of the present invention is to provide a nutrient fertilizer using soil microorganisms that can reduce the odor of nutrient fertilizer and increase the maturity.
- Still another object of the present invention is to provide a microbial battery suitable for the above-mentioned food waste fermentation apparatus and nutrient fertilizer.
- Still another object of the present invention is to provide a microorganism condenser suitable for the food waste fermentation apparatus and the nutrient fertilizer.
- a biofield generating device electrically connected to the food waste treatment tank to activate the lactic acid bacteria fermentation of the food waste; Including;
- the biofield generator is
- the electromagnetic field generated by the frequency generator includes a DC battery, a frequency generator configured to receive a DC power supply from the DC battery to generate a carrier wave of a predetermined frequency, a microbial cell electrically connected to the frequency generator, and a DC output unit. And a DC module generating a biofield consisting of an electromagnetic field generated by the microbial cell.
- a biofield comprising an AC input unit, a microbial condenser electrically connected to the AC input unit, and an AC output unit electrically connected to the microbial condenser, wherein the biofield includes an electromagnetic field generated by an AC input signal and an electromagnetic field generated by the microbial condenser.
- Generating AC module It is characterized by including any one of.
- the biofield generator is characterized in that it further comprises an LED indicator which is electrically connected between the frequency generator and the DC output unit is turned on in accordance with the operation of the frequency generator.
- the microbial cell is
- the earthen dough is characterized in that the cultured soil microorganisms containing sterilized soil and lactobacillus is mixed with a weight ratio of 5: 1 and the salt water is mixed with a weight ratio of 4: 1.
- the sterilized soil is characterized in that it contains far-infrared radiation material.
- the microbial condenser is characterized in that it is used as a dielectric by filling the soil microbial soil dough from which water is removed between two metal plates.
- the earthen dough is characterized in that the cultured soil microorganisms containing sterilized soil and lactobacillus is mixed with a weight ratio of 5: 1 and the salt water is mixed with a weight ratio of 4: 1.
- the sterilized soil is characterized in that it contains far-infrared radiation material.
- a livestock fermenter for receiving and fermenting manure of livestock products
- a biofield generating device electrically connected to the livestock fermentation tank for promoting urea synthesis of ammonia generated in the manure of the livestock product; Including;
- the biofield generator is
- the electromagnetic field generated by the frequency generator includes a DC battery, a frequency generator configured to receive a DC power supply from the DC battery to generate a carrier wave of a predetermined frequency, a microbial cell electrically connected to the frequency generator, and a DC output unit. And a DC module generating a biofield consisting of an electromagnetic field generated by the microbial cell.
- the microbial cell is
- the soil dough is characterized in that the mixture of cultivated soil microorganisms containing sterilized soil and effective microorganism (weight ratio of 5: 1) and salt water is mixed in a weight ratio of 4: 1 do.
- the sterilized soil is characterized in that it contains far-infrared radiation material.
- the microbial condenser is characterized in that it is used as a dielectric by filling the soil microbial soil dough from which water is removed between two metal plates.
- Sterilized soil and cultured soil microorganisms containing the effective microorganism were mixed at a weight ratio of 5: 1 and brine at a weight ratio of 4: 1, and then water was removed to less than 10%. It is characterized by.
- the sterilized soil is characterized in that it contains far-infrared radiation material.
- a microbial cell electrically connected to the frequency generator; Including;
- At the output terminal of the microbial cell is characterized in generating a biofield consisting of the electromagnetic field generated by the frequency generator and the electromagnetic field generated by the microbial battery.
- the microbial cell is
- the soil dough is characterized in that the mixture of the sterilized soil and cultured soil microorganisms in a weight ratio of 5: 1 and 80% for 3 hours and a salt ratio of 3% concentration of 4: 1 is mixed in a weight ratio of 4: 1 It is done.
- the sterilized soil is characterized in that the soil containing the far infrared radiation material.
- the LED is electrically connected to the frequency generator, characterized in that it further comprises a LED indicator that lights up in accordance with the operation of the frequency generator.
- a microbial condenser electrically connected to the AC input unit; Including;
- the microbial condenser is used as a dielectric by filling the soil microbial soil dough from which moisture is removed between two metal plates.
- An AC input signal provided through the AC input unit is applied between the two metal plates, and generates a biofield comprising an electromagnetic field generated by an AC input signal and an electromagnetic field generated by the microbial condenser between the two metal plates. do.
- the soil dough is a mixture of sterilized soil and cultured soil microorganisms in a weight ratio of 5: 1 and 80% for 3 hours and salt water of 3% concentration of 4: 1 after mixing the moisture ratio of 4: 1 It is characterized in that removed to less than 10%.
- the sterilized soil is characterized in that the soil containing the far infrared radiation material.
