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Alpha-olefin

Updated: 2026-08-05

Overview

Alpha-olefins (α-olefins) are hydrocarbons with a double bond at the terminal carbon (C=C at the α-position). They are produced industrially via oligomerization of ethylene or Fischer-Tropsch synthesis. Linear alpha-olefins (LAOs) with chain lengths of C6–C18 are commercially significant due to their versatility in chemical manufacturing. These compounds serve as key intermediates for polyolefins (e.g., polyethylene co-monomers), synthetic base oils, and detergent alcohols. The global demand for alpha-olefins exceeds 4 million tons annually, driven by their role in high-performance lubricants and flexible packaging materials.

Physical and Chemical Properties

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Alpha-olefins exhibit physical properties that vary systematically with chain length. Shorter-chain variants (C4–C6) are gases at room temperature, while C8–C18 compounds are liquids. Their density increases with molecular weight, typically ranging from 0.67 g/cm³ (1-hexene) to 0.79 g/cm³ (1-octadecene). The defining chemical feature is the terminal double bond, which undergoes reactions like polymerization, hydroformylation, and sulfonation. They are generally stable under inert conditions but may polymerize exothermically if exposed to strong acids or radicals. Commercial grades often contain inhibitors (e.g., 50–100 ppm BHT) to prevent premature polymerization during storage.

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Main Applications

Approximately 60% of alpha-olefins are used in polyethylene co-polymers, where they introduce short-chain branching to enhance flexibility and impact resistance. LLDPE production alone consumes over 2 million tons annually of C4–C8 alpha-olefins. In the lubricant industry, C8–C12 alpha-olefins are oligomerized to produce polyalphaolefins (PAOs), synthetic base stocks with superior thermal stability compared to mineral oils. Other applications include: detergent alcohols (via hydroformylation), plasticizer alcohols (for PVC), and alkylated aromatics for surfactants. Specialty uses encompass oilfield chemicals and paper sizing agents.

Safety and Storage

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Alpha-olefins are classified as flammable liquids (Flash points: 20–80°C) and require storage in grounded containers away from oxidizers. NFPA ratings typically show Health 1, Flammability 3, Reactivity 1. Vapor concentrations above 1% in air may form explosive mixtures. Recommended storage temperatures are below 30°C for long-term stability. Nitrogen blanketing is advised for bulk storage to prevent peroxide formation. Spills should be contained with non-combustible absorbents (e.g., sand) and never flushed to waterways due to aquatic toxicity concerns (LC50 for 1-octene: ~10 mg/L in fish).

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B2B Procurement Guide

When sourcing alpha-olefins, buyers should specify: carbon number range (e.g., C8–C10 cut), purity (typically 94–99%), and inhibitor type if required. Common packaging includes 180–200 kg steel drums, isotanks (20–25 tons), or pipeline transfers for large-volume consumers. Key suppliers include Shell (SHOP process), INEOS, and Chevron Phillips. Price fluctuations correlate with ethylene feedstock costs—longer-chain (C14+) alpha-olefins command 20–30% premiums over C6–C8 grades. For lubricant applications, request kinematic viscosity (KV100) data of PAO derivatives, which ranges from 4–100 cSt depending on oligomerization degree.

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