We are pleased to be able to offer the genuine pink Himalayan Crystal Salt from the Khewra mine in Pakistan. Click here or here for more information on this mine. We import the salt by the container load directly from the producer in Pakistan.
We offer the salt as fine and coarse (3-5mm) in 950g, 4.5kg and 25kg and nuggets in 950g (25-50mm) and 4.5kg (50-75mm).
The crystal salt is very easy to use - just add nuggets to a jar of good quality water
and leave until a saturated solution is achieved. If more crystals are added than are required they stay
undisolved until the solution is weaker than saturated. As the solution is used just add more water to the jar.
Take one teaspoon daily, usually first thing in the morning on an empty stomach.
You may prefer to have it straight or it may suit you to add it to a glass of water.
This amount should provide you with all the minerals your body needs for the day.
Otherwise you can use the fine and add directly to your cooking and food or you can use the coarse salt (3-5mm) with a grinder.
Some information provided to us follows:
'Life - physical, material, biological - has developed itself during billions of years in and out of the so-called
primeval sea. Up to this moment water, salt and oxygen are necessary requirements for the creation of organic life.
Crystalline rock salt from the Himalayas originated from the evaporation of the primeval sea during hundreds of
millions of years. The solar energy, required to achieve this was trapped in every atom of the salt crystals as
so-called bio-photons. Apart from this energy every mineral of this earth is present in this crystalline salt
in quantities that would correspond with the quantities of these minerals in our cell structures, if we would feed
ourselves in the ideal way. These minerals are so small, that they can be taken in by our body on the cellular level:
they are 'organic'. When dissolved in water, they become available to us, together with the trapped solar energy.
By taking in a very small amount of this solution (sole) per day, the original water and mineral content of the
cells is restored in our bodies: the cells can at last function as they should and did before man deviated from
the natural path. By taking the salt-solution our body can clean itself thoroughly, our cells are restored,
all processes of life in our bodies are harmonised, regulated and strengthened: many so-called 'modern'
diseases may disappear in time and therefore we may become more vital and a lot healthier.
Refined salts - and this includes the sea-salts - do not contribute in a positive way whatsoever to our functioning:
due to refining processes the size of the salt particles has become too big to be taken in by our cells. This is also
the case with sea-salts and the ordinary rock salt (also available from the Himalayas). The reason salt is being refined
to such extent, by the way, is that the chemical industry needs enormous amounts of pure salt, i.e. Sodium Chloride (NaCI).
Our 'kitchen-salt' is a by-product of this industrial salt. However, the body classifies this salt as poison - not natural
- and will do all it can to get rid of it. Our kidneys, which are responsible for this process, unfortunately can only
filter about 7 grams of pure salt a day: the excess of salt we take attracts water and is being deposited in
muscle-tissues, on the bones and in the joints, causing apart from other problems, arthritis and rheumatism.
In the Himalayas very specific Conditions - high geo-tectonic pressure - have transformed 0.1 % of the rock salt
into Crystalline rock salt. Due to gigantic pressures this salt has gained its absolutely unique structure: the
minerals have become organic, meaning they are completely available to our body cells. This is the reason why
Crystalline rock salt from the Himalayas is such a venerable food, as well from the viewpoint of energy as of
mineral contents. Dissolved in water one may truly speak of: Salt and Water: Source of Life
- Crystalline rock salt from the Himalayas is at least 250 million years old.
- Crystalline rock salt from the Himalayas contains all minerals we need for our life processes.
- Crystalline rock salt from the Himalayas is completely absorbed in our body cells due to the unique structure of
its crystals, originated by the very specific geo-tectonic processes in the Himalayan region.
- Crystalline rock salt from the Himalayas does not burden our body as other salts do. On the contrary: it supplies
us with truly ancient energy and regenerates our body on all levels.'
Certificate of the Analysis of Himalayan
Crystal Mineral Rock Salt |
From the book, Water & Salt, The Essence of Life |
by Dr. Barbara Hendel MD and Peter Ferreira |
| Element | Order | Num. | Results | Analysis Type |