- the soil dough is characterized in that the mixture of the sterilized soil and cultured soil microorganisms in a weight ratio of 5: 1 and 80% for 3 hours and a salt ratio of 3% concentration of 4: 1 is mixed in a weight ratio of 4: 1 It is done.
- the sterilized soil is characterized in that the soil containing the far infrared radiation material.
- the dielectric material is soil kneading mixed with soil microorganisms from which moisture is removed, and the biofield generated by the soil microorganisms is output between the two metal plates.
- the soil dough is a mixture of sterilized soil and cultured soil microorganisms in a weight ratio of 5: 1 and 80% for 3 hours and salt water of 3% concentration of 4: 1 after mixing the moisture ratio of 4: 1 It is characterized in that removed to less than 10%.
- the food waste fermentation apparatus using the soil microorganism according to the present invention it is possible to solve the odor problem by activating the fermentation of lactic acid bacteria of the food to cause fermentation without going to corruption.
- the biofield is catalyzed to reduce the odor caused by the condensate and increase the effect of the fertilizer You can get it.
- the biofield generator according to the present invention is not only a food waste fermentation device, a livestock fertilizer but also a composting process of organic wastes such as agricultural and fishery by-products, slaughterhouse by-products, food factory by-products, food storage devices, plant growth promoting devices, and the like. It can be applied to various fields to reduce odor, maintain freshness of food, and promote growth.
- FIG. 1 is a circuit diagram showing the configuration of a biofield generating apparatus using soil microorganisms according to an embodiment of the present invention.
- Figure 2 is a real picture showing the configuration of a biofield generating apparatus using soil microorganism according to an embodiment of the present invention
- Figure 2 (a) is a front view
- Figure 2 (b) is a rear view.
- 3 to 5 is a view showing the configuration of a microbial cell according to an embodiment of the present invention.
- 6 and 7 is a view showing the configuration of a microbial condenser according to an embodiment of the present invention.
- FIG. 8 is a block diagram schematically showing the configuration of a food waste fermentation apparatus according to an embodiment of the present invention.
- FIG. 9 is a view showing the food decay test results before and after treatment with a biofield according to an embodiment of the present invention.
- FIG. 10 is a block diagram schematically showing the configuration of a condensation fertilizer according to an embodiment of the present invention.
- FIG. 11 is a real picture of a shaft stirring chamber (fermentation tank) equipped with a biofield generator according to an embodiment of the present invention.
- FIG. 13 and FIG. 14 show experimental results in which the object to which the biofield generator according to the embodiment of the present invention is applied is compared with the state of the object not to be applied.
- FIG. 1 and 2 is a view showing the configuration of a biofield generating apparatus using soil microorganisms according to an embodiment of the present invention
- Figure 1 is a circuit diagram
- Figure 2 is a front view
- Figure 3 is a rear view.
- the biofield generator 1 using the soil microorganism according to the present embodiment may be a DC module 100 or an AC module 200.
- the DC module 100 is for generating a biofield using a DC power source, the DC battery 101, the frequency generator 102, the microbial cell 103, the LED indicator 104, the DC output unit 105 ) And the battery charger 106.
- the DC battery 101 supplies DC power to the frequency generator 102, for example, as a 6V battery.
- the frequency generator 102 generates a carrier wave of a preset frequency and provides it to the microbial cell 103.
- the carrier frequency of the frequency generator 102 can be adjusted from 8 to 1500 Hz.
- the frequency generator 102 operates by adjusting the frequency according to the selected microorganism to find an optimal frequency. The frequency chosen affects the fermentation rate.
- the microbial cell 103 is to generate a weak electromagnetic field by the soil microorganism, the microbial cell 103 is manufactured by using the soil microorganism having the desired effect.
- the biofield generated by the propagation action of the microorganisms is carried on the carrier wave. That is, the biofield generated from the microbial cell 103 serves as an emitter of the amplifying transistor.
- Soil microorganisms contained in the microbial cell 103 emits a unique biophoton from the DNA to generate a biofield containing the characteristics of the microorganism
- the biofield generating apparatus of the present invention (1) generating such a biofield
- a biofield is formed in an arbitrary space using, the characteristics of soil microorganisms appear in the biofield.
- the specific configuration and manufacturing method of the microbial cell 103 will be described later.
- the LED indicator 104 is turned on according to the operation of the frequency generator 102, through which the operation of the frequency generator 102 can be visually confirmed.
- the DC output unit 105 outputs a biofield formed by a DC power supply as an output terminal of the DC module 100.
- the battery charger 106 is for charging the DC battery 101.
- the AC module 200 is for generating a biofield using an AC power source, AC input unit 201, fuse 202, AC switch 203, microbial condenser 204 and AC output unit 205 ) May be included.
