Magnesium 3-carboxy-3-hydroxypentanedioate | CAS No. 144-23-0

Magnesium 3-carboxy-3-hydroxypentanedioate

Basic Information

CAS Number

144-23-0

Molecular Formula

C6H6MgO7

Molecular Weight

214.41 g/mol

AD

Basic Physical Properties

Boiling Point

309.6°Cat760mmHg

Flash Point

155.2°C

C(C(=O)[O-])C(CC(=O)[O-])(C(=O)O)O.[Mg+2]

InChI

InChI=1S/C6H8O7.Mg/c7-3(8)1-6(13,5(11)12)2-4(9)10;/h13H,1-2H2,(H,7,8)(H,9,10)(H,11,12);/q;+2/p-2

InChIKey

DIXGJWCZQHXZNR-UHFFFAOYSA-L

LogP

-1.40270

Complexity

216

Safety Information

View Safety Information

Hazard Statement

H315 Causes skin irritation
Skin corrosion/irritation
H319 Causes serious eye irritation
Serious eye damage/eye irritation
H335 May cause respiratory irritation
Specific target organ toxicity, single exposure; Respiratory tract irritation

Synonyms & References

English

  • 144-23-0
  • magnesium 3-carboxy-3-hydroxypentanedioate
  • Citronema
  • Magnesium citrate, dibasic
  • Acid magnesium citrate
  • E345
  • DTXSID301014966
  • magnesium hydrogen citrate
  • CHEBI:131389
  • 7779-25-1
  • CMX69F3697
  • UNII-CMX69F3697
  • Magnesium citrate dibasic
  • Q45044
  • Epimag
  • Citric acid, magnesium salt (1:1)
  • Citric acid magnesium salt
  • CS-0446688
  • Citresia
  • magnesium;3-carboxy-3-hydroxypentanedioate
  • magnesium hydrogencitrate
  • Citroma
  • magnesium citrate
  • magnesium 3-carboxy-3-hydroxy-pentanedioate
  • magnesium 3-carboxy-3-hydroxy-glutarate
  • MAGNESIUM CITRATE ANHYDROUS
  • Magnesium citrate dibasic, anhydrous
  • CitricAcid,MagnesiumSalt,Dibasic
  • MagnesiuM Citrate 5H2O
  • Magnesium citrate tetradecahydrate
  • MAGNESIUM CITRATE DIBASIC

MDL Number

MFCD12406945

Customs Code

2918150000

FAQ

What regulatory guidelines apply to Magnesium 3-carboxy-3-hydroxypentanedioate (CAS: 144-23-0)?

Magnesium 3-carboxy-3-hydroxypentanedioate (CAS: 144-23-0) is subject to various regulatory guidelines. In the European Union, it falls under the REACH regulations, which require registration and evaluation of chemical substances. The United States Environmental Protection Agency (EPA) and the Food and Drug Administration (FDA) also have specific guidelines related to the handling, storage, and use of this compound in industrial and pharmaceutical applications. Additionally, it must comply with the Globally Harmonized System of Classification and Labelling of Chemicals (GHS) for proper hazard communication and labeling.

Are there alternatives to Magnesium 3-carboxy-3-hydroxypentanedioate (CAS: 144-23-0) in synthesis?

In many cases, Magnesium 3-carboxy-3-hydroxypentanedioate (CAS: 144-23-0) can be synthesized using alternative reagents such as magnesium acetate or magnesium chloride. These alternatives can be used as effective substitutes depending on the specific reaction conditions and desired products. However, the choice of reagent often depends on the cost, availability, and the particular chemical properties required for the synthesis.

What is the market or research trend for Magnesium 3-carboxy-3-hydroxypentanedioate (CAS: 144-23-0)?

The market for Magnesium 3-carboxy-3-hydroxypentanedioate (CAS: 144-23-0) is growing due to its applications in the pharmaceutical and biotechnology sectors. Research trends are focusing on its use as a precursor in the synthesis of various bioactive compounds and in drug delivery systems. The increasing demand from these sectors, coupled with advancements in research, is driving market growth. However, price fluctuations can be influenced by supply chain disruptions and raw material costs.

How should waste containing Magnesium 3-carboxy-3-hydroxypentanedioate (CAS: 144-23-0) be handled?

Waste containing Magnesium 3-carboxy-3-hydroxypentanedioate (CAS: 144-23-0) should be collected in appropriate containers and stored in a well-ventilated area away from heat and sources of ignition. Incineration is a suitable method for disposal, but it must be conducted under controlled conditions to prevent the release of harmful emissions. Professional waste disposal services are recommended to ensure compliance with local regulations. Proper environmental protection measures, such as using neutralization methods to minimize environmental impact, should also be implemented.

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