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GB/T 32965-2025 English PDF

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GB/T 32965-2025: Technical specification for processing and metal recovery of steel slag
Status: Valid

GB/T 32965: Evolution and historical versions

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GB/T 32965-2025English199 Add to Cart 3 days [Need to translate] Technical specification for processing and metal recovery of steel slag Valid GB/T 32965-2025
GB/T 32965-2016English109 Add to Cart 2 days [Need to translate] Technical specifications on metal recovery of steel slag Valid GB/T 32965-2016

Basic data

Standard ID GB/T 32965-2025 (GB/T32965-2025)
Description (Translated English) Technical specification for processing and metal recovery of steel slag
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard H34
Classification of International Standard 77.140.99
Word Count Estimation 10,166
Date of Issue 2025-08-29
Date of Implementation 2026-03-01
Older Standard (superseded by this standard) GB/T 32965-2016
Issuing agency(ies) State Administration for Market Regulation; Standardization Administration of China

GB/T 32965-2025: Technical specification for processing and metal recovery of steel slag

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ICS 77.140.99 CCSH34 National Standards of the People's Republic of China Replaces GB/T 32965-2016 Technical Specifications for Steel Slag Processing and Metal Recycling Published on 2025-08-29 Implemented on 2026-03-01 State Administration for Market Regulation The State Administration for Standardization issued a statement.

Foreword

This document complies with the provisions of GB/T 1.1-2020 "Standardization Work Guidelines Part 1.Structure and Drafting Rules of Standardization Documents". Drafting. This document replaces GB/T 32965-2016 "Technical Specification for Metal Recovery and Treatment in Steel Slag". Compared with GB/T 32965-2016, except for... Aside from structural adjustments and editorial changes, the main technical changes are as follows. a) The scope has been changed (see Chapter 1, Chapter 1 of the.2016 edition); b) Terms and definitions have been changed (see Chapter 3, Chapter 3 of the.2016 edition); c) General requirements have been added (see Chapter 4); d) The principle and process of the dry process for steel slag have been modified (see 5.2, 4.1 and 4.2 in the.2016 version); e) The principles and process flow of wet treatment have been removed (see sections 5.1 and 5.2 of the.2016 edition); f) Increased automation requirements (see Chapter 6); g) Changes were made to the steel slag processing and metal recycling processes (see Chapter 7, 5.3 of the.2016 edition); h) Requirements for recycled metal products have been added (see Chapter 7); i) Increased material storage and transportation (see Chapter 8); j) The determination of total iron content in magnetically separated powder has been added (see Appendix A); k) The determination of total iron content in slag steel has been added (see Appendix B). Please note that some content in this document may involve patents. The issuing organization of this document assumes no responsibility for identifying patents. This document was proposed by the China Iron and Steel Association. This document is under the jurisdiction of the National Steel Standardization Technical Committee (SAC/TC183). This document was drafted by. China Metallurgical Construction Research Institute Co., Ltd., Shougang Group Qian'an Iron & Steel Co., Ltd., Shandong University, and China Metallurgical Energy Conservation and Environmental Protection Group Co., Ltd. Baoding Limited Liability Company, Shandong Iron and Steel Group Yongfeng Lingang Co., Ltd., Shihong Special Steel Group Co., Ltd., Metallurgical Industry Information and Standardization Research Institute Nanyang Hanye Special Steel Co., Ltd., Hangzhou Xiruidi Technology Co., Ltd., Anyang Iron and Steel Group Comprehensive Utilization and Development Company, Jiangsu Binxin Steel Group Limited, Dahuan Group Limited, Beijing University of Science and Technology, Lingyuan Iron & Steel Co., Ltd., Hubei Jinshenglan Metallurgical Group Co., Ltd. Company, Hebei Puyang Iron & Steel Co., Ltd., Nanjing Iron & Steel Co., Ltd., Guangxi Beigang New Materials Co., Ltd., China Metallurgical Testing & Certification (Shanghai) Co., Ltd. Limited Company, Anhui University of Technology, China Metallurgical Southern Urban Environmental Protection Engineering Technology Co., Ltd., Jiangsu Keda Heavy Industry Co., Ltd., Hangzhou Rui Kunming Information Technology Co., Ltd., and Deqing Taixin Metal Products Co., Ltd. The main drafters of this document are. Lü Wen, Zhang Liangliang, Chang Jingcai, Peng D, Zhang Song, Du Hongtao, Hao Yidang, Xu Shaopu, Qiu Jinhui, and Liu Yuanzheng. Yu Zhigang, Huang Huifang, Yan Caixia, Wang Yong, Sun Yonglin, Qi Baoxiang, Gao Zhaohai, Zhao Hu, Wang Haitao, Gao Haiquan, Liu Jingdong, Su Wei, Chen Jian Zuo Junjie, Wang Jiangwei, Hai Zhili, Zhang Ruopeng, Han Shiguo, Hao Dechang, Zhang Xu, Liu Gengsheng, Lin Tao, Yao Lijun, Yang Jue, Zhang Lianhang, Wang Xiaojie Zhang Yalin, Guo Xueyu, Li Jianchun, Li Bingji, Yu Jingyao, Liu Changliang, Zhang Yuanchun, Xu Yong, Zuo Shuai, Zhang Xingzhou, Chen Wenhao, Zhang Lichao, You Dajun Yu Wenbin, Liu Peilan, Nie Haijin, Cheng Weihua, Wu Yuedong, Zhang Ruichao, Qian Baineng, Chen Jiatiao, Wang Kun, and Du Gang. The previous versions of this document and the document it replaces are as follows. ---First published in.2016 as GB/T 32965-2016; ---This is the first revision. Technical Specifications for Steel Slag Processing and Metal Recycling 1.Scope This document specifies the general requirements, processes and equipment, automation requirements, metal recycling product requirements, and material requirements for steel slag processing and metal recycling. Storage and transportation. This document applies to desulfurization slag from molten iron pretreatment, converter steel slag, electric arc furnace steel slag, and refining casting residue (excluding stainless steel slag).