- the AC input unit 201 is a portion electrically connected to an external AC power supply, the fuse 202 is a short circuit protection fuse, and the AC switch 203 turns the AC power supply ON / OFF. It is a switch that can be done.
- the biofield generated by the microbial propagation action is carried on the AC signal.
- the signal output from the AC output unit 205 becomes a signal composed of an AC signal of 50 to 60 Hz and a biofield generated from the microbial condenser 204.
- the microbial condenser 204 is configured to form a condenser by filling the soil microbial soil dough from which moisture is removed between two metal plates and using the same as a dielectric.
- the microbial condenser 204 may form a biofield using an AC power source by accumulating charge and blocking DC current so that only AC current flows.
- microorganism condenser 204 The specific structure and manufacturing method of the microorganism condenser 204 will be described later.
- the AC output unit 205 is a biofield output terminal formed by an AC power source as an output terminal of the AC module 200.
- Biofield is a weak electromagnetic field generated around a living organism, which is caused by biophoton emitted from living DNA (DeoxynboNucleic Acid).
- Biophotons are photons of visible or ultraviolet light that live cells emit in a way that is distinct from traditional bioluminescence. Every living thing has its own DNA, which emits its own biophotons.
- the biofield is an energy field that must be present in the process of the elements of inorganic substances reacting with each other to produce organic matter with life.
- the yeast bacterium which is a microorganism, decomposes and synthesizes nutrients such as apple juice, wheat flour, and sugar to produce yeast, and the main components of yeast consist of proteins, amino acids, and vitamins. C, H, O, N and the like.
- Yeast is in the process of synthesizing proteins, amino acids and vitamins from C, H, O, N, etc.
- the information and energy of the central control command must be present in the process of life creation, and the energy field that satisfies these two conditions is biofield.
- Every living thing has its own DNA, and the DNA emits its own biophotons, which create their own biofields to create the characteristics of each living thing.
- the soil microorganisms are used in the biofield generating apparatus because the biofield for activating life occurs in the interaction between the soil and the soil microorganisms.
- the three major microorganisms present in the soil are mold, actinomces, and bacteria. Aspergillus belonging to filamentous fungi is effective in promoting immunity and growth, trichoderma is effective in destroying pathogens, and yeast is effective in fermenting bread and liquor. have.
- Actinomycetes include streptomyces, which secrete antibiotics, and cellulomonas, which break down amylose and cellulose. Bacteria produce enzymes that break down starch proteins, ferment bacillus to inhibit pests, pseudomonas to break down organic matter, photosynthetic bacteria to promote photosynthesis, kimchi and milk, and ferment There is a lactobacillus (lactobacillus) that secretes substances, anticancer substances, antibacterial substances.
- lactobacillus lactobacillus
- the microorganisms contained in the soil are indispensable for life activities, and therefore, the biofield, an energy field for life activities, is to be obtained from the soil microorganisms.
- electron donating and electron accepting processes may generate electron flow, or electric current.
- two electrodes having different ionization tendencies are planted in the culture vessel, and the two electrodes are connected by wires. In this case, a continuous current can be obtained due to the potential difference.
- This electric current carries minute electromagnetic waves made by biophotons emitted from the microorganism's DNA, and by boosting and transmitting this current, micro-fields generated by microorganisms, that is, biofields, can be reproduced as adjustable electromagnetic waves.
- micro-fields generated by microorganisms that is, biofields
- the efficacy and properties of the microorganisms used will appear.
- FIG. 1 and 2 is a view showing the configuration of a biofield generating apparatus using soil microorganisms according to an embodiment of the present invention
- Figure 1 is a circuit diagram
- Figure 2 is a front view
- Figure 3 is a rear view.
- the biofield generator 1 using the soil microorganism according to the present embodiment may be a DC module 100 or an AC module 200.
- the DC module 100 is for generating a biofield using a DC power source, the DC battery 101, the frequency generator 102, the microbial cell 103, the LED indicator 104, the DC output unit 105 ) And the battery charger 106.
- the DC battery 101 supplies DC power to the frequency generator 102, for example, as a 6V battery.
- the frequency generator 102 generates a carrier wave of a preset frequency and provides it to the microbial cell 103.
- the carrier frequency of the frequency generator 102 can be adjusted from 8 to 1500 Hz.
- the frequency generator 102 operates by adjusting the frequency according to the selected microorganism to find an optimal frequency. The frequency chosen affects the fermentation rate.
- the microbial cell 103 is to generate a weak electromagnetic field by the soil microorganism, the microbial cell 103 is manufactured by using the soil microorganism having the desired effect.
- the biofield generated by the propagation action of the microorganisms is carried on the carrier wave. That is, the biofield generated from the microbial cell 103 serves as an emitter of the amplifying transistor.
