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Turning waste into value from coal-based olefins: this technology significantly improves the overall efficiency of MTO

2017-11-16View Original

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This post was last edited by liaifeng on 2018-8-9 at 09:23. Turning waste into treasure from coal-based olefins: This technology significantly improves the overall efficiency of MTO. Author/Source: Date: 2017-11-16. Views: 15. Recently, the project \"Butene oxidation dehydrogenation to butadiene: Catalyst development and industrial application\", independently developed by Huisheng Engineering (China) Co., Ltd. (\\"Huisheng Engineering\\"), passed an evaluation of its scientific and technological achievements in Beijing, organized by the China Petroleum and Chemical Industry Federation. Butadiene is an important basic chemical raw material. As global olefin feedstocks become lighter in weight, the amount of butadiene monomer produced through the traditional method of cracking C4 hydrocarbons in ethylene plants will decrease significantly. The global shortage of butadiene will be addressed by specialized butadiene production technologies, and the technology of producing butadiene via the oxidation dehydrogenation of butylene is one such solution ; Through the optimization of catalysts and process technologies in the Huisheng process for the oxidation-dehydrogenation of butylene to produce butadiene, production costs have been significantly reduced. This method can serve as an effective supplement to butadiene produced as a by-product of ethylene, contributing to the diversification of raw materials used in butadiene production. With current high coal prices, this technology can be used for the comprehensive utilization of C4 resources generated as a by-product of coal-to-olefins processes to produce high-value styrene monomers, thereby significantly improving the overall efficiency of MTO units; it thus holds good prospects for widespread adoption. The expert appraisal committee highly recognized Huisheng Engineering’s efforts in technological innovation, stating that: \"The technology for the oxidation-dehydrogenation of butylene to produce butadiene, as well as the achievements in catalyst development and industrial application, are all at an internationally advanced level. In particular, the yield of products using the new catalysts for butylene oxidation-dehydrogenation is at the international leading level. The committee unanimously agreed to approve this appraisal\" and recommended that its promotion and application be accelerated. Jin Yong, an academician of the Chinese Academy of Engineering and a professor at Tsinghua University, said, “Although the technology for producing butadiene through the oxidation dehydrogenation of butylene has been developed for over 50 years, it has not been widely adopted due to production costs.” Building on its previous technical achievements, Huisheng Engineering has carried out numerous technological innovations and improvements in catalysts and processes, effectively reducing energy consumption and production costs. This technology has good application prospects. ” It is reported that the butylene oxidation-dehydrogenation to butadiene technology independently developed by Huisheng Engineering utilizes a two-stage adiabatic fixed-bed process along with a new catalyst developed by Huisheng. This technology enables a production capacity of 100,000 tons per year per production line, with a butylene conversion rate of 80%, a butadiene selectivity of around 93%, and a yield of over 74% ; The separation section utilizes NMP or improved ACN technology, which can significantly reduce equipment investment and energy consumption. This technology also includes innovative methods such as reactor technologies suitable for large-scale production, reuse of wastewater from the equipment, and online catalyst regeneration. At present, this technological achievement has been successfully applied industrially in the butadiene plant of Shandong Heze Yuhuang Chemical Co., Ltd., yielding significant economic and social benefits; it has also granted another license to Nanjing Chengzhi Yongqing Energy Technology Co., Ltd. for a butadiene plant with an annual capacity of 100,000 tons. Liu Haijun, President of Huisheng Engineering, said, “We are extremely grateful to Academician Jin Yong and the expert group for their recognition of Huisheng’s butylene oxidation dehydrogenation technology. This is an affirmation, encouragement, and motivation for Huisheng Engineering’s efforts in technical research and development. Huisheng Engineering will continue to focus on the research and development of clean energy and green chemical technologies, contributing to technological innovation in China’s chemical industry.” ” This appraisal meeting was chaired by Jiang Yanru, head of the Science and Technology Department of the China Petroleum and Chemical Industry Federation. Jin Yong, an academician of the Chinese Academy of Engineering and professor at Tsinghua University, served as the chairman of the appraisal committee; its members were experts from renowned enterprises and universities such as East China University of Science and Technology, Sinopec Synthetic Oil Technology Co., Ltd., Tianjin University, Peking University, China Wuhuan Engineering Corporation, and Beijing University of Chemical Technology. Hu Juan, deputy director of the Science and Technology Department of the China Petroleum and Chemical Industry Federation, also attended this meeting.
Reply #22017-11-17
Increase industrial production volume and enhance the overall efficiency of coal chemical industry.

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