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Particle energy multifunctional water and preparation method of particle energy multifunctional water cola beverage

A multi-functional, particle-based technology, applied in chemical instruments and methods, heating water/sewage treatment, water/sludge/sewage treatment, etc., can solve soil, river and groundwater pollution, low industrial water reuse rate, urban water supply System leakage and other problems, to achieve the effect of benefiting blood circulation, preventing cardiovascular diseases, increasing oxygen content and flow rate

Active Publication Date: 2016-06-29
徐桃飞
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Only about 5 per cent of industrial and human waste generated by cities in developing countries is treated, and the rest (including toxic and dangerous by-products of industrial production) is mostly disposed of, causing serious pollution of soil, rivers and groundwater , making large amounts of fresh water unusable
In addition, the effective utilization rate of agricultural irrigation water is less than 50%, the low reuse rate of industrial water, and the leakage of urban water supply systems have also caused a great waste of fresh water resources and exacerbated the shortage of water resources.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0060] The preparation method of particle energy multifunctional water comprises the following steps:

[0061] 1) Preparation of nanoscale materials:

[0062] Select natural minerals: 90kg of tourmaline, 2kg of selenium oxide, 20kg of NdFeB and 20kg of medical stone; the above natural minerals are respectively made into nano-scale materials, and the specific preparation steps are as follows:

[0063] Use plasma microwave cluster and ultrasonic suspension jet mill to pulverize. The jet mill uses the high-speed airflow of 500m / s to make the particles impact, collide and rub against each other and be quickly pulverized;

[0064] The raw materials of nanoparticles are heated and evaporated by freeze-drying and evaporative condensation methods to make them into atoms or molecules, and many atoms or molecules are condensed to form extremely fine nanoparticles, and nanoparticle materials between 5 and 100 nanometers are obtained;

[0065] 2) select the nanoscale material prepared in...

Embodiment 2

[0071] The preparation method of particle energy multifunctional water comprises the following steps:

[0072] 1) Preparation of nanoscale materials:

[0073] Select natural minerals: 90kg of tourmaline, 2kg of selenium, 20kg of NdFeB and 20kg of medical stone; the above natural minerals are respectively made into nano-scale materials, and the specific preparation steps are as follows:

[0074] Using plasma microwave clustering and ultrasonic suspension jet mill to pulverize, the jet mill uses the energy of 300°C hot steam to make the particles impact, collide and rub against each other and be quickly pulverized;

[0075] The raw materials of nanoparticles are heated and evaporated by freeze-drying and evaporative condensation methods to make them into atoms or molecules, and many atoms or molecules are condensed to form extremely fine nanoparticles, and nanoparticle materials between 5 and 100 nanometers are obtained;

[0076] 2) select the nanoscale material prepared in ste...

Embodiment 3

[0082] The preparation method of particle energy multifunctional water comprises the following steps:

[0083] 1) Preparation of nanoscale materials:

[0084]Select natural minerals: 90kg of tourmaline, 2kg of selenium oxide, 20kg of NdFeB and 20kg of medical stone; the above natural minerals are respectively made into nano-scale materials, and the specific preparation steps are as follows:

[0085] Use plasma microwave clustering and ultrasonic suspension jet mill to pulverize. The jet mill uses the energy of 450°C hot steam to make the particles impact, collide and rub against each other and be quickly pulverized;

[0086] The raw materials of nanoparticles are heated and evaporated by freeze-drying and evaporative condensation methods to make them into atoms or molecules, and many atoms or molecules are condensed to form extremely fine nanoparticles, and nanoparticle materials between 5 and 100 nanometers are obtained;

[0087] 2) Select the nanoscale material prepared in ...

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PUM

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Abstract

The invention relates to a preparation method of particle-energy multi-functional water and particle-energy multi-function water cola beverage, which uses a nano-scale sintered material filter system for pollution-free natural water, and uses modern particle energy technology to make various particles inside the proton act as During the axial rotation movement, the energy provided by the electric potential energy generated decomposes the water molecule group into a single stable water molecule. The basic theory and experimental results of nuclear chemistry and nuclear physics hyperon structure are also used, and the controlled The plasma production process of thermonuclear fusion, and then through the technical process of high temperature, high pressure, separation, stabilization, cooling and combination with nano-scale materials under high temperature reaction conditions, the particle energy multifunctional water and the particle energy multifunctional water cola beverage are produced . The beneficial effect of the invention is that it is beneficial to human blood circulation, decomposes waste protein, excess fatty acid and high-molecular fatty alcohol produced by human metabolism, increases red blood cell oxygen content and flow rate, and satisfies the demand of human cells for water molecules.

Description

technical field [0001] The invention relates to a preparation method of particle energy multifunctional water and particle energy multifunctional water cola beverage. Background technique [0002] Water is one of the most important resources on the earth, and water resources are indispensable and irreplaceable natural resources for human survival and development. 70% of the earth's surface is covered by water, but 97.5% of it is salt water and only 2.5% is fresh water. The vast majority of fresh water is polar ice caps, alpine glaciers and deep groundwater that are difficult to use. Less than 1% of fresh water can be directly and continuously used by humans, mainly distributed between rivers, lakes, reservoirs and shallow groundwater. middle. [0003] In developing countries with large populations and frequent droughts, fresh water supply is difficult to meet demand, and developed countries in Europe and the United States are also facing the challenge of drinking water. T...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C02F9/10C02F1/68A23L2/38
CPCA23L2/38C02F1/68C02F9/00C02F1/001C02F1/02
Inventor 徐桃飞
Owner 徐桃飞
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