- Soil microorganisms contained in the microbial cell 103 emits a unique biophoton from the DNA to generate a biofield containing the characteristics of the microorganism
- the biofield generating apparatus of the present invention (1) generating such a biofield
- a biofield is formed in an arbitrary space using, the characteristics of soil microorganisms appear in the biofield.
- the specific configuration and manufacturing method of the microbial cell 103 will be described later.
- the LED indicator 104 is turned on according to the operation of the frequency generator 102, through which the operation of the frequency generator 102 can be visually confirmed.
- the DC output unit 105 outputs a biofield formed by a DC power supply as an output terminal of the DC module 100.
- the battery charger 106 is for charging the DC battery 101.
- the AC module 200 is for generating a biofield using an AC power source, AC input unit 201, fuse 202, AC switch 203, microbial condenser 204 and AC output unit 205 ) May be included.
- the AC input unit 201 is a portion electrically connected to an external AC power supply, the fuse 202 is a short circuit protection fuse, and the AC switch 203 turns the AC power supply ON / OFF. It is a switch that can be done.
- the biofield generated by the microbial propagation action is carried on the AC signal.
- the signal output from the AC output unit 205 becomes a signal composed of an AC signal of 50 to 60 Hz and a biofield generated from the microbial condenser 204.
- the microbial condenser 204 is configured to form a condenser by filling the soil microbial soil dough from which moisture is removed between two metal plates and using the same as a dielectric.
- the microbial condenser 204 may form a biofield using an AC power source by accumulating charge and blocking DC current so that only AC current flows.
- microorganism condenser 204 The specific structure and manufacturing method of the microorganism condenser 204 will be described later.
- the AC output unit 205 is a biofield output terminal formed by an AC power source as an output terminal of the AC module 200.
- FIG. 3 to 5 show the configuration of the microbial cell 103 according to an embodiment of the present invention
- Figure 3a is a circuit diagram
- Figures 3b and 3c is a real picture of the configuration and manufacturing method are as follows.
- the soil microorganisms having a desired effect means soil microorganisms suitable for use purposes such as food waste treatment, manure fertilizer production, and plant growth promotion.
- Lactobacillus (Latobacillus) is suitable for activating lactic acid bacteria fermentation so that food is fermented without corruption, photosynthetic bacteria are suitable for promoting plant growth, and EM in the manufacture of condensed fertilizers.
- Effective Microorganism Microorganisms are suitable.
- EM microorganism is an abbreviation of useful microorganism and it is a combination of and cultivated microbial collection species useful to humans among many microorganisms in nature.
- the yeast lactic acid bacteria and photosynthetic bacteria are the major species that make up EM, and the antioxidant effect of fermentation products created by the complex coexistence coexistence between these bacteria is the effect of EM.
- the selected soil is a soil containing far-infrared radiation, for example, it may be composed of 50 to 70% ocher, 10 to 30% illite, 5 to 15% elvan rock, 5 to 15% tourmaline, preferably
- the soil contains 60% ocher, 20% illite, 10% elvan and 10% tourmaline.
- a cylindrical rod made of burlap is planted in the air hole to allow microbes in the mortar to breathe, and then the + pole container and-pole container are connected by wires so that the electrons from the pole can flow to the + pole.
- a microbial condenser 204 is manufactured by filling a soil microbial soil dough from which water is removed between two metal plates and using it as a dielectric. The microbial condenser 204 accumulates electric charges, cuts off the direct current, and passes the alternating current, thereby making a biofield using an alternating current power source.
- composition of the soil microbial soil dough is the same as that used for the microbial cell 103. However, moisture should be dried to 10% or less.
- the biofield generating apparatus 1 using the soil microorganism having the above-described configuration is applied to any device, for example, food waste processing apparatus, manure fertilizer manufacturing apparatus, food storage apparatus, plant growth promoting apparatus, etc. to form a biofield. It shows the characteristics of soil microorganisms.
- FIG. 8 is a view showing an application example of the biofield generating apparatus using soil microorganisms according to an embodiment of the present invention, it shows an example of fermenting food waste is applied to the food waste treatment apparatus.
- the food waste fermentation apparatus 500 includes a food waste processing tank 510 containing food waste and a first biofield electrically connected to the food waste processing tank 510. Generating device 520.
- the first biofield generator 520 may be installed in the food waste treatment tank 510 or the output terminal of the first biofield generator 520 may be electrically connected to the food waste treatment tank 510.
- the food waste treatment tank 510 is mostly made of reinforced concrete, and the reinforcing bars have high electrical conductivity, so that free electrons passing the biofield can easily flow.
- the steel frame structure connects the entire concrete, so that when the output terminal of the first biofield generator 520 and the reinforced concrete are electrically contacted, the biofield is filled in the entire food waste disposal tank 510.
- this biofield has quantum characteristics, so it is very easy to penetrate the concrete wall to convey the effect to food waste, and this quantum energy field containing lactic acid bacteria activity information ferments the contents contained in the food waste treatment tank 510. .
