Corning Pyrex
Pyrex Soxhlet extractor body 50mL 70 mm siphon height

Pyrex Soxhlet Extractor Body 50 mL
The Pyrex Soxhlet Extractor Body 50 mL from Corning is precision-engineered laboratory glassware designed for solid-liquid solvent extraction in small-scale applications. Manufactured from durable Pyrex borosilicate glass, this Soxhlet extractor body ensures excellent chemical resistance, thermal stability, and reliability in demanding laboratory environments.
Key Features & Specifications
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Manufacturer / Brand: Corning – Pyrex
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Capacity: Approx. 50 mL
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Siphon Height: 70 mm
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Top Joint: Outer Standard Taper 24/25
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Bottom Joint: Inner Standard Taper 12/18
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Material: Pyrex borosilicate glass for superior durability and chemical resistance
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Component: Extractor body only, designed for integration into complete Soxhlet assemblies
Product Advantages
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Compact 50 mL Volume – Ideal for small-scale or sample-limited Soxhlet extraction experiments.
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Durable Pyrex Glass – Resistant to heat, solvents, and corrosive chemicals for long service life.
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Standardized Joints – Features 24/25 outer joint (top) and 12/18 inner joint (bottom) for secure compatibility with matching flasks and condensers.
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Efficient Soxhlet Extraction – Enables continuous solvent cycling for complete recovery of analytes from solid samples.
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Trusted Laboratory Brand – Manufactured by Corning, a leader in precision scientific glassware.
Applications
The 50 mL Pyrex Soxhlet extractor body is especially well-suited for:
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Analytical chemistry labs – small-sample extraction for chemical analysis
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Environmental testing – trace pollutant or contaminant extraction from soils and sediments
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Food and agriculture – lipid/fat determination in micro-samples
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Educational labs – teaching Soxhlet extraction principles in small-scale experiments
Buy Pyrex Soxhlet Extractor Body (50 mL)
HiTechTrader offers the Pyrex Soxhlet Extractor Body – 50 mL with 24/25 top joint and 12/18 bottom joint. This durable Pyrex glass component is the perfect choice for laboratories requiring reliable Soxhlet extraction at small sample volumes.