Colloidal Gold, Silver, Platinum in High Voltage Plasma Process

Colloidal Gold, Silver and Platinum: Production and Usage
Learn all about the essential differences in the production of colloidal metals – using the example of colloidal gold in order to bring more clarity to the topic. Different terms are often used and properties described that are often difficult to understand. With the following information and criteria, we would like to offer an introduction to the very exciting topic of the production and application of colloidal solutions or dispersions.
We’ll take a closer look at the following topics:
• Different processes for the preparation of ionic or colloidal solutions or dispersions
• What are colloids, particle size, concentration, colour, shelf life, etc.
• Influence of the manufacturing process on the properties and thus effects in the body
• Fields of application and effects of gold, silver and platinum
• Studies and articles on the respective metals
What are colloids and colloidal dispersions?
“Colloid” or “colloidal” refers to the second-smallest unit of elements after the atom. Colloids are the smallest possible form that an element can have without losing its properties. Colloids occur everywhere in nature. And thus also in our body – e.g. in the blood and lymph. Likewise, colloids of metals such as gold, silver, copper, platinum, etc. are present in our body and fulfil important tasks. However, they only occur in minute traces, which is why they are also called trace elements or ultra-trace elements.
The tiny amounts of catalytically highly active metals in the body have a very significant and central importance in metabolism, as these metals have a high lattice energy and/or catalytic activity.
In this tiny form as a colloid, it becomes possible for the particles (e.g. gold, silver, platinum, etc.) to reach every single cell in our body in order to unfold there the manifold positive effects that have been known for thousands of years. Colloid particles float, do not settle and are excreted again. Due to the colloid particle size of a few nanometres (1 to 20 nm with high-voltage plasma production), they also reach sensitive and particularly protected areas such as the brain.
For this reason, the quality of the colloids, influenced by water quality, starting material, manufacturing process and storage, plays a particularly important role.
Different processes for the preparation of ionic solutions and colloidal dispersions:
Chemical preparation: colloidal dispersion (for gold)
• Colloid production by dissolving the gold with acids
Electrolytic production: ionic solution
• Electrolysis in the range 9 to 60 volts (“silver generators”)
• High-voltage electrolysis process up to 10,000 volts
High-voltage plasma production: pure colloidal dispersion
• Voltages up to 10,000 volts: colloid generation by means of plasma
So far, mainly so-called silver generators (direct current electrolysis with 9-60 volts) have been used for the production of ionic silver or other metals for home use and in the semi-professional sector. The more complex technology with the high-voltage plasma process is usually only used by professional suppliers with high-quality technology and a deeper understanding of the chemical, physical and physiological relationships.
Conclusion: Cheaper processes such as chemical production (often relabelled as electrolysis because otherwise no one would buy it) or low-voltage electrolysis are not a suitable production process due to the high lattice energy, especially for gold or platinum colloid production. With the high-voltage plasma process, the best possible quality of colloids is achieved under economic conditions (smallest particles, highest particle charge, long shelf life, suspended state) if the production process is correct.
Water quality and characteristics for the production of ionic solutions or colloidal dispersions:
The right water for colloid production
For colloid production, only osmosis-filtered water with subsequent double steam distillation (double distilled) with < 0.5 μS should be used, as this is the only way to remove all substances from the water. Only steam distillation is not sufficient, as substances such as benzenes, chlorine or chlorine degradation products have a lower boiling point than water and would thus already be collected in the collection container before the boiling point of the water and thus contaminate the distilled water.
In electrolytic production , residues and substances in the water could form direct compounds with the ions and produce compounds that are harmful to health, as ions are very reactive.
In the high-voltage plasma process , residual substances would prevent plasma generation because the electricity would flow directly through the water, which would prevent the plasma from forming.
Differences between ionic solution, colloidal solution and colloidal dispersion:
Ionic solution and colloidal solution
Ions detach from the electrode material through electrolysis and form a compound with the water. Due to the low energy, this is still possible with silver, but no longer practicable with gold and platinum due to the high lattice energy (solid structure). E.g. gold production 1-2ppm / day (24 hours) is possible!
Colloidal Dispersion
Gold, silver or platinum colloids are dissolved out of the electrode material by evaporation in a 3,000 to 4,000 degree hot plasma and abruptly cooled (condensed) in water. The highly energetic and electrically charged tiny colloids float in water without forming a bond with water and constantly release ions, for days and weeks directly at the site of the event.