- biofields are energy fields generated by the Bio Photon of DNA.
- Carbohydrates, proteins, fats, etc. are decomposed when the food is decomposed to emit odors such as ammonia, methyl mercaptan, hydrogen sulfide, and trimethylamine.
- odors such as ammonia, methyl mercaptan, hydrogen sulfide, and trimethylamine.
- the biofield generator 520 is applied as in this embodiment, food waste treatment is performed. By fermenting the lactic acid bacteria fermentation of food contained in the tank 510, fermentation can occur without going to corruption can solve the odor problem.
- Figure 9 (a) shows a sample not treated with a biofield, which is black and rot, and has a bad odor.
- Figure 9 (b) is a sample treated with a biofield, lactic acid bacteria fermentation occurred to form a white film and the smell of alcohol. In other words, it is interpreted as the effect of soil microorganism Latobacillus used in microbial cells.
- FIG. 10 is a view showing an application example of the biofield generating device 1 using soil microorganisms according to another embodiment of the present invention, which is applied to a feedstock fertilizer to reduce the odor generated in the process of manufacturing the feedstock as a fertilizer. It shows an example of increasing the maturity.
- the condensed fertilizer 700 includes a condensed fermentation tank 710 in which condensate is accumulated and a second biofield generating device 720 electrically connected to the condensed fermentation tank 710. do.
- the second biofield generator 720 may be installed in the condensed fermentation tank 710 or the output terminal of the second biofield generator 720 may be electrically connected to the condensed fermentation tank 710.
- the condensed fermentation tank 710 is made of reinforced concrete, and the reinforcing bar has high electrical conductivity, so that free electrons passing through the biofield can easily flow.
- the steel frame structure connects the entire concrete so that the output terminal of the second biofield generator 720 and the reinforced concrete are electrically contacted to fill the entire biomass in the shaft fermentation tank 710.
- the second biofield generator 720 is electrically connected to the condensation fermentation tank 710 to provide a biofield in the condensation fermentation tank 710 so that ammonia generated from the condensation accumulated in the condensation fermentation tank 710 may be used as the urea.
- Biofields catalyze the synthesis of chemical reactions, reducing odor and increasing fertilizer effect.
- FIG. 11 is a real photograph of a condensation agitating chamber (fermentation tank) in which a biofield generator according to an embodiment of the present invention is installed, and FIG. Referring to Figure 9, the nutrient fertilizer produced in the plant without the biofield is ammonia concentration of 32ppm compared to 4ppm ammonia is detected in the product after one month after the installation of the biofield generator device to solve the odor problem And productivity doubled.
- 800,000 bags of livestock fertilizer were supplied to farmers annually, and the germination rate of cultivated crops improved, and the output of peppers, tomatoes, ducks, cabbages, corn, etc. increased.
- FIG. 13 and FIG. 14 show experimental results in which the object to which the biofield generator according to the embodiment of the present invention is applied is compared with the state of the object not to be applied.
- FIG. 13 shows a state after one week of hydroponic cultivation of onions with biofield-treated water and untreated water, and onions (FIG. 13B) grown in biofield-treated water are treated with untreated water. It can be seen that growth is promoted by about 2 times compared to the grown onion (Fig. 13 (a)). This is interpreted as a photosynthetic promoting effect of the photosynthetic bacteria among the soil microorganisms used in the biofield generating apparatus.
- FIG. 14 is a view comparing biofield treated tofu and unprocessed tofu
- FIG. 14B is tofu stored in a food storage device (fridge) equipped with a biofield generating device for 30 days
- FIG. 14 (A) is tofu stored for 30 days in a general refrigerator without a biofield generator.
- the biofield-treated tofu (FIG. 11 (b)) is already decayed while the biofield-free tofu (FIG. 14 (a)) is already decayed after 10 days. You can see that a lot of progress.
- the biofield generator using the soil microorganism according to the present invention can be applied to the composting process of organic wastes such as agricultural and fishery by-products, slaughterhouse by-products, and food plant by-products, as well as food waste fermentation and livestock fertilizers. .
- the food waste fermentation apparatus using the soil microorganism according to the present invention it is possible to solve the odor problem by activating the fermentation of lactic acid bacteria of the food to cause fermentation without going to corruption.
- the biofield is catalyzed to reduce the odor caused by the condensate and increase the effect of the fertilizer You can get it.