2 Normative references

The contents of the following documents, through normative references within the text, constitute essential provisions of this document. Dated citations are not included. For references to documents, only the version corresponding to that date applies to this document; for undated references, the latest version (including all amendments) applies. This document. GB/T 208 Method for Determination of Cement Density GB/T 8170 Rules for rounding off numerical values and the representation and determination of limiting values GB/T 10322.1 Sampling and Sample Preparation Methods for Iron Ore GB 12348 Emission Standard for Environmental Noise at the Boundary of Industrial Enterprises GB 28664 Emission Standard of Air Pollutants for Steelmaking Industry GB/T 30897 Steel slag for sintering GB/T 30898 Slag steel for steelmaking YB/T 148 Method for Determination of Total Iron Content in Steel Slag YB/T 804 Terminology for Steel Slag and its Treatment and Utilization YB/T 4725 Determination of metallic iron content in steel slag by ferric chloride-potassium dichromate titration method 3.Terms and Definitions The terms and definitions defined in YB/T 804 and the following terms and definitions apply to this document. 3.1 steel slag processing The process of separating cold steel slag into slag steel, magnetic powder and tailings through crushing, screening and magnetic separation. 3.2 steel slag tailings The residue after steel slag has been processed and metals have been recycled. 4.General Requirements 4.1 Steel slag processing and metal recycling should adhere to the principles of safe production, environmental protection, and resource utilization of solid waste, and adopt advanced and feasible methods. An economical, environmentally friendly, and energy-saving treatment process. Pollution prevention measures should be taken, such as preventing dust, runoff, and leakage. 4.3 The noise level at the boundary of the steel slag processing and metal recycling production line (hereinafter referred to as the steel slag processing line) shall meet the requirements of GB 12348. 4.4 Desulfurization slag from molten iron pretreatment, converter slag, electric arc furnace slag, and refining casting residue should be temporarily stored separately. Steel slag tailings should be piled up and stored separately. Store them for easy classification and utilization. 4.5 Desulfurization slag from molten iron pretreatment, converter slag, electric arc furnace slag, and refining casting residue should preferably be processed on separate slag processing lines. If the same steel... For slag processing lines, it is advisable to feed and process materials in different time periods. 4.6 Dust removal measures should be installed in areas where dust is generated during steel slag processing lines. The emission concentration limits for air pollutants should comply with the requirements of GB 28664. The dust concentration at the workplace must comply with GB 28664 regarding fugitive particulate matter emissions from production workshops with or without complete factory buildings. Concentration limit requirements. 5.Processes and Equipment 5.1 Basic Process After the steel slag is cooled to a suitable moisture content in the stockpile, it undergoes screening, coarse crushing, magnetic separation, and fine crushing to remove metallic materials, forming slag. Products include steel, magnetic separation powder, and tailings. Large lumps of steel slag are processed and metals are recovered using drop hammer and cutting methods. 5.2 Process Flow Steel slag is dumped onto a 150mm vibrating feed screen by a loader or grab bucket via a crane. Larger pieces on the screen are then magnetically separated by an electromagnetic chuck. Large magnetic materials are fed by a loader to a jaw crusher for coarse crushing, and then pass through a magnetic separator along with materials that have passed through a 150mm screen for magnetic separation. Iron is removed by magnetic separation to extract slag and steel. After magnetic separation in the iron remover, the material is separated into oversize ( >10 mm) and undersize by a 10 mm vibrating screen. (< 10mm), the material over the 10mm sieve is further crushed and de-ironized using an iron remover, and then enters a rod mill for fine crushing and iron removal. The material under the 10mm sieve is then separated by magnetic separation. It is divided into magnetically separated powder and tailings. The process flow is shown in Figure 1. Figure 1.Process flow diagram of steel slag processing and metal recycling 5.3 Design Requirements The design requirements are as follows. a) The areas of the raw material storage yard, finished product storage yard, and tailings storage yard of the steel slag processing line should meet the storage period requirements; b) Based on process requirements and actual on-site production conditions, the entire steel slag processing line should be divided into multiple processes, and the design should include steps between each process. In a storage yard or silo, when a certain process or piece of equipment malfunctions, it will not affect the normal production of other processes. 