冶金能源
冶金能源
야금능원
ENERGY FOR METALLURGICAL INDUSTRY
2015年
3期
52-56
,共5页
余能%低温余热%余热回收
餘能%低溫餘熱%餘熱迴收
여능%저온여열%여열회수
waste energy%low temperature waste heat%waste heat recovery
介绍了梅钢在系统配置、工艺流程和应用效果三个方面采用先进技术的经验,以及在低温余热资源回收方面开展的积极探索和取得的初步效果。实践表明,余能回收技术总体上运行稳定、节能效果良好,为促进钢铁行业挖掘利用余能资源提供了示范。
介紹瞭梅鋼在繫統配置、工藝流程和應用效果三箇方麵採用先進技術的經驗,以及在低溫餘熱資源迴收方麵開展的積極探索和取得的初步效果。實踐錶明,餘能迴收技術總體上運行穩定、節能效果良好,為促進鋼鐵行業挖掘利用餘能資源提供瞭示範。
개소료매강재계통배치、공예류정화응용효과삼개방면채용선진기술적경험,이급재저온여열자원회수방면개전적적겁탐색화취득적초보효과。실천표명,여능회수기술총체상운행은정、절능효과량호,위촉진강철행업알굴이용여능자원제공료시범。
Firstly, three aspects of the advanced energy-saving technique used in Meishan steel, system configuration, process and effects, were introduced.Then, the recovery methods and primary effects of low-grade waste energy source explored in Meishan were described.The operation stability and energy-saving effect of waste energy recovery technique in Meishan steel were proved, which pro-vided models for promoting waste energy recovery in iron and steel industry.