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信息化和工业化深度融合
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IPC智能控制助力炼化企业驶向智能化快车道
Core Insights - The implementation of the IPC intelligent control system at China National Petroleum Corporation (CNPC) Yunnan Petrochemical has significantly reduced operational fluctuations and labor intensity while also lowering energy consumption [1][2] Group 1: IPC Intelligent Control System - The IPC system integrates upstream and downstream variations into an automated control framework, optimizing the entire production process and alleviating operational pressure [1] - Since the continuous reforming unit was put into operation in November last year, energy consumption has decreased significantly, addressing previous issues caused by raw material property changes [1][2] - The IPC system has been widely adopted across 29 petrochemical enterprises, with 236 production units benefiting from its implementation, accelerating the development of smart factories [1] Group 2: Technical Features and Benefits - The IPC intelligent control system is based on production big data, effectively solving challenges in process control by achieving precise control across all control loops [2] - It addresses technical difficulties such as multivariable, nonlinear, strong coupling, pure lag, and the coexistence of intermittent and continuous control, as well as multi-constraint and multi-objective regulation [2] - The successful application of IPC at CNPC Yunnan Petrochemical serves as a model for other refining enterprises [2]
建设陆海统筹发展的现代海洋城市——访辽宁省委副书记、大连市委书记熊茂平
Jing Ji Ri Bao· 2025-09-16 22:32
Core Insights - Dalian is focusing on high-quality development of the marine economy, aligning with President Xi Jinping's directives to enhance marine engineering manufacturing and development capabilities [1][3] Industry Developments - Dalian's shipbuilding and marine engineering equipment industry is projected to achieve an output value of approximately 62 billion yuan in 2024, representing a year-on-year growth of 12.7% [1] - The city's shipbuilding completion volume, new orders, and backlog orders have increased their domestic market share from 8.7%, 15.7%, and 15.2% in 2023 to 13.5%, 18.6%, and 17.5% respectively [1] - Major projects include the successful delivery of high-tech vessels such as the world's first 7,500 cubic meter liquid carbon dioxide transport ship and the largest 13,000 cubic meter B-type LNG fuel tank [1] Strategic Focus Areas - Future efforts will concentrate on LNG, LPG, ultra-large container ships, and luxury cruise ships to establish a world-class high-tech shipbuilding and marine engineering manufacturing base [2] - Dalian aims to enhance its industrial structure by focusing on high-end ship design, new power systems, and key components, while also promoting green shipbuilding initiatives [2] Advantages and Challenges - Dalian's natural advantages include rich marine resources, a strategic location, and a comprehensive marine industry structure with 26 out of 28 marine industry categories represented [3][4] - Challenges include the need for improved economic development mechanisms, optimization of industrial structure, and stronger technological innovation support [4] Innovation and Technology Integration - Dalian is committed to integrating new information technologies such as IoT, 5G, and AI into manufacturing, aiming for a transformation towards data-driven growth models [5] - The city plans to establish an industrial software innovation center and promote the development of industrial internet platforms to support local manufacturing [5]
工业和信息化部召开“推进信息化和工业化深度融合”重点建议提案办理座谈会
news flash· 2025-07-22 10:50
Core Viewpoint - The meeting emphasized the importance of integrating information technology and industrialization as a strategic task and practical implementation to support the development of a strong manufacturing and network nation [1] Group 1: Meeting Objectives - The meeting aimed to gather opinions from representatives on key proposals related to the digital transformation of manufacturing, development of industrial internet platforms, AI empowerment, and training of leading talents in manufacturing [1] - The Ministry of Industry and Information Technology (MIIT) highlighted the need to align proposal handling with the implementation of important directives from General Secretary Xi Jinping and the decisions of the Central Committee and State Council [1] Group 2: Integration Significance - The meeting stressed the critical significance of promoting the deep integration of information technology and industrialization, viewing it as a strategic task for advancing new industrialization [1] - It called for the establishment of a robust system for integrated development, solidifying the foundation for such integration, and fostering an ecosystem that supports this development [1] Group 3: Future Directions - The MIIT aims to push for the integration of information technology and industrialization at broader, deeper, and higher levels to provide strong support for advancing new industrialization and building a manufacturing powerhouse and a network power [1]
工信部:加强碳管理、绿色制造与循环利用标准建设
Core Viewpoint - The article emphasizes the importance of standards in promoting industrial green and low-carbon development, aligning with national strategies for modernization and sustainability [5][12]. Group 1: Carbon Management Standards - The establishment of a comprehensive carbon management standard system is prioritized, focusing on greenhouse gas standards across various aspects such as calculation, verification, and monitoring [12]. - Development of standards for carbon footprint accounting and clean low-carbon hydrogen applications is also highlighted [12]. Group 2: Green Manufacturing Standards - The revision of standards for green factories, green industrial parks, and green supply chains is essential, with a focus on sector-specific evaluations [2][12]. Group 3: Resource Conservation and Recycling Standards - Accelerating the formulation of standards for industrial solid waste utilization, pollution prevention, and water conservation is crucial [3][12]. - The article mentions the need for standards related to water quotas and water-saving enterprises [3]. Group 4: Coordination of Standards with Industry Development - The article stresses the need for standards to align with industrial development strategies, planning, and policies to enhance the resilience and safety of supply chains [6][7]. - It highlights the importance of integrating standards into national-level planning for digital economy and green development [6][7]. Group 5: Traditional and Advantageous Industries Standards - The development of standards for traditional industries such as petrochemicals and heavy machinery is emphasized, focusing on advanced processes and quality consistency [8]. - Standards for advantageous industries like photovoltaics and lithium batteries are also prioritized to drive innovation and product development [8]. Group 6: Emerging and Future Industries Standards - The article discusses the need for standards in emerging industries such as cloud computing and blockchain, as well as future industries like quantum information and humanoid robots [9][10]. - It emphasizes the importance of establishing standards for new materials and advanced manufacturing technologies [9][10]. Group 7: Information Technology and Industrial Integration - Establishing standards for the digital transformation of manufacturing and the integration of artificial intelligence is crucial for enhancing productivity [10][11]. - The article highlights the need for standards in networked collaboration and smart manufacturing [11]. Group 8: Globalization of Standards - The article encourages participation in international standard-setting organizations to promote global industrial development [14][15]. - It emphasizes the importance of aligning domestic standards with international standards to enhance competitiveness [15]. Group 9: Modernization of Industry Governance - The article calls for the establishment of a comprehensive national standard system to ensure product quality and safety [13][16]. - It highlights the need for effective management of the standard lifecycle and the establishment of standardization technical organizations [16][17].