5.4 Crushing Equipment Jaw crushers can be used for primary crushing. Rod mills can be used for secondary crushing. 5.5 Magnetic Separation Equipment Magnetic separation equipment includes electromagnetic chucks, electromagnetic iron removers, and magnetic separators. 5.6 Requirements for Drop Hammer and Cutting of Large Steel Slag The requirements are as follows. a) Large pieces of steel slag exceeding 500mm should be processed using drop hammer cutting and cutting techniques; b) The drop hammer chamber for steel slag drop hammer treatment should have a reliable enclosure structure to prevent scrap steel from scattering, and necessary safety measures should be taken; c) Cutting of large lumps of steel slag should be carried out in an enclosed space, with a gas collection hood and dust removal facilities installed. 6.Automation Requirements 6.1 Design Principles 6.1.1 The automated control of the steel slag processing line should establish an integrated system of on-site control, process monitoring, and computer management to complete the overall automation control. Automatic monitoring and control of all production equipment during the entire process. 6.1.2 The design of automated control systems should adhere to the principles of "advanced, reliable, and practical," adopting a "distributed control, centralized management" model. Starting from the production process, automatic control of equipment is achieved, and the central monitoring computer statistically analyzes and processes information throughout the entire production control process. Reason, etc. 6.2 System Operating Platform 6.2.1 The system operating platform should be equipped with both Type 1 and Type 2 master stations. Type 1 master stations should use programmable logic controllers (PLCs). Type 2 master stations should use... When using an industrial control computer, communication and data exchange with a Class 1 master station should be achieved through industrial Ethernet. 6.2.2 Through configuration, human-machine dialogue should be realized to complete the control of field equipment and process monitoring. 6.2.3 Online monitoring equipment should be installed at the emission outlet of dust removal equipment to record the main parameters of the enterprise's environmental protection facilities operation and related production processes. 6.3 Operational Control Requirements 6.3.1 The equipment operation mode should be set to three types. local manual, main control manual, and main control automatic. The selector switch is located at the machine. Equipment maintenance or debugging. The phased operation adopts "manual operation at the machine" and "manual operation by the main control", while the "automatic operation by the main control" mode is used under normal production conditions. 6.3.2 The steel slag processing line involves two upstream and downstream processes. The downstream equipment should be started first, followed by the upstream equipment; when stopping, the upstream equipment should be stopped first. Downstream equipment can only be stopped after the upstream process is completed. The steel slag processing line has parallel processes that can be started and stopped simultaneously.

7 Requirements for Metal Recycling Products

7.1 The total iron content of magnetic separation powder for metal recycling products shall comply with the provisions of GB/T 30897, and the total iron content of slag steel shall comply with the provisions of GB/T 30898. As stipulated in the regulations or contract, the determination of total iron content in magnetic separation powder shall be carried out in accordance with Appendix A, and the determination of total iron content in slag steel shall be carried out in accordance with Appendix B. 7.2 The metallic iron content in steel slag tailings should not exceed 2%, and the determination of metallic iron content shall be carried out in accordance with YB/T 4725.

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