Magnesium Acetate CAS 142-72-3


Free Sample Magnesium Acetate CAS 142-72-3
- Appearance:Powder
- Purity:99.8%
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Name: Magnesium Acetate
CAS: 142-72-3
MOQ: 1KG
Directory Guidance on Magnesium Acetate
Chemical Structure
Basic Info:
Melting point | 72-75 °C(lit.) |
density | 1.5000 |
refractive index | n20/D 1.358 |
solubility | H2O: 1 M at 20 °C, clear, colorless |
pka | 4.756[at 20 ℃] |
form | Liquid |
Product Introduction:
Magnesium Acetate is a common inorganic compound with the chemical formula Mg(CH₃COO)₂. It usually exists in the form of tetrahydrate. It is a colorless or white crystal belonging to the monoclinic system. It is deliquescent and easily soluble in water and alcohol solvents.
The preparation method of Magnesium Acetate is relatively simple. It is usually obtained by reacting acetic acid with magnesium oxide or magnesium hydroxide. acetic acid reacts with magnesium oxide to produce the product and water. The chemical equation is 2CH₃COOH+MgO→Mg(CH₃COO)₂+H₂O. In addition, Magnesium Acetate exhibits certain chemical properties in chemical reactions. It can react with strong oxidants, is easily deliquescent in humid air, is easily weathered in sulfuric acid desiccators, and dehydrates when heated to 100°C.
Magnesium Acetate has a variety of uses in industry and laboratories. Because its aqueous solution is weakly alkaline and has good solubility, it is often used as a buffer, precipitant or catalyst. In addition, it can also be used to prepare other magnesium salts or intermediates in organic synthesis. In analytical chemistry, it can also be used as a standard reagent for titration analysis or preparation of buffer solutions. However, it has certain hazards to the environment, is harmful to the body after inhalation, ingestion or absorption through the skin, and has an irritating effect on the eyes, skin and mucous membranes. Safety protection should be taken when using it.
Nature and Specifications:
Item | Specification |
Product Name | Magnesium Acetate |
CAS No. | 142-72-3 |
Appearance | Powder |
Shelf Life | 2 years |
Packing | As your requirements |
color | white orthorhombic/monoclinic crystals, crystalline |
PH | 7.95(1 mM solution);8.23(10 mM solution);8.41(100 mM solution);8.78(1000 mM solution) |
Water Solubility | Not miscible or difficult to mix with water. |
λmax | λ: 260 nm Amax: 0.04 λ: 280 nm Amax: 0.02 |
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- Nuclear Magnetic Resonance (NMR)
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Magnesium Acetate can serve as both a precipitant and Lewis acid catalyst, effectively purifying certain metal ions from solution. As a Lewis acid catalyst, Magnesium Acetate can also complex with oxygen atoms in carbonyl compounds to activate carbonyl groups’ reactivity as well as promote nucleophilic addition reactions. Analytically speaking, Magnesium Acetate can also be used as standard solutions for titration analysis as well as buffer solutions that regulate pH.
Magnesium Acetate has found wide use in pharmaceutical research. It can serve as an intermediate in synthesizing certain drug ingredients; such as antibiotics, anti-inflammatory or cardiovascular medicines synthesis. As part of these reactions it may act as either catalyst or reactant; additionally it’s used to produce magnesium uranyl acetate which is an indicator for sodium determination; biomedical research can use magnesium Acetate to study disease mechanisms or as an integral component in drug carriers.
Magnesium Acetate has found wide application in industry. As an organic synthesis catalyst, it helps accelerate and optimize reaction efficiency; while in water treatment industries it serves as a flocculant to remove suspended particles in water for improved quality; while textile industries use Magnesium Acetate to adjust softness of fibers or improve fabric performance. Due to its biodegradability, Magnesium Acetate’s environmental benefits have increasingly come under consideration; Due its biodegradability has gradually drawn attention for environmental benefits also increasing. – making an environmental benefits thus becoming an eco- so therefore becoming an environmentally safe due its environmental-green.
Magnesium Acetate can have multiple applications in agriculture and food industries. Magnesium Acetate may be used as a fertilizer additive, providing magnesium for plant growth. Meanwhile, food industries often employ it as an acid buffer or pH adjuster in order to preserve taste and stability of foodstuffs. Furthermore, Magnesium Acetate may be utilized to create nano magnesium oxide which has potential application value for packaging and preservation of foods.
Magnesium Acetate boasts excellent biodegradability and low environmental impacts, making it a preferred solution in industries with stringent environmental protection requirements. However, due to certain toxicity issues it should still be used with caution and stored and transported separately from other chemicals for safe storage and transport. However, to prevent irritation of eyes, skin, mucous membranes or stomach pain from ingestion. For proper storage and transportation practices it should also be secured so as to not come in contact with humid air during storage and transportation processes and stored separately from other chemicals.
Magnesium Acetate has good chemical stability, is not easy to decompose, and is not easy to react violently with other substances. This stability makes Magnesium Acetate safer and more reliable during storage and transportation, reducing operational risks. At the same time, it has low toxicity and less harm to the environment and human body, which meets the environmental protection and safety requirements of the modern chemical industry.
Magnesium Acetate has excellent solubility. It is very soluble in water and alcohol organic solvents, and its solubility in water at room temperature can reach 53.4 g/100 mL. This excellent solubility enables it to participate in the reaction quickly and evenly in chemical reactions, improves the reaction efficiency and product purity, and is particularly suitable for industrial processes that require rapid dissolution and reaction. In addition, its solubility also makes it more convenient to prepare solutions or buffers.
Magnesium Acetate also has significant catalytic activity. As a Lewis acid catalyst, it can complex with oxygen atoms in carbonyl compounds, thereby activating the reactivity of carbonyl groups and promoting the occurrence of nucleophilic addition reactions. This property makes it show excellent catalytic performance in organic synthesis, which can improve the selectivity and yield of the reaction and is widely used in the fields of pharmaceuticals and organic synthesis.
In terms of environmental protection, Magnesium Acetate has good biodegradability and environmental friendliness. With the enhancement of environmental awareness, it has gradually become a substitute for traditional chemical reagents. In the fields of water treatment, pharmaceuticals and food additives, its application not only reduces pollution to the environment, but also meets the requirements of sustainable development. This environmental protection characteristic makes it more competitive in modern industry.
The application range of Magnesium Acetate is very wide, covering chemical reagents, pharmaceuticals, food additives, agriculture, water treatment and other fields. In chemical reagents, it can be used as a precipitant, buffer and catalyst; in the pharmaceutical field, it participates in drug synthesis as an intermediate; in the food industry, it can be used to adjust pH or as a buffer. This diversified application characteristic has led to an increasing market demand.
Its preparation method is relatively simple, low cost, and easy to obtain raw materials. For example, Magnesium Acetate can be prepared by the reaction of magnesium with acetic acid, and the reaction conditions are mild, without the need for complex equipment and expensive reagents. This economic efficiency gives it a significant advantage in large-scale industrial applications, and can effectively reduce production costs and improve economic benefits.
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Related References:
chemicalbook-Magnesium Acetate
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