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Abstract
Description
Claims (28)
- 음식물쓰레기를 발효시키기 위한 음식물 쓰레기 발효 장치에 있어서,음식물쓰레기를 수용하는 음식물쓰레기 처리조; 및상기 음식물쓰레기 처리조와 전기적으로 접속되어 상기 음식물의 유산균 발효를 활성화시키는 바이오필드 발생 장치; 를 포함하며,여기서, 상기 바이오필드 발생 장치는DC 배터리와, 상기 DC 배터리로부터 직류전원을 공급받아 기 설정된 주파수의 반송파를 생성하는 주파수발생기와, 상기 주파수발생기와 전기적으로 접속된 미생물 전지 그리고 DC 출력부를 구비하여, 상기 주파수발생기에 의해 생성된 전자기장과 상기 미생물 전지에서 생성된 전자기장으로 이루어진 바이오필드를 발생시키는 DC 모듈; 및AC 입력부와, 상기 AC 입력부와 전기적으로 접속된 미생물 콘덴서 및 상기 미생물 콘덴서와 전기적으로 접속된 AC 출력부를 구비하여, AC 입력 신호에 의해 생성된 전자기장과 상기 미생물 콘덴서에서 생성된 전자기장으로 이루어진 바이오필드를 발생시키는 AC 모듈; 중의 어느 하나를 포함하는 토양 미생물을 이용한 음식물 쓰레기 발효 장치.
- 제 1 항에 있어서, 상기 바이오필드 발생 장치는상기 주파수발생기와 상기 DC 출력부 사이에 전기적으로 접속되어 상기 주파수발생기의 동작에 따라 점등되는 LED 표시등을 더 포함하는 것을 특징으로 하는 음식물 쓰레기 발효 장치.
- 제 1 항에 있어서, 상기 미생물 전지는음식물쓰레기의 유산균 발효를 위한 락토바실루스(lactobacillus)를 포함하는 토양미생물이 함유된 흙반죽이 수용되는 2개의 플라스틱 용기와;상기 2개의 플라스틱 용기 각각에 수용된 흙반죽에 삽입되는 음전극 및 양전극;상기 음전극에서 발생한 전자들이 양전극으로 이동하도록 상기 2개의 플라스틱 용기 사이를 연결하는 도선과;상기 2개의 플라스틱 용기에 수용된 흙반죽 속의 토양미생물이 호흡할 수 있도록 상기 2개의 플라스틱 용기 각각에 형성된 공기구멍; 을 포함하는 것을 특징으로 하는 음식물 쓰레기 발효 장치.
- 제 3 항에 있어서, 상기 흙반죽은살균된 흙과 락토바실루스를 포함하는 배양된 토양 미생물이 5:1의 무게비율로 혼합된 혼합물과 소금물이 4:1의 무게비율로 혼합된 것임을 특징으로 하는 음식물 쓰레기 발효 장치.
- 제 4 항에 있어서, 상기 살균된 흙은 원적외선 방사물질이 포함된 것임을특징으로 하는 음식물 쓰레기 발효 장치.
- 제1항에 있어서, 상기 미생물 콘덴서는두 금속판 사이에 수분이 제거된 토양 미생물 흙반죽을 채워서 유전체로 사용한 것임을 특징으로 하는 음식물 쓰레기 발효 장치.
- 제 6 항에 있어서, 상기 흙반죽은살균된 흙과 락토바실루스를 포함하는 배양된 토양 미생물이 5:1의 무게비율로 혼합된 혼합물과 소금물이 4:1의 무게비율로 혼합된 것임을 특징으로 하는 음식물 쓰레기 발효 장치.
- 제 7 항에 있어서, 상기 살균된 흙은 원적외선 방사물질이 포함된 것임을 특징으로 하는 음식물 쓰레기 발효 장치.
- 축산물의 분뇨를 비료로 제조하기 위한 축분 비료화 장치에 있어서,축산물의 분뇨를 수용하여 발효시키는 축분 발효조; 및상기 축분 발효조와 전기적으로 접속되어 상기 축산물의 분뇨에서 발생하는 암모니아의 요소합성을 촉진하는 바이오필드 발생 장치; 를 포함하며,여기서, 상기 바이오필드 발생 장치는DC 배터리와, 상기 DC 배터리로부터 직류전원을 공급받아 기 설정된 주파수의 반송파를 생성하는 주파수발생기와, 상기 주파수발생기와 전기적으로 접속된 미생물 전지 그리고 DC 출력부를 구비하여, 상기 주파수발생기에 의해 생성된 전자기장과 상기 미생물 전지에서 생성된 전자기장으로 이루어진 바이오필드를 발생시키는 DC 모듈; 및AC 입력부와, 상기 AC 입력부와 전기적으로 접속된 미생물 콘덴서 및 상기 미생물 콘덴서와 전기적으로 접속된 AC 출력부를 구비하여 AC 입력 신호에 의해 생성된 전자기장과 상기 미생물 콘덴서에서 생성된 전자기장으로 이루어진 바이오필드를 발생시키는 AC 모듈; 중의 어느 하나를 포함하는 토양 미생물을 이용한 축분 비료화 장치.
