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大会及技术分会重点报告 | 2026年可持续发展钢铁冶金技术国际学术会议(CSST2026)

日期:2026/09/28
正文字号: 大 中 小

由中国金属学会主办、上海大学和北京科技大学承办的“2026年可持续发展钢铁冶金技术国际学术会议(CSST2026)”将于2026年11月3-5日在江苏省南京市举行,此次会议的联合主办单位是先进不锈钢全国重点实验室、燕赵钢铁实验室和华北理工大学。

通知发出后受到了国际钢铁冶金领域同行们的广泛关注,截止目前,会议共收到来自世界18个国家及地区的270余篇文章,届时众多国际知名院士专家学者将出席本次会议,重点围绕低碳冶金方向展开学术交流。本次会议工作语言为英语,将设大会特邀报告、分会场技术交流、展览展示、墙报交流等内容。

一、会议内容

1. 钢铁冶金高效化工艺技术

2. 钢铁冶金资源化循环利用

3. 钢铁冶金污染治理

4. 碳达峰、碳中和形势下炼铁炼钢新工艺新技术

5. 钢铁冶金长寿命、减量化工艺技术

6. 钢铁冶金废渣综合利用新技术

二、大会特邀报告(顺序不分先后)

Control Technology of Nanoscale, Microscale, and Large-size Inclusions in High-quality Steel

Jian Yang, Shanghai University, China

Pathways and Initiatives to Carbon Neutral Steelmaking - From Scrap Circularity to Hydrogen-Based Production

Johannes Schenk, Montanuniversitaet Leoben, Austria

Technical and Economic Viability of Livestock Waste Codigestion for Biogas Production

Paulo Santos Assis, UFOP, Brazil

Sustainable production of iron and steel via electric steelmaking routes for reduction of CO2 emissions

Joohyun Park, Hanyang University, Korea

Recent Advances in Hydrogen Metallurgy and Low-Carbon Ironmaking Technologies

Jianliang Zhang, University of Science & Technology Beijing, China

Development of innovative decarburization technologies in JFE Steel

Naoki KIKUCHI, JFE Steel Corporation, Japan

Re-thinking the processing of Magnetite Ores

Geoffrey Brooks, Swinburne University of Technology, Australia

三、技术分会重点报告(顺序不分先后,持续更新)

1. 钢铁冶金高效化工艺技术方向

Application Effects of Electromagnetic Technologies in Continuous Casting Process

Lifeng Zhang, North China University of Technology‌, China

Effect of wettability on the coagulation of inclusions and bubbles and the adhesion of inclusions to the inner wall in the pouring nozzle

Hiroshi Harada, Nagoya university, Japan

Development and Application of RH-SPI Powder Injection Technology for Desulfurization

Miaoyong Zhu, Northeastern University, China

Sustainable continuous casting by improving steel quality

Qifeng Shu, University of Oulu, Finland

The steelmaking technology and future development for non-oriented silicon steel

Jian Gong, Shougang Group, China

How Steel contributes to addressing the Triple Planetary Crisis

Jean-Pierre BIRAT, IF Steelman, France

Intelligent RH decarbonization models and application

Jianhua Liu, University of Science and Technology Beijing, China

Collaborative Metallurgical Engineering: Beyond Low-Carbon Steel toward Structural Transformation in China–Africa–Latin America Cooperation

Dulce Maria Pereira, Universidade Federal de Ouro Preto(UFOP) / Universidade Federal do Maranhão(UFMA), Brazil

Recycling Welding Fluxes: Key Scientific Issues, Engineering Challenges and Pilot Demonstrations

Cong Wang, Northeastern University, China

DEVELOPMENT OF NEW METHODS OF CONTROL, ANALYSIS AND OPTIMIZATION OF STEEL PRODUCTION TECHNOLOGIES

Konstantin Grigorovich, Baikov Institute of Metallurgy and Materials Science of RAS, Russia

Prediction of Total Oxygen in IRUT-Treated Steels

Wagner Viana Bielefeldt, Federal University of Rio Grande do Sul, Brazil

Key Technologies for High-quality Continuous Casting Billets of Long Profile

Jiongming Zhang, University of Science and Technology Beijing‌, China

Wettability study between liquid slags and refractories during a splash process of the converter

Yongsug Chung, Tech University of Korea, Korea

Effect of refining slag composition dissolution on dissolution rate of inclusions in-situ observed using confocal scanning laser microscope

Ying Ren, University of Science and Technology Beijing‌, China

The influence mechanism of inclusion crystallization behavior on its deformation characteristics

Wen Yang, University of Science and Technology Beijing, China

Research on Control Technology of Internal Intermediate Cracks in ultra Thick Continuous Casting Slabs for Low-alloy High-strength Steel