Properties of colloids: concentration, particle size, particle energy, colour, durability
Concentration in ppm or mg/l
The offer on the internet is huge and various concentrations are advertised. Mostly, the concentration is given in ppm (parts per million) or mg/l (milligrams per litre). However, the idea that “a lot helps a lot” is deceptive here, because a high concentration and the smallest colloids are mutually exclusive: The higher the concentration, the more and larger clusters form, which significantly reduce effectiveness and bioavailability. Concentrations of 5 to ≤ 10 ppm are optimal, have the smallest possible particle size and highest energetic charge.
The data in ppm can be equated with mg/l: ≤ 10 ppm correspond to approx. 10 mg/l.
The higher the concentration, the larger the particles or clusters: 5 to ≤ 10 ppm are very effective in their impact. The risk of clustering increases with higher concentrations, which means that the larger particles are then no longer as effective and cell-permeable or bioavailable. Especially in the high-voltage plasma process, the particles are very small (1 to 20 nm) and have a very high particle energy, because the high energy (10,000 volts and temperatures between 3,000 and 4,000 degrees Celsius as plasma) needed to dissolve out of the metal (lattice energy) is partly transferred to the resulting colloid particles. It is therefore better to take ≤ 10 ppm twice as silver colloid than 20 or even 50 ppm once.
The lower the concentration, the clearer the liquid. From a concentration of more than 3 ppm, a slight colouration appears. With laser light, the colloids can be made visible because the tiny particles scatter and reflect the light. The more particles, the better and stronger the laser light is visible in the water.
Silver: From clear to yellowish to yellowish-brown, the colour can change with increasing particle concentration.
Gold: From clear to pale purple or pink to darker purple towards black, the colour can change with increasing particle concentration.
Platinum: From clear to slightly grey. The higher the concentration, the stronger the grey discolouration and the stronger the clustering (several particles form larger clusters).
Applications and effects of colloidal gold
What does colloidal gold do?
• Improves regulation
• Optimises repair processes and wound healing
• Accelerates recovery and regeneration
• Increases energy levels
• Increases intelligence (IQ by 20 % according to studies)
• Calms and promotes relaxation (when rest is needed)
• Activates and enhances performance (when performance is needed)
• Regulates antioxidant processes (protects against excessive oxygen radicals)
• Accelerates healing processes
• Brings inflammatory processes to an end more quickly (final phase of biologically meaningful repair processes)
• Increases production of happiness hormones
• Has a mood-lifting and rejuvenating effect
• Optimises cell renewal processes
• Supports and promotes detoxification processes
• Leads to better sleep patterns
• Optimises intracellular cell communication
• Improves communication between cells in general
• Significantly improves communication within our DNA
• Balances our autonomic nervous system (VNS)
• Activates the glands and hormone production
• Improves blood circulation
• Increases (self-)awareness
• Improves motor and coordination skills
• Increases intuition and perception
• Accelerates wound healing
Colloidal gold is also used within classical medicine for the following “diseases”:
• Addictions (alcohol, nicotine, drugs)
• Alzheimer’s disease
• Adiposity (Obesity)
• “Cancer”, see biol. conflicts / germ leaf-specific tissue reactions
• Cardiovascular problems
• Coordination problems
• Chronic fatigue
• Digestive problems
• Depression
• Energy weakness
• Glandular diseases (thyroid, parathyroid, thymus, pineal, testicular, ovary, pancreatic islet cells, etc.)
• Joint diseases, rheumatism
• Hot flushes (menopause)
• Mood swings
• Multiple sclerosis (MS)
• Nervous disorders
• Night sweats
• Skin diseases (irritations, neurodermatitis)
• Sleep disorders
• “Viral diseases”, see so far unproven scientific evidence of viruses (Reinisolation & Koch’s postulates)
Applications and effects of colloidal silver
Colloidal silver: Applications
• Flu symptoms
• Open wounds
• Inflammations (internal and external)
• Skin diseases
• Respiratory diseases
• Joint pain, rheumatism
• Bad breath
• Fungal infections
• Acne and impure skin
• Neurodermatitis
• Insect bites and stings
• Athlete’s foot
Use and ingestion of colloidal dispersions:
Ingestion of colloidal solutions (high-voltage plasma method)
Especially at low concentrations (5-≤ 10 ppm) and small particle size (< 20 nm), colloidal dispersion has proven to be very effective, as the energy content of the colloids is the highest and can therefore last and act the longest.
It is optimal to keep the colloidal solution in the mouth for 1-3 minutes so that the particles can migrate directly into the blood via the oral mucosa. Due to the electrical charge, a plastic or wooden spoon should be used – never use a metal spoon! A shot glass is also very suitable.
Adults: 1 x daily 30 ml (2 tablespoons à 15 ml)
Children: 1 x daily 15 ml (1 tablespoon à 15 ml)