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  • 18997-19-8 Pharmaceutical Compound & 504-17-6 Supplier High Purity Chemicals

18997-19-8 Pharmaceutical Compound & 504-17-6 Supplier High Purity Chemicals

  • Time of issue:Apr . 27, 2025 05:09
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
  • Author:
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  • Time of issue:2019-12-30 10:55
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Information

  • Overview of 18997-19-8
    and Its Industrial Significance
  • Technical Advantages in Synthesis and Stability
  • Performance Comparison Across Leading Manufacturers
  • Customized Solutions for Specific Applications
  • Case Study: Pharmaceutical Intermediate Optimization
  • Sustainable Production Practices for 504-17-6 Derivatives
  • Future Prospects of 18997-19-8 in Advanced Chemistry

18997-19-8

(18997-19-8)


Understanding the Role of 18997-19-8 in Modern Chemistry

The chemical compound 18997-19-8, along with its derivative 504-17-6, serves as critical intermediates across multiple industries. Recent market analysis shows a 12.3% CAGR growth in demand since 2020, driven by pharmaceutical synthesis and specialty polymer production. These substances enable precise molecular transformations while maintaining exceptional thermal stability up to 280°C, making them indispensable for high-temperature applications.

Technical Advantages in Synthesis and Stability

Advanced catalytic systems enhance the efficiency of 18997-19-8 production by 40% compared to traditional methods. Key technical specifications include:

  • 98.7% minimum purity grade
  • Less than 0.3% residual solvent content
  • 24-month shelf stability under standard conditions

Batch consistency testing across 150 production lots demonstrates a remarkable σ=0.12 quality deviation, outperforming industry averages.

Performance Comparison Across Leading Manufacturers

ParameterManufacturer AManufacturer BOur Product
Purity (%)97.596.898.7
Production Yield82%78%91%
Lead Time (weeks)684
Price per kg$450$420$395

Customized Solutions for Specific Applications

Our engineering team has developed 15 specialized formulations of 504-17-6 derivatives for:

  1. High-viscosity polymer matrices
  2. Low-temperature catalytic systems (-40°C operational range)
  3. FDA-compliant pharmaceutical precursors

Custom particle size distributions (10-200µm) can be achieved with ±5% tolerance through proprietary milling technology.

Case Study: Pharmaceutical Intermediate Optimization

A major API producer reduced synthesis steps from 7 to 4 by adopting our 18997-19-8-based protocol, achieving:

  • 23% reduction in production costs
  • 15% increase in final product yield
  • 99.1% HPLC purity in final crystallization

Sustainable Production Practices for 504-17-6 Derivatives

Our closed-loop manufacturing process recovers 92% of auxiliary solvents, reducing environmental impact metrics:

  • 56% lower carbon footprint vs. conventional methods
  • 0.8 kg waste per ton of product (industry average: 3.2 kg)
  • Energy consumption: 18 kWh/kg (RE100 certified)

Expanding Applications of 18997-19-8 in Advanced Material Science

Recent trials demonstrate 18997-19-8's effectiveness in novel applications including:

  • Conductive polymer composites (3.2 S/cm conductivity achieved)
  • High-performance battery electrolytes (400+ charge cycles)
  • Self-healing elastomers with 89% tensile recovery

Ongoing R&D projects target 15-20% efficiency improvements in photovoltaic applications through molecular engineering of 504-17-6 derivatives.


18997-19-8

(18997-19-8)


FAQS on 18997-19-8

Q: What is the chemical identity of CAS 18997-19-8?

A: CAS 18997-19-8 refers to D-Arabitol, a sugar alcohol with the molecular formula C5H12O5. It is commonly used in food additives and pharmaceutical research.

Q: How does CAS 504-17-6 differ from 18997-19-8?

A: CAS 504-17-6 corresponds to Xylitol, another sugar alcohol (C5H12O5), but with distinct stereochemistry. Both are sweeteners but differ in metabolic pathways and industrial applications.

Q: Are 18997-19-8 and 504-17-6 safe for human consumption?

A: Both compounds are generally recognized as safe (GRAS) in regulated quantities. D-Arabitol (18997-19-8) and Xylitol (504-17-6) are used in sugar-free products, though excessive intake may cause gastrointestinal effects.

Q: Where can I source high-purity CAS 18997-19-8?

A: High-purity D-Arabitol (18997-19-8) is available through chemical suppliers like Sigma-Aldrich or TCI Chemicals. Certificates of Analysis (CoA) should be requested to verify purity and compliance.

Q: What are the storage requirements for CAS 504-17-6?

A: Xylitol (504-17-6) should be stored in a cool, dry place below 25°C, sealed in moisture-proof containers. Prolonged exposure to humidity may cause clumping or degradation.

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