- 제 9 항에 있어서, 상기 미생물 전지는축산물 분뇨의 요소합성을 위한 유용미생물균(Effective Microorganism)을포함하는 토양미생물이 함유된 흙반죽이 수용되는 2개의 플라스틱 용기와;상기 2개의 플라스틱 용기 각각에 수용된 흙반죽에 삽입되는 음전극 및 양전극;상기 음전극에서 발생한 전자들이 상기 양전극으로 이동하도록 상기 2개의 플라스틱 용기 사이를 연결하는 도선과;상기 2개의 플라스틱 용기에 수용된 흙반죽 속의 토양미생물이 호흡할 수 있도록 상기 2개의 플라스틱 용기 각각에 형성된 공기구멍; 을 포함하는 것을 특징으로 하는 축분 비료화 장치.
- 제 10 항에 있어서, 상기 흙반죽은살균된 흙과 유용미생물균(Effective Microorganism)을포함하는 배양된 토양 미생물이 5:1의 무게비율로 혼합된 혼합물과 소금물이 4:1의 무게비율로 혼합된 것임을 특징으로 하는 축분 비료화 장치.
- 제 11 항에 있어서, 상기 살균된 흙은 원적외선 방사물질이 포함된 것임을 특징으로 하는 축분 비료화 장치.
- 제9항에 있어서, 상기 미생물 콘덴서는두 금속판 사이에 수분이 제거된 토양 미생물 흙반죽을 채워서 유전체로 사용한 것임을 특징으로 하는 축분 비료화 장치.
- 제 13 항에 있어서, 상기 흙반죽은살균된 흙과 유용미생물균(Effective Microorganism)을 포함하는 배양된 토양 미생물이 5:1의 무게비율로 혼합된 혼합물과 소금물이 4:1의 무게비율로 혼합된 후 수분이 10% 이하로 제거된 것임을 특징으로 하는 축분 비료화 장치.
- 제 14 항에 있어서, 상기 살균된 흙은 원적외선 방사물질이 포함된 것임을 특징으로 하는 축분 비료화 장치.
- 바이오필드를 발생하는 바이오 필드 발생 장치에 있어서,설정된 주파수의 반송파를 생성하는 주파수발생기; 및상기 주파수발생기와 전기적으로 접속된 미생물 전지; 를 포함하며,상기 미생물 전지의 출력단에서 상기 주파수발생기에 의해 생성된 전자기장과 상기 미생물 전지에서 생성된 전자기장으로 이루어진 바이오필드를 발생시키는 것을 특징으로 하는 바이오 필드 발생 장치.
- 제16항에 있어서, 상기 미생물 전지는토양미생물이 함유된 흙반죽이 수용되는 2개의 플라스틱 용기와;상기 2개의 플라스틱 용기 각각에 수용된 흙반죽에 삽입되는 음전극 및 양전극;상기 음전극에서 발생한 전자들이 상기 양전극으로 이동하도록 상기 2개의 플라스틱 용기 사이를 연결하는 도선; 및상기 2개의 플라스틱 용기에 수용된 흙반죽 속의 토양미생물이 호흡할 수 있도록 상기 2개의 플라스틱 용기 각각에 형성된 공기구멍; 을 포함하는 것을 특징으로 하는 바이오 필드 발생 장치.
- 제 17 항에 있어서, 상기 흙반죽은 80-100에서 3시간 동안 살균된 흙과 배양된 토양 미생물이 5:1의 무게비율로 혼합된 혼합물과 농도 3%의 소금물이 4:1의 무게비율로 혼합된 것임을 특징으로 하는 바이오 필드 발생 장치.
- 제 18 항에 있어서, 상기 살균된 흙은 원적외선 방사물질이 포함된 흙인 것을 특징으로 하는 바이오 필드 발생 장치.
- 제 16 항에 있어서,상기 주파수발생기에 전기적으로 접속되어 상기 주파수발생기의 동작에 따라 점등되는 LED 표시등을 더 포함하는 것을 특징으로 하는 바이오 필드 발생 장치.
- 바이오 필드를 발생하는 바이오 필드 발생 장치에 있어서,AC 입력부; 및상기 AC 입력부와 전기적으로 접속된 미생물 콘덴서; 를 포함하며,상기 미생물 콘덴서는 두 금속판 사이에 수분이 제거된 토양 미생물 흙반죽을 채워서 유전체로 사용한 것이며,상기 AC 입력부를 통하여 제공되는 AC 입력 신호가 상기 두 금속판 사이에 인가되고, 상기 두 금속판 사이에서 AC 입력 신호에 의해 생성된 전자기장과 상기 미생물 콘덴서에서 생성된 전자기장으로 이루어진 바이오필드를 발생시키는 것을 특징으로 하는 바이오 필드 발생 장치.
