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On March 18, a new materials company in Xinjiang and the Southwest Chemical Research and Design Institute signed a strategic cooperation agreement for a project to produce acetylene using natural gas plasma in the Shangku Comprehensive Industrial Park. This marks the introduction of a new technology in the chemical industry for the largest acetylene production facility of its kind in China that utilizes natural gas plasma. It is understood that the production of acetylene using natural gas plasma is a high-tech process that is at the forefront both domestically and internationally. In the past, the partial oxidation method was used to produce acetylene from natural gas; 6,700 cubic meters of natural gas were required per ton of acetylene. With the use of plasma technology, only 2,000 cubic meters of natural gas are needed per ton of acetylene, which in turn provides a technical foundation for PBAT fully biodegradable plastics. PBAT is a copolymer of butylene adipate and butylene terephthalate; it is a semicrystalline polymer that can degrade completely on its own under specific conditions, breaking down entirely into water, methane, and carbon dioxide within 180 days. As a downstream product of the butylene glycol industry, it enables the effective integration of various product resources within industrial parks, thus fostering an industrial circular economy.
Industry: Wholesale and retail trade. Business scope: Manufacturing and selling of plastic materials and synthetic resins in their basic forms; providing services for the promotion of new material technologies; research, development, production, and sales of biodegradable and bio-based plastic raw materials. Business model – Company address: No. 88, Zhongtai Avenue, Petroleum and Petrochemical Industry Park, Shangku High-Tech Industrial Development Zone, Korla City, Bayingolin Mongol Autonomous Prefecture, Xinjiang
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What is the current production capacity for producing acetylene using natural gas plasma? How does it compare to the technology of producing acetylene through partial oxidation of natural gas?
I’m not aware of the situation in this regard. Judging from the information provided by the poster, it seems to be a relatively advanced cutting-edge technology. Looking forward to further information discovery