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乘“数”而上,以含绿量提升含金量
Chang Jiang Ri Bao· 2025-08-07 04:04
岚图武汉工厂的智慧大屏上,碳足迹数据实时跳动,牵动着该厂材料及轻量化总监陈嘉玥的神经,他说:"有效减少碳排量,不仅关乎 企业的市场竞争力,也决定着产业的技术制高点。" 生产每个环节碳排放被实时监控,汽车零部件"打包"生产,数据机房泡"冷水澡"降温,建筑垃圾变成电能、砖块……在厂房、园区, 武汉一系列低碳创新正在运用,既降低了生产碳排放,又提升了企业核心竞争力。 竞速绿色低碳新赛道,武汉企业纷纷向新而行,乘"数"而上,以发展的"含绿量"持续提升产业的"含金量"。 近百个汽车零件合为一个 听不到钢卷轰鸣,40余台智能小车高效穿梭,"钢卷不落地"有序运行。7月16日,随着首批钢卷装车驶出厂区,武汉钢铁有限公司硅钢 部新能源无取向硅钢分厂正式投产运营。 "从工艺装备到物流系统,再到生产流程设计,全部是武钢自主研发。"该厂厂长唐爽充满自信。这座新工厂采用全球首创的10余项核 心技术,构建起"5G+智慧管控平台",让整座工厂实现全流程绿色化生产,每年可减少碳排放400万吨,相当于36万公顷森林的年吸碳量。 "绿量"就是"发动机",减碳能力就是竞争力。如今,绿色制造不再被企业视作"选择",而是必然挑战。 8月4日上午,位于 ...
盛阅春调研武钢重点项目建设和谋划工作,营造一流环境、优化为企服务,全力支持武钢做强做优做大
Chang Jiang Ri Bao· 2025-07-27 10:31
Group 1 - The core viewpoint emphasizes the importance of supporting WISCO (Wuhan Iron and Steel Corporation) in enhancing its competitiveness and contributing to the economic development of Wuhan [1][2] - WISCO's new energy non-oriented silicon steel structural optimization project has commenced production in June, achieving top-level domestic technology standards [1] - The high-end oriented silicon steel green manufacturing structural optimization project is expected to significantly increase WISCO's high-grade oriented silicon steel capacity and product value [1] Group 2 - The city government will continue to support WISCO's transformation and high-quality development, aligning with provincial and municipal strategic requirements [2] - There is a focus on planning a series of projects that optimize varieties, enhance quality, and promote green and low-carbon industrial development [2] - The city aims to create a high-quality urban environment by investing in human resources and urban governance, ensuring a supportive atmosphere for enterprises [2]
武钢在“一米七”原址建绿色超级工厂
Chang Jiang Ri Bao· 2025-07-16 07:03
Core Viewpoint - Wuhan Iron and Steel Co., Ltd. has officially launched its new non-oriented silicon steel plant, marking a significant milestone in China's steel industry with advanced technology and a focus on green production [1][2]. Group 1: Plant Overview - The new plant is built on the site of the former WISCO No. 2 steelmaking plant, which was known for the famous "1.7" rolling mill project [1]. - The facility features a modern design with white eco-friendly materials and black dust-proof glass, emphasizing its commitment to sustainability [2]. - The total investment in the new plant is nearly 4 billion yuan, incorporating over ten core technologies that are globally innovative [2]. Group 2: Production Efficiency - The plant operates a modern logistics model where steel coils do not touch the ground, utilizing over 40 intelligent vehicles for efficient operations [2]. - The hot treatment production line can roll at a speed of 200 meters per minute, achieving over a 50% increase in overall efficiency compared to the old silicon steel plant [2]. - The new production line meets international top standards in key physical properties such as magnetic induction and iron loss, enabling competition with global steel companies from Japan and South Korea [2]. Group 3: Product Applications - The plant is designed to produce 550,000 tons annually, providing core materials for 4.4 million electric vehicles, which accounts for one-third of the national annual production of new energy vehicles [5]. - Non-oriented silicon steel is essential for manufacturing key components in electric motors and compressors, and it is also applicable in robotics, low-altitude aircraft, and smart sensors [5]. Group 4: Environmental Impact - The factory achieves full-process green production, reducing carbon emissions by 4 million tons annually, equivalent to the carbon absorption of 360,000 hectares of forest [6]. - The company is transitioning from being a pollution source to a green barrier within the urban ecosystem, contributing to urban industrial upgrades [6]. Group 5: Future Developments - Adjacent to the new silicon steel plant, a high-end oriented silicon steel green manufacturing optimization project is under construction, expected to produce 220,000 tons annually for renewable energy applications [6].