- 제 21 항에 있어서, 상기 흙반죽은 80-100에서 3시간 동안 살균된 흙과 배양된 토양 미생물이 5:1의 무게비율로 혼합된 혼합물과 농도 3%의 소금물이 4:1의 무게비율로 혼합된 후 수분이 10% 이하로 제거된 것임을 특징으로 하는 바이오 필드 발생 장치.
- 제 22 항에 있어서, 상기 살균된 흙은 원적외선 방사물질이 포함된 흙인 것을 특징으로 하는 바이오 필드 발생 장치.
- 토양미생물이 함유된 흙반죽이 수용되는 2개의 플라스틱 용기와;상기 2개의 플라스틱 용기 각각에 수용된 흙반죽에 삽입되는 음전극 및 양전극;상기 음전극에서 발생한 전자들이 상기 양전극으로 이동하도록 상기 2개의 플라스틱 용기 사이를 연결하는 도선; 및상기 2개의 플라스틱 용기에 수용된 흙반죽 속의 토양미생물이 호흡할 수 있도록 상기 2개의 플라스틱 용기 각각에 형성된 공기구멍; 을 포함하는 것을 특징으로 하는 미생물 전지.
- 제 24 항에 있어서, 상기 흙반죽은 80-100에서 3시간 동안 살균된 흙과 배양된 토양 미생물이 5:1의 무게비율로 혼합된 혼합물과 농도 3%의 소금물이 4:1의 무게비율로 혼합된 것임을 특징으로 하는 미생물 전지.
- 제 25 항에 있어서, 상기 살균된 흙은 원적외선 방사물질이 포함된 흙인 것을 특징으로 하는 미생물 전지.
- 두 장의 금속판 사이에 채워진 유전체를 가지는 콘덴서에 있어서,상기 유전체는 수분이 제거된 토양 미생물이 혼합된 흙반죽이며, 상기 두 장의 금속판 사이에서 상기 토양 미생물에 의해 발생된 바이오 필드를 출력하는 것을 특징으로 하는 미생물 콘덴서.
- 제 27 항에 있어서, 상기 흙반죽은 80-100에서 3시간 동안 살균된 흙과 배양된 토양 미생물이 5:1의 무게비율로 혼합된 혼합물과 농도 3%의 소금물이 4:1의 무게비율로 혼합된 후 수분이 10% 이하로 제거된 것임을 특징으로 하는 미생물 콘덴서.
Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US15/548,022 US20180016196A1 (en) | 2015-02-12 | 2016-02-02 | Food waste fermentation device using soil microbes and livestock manure composting device, biofield generator suitable for same, microbial cell suitable for same and microbial condenser suitable |
| JP2017561219A JP2018513017A (ja) | 2015-02-12 | 2016-02-02 | 土壌微生物を用いた生ごみ発酵装置および畜糞肥料化装置、これに適したバイオフィールド発生装置、これに適した微生物電池、および、これに適した微生物コンデンサ |
| CN201680009581.2A CN107431230A (zh) | 2015-02-12 | 2016-02-02 | 利用土壤微生物的食物垃圾发酵装置及畜粪肥料化装置、适合于其的生物场产生装置、适合于其的微生物电池及适合于其的微生物电容器 |
| CA2979221A CA2979221A1 (en) | 2015-02-12 | 2016-02-02 | Biofield generator using soil microbes and suitable microbial condensor |
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR10-2015-0021457 | 2015-02-12 | ||
| KR20150021457 | 2015-02-12 | ||
| KR10-2016-0012281 | 2016-02-01 | ||
| KR1020160012281A KR101765488B1 (ko) | 2015-02-12 | 2016-02-01 | 토양 미생물을 이용한 음식물 쓰레기 발효 장치및 축분 비료화 장치, 이에 적합한 바이오필드 발생 장치, 이에 적합한 미생물 전지 및 이에 적합한 미생물 콘덴서 |
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| WO2016129846A1 true WO2016129846A1 (ko) | 2016-08-18 |
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| PCT/KR2016/001145 Ceased WO2016129846A1 (ko) | 2015-02-12 | 2016-02-02 | 토양 미생물을 이용한 음식물 쓰레기 발효 장치및 축분 비료화 장치, 이에 적합한 바이오필드 발생 장치, 이에 적합한 미생물 전지 및 이에 적합한 미생물 콘덴서 |
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| KR20100014439A (ko) * | 2007-02-16 | 2010-02-10 | 아이오제닉 피티와이 엘티디 | 수생유기체의 배양을 향상시키는 방법 |
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| KR20060024797A (ko) * | 2003-06-13 | 2006-03-17 | 더 트러스티스 오브 더 유니버시티 오브 펜실바니아 | 특이적 및 선택적 전기 및 전자기 신호를 사용한 기질금속단백질분해효소 유전자 발현의 조절 |
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