Colloidal Silver Parts Per Million in Relation to Atoms 

Standford Univerties Nanoparticle that show the atoms inside
To the left, we have an image of a 5 nm Silver Particle taken by the Stanford University. The Image shows in detail, single atoms attached inside the nanoparticle, which is ONE Solid Metal Piece.

What would happen if somehow a process was developed to break down the individual atoms into Single Atoms? We have done that!

Now think of that same particle except this time it is not a solid piece of metal but a Water Molecule that is sustaining the silver atomic particles. That is what we offer! Silver Saturated Water Molecule Clusters!

With the typical Low PPM Nanoparticles products, each solid Nanoparticle will read as ONE Solid PPM.

​With Atomic Particle Colloidal Silver or Antioxidant products, the Atoms are bound and attached to Water Molecule Clusters; each Water Molecule Cluster may contain tens of thousands of individual atoms to hundreds of thousands of atomic particles.

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When a TDS meter us used to measure the PPM on our Colloidal Products, the Water Molecule Cluster is read as "ONE PPM" by the TDS Meter.

To the right, we have a TDS Meter that measures up to 19,999 PPM, testing our 12,000 PPM Colloidal Product and it measures slightly more.

Each PPM of Atomic Particle Colloidal Silver may have a "CLUSTER BOMB EFFECT" on viruses, bacteria, and even parasites when the water molecules dissolve and release the contained silver atoms into the bloodstream.


Bear in mind that solid nanoparticles cannot dissolve without the help of acids, and this, of course, leads to other chemical compounds in your body when they are mixed with acid.
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200 to 18,000 PPM, means we have 200 to 18.000 PPM of Silver Saturated Water Molecules Clusters, and each one amazingly may have hundreds of thousands of Silver Atomic particles!

We have found many companies that claim to have a high PPM of 500 and under actually have 5 to 20 PPM with this simple TDS meter test. To verify PPM, a TDS Meter can be purchased on the internet for under $40.00

Colloidal Silver High PPM Test
To the left is a simple test called the "Tyndall Effect" and is done with a laser that proves that our Colloidal Silver Water Molecules are Saturated with hundreds of thousands (if not millions) of Atoms.
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Atomic Particles in distilled water cannot be tested the same way as nanoparticle products.​​​

When considering the purchase of Colloidal Silver one must always keep in mind, that the sellers will promote their explanations as to why their products are best. In doing so, they may twist the truth to make their products appear to be safe.

One argument our opponents often use to confuse readers is by stating that a TDS Meter is not accurate and that the correct method of measuring the PPM is with an ICP Spectrometer. That is true because chemicals that THEY use can interfere with the accurate PPM count.   The irony of their argument is that they use a TDS Meter themselves on a daily basis to make sure they have the correct PPM reading. 

The ICP Spectrometer is practical for nanoparticle and Ionic Solutions, but it will destroy or change the solution when the test is applied. The ICP Spectrometer analysis is not suited to test the end products PPM Content for every bottle they make; they would have to use the TDS Meter otherwise, they would never be able to ship a single bottle.

Atomic Particles in distilled water is very difficult to test with average Instruments. 

The Atoms first have to be consolidated into larger nanoparticles that can then be calculated. The Plasma Arc ICP Spectrometer is employed for this method. It will convert the Atoms into nanoparticles, and at the same confirm what element is within the solution.

The only way it can work for Atomic Particle solutions is that it will burn the solutions contents and create large nanoparticles that can then be estimated. In the process, much of the solution is dissipated, along with the evaporation, some atomic particles will also disappear into the air along with the evaporated water molecules.  

Therefore, the ICP Spectrometer Test may give you a semi-accurate idea of how many Silver Saturated Water Molecule Clusters can be converted into nanoparticles.

The reason we say "may" is because the test is dependent on how the Plasma Arc that burns the solution and converts the Atomic Particles is applied. 

If the solution gets too hot, it may evaporate everything and render a very low nanoparticle count, or no count at all. If it is slowly heated, then it will render a higher PPM number. 

So, it is important to use a reputable testing facility that is not affiliated with the manufacturing company and is non-prejudiced in their conclusions. 

The typical TDS Meter that every manufacturer uses to test the PPM of their solutions can actually detect Atomic Particle Silver Saturated Water Molecules.

When we say "3000 PPM" it means the TDS Meter has detected 3000 Silver Saturated Water Molecule Clusters. 

Nanoparticle PPM is limited, having a 20 PPM is like having 20 Nanoparticles per millions of parts of the chemical solution.


Competing individuals selling inferior Low PPM products often accused us of just having water, consequently, we contracted the world's largest environmental testing company to convert our atomic particles into nanoparticles and verify that the elements that we use are in the solution as well, via the ICP Plasma ARC Spectrometer Test.  

The following image is a cutout portion of our Certificate of Analysis. (Terms and Conditions do not allow us to display the entire CA since they do not endorse or want to appear as supporting any products).

Cut out of Certificate of Analysis Confirming High PPM
The above Chart may raise more questions like:

1. "Then your product is a Low PPM Product?"

  Answer:  

No, a Plasma Arc ICP Spectrometer was used to convert the atomic particles into nanoparticles, that proves that even though you have a high ppm of atomic particles, the atomic particles when converted do not exceed the commonly accepted RDA (Recommended Daily Allowance) that apply to the nanoparticle or ionic colloids.  

​2. "Then why does your TDS Meter measure in nanoparticles"?

Answer:   


The TDS Meter measures Conductivity as well as PPM of Total Dissolved Solids; it will measure nanoparticles and even Water Molecule Clusters that have atomic or mineral elements that are attached to them. Atoms are much too small to be detected y themselves with a TDS Meter.

As mentioned above: 3000 PPM of our atomic particle colloidal silver would have about 3000 Water Molecule Clusters that have hundreds of thousands if not millions of silver atoms (in overall atomic particle content) attached to them. 


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