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The standard \"Calculation Method for Energy Efficiency in Fluidized Bed Water Coal Slurry Gasification\" GB/T41038-2021 has been officially released

2022-01-14View Original

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\"Calculation Method for Energy Efficiency in Fluidized Bed Water Coal Slurry Gasification\" GB/T 41038-2021 – officially released. Author/Source: East China University of Science and Technology. Date: January 14, 2022. Clicks: 8. Recently, the **State Administration for Market Regulation (**Standardization Administration Committee issued the \"Announcement on Approving the Release of 530 recommended **standards, including ‘Data Content for Holographic Position Maps’, as well as 2 amendments to **standards\" (Standard Announcement of the People’s Republic of China, No. 17, 2021). These include the \"Calculation Method for Energy Efficiency in Fluidized Bed Water Coal Slurry Gasification\" GB/T41038-2021, which was developed under the leadership of the Clean Coal Technology Institute at East China University of Science and Technology. **The standard \"Calculation Method for Energy Efficiency in Fluidized Bed Water Coal Slurry Gasification\" was submitted under the jurisdiction of TC469 (National Technical Committee for Coal Chemicals Standardization), with TC469SC1 (Subcommittee on Coal Conversion of the National Technical Committee for Coal Chemicals Standardization) responsible for its implementation. The competent authority is the **Standardization Management Committee**. Gasification efficiency is a key parameter in fluidized bed water coal slurry gasification; its accuracy is directly related to the evaluation of coal utilization efficiency and the design of water coal slurry gasification units. During the standard development process, Huali collaborated with more than a dozen organizations, including the Coal Science and Technology Research Institute Co., Ltd., Donghua Engineering Technology Co., Ltd., Hualu Engineering Technology Co., Ltd., Air Products (China) Investment Co., Ltd., and China Tianchen Engineering Co., Ltd. These participating organizations possess extensive experience in engineering design and operation in the fields of coal chemistry and coal gasification; they have also developed or possess coal gasification technologies, giving them broad representation within the industry. Huali is responsible for the sub-project titled “Research on Comprehensive Energy Consumption Analysis and Energy-Saving Monitoring Methods for Water-Coal Slurry Gasification” (2018YFF0213803-05). The development of this standard was supported by the special project NQI of the **13th Five-Year Plan for Key Research and Development**, namely \"Research and Application of Common Technologies for Quality Foundations\". The issuance of this standard reflects WHU’s continued leadership in the field of water-coal slurry gasification, further enhancing the university’s influence in coal gasification technology within China. In addition, among the series of **standards** released this time, faculty members from Huali Clean Coal Technology Institute, as key contributors, were also involved in the formulation of standards such as \"Coal for Quality Bituminous Coal Gasification in Fluidized Bed Systems\" GB/T 29722-2021 and \"General Principles for Determining Coal Types for Design and Verification in Modern Coal Chemical Projects\" GB/T 41039-2021. The issuance and implementation of this series of standards related to coal chemical industry will drive patent holders of fluidized bed gasification technology, related engineering companies, and manufacturing firms to continuously improve their technical capabilities, thereby facilitating the industrial development of more advanced and efficient gasification technologies. The implementation of these standards will also guide manufacturing enterprises to continuously reduce energy consumption and costs, cut production expenses, and improve economic efficiency, thereby laying a solid foundation for promoting the transformation and technological upgrading of China’s coal chemical industry and helping to achieve the \"dual carbon\" goals. To achieve the goals of carbon peak and carbon neutrality on schedule, it is crucial to promote the clean and efficient development and utilization of coal. East China University of Science and Technology has always placed emphasis on green development. Its Institute of Clean Coal Technology is the only research institution in the world that possesses both water-coal slurry and pulverized coal gasification technologies. It has been dedicated to fundamental research on fluidized bed gasification processes and technologies, as well as to the development of applied technologies. The institute has completed various scientific and technological projects as well as those commissioned by enterprises. It served as the leading entity for the 973 projects \"Fundamental Research on Large-Scale and High-Efficiency Fluidized Bed Coal Gasification Technology\" and \"Fundamental Research on Large-Scale and High-Efficiency Clean Gasification of Carbonaceous Solid Feedstocks such as Coal,\" and has won numerous provincial and ministerial-level scientific and technological awards. With the support of **science and technology programs, and through the integration of industry, academia, and research, the institute has developed a multi-nozzle opposed water-coal slurry gasification technology that is at the international leading level. This technology has won the Second Prize for Scientific and Technological Progress, as well as the Special Prize for Scientific and Technological Progress from the China Petroleum and Chemical Industry Association. It has been adopted by dozens of enterprises and exported to the United States and South Korea; its capacity to process coal makes it the highest in the world ; The developed pressurized coal gasification technology has been successfully applied in enterprises such as Sinopec Yangzi Petrochemical, Zhongan United Coal Chemical, and Sinochem Refining & Chemical, and has been rated by Sinopec’s scientific and technological achievement evaluation as being at an internationally leading level.

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