Inorganic Salts    
 
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Inorganic Salts CAS Diretory

Inorganic Salts

Inorganic Salts, derived from inorganic compounds, constitute essential mineral nutrients present within both the human body and food sources. These salts primarily manifest as ions within cellular structures, comprising a combination of organic and inorganic substances. In the context of biological cells, they typically represent a modest fraction, ranging from 1% to 1.5% of the cell's natural state by weight.

Notably, over 20 distinct types of inorganic salts have been identified within the human body, with a significant proportion composed of elements such as calcium, phosphorus, potassium, sulfur, sodium, magnesium, chlorine, as well as trace elements like iron, zinc, and iodine.

Roles of Inorganic Salts 

Inorganic Salts play multifaceted roles in various biological processes. They serve as vital structural components within cells and are integral elements of complex compounds found within cellular structures. 

Additionally, Inorganic Salts actively participate in and uphold the metabolic activities of organisms, ensuring the smooth functioning of essential biochemical reactions. These salts contribute significantly to the maintenance of the delicate acid-base balance within organisms, facilitating the optimal pH conditions necessary for cellular processes.

Furthermore, they play a pivotal role in regulating cell osmotic pressure, with particular importance in facilitating nutrient absorption in plants, where they enhance the uptake of essential nutrients.

Attention for Production of Inorganic Salts Products

Safety precautions are paramount in the production of Inorganic Salts, as some of the raw materials and intermediates involved can pose significant hazards. Compounds like sulfuric acid and hydrochloric acid are potent and corrosive acids, while carbon monoxide, sulfur dioxide, and chlorine are toxic and potentially explosive substances. Hydrocyanic acid, on the other hand, is a highly toxic gas.

Furthermore, certain Inorganic Salts exhibit strong corrosive, irritating, and toxic properties, examples being hydrogen peroxide, chlorosulfonic acid, and hexavalent chromium salts. Additionally, a number of Inorganic Salts are susceptible to combustion and explosions, such as potassium chlorate, which can ignite or explode upon contact with strong acids.

To mitigate these risks, stringent safety measures must be implemented throughout the production process. This includes a thorough understanding of the protective measures required for handling raw materials and intermediates. Strict adherence to relevant safety regulations is imperative when working with Inorganic Salts, ensuring the well-being of personnel and the integrity of the production process.

