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GB/T 46884.1-2025Industrial internet platforms - Digital management of production safety - Part 1: General principles (English PDF)

工业互联网平台 安全生产数字化管理 第1部分:总则

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Issued by

SAMR; SAC

Level / Type

National · Recommended

Issue date

December 31, 2025

Implementation date

December 31, 2025

Scope

GB/T 46884.1-2025 is the English-translated version of 工业互联网平台 安全生产数字化管理 第1部分:总则.

GB/T 46884.1-2025 is the Chinese national standard covering how production safety is managed through an industrial internet platform - the general part: the hazards and risks to be monitored, the data collected from plant and people, the alerting and the responsibilities, on which the sector-specific parts build. Part 1 of the series, first edition, published together with Part 2 on the petrochemical and chemical industry. It was issued on 31 December 2025 and has been in force since 31 December 2025, as a first edition. The document is under the responsibility of the Ministry of Industry and Information Technology. This page is published from the official record of the 2025 edition; the clause text of a standard this recent is not yet in circulation, and the figures, limits and tables it contains are those of the document itself, delivered in full with the English translation.

Document preview — GB/T 46884.1-2025

National Standard of the People's Republic of China

ICS
35.240.50
Classification
L 67

Issued by: State Administration for Market Regulation; Standardization Administration of the PRC

Contents

  • 1.Scope1
  • 2 Normative References1
  • 3.Terms and Definitions1
  • 4.Basic Framework1
  • 5 Key Application Scenarios of Digital Management in Safe Production2
  • 5.1 Overview2
  • 5.2 System Management2
  • 5.3 Safety Education and Training3
  • 5.4 Emergency Management3
  • 5.5 Equipment and Facility Management3
  • 5.6 Work Safety Management4
  • 5.7 Safety Risk Control and Hazard Investigation and Remediation4
  • 5.8 Other Applications5
  • 6 Digital elements5
  • 6.1 General Rules5
  • 6.2 Data Elements5
  • 6.3 Knowledge Model5
  • 6.4 Software Tools6
  • 6 References7

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 is Part 1 of GB/T 46884 "Digital Management of Safe Production on Industrial Internet Platforms". GB/T 46884 has been... The following sections were published.

1.General Provisions;

