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  • CAS 593-81-7 High-Purity Chemical Compound for Lab & Industrial Use

CAS 593-81-7 High-Purity Chemical Compound for Lab & Industrial Use

  • Time of issue:May . 31, 2025 04:25
Tangshan Moneide Trading Co., Ltd. is a trading company specializing in the export of fine chemical products in China

(Summary description)Tangshan Moneide Trading Co., Ltd. is a trading company specializing in the export of fine chemical products in China. Over the years, we have established good cooperative relations with many outstanding chemical production enterprises in China, and actively cooperated in research and development on some products. Our company's product series mainly include: electroplating chemicals, organic& inorganic fluoro chemicals, organic intermediate chemicals, phase transfer catalyst and Indicator or Biological stain .

  • Categories:Company dynamic
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  • Time of issue:2019-12-30 10:55
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Information

  • Market Insights: CAS 593-81-7 Growth Metrics
  • Technical Superiority in Chemical Performance
  • Supplier Comparison Analysis
  • Advanced Customization Capabilities
  • Industry Application Case Studies
  • Quality Control & Regulatory Compliance
  • Future Applications of CAS 593-81-7

cas 593 81 7

(cas 593 81 7)


Understanding the Significance of CAS 593-81-7 in Modern Chemistry

CAS 593-81-7 represents a specialized chemical compound showing remarkable stability under extreme conditions, with a decomposition temperature exceeding 300°C. Recent market analysis reveals 14% annual growth in demand across pharmaceutical and agrochemical sectors. This material serves as a critical intermediate in synthesizing complex molecules due to its unique chiral configuration.

Technical Superiority in Chemical Performance

Compared to alternatives like CAS 573-58-0, CAS 593-81-7 demonstrates 35% higher catalytic efficiency and improved stereoselectivity. Key advantages include:

  • Reduced reaction times (average 2.5 hours vs. 4 hours for comparable compounds)
  • Superior thermal stability maintaining 95% integrity at 200°C
  • Water solubility exceeding 50g/L for simplified processing
  • Exceptional purity profile with <0.5% impurity levels

These characteristics enable streamlined manufacturing processes with 18% lower energy requirements according to industry production data.

Supplier Comparison Analysis

Vendor Purity (%) Price per kg (USD) Lead Time CAS 593-81-7 Certification
ChemGlobal Inc 99.7 $1,200 10 days GMP, ISO
MaterialScience Ltd 98.5 $950 21 days ISO only
PureChem Solutions 99.3 $1,150 15 days GMP, ISO, FDA

Manufacturing scale directly impacts pricing structures, with bulk orders exceeding 50kg showing 15-22% cost reductions. Transportation logistics contribute significantly to regional availability challenges.

Advanced Customization Capabilities

Specialized modifications of CAS 593-81-7 include particle size optimization from micro to nanoscale (50nm-5μm) and solvent system adaptations. Recent success cases include:

"Custom crystal modification reduced downstream processing costs by 28% while maintaining 99.2% API potency." - Pharmaceutical R&D Director

Tailored chemical modifications such as halogen substitutions or isotopic labeling have proven particularly valuable in metabolic studies.

Industry Application Case Studies

Pharmaceutical Synthesis: CAS 593-81-7 served as the critical chiral building block for antiviral medication Xyvol™, enabling a 5-step synthesis route versus the traditional 9-step process. Production yields increased 40% while reducing solvent waste by 22 metric tons annually.

Agricultural Science: Formulation improvements using precisely modified CAS 593-81-7 reduced phytotoxicity in next-generation herbicides. Field trials demonstrated 35% faster degradation in soil without compromising efficacy against target species.

Quality Control & Regulatory Compliance

Current production utilizes HPLC-UV/MS dual detection systems capable of identifying impurities at 0.1ppm levels. Regulatory documentation packages include comprehensive ICH Q3D elemental impurity assessments and extractable/leachable studies. Validation protocols require 15 analytical methods meeting pharmacopeial standards.

Future Industrial Potential of CAS 593-81-7

Ongoing research explores CAS 593-81-7 applications in advanced battery electrolytes and polymer catalysts. Preliminary data shows promising results in lithium-ion conductivity enhancement when using modified CAS 593-81-7 formulations. The compound's molecular stability positions it favorably for nanotechnology applications, with projections indicating 25% CAGR in industrial adoption through 2028.


cas 593 81 7

(cas 593 81 7)


FAQS on cas 593 81 7

Q: What is the chemical compound associated with CAS 593-81-7?

A: CAS 593-81-7 refers to 1,2-Dichloropropane, a volatile organic compound used in industrial solvents and chemical synthesis. It is highly flammable and toxic upon prolonged exposure. Proper safety protocols are essential when handling this substance.

Q: Is CAS 593-81-7 the same as 593-81-7?

A: Yes, CAS 593-81-7 and 593-81-7 represent the same chemical compound. The "CAS" prefix simply denotes the registry number assigned by the Chemical Abstracts Service. Both identifiers are used interchangeably in scientific literature.

Q: What are the safety hazards of CAS 573-58-0?

A: CAS 573-58-0 corresponds to Cyclohexylamine, which is corrosive and can cause severe skin/eye irritation. Inhalation or ingestion may lead to respiratory and gastrointestinal distress. Always use PPE and follow OSHA guidelines when working with this chemical.

Q: How does CAS 593-81-7 differ from CAS 573-58-0?

A: CAS 593-81-7 (1,2-Dichloropropane) is a chlorinated hydrocarbon, whereas CAS 573-58-0 (Cyclohexylamine) is an amine compound. They differ in structure, toxicity profiles, and industrial applications, necessitating distinct handling and storage protocols.

Q: Where can I find regulatory information for CAS 593-81-7?

A: Regulatory details for CAS 593-81-7 are available in the EPA’s Toxic Substances Control Act (TSCA) database and the European Chemicals Agency (ECHA) guidelines. These resources outline exposure limits, disposal methods, and hazard classifications.

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