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2000compouds
α-Lipoic Acid
α-Lipoic Acid CAS:1077-28-7 MF:C8H14O2S2
α-Lipoic Acid, also known as thioctic acid, is a naturally occurring compound with the molecular formula C8H14O2S2. It is a sulfur-containing compound that appears as a yellow crystalline powder. α-Lipoic Acid has a characteristic odor. It is soluble in both water and organic solvents. Safety info..
Calcium phosphate
Calcium phosphate CAS:7758-87-4 MF:Ca3(PO4)2
White or almost white powder. Tricalcium phosphate is white solid, insoluble in water; reactive with silicon oxide and carbon at electric furnace temperature yielding phosphorus vapor; reactive with H2SO4 to form, according to the proportions used, phosphoric acid, or dicalcium hydrogen phosphate, C..
Magnesium chloride
Magnesium chloride CAS:7786-30-3 MF:Cl2Mg
Magnesium is an essential nutrient for plants and animals and is a natural constituent of fruits, vegetables, grain, meats and sea-foods. It is the fourth most abundant cation in the human body and the second most plentiful intracellularly. The average 60-kg human adult body contains about 24 g magn..
D(+)-Glucose
D(+)-Glucose CAS:50-99-7 MF:C6H12O6
Dextrose, a simple sugar (monosaccharide), is an important carbohydrate in biology.Target: OthersDextrose(D-glucose), a simple sugar (monosaccharide), is an important carbohydrate in biology.
L(+)-Tartaric acid
L(+)-Tartaric acid CAS:87-69-4 MF:C4H6O6
L(+)-Tartaric acid (CAS 87-69-4) is a white crystalline powder commonly used in various industries. It has a basic structure consisting of tartaric acid molecules, which are organic compounds with carboxylic acid groups. This chemical is highly soluble in water, resulting in a clear solution. It has..
Potassium bromide
Potassium bromide CAS:7758-02-3 MF:BrK
Potassium bromide, with the chemical formula KBr, has the CAS number 7758-02-3. It appears as a white crystalline powder with no odor. The basic structure of potassium bromide consists of a potassium ion (K+) and a bromide ion (Br-) held together by ionic bonds. This compound is highly soluble in wa..
Graphite
Graphite CAS:7782-42-5 MF:C
soft dark grey solid Graphite is crystallized carbon and usuallyappears as soft, black scales. There are two types of graph ite, natural and artificial (activated). Natural and syntheticgraphite may be mixed with each other or contain otheradditives.
Aluminum fluoride
Aluminum fluoride CAS:7784-18-1 MF:AlF3
Aluminum fluoride is a white, odorless powder or granule. Aluminum fluoride, AlF3, is an anhydrous crystalline powder with a melting point of 1291 "C. Aluminum fluoride (hydrated), AlF3·31/2H20, is a white crystalline powder that is insoluble in water.
Manganese sulfate monohydrate
Manganese sulfate monohydrate CAS:10034-96-5 MF:H2MnO5S
PINK HYGROSCOPIC CRYSTALS. Manganese(ii) sulfate monohydrate appears as odorless pale red slightly efflorescent crystals or light pink powder. pH (5% solution) 3.7. (NTP, 1992)|PINK HYGROSCOPIC CRYSTALS. Manganese(ii) sulfate monohydrate appears as odorless pale red slightly efflorescent crystals or..
Barium chloride dihydrate
Barium chloride dihydrate CAS:10326-27-9 MF:BaCl2H4O2
Barium chloride dihydrate, with the chemical formula BaCl2·2H2O, has the CAS number 10326-27-9. It appears as a white crystalline solid with no odor. The basic structure of barium chloride dihydrate consists of one barium atom, two chlorine atoms, and two water molecules. This compound is highly sol..
Barium chloride
Barium chloride CAS:10361-37-2 MF:BaCl2
Barium chloride, with the chemical formula BaCl2, has the CAS number 10361-37-2. It appears as a white crystalline solid with no odor. The basic structure of barium chloride consists of one barium atom bonded to two chlorine atoms. This compound is highly soluble in water. Barium chloride is conside..
Potassium carbonate
Potassium carbonate CAS:584-08-7 MF:CK2O3
It belongs to monoclinic, and is white powder or granular crystal. It is easily soluble in water but insoluble in alcohol and ether. Potassium carbonate, potash, pearl ash, K2CO3, white solid, soluble, formed (1) in the ash when plant materials are burned, (2) by reaction of potassium hydroxide solu..
Sodium fluorosilicate
Sodium fluorosilicate CAS:16893-85-9 MF:F6Na2Si
It appears as colorless hexagonal crystals. It is odorless and tasteless. It has hygroscopicity. It can be dissolved in a solvent such as ethyl ether but insoluble in alcohol with its solubility in acid is being greater than in the water. white powder Sodium hexafluorosilicate is a white crystalline..
Ammonium thiocyanate
Ammonium thiocyanate CAS:1762-95-4 MF:CH4N2S
Ammonium thiocyanate, with the chemical formula NH4SCN, has the CAS number 1762-95-4. It appears as a colorless crystalline solid with a faint odor. The basic structure of ammonium thiocyanate consists of an ammonium ion (NH4+) and a thiocyanate ion (SCN-) bonded together. This compound is highly so..
Zoledronic acid
Zoledronic acid CAS:118072-93-8 MF:C5H10N2O7P2
Zoledronic acid, with the chemical formula C5H10N2O7P2, has the CAS number 118072-93-8. It is a bisphosphonate drug that is used to treat high blood calcium levels caused by cancer. Zoledronic acid appears as a white crystalline powder. It is odorless and has a molecular weight of 272.09 g/mol. This..
Talc
Talc CAS:14807-96-6 MF:3MgO.4O2Si.H2O
Talc, with the chemical formula Mg3Si4O10(OH)2, has the CAS number 14807-96-6. It is a mineral composed primarily of magnesium, silicon, and oxygen. Talc appears as a white, gray, or pale green solid with a characteristic greasy or soapy feel. It does not have a distinct odor. The basic structure of..
Zinc phosphate
Zinc phosphate CAS:7779-90-0 MF:O8P2Zn3
Zinc phosphate, with the chemical formula Zn3(PO4)2, has the CAS number 7779-90-0. It appears as a white powder with no odor. The basic structure of zinc phosphate consists of three zinc atoms bonded to two phosphate groups. This compound is insoluble in water. Zinc phosphate is considered to be non..
Potassium pyrophosphate
Potassium pyrophosphate CAS:7320-34-5 MF:K4O7P2
Potassium pyrophosphate, with the chemical formula K4P2O7, has the CAS number 7320-34-5. It appears as a white crystalline powder with no odor. The basic structure of potassium pyrophosphate consists of four potassium ions and two pyrophosphate ions. This compound is highly soluble in water. Potassi..
Aluminum chloride
Aluminum chloride CAS:7446-70-0 MF:AlCl3
Aluminum chloride is a noncombustible but highly reactive whitish-gray, yellow, or green powder or liquid. Strong, acidic, irritating odor like hydrochloric acid.The vapor consists of double molecules Al2Cl6 . Soluble in water.
Sodium hypochlorite
Sodium hypochlorite CAS:7681-52-9 MF:ClNaO
Sodium hypochlorite, NaOCl, is an air-unstable,pale green crystalline solid that is soluble in cold water, decomposes in hot water, and has a sweet aroma. It generally is available in one of two strengths. The household liquid bleach contains about 5.25 wt% NaCIO. The commercial product(sometimes ca..
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