2.Petrochemical Industry. 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 Ministry of Industry and Information Technology of the People's Republic of China. This document is under the jurisdiction of the National Technical Committee on Standardization of the Integration of Informatization and Industrialization (SAC/TC573). This document was drafted by: China Industrial Internet Research Institute, China Academy of Safety Science and Technology, and Sinopec Safety Engineering Research Institute Co., Ltd. The company, the Big Data Center of the Ministry of Emergency Management, Shenzhen Urban Public Safety Technology Research Institute Co., Ltd., Shandong Future Group Co., Ltd., Hubei Xinyi Chemical Co., Ltd., Dongtu Technology (Yichang) Co., Ltd., Southeast University, Sichuan University of Science and Engineering, Emergency Management Department of University of Chinese Academy of Sciences School of Science and Engineering, E-Power Co., Ltd., Fujian Energy and Petrochemical Group Co., Ltd., China Oil & Gas Pipeline Network Corporation Limited Company, Shandong Future Data Technology Co., Ltd., China Electronics and Information Industry Development Research Institute, National Industrial Information Security Development Research Center Suzhou Zhenqu Information Technology Co., Ltd., Anyuan Technology Co., Ltd., Shenzhen Jin'aobo Technology Co., Ltd., and Juhua Group Co., Ltd. The company, Langkun Smart Technology Co., Ltd., China Southern Power Grid Artificial Intelligence Technology Co., Ltd., and China National Petroleum Corporation Safety and Environmental Protection Technology Research Institute. Institute Co., Ltd., China Article Numbering Center, Metallurgical Science and Technology Development Center, Zhejiang Tuxun Technology Co., Ltd., and MCC Saidi Information Technology Co., Ltd. (Chongqing) Co., Ltd., Inspur Cloud Industrial Internet Co., Ltd., Beijing Zhongdian Hualao Technology Co., Ltd., Xinjiang Guanghui New Energy Co., Ltd. Company, Shanghai Huayi New Materials Co., Ltd., Zhejiang Jinhua New Materials Co., Ltd., Henan Xinlianxin Chemical Industry Group Co., Ltd. Zhejiang Xinhua Chemical Co., Ltd., Longnan Dingtai Electronic Technology Co., Ltd., Saifete Engineering Technology Group Co., Ltd., Beijing Bangandi Information Technology Co., Ltd., and Chengdu Greet Electronic Technology Co., Ltd. The main drafters of this document are. Shang Duo, Li Yuanyuan, Jing Hao, Gao Yuyang, He Huihong, Guan Lei, Xie Hongbo, Dai Chuangchuang, Xu Xiaochuan, and Wu Yadong. Yang Zhe, Dang Wenyi, Shi Hongxun, Tuo Xianguo, Liu Yongqiang, Li Xiaohui, Yin Jiyao, Tian Yu, Xin Xiao, Liu Jie, Chen Jiuzhou, Huang Leguan, Deng Dezheng Mu Huimin, Huang Tao, Li Ying, Yang Chunli, Hao Yafei, Huang Xianhang, Qiu Quanrong, Wang Xueli, Yu Kang, Shi Huimin, Guo Shuai, Huang Xin, Guo Lei, Dou Keqin Liu Xin, Liu Xiaowei, Wu Lei, Wang Sanming, Li Dong, Ma Ying, Zhou Xiaoxi, Zhang Zheng, Lei Jun, Wu Minghao, Wei Xiaoqing, Chen Song, Zhao Xiangyu, Cao Shang Wu Shuncheng, Tan Kun, Li Jianhua, Zhang Gang, Fu Xinfeng, Li Yu, Wang Bin, Li Zhi, Shang Guangyong, Xu Wei, Guan Shukun, Xue Xiaochun, Ding Liang, Zhou Qiang Gu Zhaohui, Li Hao, Yan Hongsheng, Li Di, Guo Liangliang, Yang Bin.

With the deep integration of new-generation information technologies, represented by the Industrial Internet, with industry, the level of inherent safety in industrial production has been significantly improved. The integration of the Industrial Internet with safe production is a crucial guarantee for achieving an advanced industrial base and a modernized industrial chain, and is essential for eliminating safety hazards. A fundamental solution is an important support for industrial restructuring and transformation and upgrading. Currently, my country's practice of digital management of safe production based on the Industrial Internet is still in the exploratory stage. Although there are a few successful pilot cases, The industry suffers from narrow application scope and insufficient industrial interconnection capabilities. Furthermore, significant differences between industries mean there are no common experiences to follow and no standard pathways. Issues such as availability. This document presents a unified architecture for digital management of safe production based on an industrial internet platform, which can improve the digital management of safe production. From a theoretical perspective, this paper presents a new approach to decouple and reconstruct key safety production scenarios using digital elements. (GB/T 46884 "Industrial Internet of Things") The "Internet-based Digital Management of Safe Production" aims to provide relevant enterprises with digital management services for safe production based on an industrial internet platform. The basic idea and framework aim to improve the application level of industrial internet technology in the digital management of safe production, and to provide enterprises with industrial internet capabilities for safe production. This lays the foundation for the standardization and normalization of the network platform construction, and is planned to consist of 10 parts.

1.General Provisions. The purpose is to provide a basic framework for digital management of safe production based on an industrial internet platform, and to stipulate... Key application scenarios and digital elements of digital management for safe production based on industrial internet platforms.

2.Petrochemical Industry. The aim is to provide data on safe production in the petrochemical industry based on an industrial internet platform. The basic framework of digital management is defined, and the key application scenarios for digital management of safe production in the petrochemical industry are specified.

3.Mining and Processing Industry. The aim is to provide digital data on safe production in the mining and processing industry based on an industrial internet platform. The basic framework of digital management is defined, and the key application scenarios for digital management of safe production in the mining and beneficiation industry are specified.

