Industrial-scale nanocrystalline Ni–Mo–MgO catalysts for hybrid reforming of waste to fuels

Нанокристаллические каталитические системы Ni–Mo–MgO промышленного масштаба для гибридного риформинга отходов в топлива
Mert Atilhan, Qingyuan Hu, S. Mani Sarathy, Cafer T. Yavuz, Aadesh Harale, Aqil Jamal, Seok‐Jin Kim, Javeed Mahmood, Husain Baaqel, Raghu V. Maligal‐Ganesh, Phil Woong Kang, Abdulrahman S. AlSuhaibani, Ammar Alahmed, Rukaiyat Suleiman
2026-06-25

CO2 reforming to syngasNi–Mo–MgO catalystshybrid reformingindustrial-scale pellet catalystnanocrystalline nickel-molybdenum
Strategies for lowering carbon emissions from hydrocarbons and waste must overcome the challenges related to catalyst durability and the presorting of waste. Reforming low-value carbon sources with carbon dioxide (CO 2 ) offers an industrial-scale pathway for recycling waste streams into fuels and chemicals. We developed a nickel-molybdenum alloy nanocatalyst on single-crystalline magnesium oxide (NiMoCat) in pellet form on a kilogram scale suitable for high-pressure industrial reactors. Aliphatic hydrocarbons (methane, n -butane) and aromatics (benzene, toluene) under pressurized CO 2 yielded quantitative syngas without methanation or undesired oxidative by-products, such as butadiene or polyaromatics. Scaled-up NiMoCat maintains activity during long-term operation and enables a two-step process involving gasification of unsorted waste followed by hybrid reforming under realistic flue gas or CO 2 flow. A detailed life-cycle analysis of biogas-to-dimethyl ether conversion showcases a scalable, sustainable CO 2 utilization compatible with current fuel and chemical infrastructures.
1
A nickel-molybdenum alloy nanocatalyst on single-crystalline MgO (NiMoCat) was developed in pellet form at kilogram scale suitable for high-pressure industrial reactors.
2
Life-cycle analysis for biogas-to-dimethyl ether shows this approach is scalable and offers sustainable CO2 utilization compatible with existing fuel and chemical infrastructures.
3
NiMoCat enables a two-step process: gasification of unsorted waste followed by hybrid reforming under realistic flue gas or CO2 flow.
4
NiMoCat reforms aliphatic (methane, n-butane) and aromatic (benzene, toluene) feedstocks under pressurized CO2 to yield quantitative syngas without methanation or undesired oxidative by-products.
5
Scaled-up NiMoCat maintains activity during long-term operation, enabling continuous industrial use.

Industrial-scale nanocrystalline Ni–Mo–MgO pellet catalyst (NiMoCat) for high-pressure hybrid reforming reactors

Catalytic performance and durability for hybrid CO2-based reforming of hydrocarbons and waste into syngas/fuels under industrial high-pressure conditions, including selectivity (no methanation or undesirable oxidative by-products), long-term stability, scalability, and compatibility with gasification of unsorted waste and flue-gas CO2 streams

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2026-06-25
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Mert Atilhan
Qingyuan Hu
S. Mani Sarathy
Cafer T. Yavuz
Aadesh Harale
Aqil Jamal
Seok‐Jin Kim
Javeed Mahmood
Husain Baaqel
Raghu V. Maligal‐Ganesh
Phil Woong Kang
Abdulrahman S. AlSuhaibani
Ammar Alahmed
Rukaiyat Suleiman
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