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Magnesium sulfate anhydrous (CAS 7487-88-9)

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Alternate Names:
Magnesium sulphate
Application:
Magnesium sulfate anhydrous is a useful inorganic reagent for biological research purposes
CAS Number:
7487-88-9
Molecular Weight:
120.37
Molecular Formula:
MgSO4
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Magnesium sulfate anhydrous is a chemical compound extensively utilized in various research applications across several scientific disciplines. In agricultural and plant science research, it is applied to study nutrient uptake and to correct magnesium deficiencies in plants, as magnesium is a critical component of chlorophyll. In geological and environmental sciences, Magnesium sulfate anhydrous is used in soil analysis and to simulate the mineral composition of different planetary bodies, including Mars. It is also a common reagent in chemistry labs for the preparation of buffers and media, or as a drying agent due to its hygroscopic properties. Additionally, researchers apply Magnesium sulfate anhydrous in materials science for the synthesis of magnesium-based compounds and in the study of cement chemistry to investigate its effects on the kinetics of cement hydration.


Magnesium sulfate anhydrous (CAS 7487-88-9) References

  1. Dispersive solid-phase microextraction method for sample extraction in the analysis of four tetracyclines in water and milk samples by high-performance liquid chromatography with diode-array detection.  |  Tsai, WH., et al. 2009. J Chromatogr A. 1216: 2263-9. PMID: 19185868
  2. Design, synthesis, and characterization of ladder-type molecules and polymers. Air-stable, solution-processable n-channel and ambipolar semiconductors for thin-film transistors via experiment and theory.  |  Usta, H., et al. 2009. J Am Chem Soc. 131: 5586-608. PMID: 19331320
  3. Transformation of cinnamic acid from trans- to cis-form raises a notable bactericidal and synergistic activity against multiple-drug resistant Mycobacterium tuberculosis.  |  Chen, YL., et al. 2011. Eur J Pharm Sci. 43: 188-94. PMID: 21536127
  4. Dissipation and residues of emamectin benzoate study in paddy under field conditions.  |  Li, M., et al. 2011. Bull Environ Contam Toxicol. 87: 699-702. PMID: 21928147
  5. [Application of a rapid and simple multi-residue method for determination of pesticide residues in drinking water and beverages using liquid chromatography-tandem mass spectrometry].  |  Fukui, N., et al. 2012. Shokuhin Eiseigaku Zasshi. 53: 183-93. PMID: 23132358
  6. Alternative sorbents for the dispersive solid-phase extraction step in quick, easy, cheap, effective, rugged and safe method for extraction of pesticides from rice paddy soils with determination by liquid chromatography tandem mass spectrometry.  |  Arias, JL., et al. 2014. J Chromatogr A. 1360: 66-75. PMID: 25115454
  7. Effect of specific plant-growth-promoting rhizobacteria (PGPR) on growth and uptake of neonicotinoid insecticide thiamethoxam in corn (Zea mays L.) seedlings.  |  Myresiotis, CK., et al. 2015. Pest Manag Sci. 71: 1258-66. PMID: 25257038
  8. Improved Analytical Approach Based on QuECHERS/UHPLC-PDA for Quantification of Fluoxetine, Clomipramine and their Active Metabolites in Human Urine Samples.  |  Alves, V., et al. 2017. J Anal Toxicol. 41: 45-53. PMID: 27681341
  9. Oxazine Ring-Related Vibrational Modes of Benzoxazine Monomers Using Fully Aromatically Substituted, Deuterated, 15N Isotope Exchanged, and Oxazine-Ring-Substituted Compounds and Theoretical Calculations.  |  Han, L., et al. 2017. J Phys Chem A. 121: 6269-6282. PMID: 28747051
  10. Controlling the selectivity to chemicals from catalytic depolymerization of kraft lignin with in-situ H2.  |  Luo, L., et al. 2018. Bioresour Technol. 264: 1-6. PMID: 29778802
  11. HPLC-DAD analysis of florfenicol and thiamphenicol in medicated feedingstuffs.  |  Patyra, E. and Kwiatek, K. 2019. Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 36: 1184-1190. PMID: 31140948
  12. Pesticide and trace element residues in honey and beeswax combs from Israel in association with human risk assessment and honey adulteration.  |  Bommuraj, V., et al. 2019. Food Chem. 299: 125123. PMID: 31299514
  13. Degradation of parathion methyl in bovine milk by high-intensity ultrasound: Degradation kinetics, products and their corresponding toxicity.  |  Yuan, S., et al. 2020. Food Chem. 327: 127103. PMID: 32464464
  14. An Effective and Efficient Sample Preparation Method for 2-Methyl-Isoborneol and Geosmin in Fish and Their Analysis by Gas Chromatography-Mass Spectrometry.  |  Tian, LL., et al. 2021. Int J Anal Chem. 2021: 9980212. PMID: 34046066
  15. Temperature-Dependent Residue Depletion Regularities of Tiamulin in Nile Tilapia (Oreochromis niloticus) Following Multiple Oral Administrations.  |  Cao, C., et al. 2021. Front Vet Sci. 8: 679657. PMID: 34179171

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Magnesium sulfate anhydrous, 500 g

sc-211764
500 g
$45.00

Magnesium sulfate anhydrous, 1 kg

sc-211764A
1 kg
$68.00

Magnesium sulfate anhydrous, 2.5 kg

sc-211764B
2.5 kg
$160.00

Magnesium sulfate anhydrous, 5 kg

sc-211764C
5 kg
$240.00

Magnesium sulfate anhydrous, 10 kg

sc-211764D
10 kg
$410.00