4.Oil and Gas Storage and Transportation Industry. The aim is to provide insights into the oil and gas storage and transportation industry based on industrial internet platforms. The basic framework for digital management of safe production is defined, specifying key scenarios for digital management of safe production in the oil and gas storage and transportation industry. Application development.

5.Civil Explosives Industry. The aim is to provide safety guidelines for the civil explosives industry based on an industrial internet platform. The basic framework of digital management for production is defined, and key application scenarios for digital management of safe production in the civil explosives industry are specified. Construction.

6.The Steel Industry. The aim is to provide a framework for digital management of safe production in the steel industry based on an industrial internet platform. The basic framework specifies the key application scenarios for digital management of safe production in the steel industry.

7.Non-ferrous Metals Industry. The aim is to provide data on safe production in the non-ferrous metals industry based on an industrial internet platform. The basic framework of digital management is defined, and the key application scenarios for digital management of safe production in the non-ferrous metals industry are specified.

8.Building Materials Industry. The aim is to provide a framework for digital management of safe production in the building materials industry based on an industrial internet platform. The basic framework specifies the key application scenarios for digital management of safe production in the building materials industry.

9.Fireworks and Firecrackers Industry. The aim is to provide data on safe production in the fireworks and firecrackers industry based on an industrial internet platform. The basic framework of digital management is established, and key application scenarios for digital management of safe production in the fireworks and firecrackers industry are defined.

1 Scope

GB/T 46884.1-2025 is the Chinese national standard covering how production safety is managed through an industrial internet platform - the general part: the hazards and risks to be monitored, the data collected from plant and people, the alerting and the responsibilities, on which the sector-specific parts build. Part 1 of the series, first edition, published together with Part 2 on the petrochemical and chemical industry. It was issued on 31 December 2025 and has been in force since 31 December 2025, as a first edition. The document is under the responsibility of the Ministry of Industry and Information Technology. This page is published from the official record of the 2025 edition; the clause text of a standard this recent is not yet in circulation, and the figures, limits and tables it contains are those of the document itself, delivered in full with the English translation.

This document provides a basic framework for digital management of safe production based on an industrial internet platform, and specifies the procedures for such management. Key application scenarios and digital elements of digital management for safe production in Taiwan. This document applies to the development of "Industrial Internet Safety Production" digital management capabilities across various manufacturing industries, and is applicable to relevant sectors. The industry has revised the evaluation standards for digital management of production safety, as well as the supervision, consultation, service, review, research, and management of digital management of production safety. And planning, etc.

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 29639 Guidelines for the Preparation of Emergency Response Plans for Production Safety Accidents in Production and Business Units

GB/T 44067-2024 (All Parts) Technical Requirements and Test Methods for Industrial Internet Platforms AQ/T 9009-2025 Guidelines for Emergency Drills of Production Safety Accidents

3 Terms and Definitions

The terms and definitions defined in GB/T 44067-2024 (all parts) and the following terms and definitions apply to this document.

3.1 Digital features Digital transformation scenarios require corresponding digital resources and elements.

3.2 Based on the industrial internet platform, multi-source data on safety production from various enterprises is aggregated, integrated, optimized, and its value is extracted to achieve management... The digital transformation of formats, management objects, and organizational structures.

4.Basic Framework Referring to the overall architecture of industrial internet platforms in GB/T 44067-2024 (all parts) and GB/T 33000-2016 This paper proposes a basic framework for digital management of safe production based on the Industrial Internet, focusing on key scenarios related to safe production (see Figure 1). Decoupling and reconstructing digital elements such as data elements, knowledge models, software tools, and human skills in key safety production scenarios to achieve safety. Digital management of the entire production process.

a) Edge Layer. This includes edge operations and maintenance, edge node communication, protocol conversion, edge analytics and application deployment, and edge-cloud collaboration. Different devices... After data from sources such as equipment, systems, and products are accessed, the aggregation of multi-source heterogeneous data is achieved through protocol parsing, and finally, the data is processed through edge computing. The computing device enables the aggregation and processing of underlying collected data and the integration of data to the cloud platform.

......
This preview omits tables, figures, formulas and parts of the technical clauses. The complete document — 11 pages — is available in the English PDF.

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