Commercial potassium fertilizer utilizes potassium carbonate - no idea what this gluconate compond might do to plants - recommend against it, as this is a human dietary supplement and wasn't tested on plant roots etc.
They are two different substances Potassium Gluconate is an organic salt containing the elements Potassium, hydrogen, carbon, and oxygen. It has the formula KC6H11O7. It is mildly alkaline. It is added to some foods as a potassium supplement and a sequestrant. Potassium iodide is a much simpler inorganic salt of potassium and iodine. It has the formula KI. This salt is neither acidic nor alkaline. Among its many applications it is used as an iodine supplement in iodized salt and can be used to treat thyroid conditions.
The element found in Gatorade and fertilizer is potassium (K). Potassium is an essential nutrient for plant growth, which is why it is included in fertilizers. In Gatorade, potassium is used as an electrolyte to help replenish the body's stores after physical activity.
The compound with the formula K2P04 is potassium phosphate. It is commonly used as a fertilizer and in the food industry as a buffering agent.
potassium is used in fertilizer,gun powder,and in vitaminspotassium is used in fertilizer,gun powder,and in vitaminspotassium is used in fertilizer,gun powder,and in vitamins
Potassium is used by all living things. Plants use potassium as an enzyme to produce proteins and sugars. And, it also uses potassium to control its water content. Without potassium it could not grow.
will potassium gluconate help with spasms
Roughly 4 1/2 potassium gluconate tablets equals 1 banana.
Potassium gluconate is commonly taken as a supplement to help maintain healthy levels of potassium in the body. Potassium is essential for proper nerve and muscle function, as well as for maintaining fluid balance in the body. It may be recommended by healthcare providers for individuals with low levels of potassium due to certain medical conditions or medications.
The three potassium salts used in the potassium compound of the Gerson Therapy are potassium gluconate, potassium acetate, and potassium phosphate. These salts are used to help alkalinize the body and promote healing.
Yes, potassium gluconate can be substituted for potassium chloride as a supplement. Both forms provide potassium, but the gluconate form may be more gentle on the stomach for some individuals. It is important to consult with a healthcare provider before making any changes to your supplement regimen.
The three potassium salts used in the potassium compound for Dr. Gerson's therapy are potassium gluconate, potassium acetate, and potassium phosphate. These salts are part of a specific dietary protocol aimed at promoting health and wellness.
The difference between potassium and potassium glutamate is how they are bound as a chemical. Potassium is bonded with chloride while potassium glutamate is bound with gluconate.
They are two different substances Potassium Gluconate is an organic salt containing the elements Potassium, hydrogen, carbon, and oxygen. It has the formula KC6H11O7. It is mildly alkaline. It is added to some foods as a potassium supplement and a sequestrant. Potassium iodide is a much simpler inorganic salt of potassium and iodine. It has the formula KI. This salt is neither acidic nor alkaline. Among its many applications it is used as an iodine supplement in iodized salt and can be used to treat thyroid conditions.
yes
Yes, potassium nitrate can be used as a fertilizer in agriculture.
In practicality, none. It is fairly simple chemistry. Potassim (K) typically does not just exist naturally as itself. It is usually is bonded with some other elements or substance. In the case of Potassium Pills, it is bonded with chloride and you get KCl. Potassium Gluconate just uses a a gluconate molecule instead of a Cl to bind it to. You may compare this to Na Cl or Sodium Chloride (Table Salt). You never eat sodium alone, it is always in combination with Chloride. The reason in short is that when Potassium is combined with another chemical it becomes charged positive (K+) and this is useful for your body. Any supplement you buy that contains Potassium, whether it be Potassium Gluconate or Potassium Chloride, are most often the same.
EDIT 9/2/2012:Acutally the question is mistaken. There is actually 595mg of potassium gluconate per tablet of which 99mg of that is potassium (the other 496mg is gluconate). Therefore, there is actually 2.54mEq of potassium (K+) per tablet. See below for calculation.99mg K x (1 mmol K/39.1mg K) x (1mEq K/1mmol K) = 2.54mEq K{By plugging in 595mg in the below calculation instead of 99mg you will also come up with 2.54mEq K}Sorry, with all due respect, the previous answer (see below) is mistaken. I've Never bothered write an answer before, but since this is medical and potentially important to someone's health, let me try a brief explanation.A "mEq" or milli-equivalent, refers to how much absolute potassium, measured as moles (avagadro's number of total molecules (atoms in this case), something like 6.022x10^23 potassium ions (or atoms)), is delivered in a given amount or dose. Since potassium will always be delivered as a salt, the amount (mass) of salt required to deliver a mEq of potassium will depend on the other ion in the salt. Potassium chloride is one popular form of potassium, which has a different (much less) weight (mass) than another popular form of potassium, potassium gluconate.The molecular weight of potassium gluconate is reported to be 234.25, meaning a mole (or 6.022x10^23 molecules of potassium gluconate) will weight 234.25g. Each molecular of the salt delivers one molecule of potassium so 234.25g will deliver one molar equivalent of potassium. 234.25 milligrams of potassium gluconate will deliever one milli-equivalent of potassium.SO... 99mg potassium gluconate divided by 234.25mg/mol potassium gluconate = X mEq of potassium gluconate, which equals about 0.423 mEq.Hope this helps, for all my faults of explanation.Previous Answer:[That depends on the concentration strength of the potassium gluconate. Just knowing the mass of the drug is not enough information to determine the mEq strength. We must also know the volume and contents of diluent as well.]