L(+)-Ornithine Hydrochloride丨CAS 3184-13-2

L(+)-Ornithine Hydrochloride丨CAS 3184-13-2
Product Introduction:
Catalog No.: SS120891
CAS No.: 3184-13-2
Grade: AJI92
Product Name: L(+)-Ornithine hydrochloride
Molecular Formula: C5H12N2O2.HCl; C5H13ClN2O2
Molecular Weight: 168.62
Synonym(s): L(+)-2,5-Diaminopentanoic acid hydrochloride
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Technical Parameters
Description

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Specifications

 

Grade AJI92
Appearance White crystals or crystalline powder
Assay 99.0 ~ 101.0%
Identification Infrared absorption spectrum
Specific rotation [α]D20 +23.0° ~ +25.0°
State of solution 98.0% min.
Sulfate (SO4) 0.020% max.
Ammonium (NH4) 0.02% max.
Iron (Fe) 10 ppm max.
Heavy metals (Pb) 10 ppm max.
Arsenic (As2O3) 1 ppm max.
pH 5.0 ~ 6.0
Other amino acids Chromatographically not detectable
Loss on drying 0.2% max.
Residue on ignition 0.10% max.

 

Transport Information

 

Parameter

Specification

UN Number

 

Class

 

Packing Group

 

H.S. Code

2922499990302

Stability & Reactivity

The product is chemically stable under standard ambient conditions.

Storage

Keep container tightly closed in a dry and well-ventilated place.

Condition to Avoid

 

Package

 

 

Manufacturing Information

 

Parameter

Specification

Capacity

10MT/month

Frequency

 

Main Export Countries

 

Capacity/Batch

 

Experience

Production since 2012

Stock

 

 

 

 

Applications

 

L(+)-Ornithine hydrochloride is an amino acid derivative widely used in pharmaceuticals, nutritional supplements, and biochemical research. It is commonly applied in formulations that support liver function, ammonia detoxification, and athletic performance enhancement. In clinical nutrition, it is used to treat hyperammonemia and support recovery from liver disorders. Additionally, L(+)-Ornithine hydrochloride serves as a building block in peptide synthesis, protein research, and enzymatic studies due to its role in the urea cycle and nitrogen metabolism.

 

Benefits

 

The benefits of L(+)-Ornithine hydrochloride stem from its role in nitrogen metabolism and ammonia detoxification. It promotes liver health by supporting the urea cycle, reducing toxic ammonia levels in the body. In sports and exercise applications, it can aid in recovery, reduce fatigue, and support protein synthesis. Its high solubility, stability, and bioavailability make it suitable for oral and parenteral administration. Additionally, it contributes to improved metabolic efficiency and cellular function, enhancing overall physiological performance.

 

Conclusion

 

L(+)-Ornithine hydrochloride is a valuable amino acid derivative with applications in healthcare, nutrition, and biochemical research. Its ability to support liver function, detoxify ammonia, and aid recovery makes it essential for clinical and wellness applications. By promoting metabolic health and supporting research in protein and enzymatic pathways, L(+)-Ornithine hydrochloride remains a critical compound across multiple fields.

 

 

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