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SAPO-11

Updated: 2026-07-15

Overview

SAPO-11 is a silicoaluminophosphate molecular sieve with an AEL-type framework structure, first synthesized in the 1980s. It combines the properties of aluminophosphates and zeolites, featuring a well-defined pore system (0.39 × 0.63 nm) and mild acidity. These characteristics make it particularly valuable in refining and petrochemical industries. Unlike conventional zeolites, SAPO-11 incorporates silicon into its framework, creating Brønsted acid sites. This modification enhances its catalytic performance for reactions requiring shape-selective catalysis, such as long-chain hydrocarbon isomerization. Its synthetic versatility allows tailored properties for specific industrial needs.

Physical and Chemical Properties

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SAPO-11 exhibits exceptional thermal stability, maintaining structural integrity up to 1000°C, which is critical for high-temperature processes like fluid catalytic cracking. Its pore geometry favors linear molecule diffusion, enabling selective conversion of n-paraffins while excluding bulkier isomers. The material's acidity is tunable via silicon content, typically yielding weak to moderate acid strength (H0 ≈ +3 to −3). This balance minimizes side reactions like cracking during isomerization. Physically, it appears as a free-flowing powder with a surface area of 200–400 m²/g, providing ample active sites for catalysis and adsorption.

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Main Applications

In petroleum refining, SAPO-11 is the catalyst of choice for dewaxing and isomerizing C8–C20 hydrocarbons, improving diesel cold-flow properties. Its shape-selectivity converts n-paraffins into branched isomers, boosting octane ratings without excessive cracking. Beyond fuels, it serves in alkylation (e.g., ethylbenzene production) and as a desiccant in gas purification. Recent research explores its use in biomass conversion and CO2 capture, leveraging its hydrothermal stability and adsorption capacity. Manufacturers often composite it with metals (Pt, Pd) for bifunctional catalysis in hydroprocessing.

Safety and Storage

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While SAPO-11 is non-flammable and chemically inert, its fine particulate form necessitates dust control measures. Prolonged inhalation may cause respiratory irritation; NIOSH-approved N95 masks are recommended during handling. Storage requires airtight containers to prevent moisture absorption, which can reduce catalytic activity. Avoid contact with strong acids or bases that may degrade the framework. Spills should be vacuumed or swept dry—never washed with water to prevent clumping.

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B2B Procurement Guide

Industrial buyers should prioritize suppliers providing detailed characterization data, including XRD patterns (confirming AEL structure), NH3-TPD (acid site distribution), and N2 physisorption (pore volume). Pilot testing is advised for catalytic applications due to batch variability. Bulk purchases (500+ kg) typically reduce costs by 20–30%. Consider toll manufacturing for proprietary formulations. Logistics-wise, SAPO-11 is non-hazardous but should be shipped with moisture-proof packaging. Major producers include BASF, Clariant, and specialized Chinese manufacturers like Sinocat.

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