Phthalates Detection Pyrolysis – Gas Chromatography (PY-GC)
Specifications
Details
Phthalates Detection via Pyrolysis-Gas Chromatography (GC): RoHS 2.0 Compliant Solution
The RoHS 2.0-compliant Pyrolysis-Gas Chromatography (PY-GC) System offers a fast, accurate, and eco-friendly solution for detecting phthalate esters in various materials. Designed with optimized features for rapid analysis, it eliminates the need for solvents, complex preparation, and waste discharge—making it the preferred system for RoHS 2.0-compliant material testing in plastics, electronics, and polymers.
Key Benefits
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Rapid Analysis in Under 20 Minutes
Completes full phthalate detection in just 20 minutes, with no complex pretreatment steps required.
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Environmentally Friendly Operation
No wastewater or chemical solvents are used—ensuring the system complies with RoHS 2.0 environmental safety regulations and is exempt from environmental impact assessments (EIA).
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Simplified Sample Preparation
RoHS 2.0-compliant process involves only cutting and weighing the sample—eliminating chemical extraction or dilution steps.
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Precise Programmed Heating
Utilizes temperature-programmed pyrolysis for controlled and consistent thermal decomposition of the sample.
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Wide Sample Compatibility
Suitable for testing a variety of sample forms including solids, liquids, powders, foils, and colloids, meeting the diverse requirements of RoHS 2.0 analysis.
Primary Applications
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Targeted detection of RoHS 2.0-restricted phthalate esters (e.g., DEHP, DBP, BBP, DIBP)
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Commonly used for polymer screening, including plastics, cables, electronics, and household goods requiring RoHS 2.0 certification.
Functional Highlights
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Fast RoHS 2.0-compliant phthalate screening with simplified operation
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Programmable temperature control for precise pyrolysis
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Short preparation time supported by efficient heat dissipation design
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No cold spots during sample injection—ensuring reliable repeatability and analysis precision
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Solvent-free operation, meeting all RoHS 2.0 environmental safety guidelines
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Accommodates multiple material types (solid, liquid, and gaseous samples)
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User-friendly software tailored for RoHS 2.0 testing workflows
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High repeatability and stability due to advanced control over heating and pressure
Sample Preparation Guidelines
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Solid Samples: Cut into fine particles (approx. 0.5–1.5 mg) and place in a quartz sample boat
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Liquid Samples: Inject approx. 1 µl directly into the injection port
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Insert sample boat into the pyrolysis injection system and begin RoHS 2.0-compliant analysis
Recommended Pyrolysis Conditions (RoHS 2.0 Compliant)
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Pyrolysis Temp Program: 100 °C → (72 °C/min) → 280 °C (hold for 2 min)
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Transfer Line Temperature: 300 °C
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Injection Mode: Split injection
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Solid: 0.5–1 mg
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Liquid: ~1 µl
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FID Detector & Injection Port Temperatures: 300 °C
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GC Temp Program: Start at 100 °C (hold 1 min), ramp at 20 °C/min to 300 °C (hold for 14 min)
Environmental Requirements
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Operating Temperature: 15–35 °C (Optimal: 18–28 °C)
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Relative Humidity: ≤ 75%, non-condensing
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Environment: Free from corrosive gases and excessive dust (≤80 mg/m³)
Electrical Specifications
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Power Supply: 220V ±10V, 50 Hz, properly grounded
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Free from electromagnetic interference
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Three 10A 3-pin plug points required
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Recommended UPS: Minimum 10 KVA for stable, RoHS 2.0-compliant operation
Instrument Table Setup Guidelines
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Table must support a combined weight of up to 120 kg (Pyrolysis unit, GC, PC, printer, and accessories)
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Minimum space clearance: 0.5 meters around the table for safe access and operation
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Recommended Table Dimensions: 250 cm (L) x 80 cm (W) x 75 cm (H)
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Install exhaust ventilation above the table to manage heat and emissions
Sample Preparation Area Requirements
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Dedicated workspace with electronic balance and RoHS 2.0-compliant tools
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Ensure table stability to minimize vibration and enhance weighing accuracy
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Keep balance away from airflow sources to prevent measurement interference
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Recommended Dimensions: 120 cm x 80 cm x 75 cm
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For limited space: two 150 cm-length tables may be used
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