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From crude oil to light olefins: Development and industrial application of the next-generation catalyst for catalytic pyrolysis process

From crude oil to light olefins: Development and industrial application of the next-generation catalyst for catalytic pyrolysis process
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From crude oil to light olefins: Development and industrial application of the next-generation catalyst for catalytic pyrolysis process

From crude oil to light olefins: Development and industrial application of the next-generation catalyst for catalytic pyrolysis process
hydrocarbonprocessing.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from hydrocarbonprocessing.com Daily Mail and Mail on Sunday newspapers.

Columbia | SIPA Center on Global Energy Policy | The Potential Role of Biohydrogen in Creating a Net-Zero World: The Production and Applications of Carbon-Negative Hydrogen

This report represents the research and views of the author. It does not necessarily represent the views of the Center on Global Energy Policy. The piece may be subject to further revision.

CIRCULAR BTX: Anellotech s aromatics from mixed waste plastics, now available : Biofuels Digest

CIRCULAR BTX: Anellotech s aromatics from mixed waste plastics, now available : Biofuels Digest
biofuelsdigest.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from biofuelsdigest.com Daily Mail and Mail on Sunday newspapers.

Research Progress on Catalytic Pyrolysis and Reuse of Waste Plastics a by Duo Pan, Fengmei Su et al

Waste plastics (e.g., polyethylene, polyvinyl chloride, polypropylene, polystyrene) and petroleum sludge (i.e., main residual from the petroleum industry) pose a severe threat to the environment and human health. These materials are basically non-biodegradable, and it is difficult to realize the recycling of them and resources via traditional treatment methods. Catalytic pyrolysis as a new recycling treatment method has the characteristics of high efficiency, environmentally benign, no secondary pollution and high product utilization value. This paper mainly reviews the research progress of catalysts used in the catalytic pyrolysis of waste plastics and petroleum sludge. They include molecular sieves, transition metals, metal oxides, clays and activated carbons used for the recycling of plastic, and molecular sieves and M-series catalyst (M=Al, Fe, Ca, Na, K) for treating petroleum sludge. The mechanism of catalytic pyrolysis is also elucidated in this paper. In addition, the challenge

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