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Environmentally Effective Adsorption Separation Technology

Refining Technology

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Diesel Aromatic Adsorption & Separation Technology

This technology utilizes refined gasoline, jet fuel, diesel, and light cycle oil as feedstocks, applying a simulated moving bed (SMB) adsorption process to efficiently separate aromatic and non-aromatic components in distillates. By integrating with ethylene steam cracking, aromatics condensation, and heavy aromatics upgrading technologies, it enables the maximum conversion of surplus distillate oils into high-value olefins, aromatics, and other petrochemical feedstocks. This facilitates the differentiated, value-added, and precise utilization of refined oils, supporting the strategic transformation goals of "oil to chemicals" and "oil to specialties" in refining and petrochemical enterprises.

Key Features & Benefits

High-performance adsorbents

The aromatic-selective adsorbents possess well-developed pore structures and abundant active adsorption sites, delivering high separation efficiency.

Mild operating conditions

Operates under low temperature and pressure, non-hydrogen, resulting in low energy consumption.

Proven commercial maturity

Industrial-scale units have already been commissioned and are in stable operation.

Diesel Aromatics

Process Flow of Diesel Aromatics Adsorption and Separation Technology

Technical Parameters

Item

Diesel Aromatic Adsorption and Separation Technology

Feedstock

Gasoline, Diesel, Jet Fuel, Light Cycle Oil

Aromatic Product Purity (wt%)

90–99

Non-Aromatic Product Purity (wt%)

90-98

Process Energy Consumption

(kg oil equivalent/ton feed)

14–57

dependent on aromatic content in the feed

Diesel Aromatic Adsorbents

Contact us to learn about the commercialization of Diesel Aromatic Adsorption & Separation Technology and receive a customized solution.

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Diesel Aromatic Adsorption Separation Technology

Refining Technology

2025 - 07 - 07

Diesel Aromatic Adsorption and Separation Technology leverages differences in oil components to develop innovative adsorbent materials that maximize the value of hydrocarbons molecules in oil products.

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