Magnesium Acetate Tetrahydrate CAS 16674-78-5


Free Sample Magnesium Acetate Tetrahydrate CAS 16674-78-5
- Appearance:Powder
- Purity:99.8%
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Name: Magnesium Acetate Tetrahydrate
CAS: 16674-78-5
MOQ: 1KG
Directory Guidance on Magnesium Acetate Tetrahydrate
Chemical Structure
Basic Info:
Melting point | 72-75 °C(lit.) |
bulk density | 510kg/m3 |
density | 1.454 |
refractive index | n20/D 1.358 |
storage temp. | Store at +15°C to +25°C. |
solubility | H2O: 1 M at 20 °C, clear, colorless |
Product Introduction:
Magnesium Acetate Tetrahydrate (chemical formula: Mg(CH₃COO)₂·4H₂O) is an important inorganic compound with unique chemical properties and wide industrial applications. It usually appears as colorless monoclinic crystals, similar in appearance to transparent sugar particles, and has the characteristic of being easily deliquescent, that is, it absorbs moisture in humid air. Its density is 1.454 g/cm³, and it is easily soluble in water and ethanol, and its aqueous solution is neutral or weakly acidic. Magnesium Acetate Tetrahydrate dissolves in crystallization water at 80°C and is easily weathered in a concentrated sulfuric acid dryer. These properties give it unique advantages in chemical experiments and industrial production.
Magnesium Acetate Tetrahydrate can be prepared by various methods, and common processes include direct method, double decomposition method and precipitation method. The direct method is to mix magnesium oxide with water into a slurry, react with glacial acetic acid, and obtain the product by crystallization after removing impurities through filter pressing. The double decomposition method uses acetic acid and alkali metal acetate as raw materials and is prepared by double decomposition reaction. The precipitation method is to use acetic acid and alkali metal acetate to react to generate a precipitate, and then separate and dry to obtain the product. These methods have their own advantages and disadvantages. For example, the direct method is simple, but has high requirements for raw material purity; the double decomposition method and precipitation method are more suitable for large-scale production, but require more complex process control.
In the pharmaceutical field, Magnesium Acetate Tetrahydrate can be used as a drug carrier and sustained-release agent to help drugs work better. It is also used to prepare magnesium uranyl acetate for the determination of sodium content. In light industry, Magnesium Acetate Tetrahydrate can be used in cosmetics, detergents and textile dyeing. For example, as an additive in cosmetics, it can improve the stability and feel of the product.
With the increase of environmental awareness, the application of Magnesium Acetate Tetrahydrate in the field of environmental protection has gradually attracted attention. It is used to treat industrial wastewater and waste gas, and can effectively remove heavy metal ions and meet environmental emission standards. It can also be used as a fertilizer additive in agriculture to improve crop yields and soil quality. In the field of new energy, it is also used in the preparation of materials for lithium-ion batteries and solar cells, showing good application prospects.
Nature and Specifications:
Item | Specification |
Product Name | Magnesium Acetate Tetrahydrate |
CAS No. | 16674-78-5 |
Appearance | Powder |
Shelf Life | 2 years |
Packing | As your requirements |
form | lyophilized powder |
color | White |
Specific Gravity | 1.454 |
Odor | Acetic odour |
PH | 6.1 (50g/l, H2O, 20℃) |
PH Range | 7 – 9 |
Product service:
- Certificate Of Analysis (COA)
- Material Safety Data Sheet (MSDS)
- Route of synthesis (ROS)
- Method of Aanlysis (MOA)
- Nuclear Magnetic Resonance (NMR)
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- Factory audit
Magnesium Acetate Tetrahydrate has become an invaluable asset to the field of medicine. Primarily utilized as a drug carrier and sustained-release agent, Magnesium Acetate Tetrahydrate serves to better disperse and release drugs for greater bioavailability, such as antispasmodic medicines or gastric medicine preparations; for example when used in gastric preparations. Due to its superior solubility and stability, Magnesium Acetate Tetrahydrate often enhances taste absorption effects as well as relieving gastric acid while supporting research & development and production industries alike.
Magnesium Acetate Tetrahydrate plays a central role in light industry. Its usage spans across cosmetics, detergents and textile dyeing applications – providing cosmetic companies with an added ingredient that improves product stability, feel and moisturizing and nourishing effects; softeners/stabilizers used in detergents improve washing effect while making clothes cleaner; while its application as dyeing auxiliary or fixative can boost dyeing effect and color stability for textile dyeing processes providing further support to this form of light industry growth.
Magnesium Acetate Tetrahydrate’s role in environmental protection has also gained much acclaim, playing an instrumental part in treating industrial wastewater and waste gas as well as in the removal of heavy metal ions from wastewater through precipitants such as lead and cadmium removal, thus meeting environmental protection emission standards. Furthermore, Magnesium Acetate Tetrahydrate may be employed as an integral component of desulfurizer or denitrifier systems to help lower emissions of harmful gases and make significant contributions towards environmental preservation.
Magnesium Acetate Tetrahydrate also plays an integral part in agriculture, serving as a fertilizer additive that increases crop yields by over 10% while improving soil quality and pH regulation – providing strong support for sustainable agriculture development. Studies have proven this. In addition, Magnesium Acetate Tetrahydrate can also be used as soil improvement material by controlling pH and increasing plant nutrient absorption, giving additional support to sustainable development of agriculture.
Magnesium Acetate Tetrahydrate has received growing recognition within the new energy sector, due to its wide array of uses in lithium-ion battery manufacturing and solar cell material preparation processes. Magnesium Acetate Tetrahydrate serves as an electrolyte additive which improves both energy density and cycle life of these batteries; one lithium battery manufacturer reported significant performance gains after adding this product. Furthermore, this material serves as a catalyst or stabilizer to promote development within new energy industries as well as providing ideas and methods for future energy transformation projects.
Magnesium Acetate Tetrahydrate (Mg(CH3COO)2*4H2O) is an inorganic compound with numerous advantages, and one of them is environmental friendliness – one reason it has become popular as an application. Green chemical products are non-toxic and environmentally-friendly solutions with no negative repercussions, leaving no detrimental effect on the earth.
Magnesium Acetate Tetrahydrate’s water solubility and chemical stability make it suitable for many fields, as it quickly dissipates in liquid environments to form stable solutions, making it well suited to industries like chemical, pharmaceutical and agricultural production. Magnesium Acetate Tetrahydrate has long been used as a drug carrier and sustained-release agent, to enhance drug dissolution and release more evenly, thus increasing bioavailability and thus increasing efficacy as well as patient experience with medication. Furthermore, Magnesium Acetate Tetrahydrate’s presence as a fertilizer additive improves crop nutrient absorption rates while stimulating plant growth for increased crop yield and quality.
Magnesium Acetate Tetrahydrate stands out as a cost-effective product, due to its easy preparation process and wide availability of readily-available raw materials at an economical cost. Common magnesium carbonate, chloride and oxide can all be used as synthetic raw materials, making production costs even lower; additionally, energy-saving production techniques reduce overall costs even further – giving an edge against market competition for this marketable chemical solution. As a result of its cost effectiveness and economy of production processes used by industry producers across chemical and pharmaceutical fields. Magnesium Acetate Tetrahydrate production has become widely adopted industrial production sectors across these fields over recent years – especially chemical and pharmaceutical production facilities.
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