Zhiyin Deng, Northeastern University, China

2. 钢铁冶金资源化循环利用方向

Mechanisms and Kinetics of Phase Evolution during Solidification of Cr-Containing Stainless Steel Slags

Il Sohn, Yonsei University, Korea

Challenges and opportunities in Pelletising of Low-grade Hematite – Goethite Fines for Low Carbon Ironmaking Processes

Liming Lu, CSIRO Mineral Resource, Australia

Defining Critical Tramp Element Thresholds for Sustainable Scrap-Based EAF Steel Production: Implications for Surface Hot Shortness and Circular Resource Use

Joonho Lee, Korea University, Korea

Low-Carbon Iron Production: Opportunities and Recent Practices

Xue Feng Dong, University of Wollongong, Australia

3. 钢铁冶金污染治理

Simulation of static and dynamic operation of the direct reduction furnace

Henrik Saxen, Abo Akademi University, Finland

Current Progress on Electric Smelting Furnace Research at University of Newcastle

Tom Honeyands, The University of Newcastle, Australia

Reduction of CO2 Emissions from Blast Furnace with Carbon Recycling Methane

Naoto Nakamura, JFE Steel Corporation, Japan

Comments about Technologies to be used in Ironmaking and Steelmaking to reduce GHG

Paulo Santos Assis, UFOP and HUST, Brazil

Reactivity and Degradation of Coke in Simulated Top Gas Recycling Oxygen Blast Furnace Conditions

Arash Tahmasebi, University of Newcastle, Australia

Phosphorus in iron and steelmaking – an Australian perspective for Pilbara iron ores

Ray Longbottom, University of Wollongong, Australia

4. 碳达峰、碳中和形势下炼铁炼钢新工艺新技术

Accelerating Low-Cost Green Ironmaking: Emerging R&D Methods, Progress, and Challenges

Yansong Shen, University of New South Wales, Australia

Innovation and Progress on Blast Furnace Ironmaking Technology at Shougang

Fuming Zhang, Shougang Group Co., Ltd., China

The effect of ESG initiatives in Brazil: government's role, financial performance and interlinkages on net-zero economy transition

Breynner Oliveira, Federal University of Ouro Preto, Brazil

Qisunny Methodology: Emergent Physicochemical Rules and Metallurgical Performance of Ore-Coke-CO-H2 System

Qi Wang, University of Science and Technology Liaoning, China

Study on the degradation of iron ore briquette during reduction

Youngjo Kang, Dong-A University, Korea

Exploration of the Optimal Pellet Proportion in Blast Furnace Burden

Weidong Zhang, Shougang Group Co., Ltd., China

The impact of different charges in electric-based ironmaking and steelmaking: a simulation investigation

Valentina Colla, Scuola Superiore Sant'Anna, Italy

Degradation Behavior of Coke Structure and Properties under Blast Furnace Conditions and Coke Quality Evaluation Methods

Shengfu Zhang, Chongqing University, China

Study of the potential of corymbia bark for energy and biochar production

Ricardo Barros, ArcelorMittal, Brazil

Deep melt purification technology for recycled steel

Guangsheng Wei, University of Science and Technology Beijing, China

Multidimensional Measurement and Control of Molten Slag for Carbon-Neutral Steelmaking

Noritaka Saito, Kyushu University, Japan

Novel techniques and processes for the preparation of green and low-carbon blast furnace burden

Zhiyun Ji, Central South University, China

Multi-view feasibility study of the innovative co-injection of H2 and coal in blast furnaces for viable net-zero ironmaking

Yiran Liu, University of Western Australia, Australia

Molten CaCI2-Based Carbothermal ironmaking

Xiao Yang, Westlake University, China

Challenges on sustainable EAF steelmaking in China

Alberto N. Conejo, University of Science and Technology Beijing, China

Master alloys and Stainless Steels via Hydrogen Reduction of Blended Oxides

Jie Qi, Hong Kong University of Science and Technology (Guangzhou), China

Preparation Technology and Industrial Application of Fluxed Pellets Using Ultra-fine Magnetite-Hematite Mixed Iron Concentrate

Mingshun Zhou, Iron and steel research institute of Angang Group, China

5. 钢铁冶金长寿命、减量化工艺技术及钢铁冶金废渣综合利用新技术

Co-Production of High-Quality Steel and Cement Clinker in EAFs Through Slag Engineering

Zushu Li, The University of Warwick, UK

Cleanliness of IF Steel Slabs during Ladle Exchange: Evaluation and Control

Xiaoxuan Deng, Shougang Group, China

四、会议秘书处

中国金属学会国际联络部 赵欣 刘芳

地址:北京市海淀区气象路9号院8号楼9层 邮编:100081

电话:010-65211205 13439682609

传真:010-65124122

E-mail: csst2026@csm.org.cn

会议网站:www.csst2026.com


2026年可持续发展钢铁冶金技术国际学术会议(CSST2026).pdf