Description
1. Product Overview
Epichlorohydrin Residue is a by-product stream generated during the production and purification of epichlorohydrin in epoxy resin and specialty chemical manufacturing. This residue typically contains chlorinated organic compounds, glycidyl derivatives, heavy ends, and trace process intermediates suitable for recovery, energy utilization, or secondary chemical processing. Its key value proposition lies in converting industrial waste streams into economically viable feedstock, reducing disposal costs while extracting residual chemical value. Strategically, epichlorohydrin residue supports circular production models and provides industrial buyers with a cost-competitive alternative input for recovery, blending, or controlled industrial applications.
2. Key Specifications & Technical Characteristics
- Chemical Composition:
- Residual epichlorohydrin derivatives
- Chlorinated organic compounds
- Glycidyl-based intermediates
- Trace solvents and process impurities
- Purity Level / Grade:
- Industrial by-product grade
- Composition varies depending on production source
- Detailed compositional and hazard analysis available upon request
- Physical Characteristics:
- Liquid form
- Color: Light yellow to dark brown
- Odor: Characteristic chlorinated organic odor
- Density: Typically 1.05–1.20 g/cm³ (process-dependent)
- Moderate to high viscosity depending on heavy-end concentration
- Packaging Options:
- Bulk tanker trucks
- ISO tank containers
- IBC containers (1,000L)
- Direct bulk transfer to certified storage systems
- Shelf Life:
- Stable under sealed, cool, and dry storage conditions
- Storage in compatible, corrosion-resistant containers recommended
3. Core Industrial Applications
Primary Industries:
- Chemical recovery and reprocessing facilities
- Epoxy and resin manufacturers
- Industrial fuel blending operations
- Waste-to-energy and solvent recovery plants
- Specialty chemical processors
Operational Use Cases:
- Feedstock for solvent or chemical recovery systems
- Controlled blending in industrial fuel applications (subject to regulatory compliance)
- Raw material input for secondary chlorinated compound synthesis
- Energy recovery through thermal treatment processes
Performance & Cost Advantages:
Epichlorohydrin residue offers significant cost advantages compared to virgin raw materials when used in recovery or energy applications. Its residual chemical content provides recoverable value, while its calorific properties can support fuel substitution strategies. Industrial buyers benefit from reduced feedstock costs, minimized waste disposal expenses, and improved overall process economics.
4. Competitive Advantages
- Quality Consistency: Batch-level analytical profiling and compositional verification
- Supply Reliability: Continuous availability from established epichlorohydrin production operations
- Logistics Capability: Certified bulk handling and ISO tank shipment infrastructure
- Price Competitiveness: Substantially lower acquisition cost compared to primary-grade chemical inputs
- Sustainability Benefits: Enables waste valorization and supports circular economy initiatives
- Technical Documentation: Certificate of Analysis (COA), Safety Data Sheet (SDS), and compliance documentation available
Positioned as a strategic sourcing opportunity, epichlorohydrin residue enables industrial buyers to optimize input costs, enhance material recovery strategies, and strengthen sustainability performance.
5. Commercial & Supply Information
- Minimum Order Quantity (MOQ): BULK 20MT
- Loading Capacity (MT per container): Approximately 20–25 MT per 20’ ISO tank container (subject to density and regulatory classification)









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