| Hydrogen | H | 1 | 0.30g/kg | DIN |
| Lithium | Li | 3 | 0.40g/kg | AAS |
| Beryllium | Be | 4 | <0.01ppm | AAS |
| Boron | B | 5 | <0.001ppm | FSK |
| Carbon | C | 6 | <0.001ppm | FSK |
| Nitrogen | N | 7 | 0.024ppm | ICG |
| Oxygen | O | 8 | 1.20g/kg | DIN |
| Flouride | F- | 9 | <0.1g/kg | Potentiometer |
| Sodium | Na+ | 11 | 382.61g/kg | FSM |
| Magnesium | Mg | 12 | 0.16g/kg | AAS |
| Aluminum | Al | 13 | 0.661ppm | AAS |
| Silicon | Si | 14 | <0.1g/kg | AAS |
| Phosphorus | P | 15 | <0.10ppm | ICG |
| Sulfur | S | 16 | 12.4g/kg | TXRF |
| Chloride | Cl- | 17 | 590.93g/kg | gravimetrie |
| Potassium | K+ | 19 | 3.5g/kg | FSM |
| Calcium | Ca | 20 | 4.05g/kg | Titration |
| Scandium | Sc | 21 | <0.0001ppm | FSK |
| Titanium | Ti | 22 | <0.001ppm | FSK |
| Vanadium | V | 23 | 0.06ppm | AAS |
| Chromium | Cr | 24 | 0.05ppm | AAS |
| Manganese | Mn | 25 | 0.27ppm | AAS |
| Iron | Fe | 26 | 38.9ppm | AAS |
| Cobalt | Co | 27 | 0.60ppm | AAS |
| Nickel | Ni | 28 | 0.13ppm | AAS |
| Copper | Cu | 29 | 0.56ppm | AAS |
| Zinc | Zn | 30 | 2.38ppm | AAS |
| Gallium | Ga | 31 | <0.001ppm | FSK |
| Germanium | Ge | 32 | <0.001ppm | FSK |
| Arsenic | As | 33 | <0.01ppm | AAS |
| Selenium | Se | 34 | 0.05ppm | AAS |
| Bromine | Br | 35 | 2.1ppm | TXRF |
| Rubidium | Rb | 37 | 0.04ppm | AAS |
| Strontium | Sr | 38 | 0.014g/kg | AAS |
| Ytterbium | Y | 39 | <0.001ppm | FSK |
| Zirconium | Zr | 40 | <0.001ppm | FSK |
| Niobium | Nb | 41 | <0.001ppm | FSK |
| Molybdenum | Mo | 42 | 0.01ppm | AAS |
| Technetium | Tc | 43 | unstable | artificial isotope - not included |
| Ruthenium | Ru | 44 | <0.001ppm | FSK |
| Rhodium | Rh | 45 | <0.001ppm | FSK |
| Palladium | Pd | 46 | <0.001ppm | FSK |
| Silver | Ag | 47 | 0.031ppm | AAS |
| Cadmium | Cd | 48 | <0.01ppm | AAS |
| Indium | In | 49 | <0.001ppm | FSK |
| Tin | Sn | 50 | <0.01ppm | AAS |
| Antimony | Sb | 51 | <0.01ppm | AAS |
| Tellurium | Te | 52 | <0.001ppm | FSK |
| Iodine | I | 53 | <0.1g/kg | potentiometrie |
| Cesium | Cs | 55 | <0.001ppm | FSK |
| Barium | Ba | 56 | 1.96ppm | AAS/TXR |
| Lanthan | La | 57 | <0.001ppm | FSK |
| Cerium | Ce | 58 | <0.001ppm | FSK |
| Praseodynium | Pr | 59 | <0.001ppm | FSK |
| Neodymium | Nd | 60 | <0.001ppm | FSK |
| Promethium | Pm | 61 | unstable | artificial isotope - not included |
| Samarium | Sm | 62 | <0.001ppm | FSK |
| Europium | Eu | 63 | <3.0ppm | TXRF |
| Gadolinium | Gd | 64 | <0.001ppm | FSK |
| Terbium | Tb | 65 | <0.001ppm | FSK |
| Dysprosium | Dy | 66 | <4.0ppm | TXRF |
| Holmium | Ho | 67 | <0.001ppm | FSK |
| Erbium | Er | 68 | <0.001ppm | FSK |
| Thulium | Tm | 69 | <0.001ppm | FSK |
| Ytterbium | Yb | 70 | <0.001ppm | FSK |
| Lutetium | Lu | 71 | <0.001ppm | FSK |
| Hafnium | Hf | 72 | <0.001ppm | FSK |
| Tantalum | Ta | 73 | 1.1ppm | TXRF |
| Wolfram | W | 74 | <0.001ppm | FSK |
| Rhenium | Re | 75 | <2.5ppm | TXRF |
| Osmium | Os | 76 | <0.001ppm | FSK |
| Iridium | Ir | 77 | <2.0ppm | TXRF |
| Platinum | Pt | 78 | 0.47ppm | TXRF |
| Gold | Au | 79 | <1.0ppm | TXRF |
| Mercury | Hg | 80 | <0.03ppm | AAS |
| Thallium | Ti | 81 | 0.06ppm | AAS |
| Lead | Pb | 82 | 0.10ppm | AAS |
| Bismuth | Bi | 83 | <0.10ppm | AAS |
| Polonium | Po | 84 | <0.001ppm | FSK |
| Astat | At | 85 | <0.001ppm | FSK |
| Francium | Fr | 87 | <1.0ppm | TXRF |
| Radium | Ra | 88 | <0.001ppm | FSK |
| Actinium | Ac | 89 | <0.001ppm | FSK |
| Thorium | Th | 90 | <0.001ppm | FSK |
| Protactinium | Pa | 91 | <0.001ppm | FSK |
| Uranium | U | 92 | <0.001ppm | FSK |
| Neptunium | Np | 93 | <0.001ppm | FSK |
| Plutonium | Pu | 94 | <0.001ppm | FSK |
Additional Combined Elements
| Water | H2O | | 1.5g/kg | DIN |
| Ammonium | NH4+ | | 0.010ppm | Photometrie |
| Nitrate | NO3- | | 0.09ppm | Photometrie |
| Phosphate | PO43- | | <0.10ppm | ICG |
| Hydrogencarbonate | HCO3- | | <1.0g/kg | Titration |
The inert gasses Helium-He-2, Neon-Ne-10, Argon-Ar-18, Krypton-Kr-36,
Xenon-Xe-54, and Radon-Rn-86 could not be included in the research.
Many of the elements could not be proven with conventional chemical
analysis. Through the transfer of frequency patterns by means of wave
transference, it was possible to prove the frequency pattern with the aid of
frequency spectroscopy. With this, the dectection of elements even smaller
than <0.001 ppm was proven.
The research analysis confirmed the holistic properties of the original
Himalayan crystal salt. The sodium chloride content is 97.41%
and meets the worldwide necessary standards for table salt.
| g/kg | Grams per kilogram |
| DIN | German Standards Institute |
| ICG | Ionchromatography |
| AAS | Atom absorbtion spectrometry |
| TXRF | Total reflection -X-Ray -Floresence-Spectometry |
| ppm | Parts per million |
| FSM | Flamespectrometry |
| FSK | Frequency Spectroscopy |
|